2018 |
Aziz, A A; Moganan, F F M; Mokhsin, M; Sakamat, N; Ismail, A Humanoid robot intervention with autism: The conceptual model in demonstrating the emotional responses of children with autism Journal Article Advances in Intelligent Systems and Computing, 739 , pp. 574-579, 2018, ISSN: 21945357, (cited By 0). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism Spectrum Disorders, Autistic Children, Children with Autism, Conceptual Model, Developmental Disorders, Diseases, Emotion, Emotional Response, Humanoid Robot, Robotics, Robots @article{Aziz2018574, title = {Humanoid robot intervention with autism: The conceptual model in demonstrating the emotional responses of children with autism}, author = {A A Aziz and F F M Moganan and M Mokhsin and N Sakamat and A Ismail}, editor = {Levy Mohd Lokman Chen P A K Koyama S. Yamanaka T.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-85044186403&doi=10.1007%2f978-981-10-8612-0_60&partnerID=40&md5=76beda967357c1b4445593f4f3bb00fe}, doi = {10.1007/978-981-10-8612-0_60}, issn = {21945357}, year = {2018}, date = {2018-01-01}, journal = {Advances in Intelligent Systems and Computing}, volume = {739}, pages = {574-579}, publisher = {Springer Verlag}, abstract = {Autism is a lifelong developmental disorder often associated with the inability to interact and communicate with others in meaningful ways. Few studies have actually proven that individuals with autism are facing difficulties in extracting and interpreting the emotion of others. This has led to the misbelief that individuals with autism are emotionless. This paper aims to demonstrate that given the right triggers, individuals with autism will show certain level of emotional responses. With its main objectives being (i) To study the previous research on the impact of Humanoid Robot Intervention on autistic children’s emotional responses and (ii) To illustrate the conceptual model that can further elevate the emotional responses of an autistic child, it is with the best hope that the model can further aid researchers in understanding the autistic children’s emotional responses while engaging with the humanoid robot, thus may help in creating a more meaningful and successful interaction session. © Springer Nature Singapore Pte Ltd. 2018.}, note = {cited By 0}, keywords = {Anthropomorphic Robots, Autism Spectrum Disorders, Autistic Children, Children with Autism, Conceptual Model, Developmental Disorders, Diseases, Emotion, Emotional Response, Humanoid Robot, Robotics, Robots}, pubstate = {published}, tppubtype = {article} } Autism is a lifelong developmental disorder often associated with the inability to interact and communicate with others in meaningful ways. Few studies have actually proven that individuals with autism are facing difficulties in extracting and interpreting the emotion of others. This has led to the misbelief that individuals with autism are emotionless. This paper aims to demonstrate that given the right triggers, individuals with autism will show certain level of emotional responses. With its main objectives being (i) To study the previous research on the impact of Humanoid Robot Intervention on autistic children’s emotional responses and (ii) To illustrate the conceptual model that can further elevate the emotional responses of an autistic child, it is with the best hope that the model can further aid researchers in understanding the autistic children’s emotional responses while engaging with the humanoid robot, thus may help in creating a more meaningful and successful interaction session. © Springer Nature Singapore Pte Ltd. 2018. |
2017 |
Salleh, M H K; Miskam, M A; Yussof, H; Omar, A R HRI Assessment of ASKNAO Intervention Framework via Typically Developed Child Conference 105 , Elsevier B.V., 2017, ISSN: 18770509, (cited By 1). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, ASKNAO, Autism, Diseases, Humanoid Robot, Humanoid Robot NAO, Intelligent Control, Network Function Virtualization, Rehabilitation Robotics, Robotics, Smart Sensors, Social Interactions @conference{Salleh2017333, title = {HRI Assessment of ASKNAO Intervention Framework via Typically Developed Child}, author = {M H K Salleh and M A Miskam and H Yussof and A R Omar}, editor = {Yussof H.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-85016113682&doi=10.1016%2fj.procs.2017.01.230&partnerID=40&md5=dca0fd7b8ec976ff9aefce53582a3aca}, doi = {10.1016/j.procs.2017.01.230}, issn = {18770509}, year = {2017}, date = {2017-01-01}, journal = {Procedia Computer Science}, volume = {105}, pages = {333-339}, publisher = {Elsevier B.V.}, abstract = {This paper discuss about mock experiment on a typically developed child. The mock experiment is based on the previous work of the experimental framework on ASKNAO intervention. This is conducted as a preparation for the main experiment and to fine-tune the framework so that undesirable elements from the framework can be avoided. A typically developed child is used rather than an autism child because the typically developed child is able to handle the stress that occurs and capable of expressing his emotions freely. The findings of the experiment shows that the several adjustment need to be made on the previous framework in order to achieve a better result for the main experiment on an autism child. © 2017 The Authors.}, note = {cited By 1}, keywords = {Anthropomorphic Robots, ASKNAO, Autism, Diseases, Humanoid Robot, Humanoid Robot NAO, Intelligent Control, Network Function Virtualization, Rehabilitation Robotics, Robotics, Smart Sensors, Social Interactions}, pubstate = {published}, tppubtype = {conference} } This paper discuss about mock experiment on a typically developed child. The mock experiment is based on the previous work of the experimental framework on ASKNAO intervention. This is conducted as a preparation for the main experiment and to fine-tune the framework so that undesirable elements from the framework can be avoided. A typically developed child is used rather than an autism child because the typically developed child is able to handle the stress that occurs and capable of expressing his emotions freely. The findings of the experiment shows that the several adjustment need to be made on the previous framework in order to achieve a better result for the main experiment on an autism child. © 2017 The Authors. |
Sitimin, S A; Fikry, A; Ismail, Z; Hussein, N Work-family Conflict among Working Parents of Children with Autism in Malaysia Conference 105 , Elsevier B.V., 2017, ISSN: 18770509, (cited By 2). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Children with Autism, Diseases, Humanoid Robot, Intelligent Control, Malaysia, Robotics, Smart Sensors, Work-Family Conflict, Working Parents @conference{Sitimin2017345, title = {Work-family Conflict among Working Parents of Children with Autism in Malaysia}, author = {S A Sitimin and A Fikry and Z Ismail and N Hussein}, editor = {Yussof H.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-85016123728&doi=10.1016%2fj.procs.2017.01.232&partnerID=40&md5=96f1dbb29f30b6aadd279818134255df}, doi = {10.1016/j.procs.2017.01.232}, issn = {18770509}, year = {2017}, date = {2017-01-01}, journal = {Procedia Computer Science}, volume = {105}, pages = {345-352}, publisher = {Elsevier B.V.}, abstract = {This qualitative study describes the conflict between work roles and family roles, and recommendations to reduce the work-family conflict from the perspective of working parents of children with Autism in Malaysia. Data were collected personally from 12 respondents via a semi-structured interview. These working parents discussed the work-family conflict that they faced and what kind of needs that can help to overcome the conflicts, as well as if there is any support provided by their employer to reduce work-family conflict. Interview results indicate that balancing work roles and family roles at once is very challenging. It shows that these working parents need a nursery that accepts a child with Autism and support from their employer to lessen their work-family conflict. © 2017 The Authors.}, note = {cited By 2}, keywords = {Anthropomorphic Robots, Children with Autism, Diseases, Humanoid Robot, Intelligent Control, Malaysia, Robotics, Smart Sensors, Work-Family Conflict, Working Parents}, pubstate = {published}, tppubtype = {conference} } This qualitative study describes the conflict between work roles and family roles, and recommendations to reduce the work-family conflict from the perspective of working parents of children with Autism in Malaysia. Data were collected personally from 12 respondents via a semi-structured interview. These working parents discussed the work-family conflict that they faced and what kind of needs that can help to overcome the conflicts, as well as if there is any support provided by their employer to reduce work-family conflict. Interview results indicate that balancing work roles and family roles at once is very challenging. It shows that these working parents need a nursery that accepts a child with Autism and support from their employer to lessen their work-family conflict. © 2017 The Authors. |
2016 |
Miskam, M A; Shamsuddin, S; Yussof, H; Ariffin, I M; Omar, A R Institute of Electrical and Electronics Engineers Inc., 2016, ISBN: 9781479966783, (cited By 1). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism, Autism Therapies, Behavioral Research, Children with Autism, Cognitive Interaction, Diseases, Education, Emotion, Emotion Gestures, Human Behaviours, Humanoid Robot, Humanoid Robot NAO, Robotics, Robots, Social Sciences, Surveys, Teaching, Teaching Module @conference{Miskam2016, title = {A questionnaire-based survey: Therapist's response on emotions gestures using humanoid robot for autism}, author = {M A Miskam and S Shamsuddin and H Yussof and I M Ariffin and A R Omar}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84966605834&doi=10.1109%2fMHS.2015.7438298&partnerID=40&md5=c0cbd143f24183861955c67562e36fdf}, doi = {10.1109/MHS.2015.7438298}, isbn = {9781479966783}, year = {2016}, date = {2016-01-01}, journal = {2015 International Symposium on Micro-NanoMechatronics and Human Science, MHS 2015}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {This paper is, we used a humanoid robot to physically show emotional poses and conduct a simple guessing game with children. Nine different emotions using the robot's body poses have been developed using Choregraphe. Naturally, we need to approximate as closely as possible natural human behaviour to be done by robot to engaging the children to interact with normal human. Therefore, this study is continuation of our previous study on emotion gestures where we get the therapists response towards module of emotions-based teaching module for children with autism. The role of therapists is to give their main knowledge of autism therapy to bring the right creation of module program using robot. © 2015 IEEE.}, note = {cited By 1}, keywords = {Anthropomorphic Robots, Autism, Autism Therapies, Behavioral Research, Children with Autism, Cognitive Interaction, Diseases, Education, Emotion, Emotion Gestures, Human Behaviours, Humanoid Robot, Humanoid Robot NAO, Robotics, Robots, Social Sciences, Surveys, Teaching, Teaching Module}, pubstate = {published}, tppubtype = {conference} } This paper is, we used a humanoid robot to physically show emotional poses and conduct a simple guessing game with children. Nine different emotions using the robot's body poses have been developed using Choregraphe. Naturally, we need to approximate as closely as possible natural human behaviour to be done by robot to engaging the children to interact with normal human. Therefore, this study is continuation of our previous study on emotion gestures where we get the therapists response towards module of emotions-based teaching module for children with autism. The role of therapists is to give their main knowledge of autism therapy to bring the right creation of module program using robot. © 2015 IEEE. |
2015 |
Shamsuddin, S; Yussof, H; Hanapiah, F A; Mohamed, S A content validated tool to observe autism behavior in child-robot interaction Conference 2015-November , Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781467367042, (cited By 1). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autistic Children, Child-Robot Interactions, Children with Autism, Cronbach's Alphas, Diseases, Humanoid Robot, Internal Consistency, Mental Disorders, Robotics, Robots, Validation Study @conference{Shamsuddin201543, title = {A content validated tool to observe autism behavior in child-robot interaction}, author = {S Shamsuddin and H Yussof and F A Hanapiah and S Mohamed}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84954049574&doi=10.1109%2fROMAN.2015.7333578&partnerID=40&md5=2a25d12804ba227de6f26eca7b46f770}, doi = {10.1109/ROMAN.2015.7333578}, isbn = {9781467367042}, year = {2015}, date = {2015-01-01}, journal = {Proceedings - IEEE International Workshop on Robot and Human Interactive Communication}, volume = {2015-November}, pages = {43-47}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {This research presents the validation study of a qualitative tool to analyze the response in robot-based intervention. The 24 behavioral items in the tool were determined through routine observations carried out by clinicians and the definitions of autism adopted by the Diagnostic and Statistical Manual of Mental Disorders: Fourth Edition-Text Revision (DSM-IV-TR). 34 experts determined content validity and tool reliability by viewpoints through the Likert scale. The tool was found to have good content validity with more than 67% of experts scored at least 3 on the 5-point Likert scale. Cronbach's alpha coefficient of 0.872 reflected the tool's content reliability and internal consistency. The tool was used to analyze the behavior response of children with autism when exposed to a humanoid robot. It functioned as a score-sheet to compare the behavior of autistic children with and without the presence of a robot. These findings put forward a tool with contents considered valid to evaluate behavior outcome of studies involving children with autism and robots. © 2015 IEEE.}, note = {cited By 1}, keywords = {Anthropomorphic Robots, Autistic Children, Child-Robot Interactions, Children with Autism, Cronbach's Alphas, Diseases, Humanoid Robot, Internal Consistency, Mental Disorders, Robotics, Robots, Validation Study}, pubstate = {published}, tppubtype = {conference} } This research presents the validation study of a qualitative tool to analyze the response in robot-based intervention. The 24 behavioral items in the tool were determined through routine observations carried out by clinicians and the definitions of autism adopted by the Diagnostic and Statistical Manual of Mental Disorders: Fourth Edition-Text Revision (DSM-IV-TR). 34 experts determined content validity and tool reliability by viewpoints through the Likert scale. The tool was found to have good content validity with more than 67% of experts scored at least 3 on the 5-point Likert scale. Cronbach's alpha coefficient of 0.872 reflected the tool's content reliability and internal consistency. The tool was used to analyze the behavior response of children with autism when exposed to a humanoid robot. It functioned as a score-sheet to compare the behavior of autistic children with and without the presence of a robot. These findings put forward a tool with contents considered valid to evaluate behavior outcome of studies involving children with autism and robots. © 2015 IEEE. |
Shamsuddin, S; Yussof, H; Hanapiah, F A; Mohamed, S A humanoid robot for autism rehabilitation: Does IQ influence response in child-robot interaction? Inproceedings Selamat, MZ; MatDan, R (Ed.): PROCEEDINGS OF MECHANICAL ENGINEERING RESEARCH DAY 2015, pp. 145-146, Univ Teknikal Malaysia Melaka, Fac Mech Engn; Univ Teknikal Malaysia Melaka, Ctr Adv Res Energy CENTRE ADVANCED RESEARCH ENERGY-CARE, FAC MECHANICAL ENGINEERING, UNIV TEKNIKAL MALAYASIA MELAKA, HANG TUAH JAYA, DURIAN TUNGGAL, MEKALA 76100, MALAYSIA, 2015, ISBN: 978-967-0257-51-8, (Mechanical Engineering Research Day (MERD), Univ Teknikal Malaysia Melaka, Kampus Teknologi, Malaysia, MALAYSIA, MAR 31, 2015). Abstract | BibTeX | Tags: Human Robot Interaction, Humanoid Robot, IQ Level @inproceedings{ISI:000363962700073, title = {A humanoid robot for autism rehabilitation: Does IQ influence response in child-robot interaction?}, author = {S Shamsuddin and H Yussof and F A Hanapiah and S Mohamed}, editor = {MZ Selamat and R MatDan}, isbn = {978-967-0257-51-8}, year = {2015}, date = {2015-01-01}, booktitle = {PROCEEDINGS OF MECHANICAL ENGINEERING RESEARCH DAY 2015}, pages = {145-146}, publisher = {CENTRE ADVANCED RESEARCH ENERGY-CARE}, address = {FAC MECHANICAL ENGINEERING, UNIV TEKNIKAL MALAYASIA MELAKA, HANG TUAH JAYA, DURIAN TUNGGAL, MEKALA 76100, MALAYSIA}, organization = {Univ Teknikal Malaysia Melaka, Fac Mech Engn; Univ Teknikal Malaysia Melaka, Ctr Adv Res Energy}, abstract = {Recent advances show that robots have unlimited potential to help the disabled community by providing physical support, social engagement and even co-therapy in collaboration with another human. For children with autism, a robot in human shape might be able to help them to learn better and encourage social-communication skills. To prove this, the key initial step is to explore the initial response of children with autism when they interact with a humanoid robot in an experimental setting. We hypothesize that a robot's presence coupled with specific interplay shall attract the children's attention to engage in robot-based interaction. The initial responses will be utilized to seek association between responses to the robot with the children's intelligence level. Twelve autistic children with IQs between 44 and 107 were exposed to different interactions. Behavior evaluation showed that in the presence of the robot, lower autistic traits were recorded in the subscale of stereotyped behavior and communication. Also, children with IQs higher than 80 were more receptive to robot-based single exposure.}, note = {Mechanical Engineering Research Day (MERD), Univ Teknikal Malaysia Melaka, Kampus Teknologi, Malaysia, MALAYSIA, MAR 31, 2015}, keywords = {Human Robot Interaction, Humanoid Robot, IQ Level}, pubstate = {published}, tppubtype = {inproceedings} } Recent advances show that robots have unlimited potential to help the disabled community by providing physical support, social engagement and even co-therapy in collaboration with another human. For children with autism, a robot in human shape might be able to help them to learn better and encourage social-communication skills. To prove this, the key initial step is to explore the initial response of children with autism when they interact with a humanoid robot in an experimental setting. We hypothesize that a robot's presence coupled with specific interplay shall attract the children's attention to engage in robot-based interaction. The initial responses will be utilized to seek association between responses to the robot with the children's intelligence level. Twelve autistic children with IQs between 44 and 107 were exposed to different interactions. Behavior evaluation showed that in the presence of the robot, lower autistic traits were recorded in the subscale of stereotyped behavior and communication. Also, children with IQs higher than 80 were more receptive to robot-based single exposure. |
Saleh, N M; Hassan, H; Fikry, A; Musa, R; Ahmad, S S; Ismail, Z; Samat, N; Hashim, R Autism children: Cost and benefit analysis of using humanoid in Malaysia Conference Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781479957651, (cited By 3). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism, Autism Therapies, Autism Treatments, Children, Cost Benefit Analysis, Costs, Curing, Diseases, Humanoid, Humanoid Robot, Manufacture, Quality of Life, Robotics, Robots @conference{Saleh2015185, title = {Autism children: Cost and benefit analysis of using humanoid in Malaysia}, author = {N M Saleh and H Hassan and A Fikry and R Musa and S S Ahmad and Z Ismail and N Samat and R Hashim}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84959570138&doi=10.1109%2fROMA.2014.7295885&partnerID=40&md5=e3a60d8df8ebd4f38287d5f212c8ab1a}, doi = {10.1109/ROMA.2014.7295885}, isbn = {9781479957651}, year = {2015}, date = {2015-01-01}, journal = {2014 IEEE International Symposium on Robotics and Manufacturing Automation, IEEE-ROMA2014}, pages = {185-187}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {Autism is a permanent disorder that cause quality of life disturbance. As matter of research, there are no single interventions that can cure the heterogeneous syndrome. Since there is no cure for autism children, perhaps using humanoid can help the autism children in order to have appropriate therapy and treatment programs especially to the young children inflicted with it. Robots are normally used for industrial work, but hardly for therapy. Robots have been used to substitute human way back in the 19th century. They are beneficial to society regardless of the fields that they are being utilized. The health sector has been identified as one of the fields that benefit most as a result of using robotics. For decades, people fascinated with the technology's fiction of robots that look and act like a human Therefore, humanoid robots give benefits towards autism therapy for early detection. Many studies have been done in order to determine the ways to conduct autism treatment However, there is no study on cost and benefit analysis conducted using humanoid as a treatment for autism children. Therefore, this study will focus on the cost and benefit analysis of using humanoid for Malaysian autism children. © 2014 IEEE.}, note = {cited By 3}, keywords = {Anthropomorphic Robots, Autism, Autism Therapies, Autism Treatments, Children, Cost Benefit Analysis, Costs, Curing, Diseases, Humanoid, Humanoid Robot, Manufacture, Quality of Life, Robotics, Robots}, pubstate = {published}, tppubtype = {conference} } Autism is a permanent disorder that cause quality of life disturbance. As matter of research, there are no single interventions that can cure the heterogeneous syndrome. Since there is no cure for autism children, perhaps using humanoid can help the autism children in order to have appropriate therapy and treatment programs especially to the young children inflicted with it. Robots are normally used for industrial work, but hardly for therapy. Robots have been used to substitute human way back in the 19th century. They are beneficial to society regardless of the fields that they are being utilized. The health sector has been identified as one of the fields that benefit most as a result of using robotics. For decades, people fascinated with the technology's fiction of robots that look and act like a human Therefore, humanoid robots give benefits towards autism therapy for early detection. Many studies have been done in order to determine the ways to conduct autism treatment However, there is no study on cost and benefit analysis conducted using humanoid as a treatment for autism children. Therefore, this study will focus on the cost and benefit analysis of using humanoid for Malaysian autism children. © 2014 IEEE. |
Aziz, A A; Moganan, F F M; Ismail, A; Lokman, A M Autistic Children's Kansei Responses Towards Humanoid-Robot as Teaching Mediator Conference 76 , Elsevier B.V., 2015, ISSN: 18770509, (cited By 6). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism Spectrum Disorders, Children with Autism, Diseases, Education, Emotion, Emotion Extractions, Humanoid Robot, Humanoid Robot NAO, Intelligent Control, Interaction Modules, Kansei Engineering, Robotics, Robots, Smart Sensors, Social Communications @conference{Aziz2015488, title = {Autistic Children's Kansei Responses Towards Humanoid-Robot as Teaching Mediator}, author = {A A Aziz and F F M Moganan and A Ismail and A M Lokman}, editor = {Miskon M F Yussof H.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84962865419&doi=10.1016%2fj.procs.2015.12.322&partnerID=40&md5=2406a6eb6d803f72684751a8aab37868}, doi = {10.1016/j.procs.2015.12.322}, issn = {18770509}, year = {2015}, date = {2015-01-01}, journal = {Procedia Computer Science}, volume = {76}, pages = {488-493}, publisher = {Elsevier B.V.}, abstract = {Autism is often being associated with the deficits in social communication, interaction as well as imagination. Autistic patients may experience the impairment in social interaction usually being related to their inability to interpret others' emotion and even to express their own feelings. As a result, children with autism are often been labeled as lacking the ability to express their emotion. The main objective of this paper is to present a pilot study in studying the autistic children's' emotions and feelings upon being triggered by the humanoid-robot, NAO. Kansei Engineering, which is a powerful emotion extraction mechanism is adopted in the study to assess the children's' emotion. The experiment involved two autistic children and one normal child who were given four interaction modules in separate intervention session. The experiment conducted is to observe how robot triggers the emotion of these children. The result shows that different types of modules which would trigger different emotional reactions. This result provides a basis for further investigation of the assessment of autistic children's feeling and emotion. The result will ultimately contribute to finding best possible therapy for autistic children towards the used of humanoid-robot.}, note = {cited By 6}, keywords = {Anthropomorphic Robots, Autism Spectrum Disorders, Children with Autism, Diseases, Education, Emotion, Emotion Extractions, Humanoid Robot, Humanoid Robot NAO, Intelligent Control, Interaction Modules, Kansei Engineering, Robotics, Robots, Smart Sensors, Social Communications}, pubstate = {published}, tppubtype = {conference} } Autism is often being associated with the deficits in social communication, interaction as well as imagination. Autistic patients may experience the impairment in social interaction usually being related to their inability to interpret others' emotion and even to express their own feelings. As a result, children with autism are often been labeled as lacking the ability to express their emotion. The main objective of this paper is to present a pilot study in studying the autistic children's' emotions and feelings upon being triggered by the humanoid-robot, NAO. Kansei Engineering, which is a powerful emotion extraction mechanism is adopted in the study to assess the children's' emotion. The experiment involved two autistic children and one normal child who were given four interaction modules in separate intervention session. The experiment conducted is to observe how robot triggers the emotion of these children. The result shows that different types of modules which would trigger different emotional reactions. This result provides a basis for further investigation of the assessment of autistic children's feeling and emotion. The result will ultimately contribute to finding best possible therapy for autistic children towards the used of humanoid-robot. |
Salleh, M H K; Yussof, H; Ainuddin, H A; Muda, M Z; Shamsuddin, S; Miskam, M A; Omar, A R Experimental Framework for the Categorization of Special Education Programs of ASKNAO Conference 76 , Elsevier B.V., 2015, ISSN: 18770509, (cited By 4). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, ASKNAO, Autism, Diseases, Education, Humanoid Robot, Humanoid Robot NAO, Intelligent Control, Rehabilitation Robotics, Robotics, Smart Sensors, Special Education @conference{Salleh2015480, title = {Experimental Framework for the Categorization of Special Education Programs of ASKNAO}, author = {M H K Salleh and H Yussof and H A Ainuddin and M Z Muda and S Shamsuddin and M A Miskam and A R Omar}, editor = {Miskon M F Yussof H.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84962839161&doi=10.1016%2fj.procs.2015.12.321&partnerID=40&md5=b1ef50969d7f20b587f124ebebc3a9bc}, doi = {10.1016/j.procs.2015.12.321}, issn = {18770509}, year = {2015}, date = {2015-01-01}, journal = {Procedia Computer Science}, volume = {76}, pages = {480-487}, publisher = {Elsevier B.V.}, abstract = {This paper presents the methods for categorizing a special education apps known as Autism Solution for Kids using NAO (ASKNAO) into the three subscales of autism which is Communication, Social Skills and Repetitive Behavior. The ASKNAO programs contains special education apps that is aimed for autism rehabilitation. As the apps have yet to be categorized, an experimental framework is proposed as to create a method of organizing the apps. With the usage of a 24 behavioral score sheet based on GARS-2, the reactions of the autistic children when interacting with the NAO robot during the experimental sessions can help classify the apps accordingly. There is however a few criteria needs to be met for the experimental data can be considered as reliable.}, note = {cited By 4}, keywords = {Anthropomorphic Robots, ASKNAO, Autism, Diseases, Education, Humanoid Robot, Humanoid Robot NAO, Intelligent Control, Rehabilitation Robotics, Robotics, Smart Sensors, Special Education}, pubstate = {published}, tppubtype = {conference} } This paper presents the methods for categorizing a special education apps known as Autism Solution for Kids using NAO (ASKNAO) into the three subscales of autism which is Communication, Social Skills and Repetitive Behavior. The ASKNAO programs contains special education apps that is aimed for autism rehabilitation. As the apps have yet to be categorized, an experimental framework is proposed as to create a method of organizing the apps. With the usage of a 24 behavioral score sheet based on GARS-2, the reactions of the autistic children when interacting with the NAO robot during the experimental sessions can help classify the apps accordingly. There is however a few criteria needs to be met for the experimental data can be considered as reliable. |
Aziz, A A; Moghanan, F F M; Mokhsin, M; Ismail, A; Lokman, A M Humanoid-robot intervention for children with autism: A conceptual model on FBM Journal Article Communications in Computer and Information Science, 545 , pp. 231-241, 2015, ISSN: 18650929, (cited By 3). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism, Behavioral Research, Diseases, Education, Ethical Module, Humanoid Robot, Kansei, Machinery, Motivation, Robotics, Robots, Soft Computing, Spiritual Module, Teaching @article{Aziz2015231, title = {Humanoid-robot intervention for children with autism: A conceptual model on FBM}, author = {A A Aziz and F F M Moghanan and M Mokhsin and A Ismail and A M Lokman}, editor = {Wah Y B Berry M.W. Mohamed A.H.J.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84946024415&doi=10.1007%2f978-981-287-936-3_22&partnerID=40&md5=5a7b46c83aa2e5292e10e0cbb670c18f}, doi = {10.1007/978-981-287-936-3_22}, issn = {18650929}, year = {2015}, date = {2015-01-01}, journal = {Communications in Computer and Information Science}, volume = {545}, pages = {231-241}, publisher = {Springer Verlag}, abstract = {Autism is a lifelong disability that affects children development in terms of social interaction, communication, and imagination. Children with autism often are not able to communicate in a meaningful way with their surroundings and could not relate to the real world. Encompassing humanoid-robot during the therapy session is said as being one of the most beneficial therapies towards these children since autistic children are reported to be keener in engaging in machinery and gadgets. Due to the limited studies in the perspective of the children’s emotions and feelings, this study adopts Kansei assessment to investigate the emotions and feelings of the autistic children while engaging with the robot. Kansei assessment was done by the teacher which interpreted the emotional responses given by the autistic children. Two autistic children were involved in the study where both of the subjects are having mild autism. The data were then analyzed and translated to Fogg’s Behavioral Model to represent the children’s learning motivation. The developed Modified Fogg’s Behavioral Model successfully shows the inter-relation between the three components of ability, trigger and motivation for the autistic children while they interact with the humanoid-robot. The final model provides some evidence that despite having limited ability, given the right intervention, the children with autism will exhibit the same level of motivation with normal children. © Springer Science+Business Media Singapore 2015.}, note = {cited By 3}, keywords = {Anthropomorphic Robots, Autism, Behavioral Research, Diseases, Education, Ethical Module, Humanoid Robot, Kansei, Machinery, Motivation, Robotics, Robots, Soft Computing, Spiritual Module, Teaching}, pubstate = {published}, tppubtype = {article} } Autism is a lifelong disability that affects children development in terms of social interaction, communication, and imagination. Children with autism often are not able to communicate in a meaningful way with their surroundings and could not relate to the real world. Encompassing humanoid-robot during the therapy session is said as being one of the most beneficial therapies towards these children since autistic children are reported to be keener in engaging in machinery and gadgets. Due to the limited studies in the perspective of the children’s emotions and feelings, this study adopts Kansei assessment to investigate the emotions and feelings of the autistic children while engaging with the robot. Kansei assessment was done by the teacher which interpreted the emotional responses given by the autistic children. Two autistic children were involved in the study where both of the subjects are having mild autism. The data were then analyzed and translated to Fogg’s Behavioral Model to represent the children’s learning motivation. The developed Modified Fogg’s Behavioral Model successfully shows the inter-relation between the three components of ability, trigger and motivation for the autistic children while they interact with the humanoid-robot. The final model provides some evidence that despite having limited ability, given the right intervention, the children with autism will exhibit the same level of motivation with normal children. © Springer Science+Business Media Singapore 2015. |
Miskam, M A; Shamsuddin, S; Yussof, H; Omar, A R; Muda, M Z Programming platform for NAO robot in cognitive interaction applications Conference Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781479957651, (cited By 2). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism Spectrum Disorders, Autistic Children, Children with Autism, Choregraphe, Cognitive Interaction, Computer Program, Computer Software, Diseases, Humanoid Robot, Humanoid Robot NAO, In-Buildings, Manufacture, Patient Rehabilitation, Robotics, Robots, Social Cognition @conference{Miskam2015141, title = {Programming platform for NAO robot in cognitive interaction applications}, author = {M A Miskam and S Shamsuddin and H Yussof and A R Omar and M Z Muda}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84959542262&doi=10.1109%2fROMA.2014.7295877&partnerID=40&md5=32eeaf0a717a0ce0a5c8bc5a7cb7de89}, doi = {10.1109/ROMA.2014.7295877}, isbn = {9781479957651}, year = {2015}, date = {2015-01-01}, journal = {2014 IEEE International Symposium on Robotics and Manufacturing Automation, IEEE-ROMA2014}, pages = {141-146}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {The humanoid robot NAO is a ready-made exploration platform that comes with a Choregraphe software to program and animate it Choregraphe is a powerful tool that allows programming in Python for motion control In this paper, we explore how Choregraphe can aid users in building basic cognitive interaction modules specifically for the rehabilitation of autistic children. Difficulty to interact with others and impaired social cognition are some of the core symptoms of autism. A robot in human form has the ability to help encourage children to interact and respond to dialogue cues. Comparison between Choregraphe and another programing tool in embedding cognitive interaction ability into the NAO robot is discussed. © 2014 IEEE.}, note = {cited By 2}, keywords = {Anthropomorphic Robots, Autism Spectrum Disorders, Autistic Children, Children with Autism, Choregraphe, Cognitive Interaction, Computer Program, Computer Software, Diseases, Humanoid Robot, Humanoid Robot NAO, In-Buildings, Manufacture, Patient Rehabilitation, Robotics, Robots, Social Cognition}, pubstate = {published}, tppubtype = {conference} } The humanoid robot NAO is a ready-made exploration platform that comes with a Choregraphe software to program and animate it Choregraphe is a powerful tool that allows programming in Python for motion control In this paper, we explore how Choregraphe can aid users in building basic cognitive interaction modules specifically for the rehabilitation of autistic children. Difficulty to interact with others and impaired social cognition are some of the core symptoms of autism. A robot in human form has the ability to help encourage children to interact and respond to dialogue cues. Comparison between Choregraphe and another programing tool in embedding cognitive interaction ability into the NAO robot is discussed. © 2014 IEEE. |
Bakar, M A A; Ismail, Z; Fikry, A; Musa, R; Hassan, H; Ahmad, S S; Samat, N; Hashim, R Review on training policy for teachers and parents in using humanoid for children with autism Conference Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781479957651, (cited By 1). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism, Autism Spectrum Disorders, Central Nervous System Stimulants, Children with Autism, Developmental Disorders, Diseases, Education, Humanoid Robot, Manufacture, Parents, Personnel Training, Prevalence Rates, Robotics, Teacher, Teaching @conference{Bakar2015180, title = {Review on training policy for teachers and parents in using humanoid for children with autism}, author = {M A A Bakar and Z Ismail and A Fikry and R Musa and H Hassan and S S Ahmad and N Samat and R Hashim}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84959501336&doi=10.1109%2fROMA.2014.7295884&partnerID=40&md5=8bce6d13363f0e49a90109feee8598fb}, doi = {10.1109/ROMA.2014.7295884}, isbn = {9781479957651}, year = {2015}, date = {2015-01-01}, journal = {2014 IEEE International Symposium on Robotics and Manufacturing Automation, IEEE-ROMA2014}, pages = {180-184}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {Autism spectrum disorder is a life-long development disorder distinguish by impairment related to central nervous system maturation with features include delay in social life development, problem in language, social skills and repetitive behavior. Autism is a global crisis due to prevalence rates higher in several countries and the need for treatment view to be important. This paper reviews on the training policy for teachers and parents in using humanoid for children with autism. In Malaysia, there is no proper and specific training policy for children with autism through implementation of humanoid. © 2014 IEEE.}, note = {cited By 1}, keywords = {Anthropomorphic Robots, Autism, Autism Spectrum Disorders, Central Nervous System Stimulants, Children with Autism, Developmental Disorders, Diseases, Education, Humanoid Robot, Manufacture, Parents, Personnel Training, Prevalence Rates, Robotics, Teacher, Teaching}, pubstate = {published}, tppubtype = {conference} } Autism spectrum disorder is a life-long development disorder distinguish by impairment related to central nervous system maturation with features include delay in social life development, problem in language, social skills and repetitive behavior. Autism is a global crisis due to prevalence rates higher in several countries and the need for treatment view to be important. This paper reviews on the training policy for teachers and parents in using humanoid for children with autism. In Malaysia, there is no proper and specific training policy for children with autism through implementation of humanoid. © 2014 IEEE. |
Shamsuddin, S; Yussof, H; Hanapiah, F A; Mohamed, S; Jamil, N F F; Yunus, F W Robot-Assisted learning for communication-care in autism intervention Conference 2015-September , IEEE Computer Society, 2015, ISSN: 19457898, (cited By 5). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism Spectrum Disorders, Children with Autism, Communication Skills, Computer Aided Instruction, Diseases, Education, Educational Settings, Human Robot Interaction, Humanoid Robot, Learning, Robotics, Robots, Specific Interaction, Teaching @conference{Shamsuddin2015822, title = {Robot-Assisted learning for communication-care in autism intervention}, author = {S Shamsuddin and H Yussof and F A Hanapiah and S Mohamed and N F F Jamil and F W Yunus}, editor = {Campolo D Braun D. Yu H.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84946072425&doi=10.1109%2fICORR.2015.7281304&partnerID=40&md5=3048519732d8127b2307d17a12e46463}, doi = {10.1109/ICORR.2015.7281304}, issn = {19457898}, year = {2015}, date = {2015-01-01}, journal = {IEEE International Conference on Rehabilitation Robotics}, volume = {2015-September}, pages = {822-827}, publisher = {IEEE Computer Society}, abstract = {Robot-based intervention for children with autism is an evolving research niche in human-robot interaction (HRI). Recent studies have covered the role of robots in clinical and experimental setting but not much on integrating them in educational setting. Our previous work had shown that interaction with a robot poses no adverse effects and that the robot's specific interaction scenarios were associated with less autistic behavior. Extending this impact on school-going children, interactions that are in-Tune with special education lessons are needed. This study aims to propose the integration of a robot into current learning environment for children with special needs, specifically autism. Six interaction scenarios had been designed based on the existing syllabus to teach communication skills, using the Applied Behavior Analysis (ABA) technique as the framework. Development of the robotic experience for learning also covers the required set-up involving participation from teachers. The actual research conduct involving school children, teachers and robot shall take place in the next phase. © 2015 IEEE.}, note = {cited By 5}, keywords = {Anthropomorphic Robots, Autism Spectrum Disorders, Children with Autism, Communication Skills, Computer Aided Instruction, Diseases, Education, Educational Settings, Human Robot Interaction, Humanoid Robot, Learning, Robotics, Robots, Specific Interaction, Teaching}, pubstate = {published}, tppubtype = {conference} } Robot-based intervention for children with autism is an evolving research niche in human-robot interaction (HRI). Recent studies have covered the role of robots in clinical and experimental setting but not much on integrating them in educational setting. Our previous work had shown that interaction with a robot poses no adverse effects and that the robot's specific interaction scenarios were associated with less autistic behavior. Extending this impact on school-going children, interactions that are in-Tune with special education lessons are needed. This study aims to propose the integration of a robot into current learning environment for children with special needs, specifically autism. Six interaction scenarios had been designed based on the existing syllabus to teach communication skills, using the Applied Behavior Analysis (ABA) technique as the framework. Development of the robotic experience for learning also covers the required set-up involving participation from teachers. The actual research conduct involving school children, teachers and robot shall take place in the next phase. © 2015 IEEE. |
Shamsuddin, S; Yussof, H; Mohamed, S; Hanapiah, F A; Ainudin, H A Telerehabilitation Service with a Robot for Autism Intervention Conference 76 , Elsevier B.V., 2015, ISSN: 18770509, (cited By 11). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism Intervention, Autism Spectrum Disorders, Children with Autism, Diseases, Graphical User Interfaces, Humanoid Robot, Intelligent Control, Rehabilitation Robotics, Rehabilitation Services, Robotics, Robots, Smart Sensors, Telerehabilitation, User Interfaces, Web-Based @conference{Shamsuddin2015349, title = {Telerehabilitation Service with a Robot for Autism Intervention}, author = {S Shamsuddin and H Yussof and S Mohamed and F A Hanapiah and H A Ainudin}, editor = {Miskon M F Yussof H.}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84962815885&doi=10.1016%2fj.procs.2015.12.306&partnerID=40&md5=4a12a2e573a30ee0d1e87c85bee226d7}, doi = {10.1016/j.procs.2015.12.306}, issn = {18770509}, year = {2015}, date = {2015-01-01}, journal = {Procedia Computer Science}, volume = {76}, pages = {349-354}, publisher = {Elsevier B.V.}, abstract = {Though studies on robot-mediated intervention for children with autism have gained momentum in recent years, not much work has been done to help therapists to have on-line access to robot programs. Telerehabilitation is an efficient solution to overcome barriers of access, remote locations, lack of autism therapists and cost in the delivery of rehabilitation services. In this study, a telerehabilitation system is developed to help therapists to concentrate fully on the intervention and not in robot programming. Robot scenarios are created based on consultation with clinicians and therapists and are available in the system via a website, with user-friendly graphical user interface (GUI). A survey with 15 therapists was carried out to get feedback on the system's usability. 80% of therapists agree that their overall first-time experience in using the telerehabilitation website was good.}, note = {cited By 11}, keywords = {Anthropomorphic Robots, Autism Intervention, Autism Spectrum Disorders, Children with Autism, Diseases, Graphical User Interfaces, Humanoid Robot, Intelligent Control, Rehabilitation Robotics, Rehabilitation Services, Robotics, Robots, Smart Sensors, Telerehabilitation, User Interfaces, Web-Based}, pubstate = {published}, tppubtype = {conference} } Though studies on robot-mediated intervention for children with autism have gained momentum in recent years, not much work has been done to help therapists to have on-line access to robot programs. Telerehabilitation is an efficient solution to overcome barriers of access, remote locations, lack of autism therapists and cost in the delivery of rehabilitation services. In this study, a telerehabilitation system is developed to help therapists to concentrate fully on the intervention and not in robot programming. Robot scenarios are created based on consultation with clinicians and therapists and are available in the system via a website, with user-friendly graphical user interface (GUI). A survey with 15 therapists was carried out to get feedback on the system's usability. 80% of therapists agree that their overall first-time experience in using the telerehabilitation website was good. |
2014 |
Miskam, M A; Shamsuddin, S; Samat, M R A; Yussof, H; Ainudin, H A; Omar, A R Institute of Electrical and Electronics Engineers Inc., 2014, ISBN: 9781479966790, (cited By 10). Abstract | Links | BibTeX | Tags: Android (Operating System), Anthropomorphic Robots, Autism, Child-Robot Interactions, Children with Autism, Cognitive Interaction, Diseases, Education, Emotion, Emotion Gestures, Emotion Recognition, Humanoid Robot, Humanoid Robot NAO @conference{Miskam2014b, title = {Humanoid robot NAO as a teaching tool of emotion recognition for children with autism using the Android app}, author = {M A Miskam and S Shamsuddin and M R A Samat and H Yussof and H A Ainudin and A R Omar}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84922121642&doi=10.1109%2fMHS.2014.7006084&partnerID=40&md5=012601803f19ab36eff7a41362d7db4d}, doi = {10.1109/MHS.2014.7006084}, isbn = {9781479966790}, year = {2014}, date = {2014-01-01}, journal = {2014 International Symposium on Micro-NanoMechatronics and Human Science, MHS 2014}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {In this paper, we used a humanoid robot to physically show emotional poses and conduct a simple guessing game with children. Nine different emotions using the robot's body poses have been developed using Choregraphe. A pre-test was carried out with a normal developing 6-year old boy. We report some qualitative findings that we found during the child-robot interaction. We aim to develop an Android app as a simple tool that can be used on smartphones. This serves as a fundamental step to empower non-technical persons in using robots to interact with children with autism for learning and therapeutic purposes. © 2014 IEEE.}, note = {cited By 10}, keywords = {Android (Operating System), Anthropomorphic Robots, Autism, Child-Robot Interactions, Children with Autism, Cognitive Interaction, Diseases, Education, Emotion, Emotion Gestures, Emotion Recognition, Humanoid Robot, Humanoid Robot NAO}, pubstate = {published}, tppubtype = {conference} } In this paper, we used a humanoid robot to physically show emotional poses and conduct a simple guessing game with children. Nine different emotions using the robot's body poses have been developed using Choregraphe. A pre-test was carried out with a normal developing 6-year old boy. We report some qualitative findings that we found during the child-robot interaction. We aim to develop an Android app as a simple tool that can be used on smartphones. This serves as a fundamental step to empower non-technical persons in using robots to interact with children with autism for learning and therapeutic purposes. © 2014 IEEE. |
Shamsuddin, S; Yussof, H; Hanapiah, F A; Mohamed, S Response of children with autism to robotic intervention and association with IQ levels Conference Institute of Electrical and Electronics Engineers Inc., 2014, ISBN: 9781479975402, (cited By 1). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism, Behaviour Evaluations, Children with Autism, Classroom Settings, Diseases, Human Robot Interaction, Humanoid Robot, Intelligent Robots, IQ Level, Qualitative Observations, Robotics, Robots @conference{Shamsuddin2014387, title = {Response of children with autism to robotic intervention and association with IQ levels}, author = {S Shamsuddin and H Yussof and F A Hanapiah and S Mohamed}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84920873999&doi=10.1109%2fDEVLRN.2014.6983012&partnerID=40&md5=1ae5aa42a315453fa73d5b927c2ff026}, doi = {10.1109/DEVLRN.2014.6983012}, isbn = {9781479975402}, year = {2014}, date = {2014-01-01}, journal = {IEEE ICDL-EPIROB 2014 - 4th Joint IEEE International Conference on Development and Learning and on Epigenetic Robotics}, pages = {387-393}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {This paper presents a qualitative observation on the initial response of children with autism when exposed to a humanoid robot. To elicit response, the robot autonomously executed 5 segments of interaction designed according to the triad impairments of autism. The aim was to observe the children's autistic behavior with a robot compared to their natural characteristics as observed in classroom setting. We also seek the association between responses to the robot with the children's intelligence level. Results with 12 children were analyzed to acquire relationship between initial responses and the children's IQ scores. Analysis indicates that the presence of the robot had significantly reduced the scores of autistic traits in the subscale of stereotyped behavior and communication. Behavior evaluation shows that children with IQ scores ranging from 80 to 109 were more receptive to robot-based intervention. © 2014 IEEE.}, note = {cited By 1}, keywords = {Anthropomorphic Robots, Autism, Behaviour Evaluations, Children with Autism, Classroom Settings, Diseases, Human Robot Interaction, Humanoid Robot, Intelligent Robots, IQ Level, Qualitative Observations, Robotics, Robots}, pubstate = {published}, tppubtype = {conference} } This paper presents a qualitative observation on the initial response of children with autism when exposed to a humanoid robot. To elicit response, the robot autonomously executed 5 segments of interaction designed according to the triad impairments of autism. The aim was to observe the children's autistic behavior with a robot compared to their natural characteristics as observed in classroom setting. We also seek the association between responses to the robot with the children's intelligence level. Results with 12 children were analyzed to acquire relationship between initial responses and the children's IQ scores. Analysis indicates that the presence of the robot had significantly reduced the scores of autistic traits in the subscale of stereotyped behavior and communication. Behavior evaluation shows that children with IQ scores ranging from 80 to 109 were more receptive to robot-based intervention. © 2014 IEEE. |
Shamsuddin, S; Malik, N A; Yussof, H; Mohamed, S; Hanapiah, F A; Yunus, F W Telerehabilitation in robotic assistive therapy for children with developmental disabilities Conference Institute of Electrical and Electronics Engineers Inc., 2014, ISBN: 9781479920280, (cited By 6). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Children with Autism, Developmental Disabilities, Developmental Disorders, Diseases, Humanoid Robot, Initial Development, Medical Computing, Patient Rehabilitation, Robotics, Telecommunication, Telecommunication Technologies, Telehealth, Telerehabilitation @conference{Shamsuddin2014370, title = {Telerehabilitation in robotic assistive therapy for children with developmental disabilities}, author = {S Shamsuddin and N A Malik and H Yussof and S Mohamed and F A Hanapiah and F W Yunus}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84911960252&partnerID=40&md5=bcbf0061bc768b3c535259bd8b924579}, isbn = {9781479920280}, year = {2014}, date = {2014-01-01}, journal = {IEEE TENSYMP 2014 - 2014 IEEE Region 10 Symposium}, pages = {370-375}, publisher = {Institute of Electrical and Electronics Engineers Inc.}, abstract = {This paper embarks on the initial development of a telerehabilitation system in assistive therapy for children with disabilities. The goal is specifically for children with autism and cerebral palsy at various locations to gain access to robotic intervention. Ten learning modules targeting at specific therapy outcomes have been developed for this system. Here, this research proposes to link various stakeholders including engineers, parents, clinicians and therapists in a network that promotes robotic and telecommunication technology as a rehabilitation platform for children with disabilities. Field trials involving real users will be executed in the next phase of study. © 2014 IEEE.}, note = {cited By 6}, keywords = {Anthropomorphic Robots, Children with Autism, Developmental Disabilities, Developmental Disorders, Diseases, Humanoid Robot, Initial Development, Medical Computing, Patient Rehabilitation, Robotics, Telecommunication, Telecommunication Technologies, Telehealth, Telerehabilitation}, pubstate = {published}, tppubtype = {conference} } This paper embarks on the initial development of a telerehabilitation system in assistive therapy for children with disabilities. The goal is specifically for children with autism and cerebral palsy at various locations to gain access to robotic intervention. Ten learning modules targeting at specific therapy outcomes have been developed for this system. Here, this research proposes to link various stakeholders including engineers, parents, clinicians and therapists in a network that promotes robotic and telecommunication technology as a rehabilitation platform for children with disabilities. Field trials involving real users will be executed in the next phase of study. © 2014 IEEE. |
2013 |
Malik, N A; Shamsuddin, S; Yussof, H; Miskam, M A; Hamid, A C 53 (1), 2013, ISSN: 17578981, (cited By 5). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Children with Autism, Diseases, Education, Experiments, Humanoid Robot, Humanoid Robot NAO, Patient Rehabilitation, Pilot Studies, Real Time, Two-Way Communications @conference{Malik2013, title = {Feasibility of using a humanoid robot to elicit communicational response in children with mild autism}, author = {N A Malik and S Shamsuddin and H Yussof and M A Miskam and A C Hamid}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84893647308&doi=10.1088%2f1757-899X%2f53%2f1%2f012077&partnerID=40&md5=c051904f309ab9556d90458decb88f21}, doi = {10.1088/1757-899X/53/1/012077}, issn = {17578981}, year = {2013}, date = {2013-01-01}, journal = {IOP Conference Series: Materials Science and Engineering}, volume = {53}, number = {1}, abstract = {Research evidences are accumulating with regards to the potential use of robots for the rehabilitation of children with autism. The purpose of this paper is to elaborate on the results of communicational response in two children with autism during interaction with the humanoid robot NAO. Both autistic subjects in this study have been diagnosed with mild autism. Following the outcome from our first pilot study; the aim of this current experiment is to explore the application of NAO robot to engage with a child and further teach about emotions through a game-centered and song-based approach. The experiment procedure involved interaction between humanoid robot NAO with each child through a series of four different modules. The observation items are based on ten items selected and referenced to GARS-2 (Gilliam Autism Rating Scale-second edition) and also input from clinicians and therapists. The results clearly indicated that both of the children showed optimistic response through the interaction. Negative responses such as feeling scared or shying away from the robot were not detected. Two-way communication between the child and robot in real time significantly gives positive impact in the responses towards the robot. To conclude, it is feasible to include robot-based interaction specifically to elicit communicational response as a part of the rehabilitation intervention of children with autism. © Published under licence by IOP Publishing Ltd.}, note = {cited By 5}, keywords = {Anthropomorphic Robots, Children with Autism, Diseases, Education, Experiments, Humanoid Robot, Humanoid Robot NAO, Patient Rehabilitation, Pilot Studies, Real Time, Two-Way Communications}, pubstate = {published}, tppubtype = {conference} } Research evidences are accumulating with regards to the potential use of robots for the rehabilitation of children with autism. The purpose of this paper is to elaborate on the results of communicational response in two children with autism during interaction with the humanoid robot NAO. Both autistic subjects in this study have been diagnosed with mild autism. Following the outcome from our first pilot study; the aim of this current experiment is to explore the application of NAO robot to engage with a child and further teach about emotions through a game-centered and song-based approach. The experiment procedure involved interaction between humanoid robot NAO with each child through a series of four different modules. The observation items are based on ten items selected and referenced to GARS-2 (Gilliam Autism Rating Scale-second edition) and also input from clinicians and therapists. The results clearly indicated that both of the children showed optimistic response through the interaction. Negative responses such as feeling scared or shying away from the robot were not detected. Two-way communication between the child and robot in real time significantly gives positive impact in the responses towards the robot. To conclude, it is feasible to include robot-based interaction specifically to elicit communicational response as a part of the rehabilitation intervention of children with autism. © Published under licence by IOP Publishing Ltd. |
Hamid, A C; Miskam, M A; Yussof, H; Shamsuddin, S; Hashim, H; Ismail, L Human-robot interaction (HRI) for children with autism to augment communication skills Journal Article Applied Mechanics and Materials, 393 , pp. 598-603, 2013, ISSN: 16609336, (cited By 1). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism, Children with Autism, Communication, Communication Skills, Diseases, Education, Human Robot Interaction, Humanoid Robot, Humanoid Robot NAO, Intervention Programs, Learning, Man Machine Systems, Mechanical Engineering, Teaching, Two-Way Communications @article{Hamid2013598, title = {Human-robot interaction (HRI) for children with autism to augment communication skills}, author = {A C Hamid and M A Miskam and H Yussof and S Shamsuddin and H Hashim and L Ismail}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84886245343&doi=10.4028%2fwww.scientific.net%2fAMM.393.598&partnerID=40&md5=a580bbcbd654ebb6c19b75fa27bdf75e}, doi = {10.4028/www.scientific.net/AMM.393.598}, issn = {16609336}, year = {2013}, date = {2013-01-01}, journal = {Applied Mechanics and Materials}, volume = {393}, pages = {598-603}, abstract = {This paper presents a case study of robot-based intervention program for children with autism. The study focuses on two-way communication between children with autism and a humanoid robot NAO. The aim of this study is to develop a set of teaching and learning modules on communication through question type conversation and song-based approach. Module developed in this study is programmed using NAO's choregraphe, being imbedded later on and perform action. Both children participating in this study can communicate verbally and have been diagnosed with mild autism. Response from this exposure shows that the human toddler-like robot can be used as a platform to augment and facilitate communication effectively with children with autism. © (2013) Trans Tech Publications, Switzerland.}, note = {cited By 1}, keywords = {Anthropomorphic Robots, Autism, Children with Autism, Communication, Communication Skills, Diseases, Education, Human Robot Interaction, Humanoid Robot, Humanoid Robot NAO, Intervention Programs, Learning, Man Machine Systems, Mechanical Engineering, Teaching, Two-Way Communications}, pubstate = {published}, tppubtype = {article} } This paper presents a case study of robot-based intervention program for children with autism. The study focuses on two-way communication between children with autism and a humanoid robot NAO. The aim of this study is to develop a set of teaching and learning modules on communication through question type conversation and song-based approach. Module developed in this study is programmed using NAO's choregraphe, being imbedded later on and perform action. Both children participating in this study can communicate verbally and have been diagnosed with mild autism. Response from this exposure shows that the human toddler-like robot can be used as a platform to augment and facilitate communication effectively with children with autism. © (2013) Trans Tech Publications, Switzerland. |
Hashim, H; Yussof, H; Hanapiah, F A; Shamsuddin, S; Ismail, L; Malik, N A Robot-assisted to elicit behaviors for autism screening Journal Article Applied Mechanics and Materials, 393 , pp. 567-572, 2013, ISSN: 16609336, (cited By 2). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism Spectrum Disorders, Diseases, Early Intervention, Humanoid Robot, Humanoid Robot NAO, Individual Behaviour, Intervention, Mechanical Engineering, Program Diagnostics, Quantitative Measurement, Robotics, Screening Process @article{Hashim2013567, title = {Robot-assisted to elicit behaviors for autism screening}, author = {H Hashim and H Yussof and F A Hanapiah and S Shamsuddin and L Ismail and N A Malik}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84886257860&doi=10.4028%2fwww.scientific.net%2fAMM.393.567&partnerID=40&md5=9ef0b91be1f79ae1771901b04e271636}, doi = {10.4028/www.scientific.net/AMM.393.567}, issn = {16609336}, year = {2013}, date = {2013-01-01}, journal = {Applied Mechanics and Materials}, volume = {393}, pages = {567-572}, abstract = {Early screening and diagnosis of Autism spectrums is essential to determine the best means of early intervention program. Since there is no sign in biological for autism, screening and assessment must focus on the behavioral deficits. Somehow screening is not a diagnosis, but a filter that picks out children for subsequent assessment. The aim of this paper is to propose and to ignite discussion concerning robotic assisted in autism screening process to enable early diagnosis and intervention. This process combines (a) selection of an autism screening tool (b) refinement of screening subscales and (c) integration of subscales with robot action. We use Gilliam Autism Rating Scale-2 (GARS-2) inversely integrated with humanoid robot Nao to produce a counter action to elicit individual behaviours for screening and diagnosis purposes. In extracting of GARS-2, we had considered the limitation and sensitivity when a robot tries to assist in the process of screening and diagnosis. Integrating robotics into innovative treatments however highlighted the need for additional rigorous empirical studies with quantitative measurement. © (2013) Trans Tech Publications, Switzerland.}, note = {cited By 2}, keywords = {Anthropomorphic Robots, Autism Spectrum Disorders, Diseases, Early Intervention, Humanoid Robot, Humanoid Robot NAO, Individual Behaviour, Intervention, Mechanical Engineering, Program Diagnostics, Quantitative Measurement, Robotics, Screening Process}, pubstate = {published}, tppubtype = {article} } Early screening and diagnosis of Autism spectrums is essential to determine the best means of early intervention program. Since there is no sign in biological for autism, screening and assessment must focus on the behavioral deficits. Somehow screening is not a diagnosis, but a filter that picks out children for subsequent assessment. The aim of this paper is to propose and to ignite discussion concerning robotic assisted in autism screening process to enable early diagnosis and intervention. This process combines (a) selection of an autism screening tool (b) refinement of screening subscales and (c) integration of subscales with robot action. We use Gilliam Autism Rating Scale-2 (GARS-2) inversely integrated with humanoid robot Nao to produce a counter action to elicit individual behaviours for screening and diagnosis purposes. In extracting of GARS-2, we had considered the limitation and sensitivity when a robot tries to assist in the process of screening and diagnosis. Integrating robotics into innovative treatments however highlighted the need for additional rigorous empirical studies with quantitative measurement. © (2013) Trans Tech Publications, Switzerland. |
Shamsuddin, S; Malik, Abdul N; Hashim, H; Yussof, H; Hanapiah, F A; Mohamed, S Robots as Adjunct Therapy: Reflections and Suggestions in Rehabilitation for People with Cognitive Impairments Journal Article Communications in Computer and Information Science, 376 CCIS , pp. 390-404, 2013, ISSN: 18650929, (cited By 6). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Cerebral Palsy, Cognitive Impairment, Elderly People, Human Shapes, Humanoid Robot, Intervention Methods, Neurodegenerative Diseases, Rehabilitation Robotics, Robotics @article{Shamsuddin2013390, title = {Robots as Adjunct Therapy: Reflections and Suggestions in Rehabilitation for People with Cognitive Impairments}, author = {S Shamsuddin and N Abdul Malik and H Hashim and H Yussof and F A Hanapiah and S Mohamed}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84904661284&doi=10.1007%2f978-3-642-40409-2_33&partnerID=40&md5=61ae12ad69fc48fae3b219be3c1bf1a2}, doi = {10.1007/978-3-642-40409-2_33}, issn = {18650929}, year = {2013}, date = {2013-01-01}, journal = {Communications in Computer and Information Science}, volume = {376 CCIS}, pages = {390-404}, publisher = {Springer Verlag}, abstract = {The expanding function of robots in rehabilitation has allowed for new intervention methods that are accurate, motivating and repetitive. By analyzing current state-of-the-art evidences, this paper proposes considerable necessities for robots to take part in the rehabilitation environments. Suggestions focus specifically on intervention for people affected by autism, Cerebral Palsy (CP) and dementia. Overall, a robot in human shape present advantages over other types of robots in autism and CP therapy context as it is physically suitable in imitation-based therapy. However, for elderly people affected with dementia, so far only robots in animal shape have been utilized in therapy and succeed to improve their mental functions. © Springer-Verlag Berlin Heidelberg 2013.}, note = {cited By 6}, keywords = {Anthropomorphic Robots, Cerebral Palsy, Cognitive Impairment, Elderly People, Human Shapes, Humanoid Robot, Intervention Methods, Neurodegenerative Diseases, Rehabilitation Robotics, Robotics}, pubstate = {published}, tppubtype = {article} } The expanding function of robots in rehabilitation has allowed for new intervention methods that are accurate, motivating and repetitive. By analyzing current state-of-the-art evidences, this paper proposes considerable necessities for robots to take part in the rehabilitation environments. Suggestions focus specifically on intervention for people affected by autism, Cerebral Palsy (CP) and dementia. Overall, a robot in human shape present advantages over other types of robots in autism and CP therapy context as it is physically suitable in imitation-based therapy. However, for elderly people affected with dementia, so far only robots in animal shape have been utilized in therapy and succeed to improve their mental functions. © Springer-Verlag Berlin Heidelberg 2013. |
Miskam, M A; Hamid, M A C; Yussof, H; Shamsuddin, S; Malik, N A; Basir, S N Study on social interaction between children with autism and humanoid robot NAO Journal Article Applied Mechanics and Materials, 393 , pp. 573-578, 2013, ISSN: 16609336, (cited By 10). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism, Children with Autism, Communication, Developmental Disorders, Diseases, Education, Educational Intervention, Human Robot Interaction, Humanoid Robot, Humanoid Robot NAO, Mechanical Engineering, Patient Rehabilitation, Social Interactions, Social Sciences, Two-Way Communications @article{Miskam2013573, title = {Study on social interaction between children with autism and humanoid robot NAO}, author = {M A Miskam and M A C Hamid and H Yussof and S Shamsuddin and N A Malik and S N Basir}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84886245367&doi=10.4028%2fwww.scientific.net%2fAMM.393.573&partnerID=40&md5=95d6cec2dc5888c99213397d5b94b003}, doi = {10.4028/www.scientific.net/AMM.393.573}, issn = {16609336}, year = {2013}, date = {2013-01-01}, journal = {Applied Mechanics and Materials}, volume = {393}, pages = {573-578}, abstract = {Autism cannot run away from their triangle deficits: social, communication and stereotyped behaviour. There is no cure for autism or any definitive treatment to treat the core symptoms of this developmental disorder. However, the deficits can be minimized by maximize their learning through behavioural therapy and educational intervention. Nowadays, the methods in the rehabilitation of autism have been upgraded by the innovation of humanoid robots, in particular the humanoid robot NAO. In this study, NAO has being programmed using Choregraphe as programming tool to develop lesson modules for children with autism to practice their social interaction skill. This paper focuses specifically on social interaction subscale to observe the behaviour of the autistic children during interaction with the humanoid robot NAO. The observation is based on six items referenced from the Gilliam Autism Rating Scale-second edition (GARS-2). The use of humanoid robot NAO in the rehabilitation of autistic children is expected to help them to interact and practice their social traits just like normal children. The results evidently showed that children with autism are positively affected by NAO by giving encouraging responses in social interaction when interacting with the robot. Two-way communication between the child and robot in real time significantly give positive impact in the responses towards the robot. © (2013) Trans Tech Publications, Switzerland.}, note = {cited By 10}, keywords = {Anthropomorphic Robots, Autism, Children with Autism, Communication, Developmental Disorders, Diseases, Education, Educational Intervention, Human Robot Interaction, Humanoid Robot, Humanoid Robot NAO, Mechanical Engineering, Patient Rehabilitation, Social Interactions, Social Sciences, Two-Way Communications}, pubstate = {published}, tppubtype = {article} } Autism cannot run away from their triangle deficits: social, communication and stereotyped behaviour. There is no cure for autism or any definitive treatment to treat the core symptoms of this developmental disorder. However, the deficits can be minimized by maximize their learning through behavioural therapy and educational intervention. Nowadays, the methods in the rehabilitation of autism have been upgraded by the innovation of humanoid robots, in particular the humanoid robot NAO. In this study, NAO has being programmed using Choregraphe as programming tool to develop lesson modules for children with autism to practice their social interaction skill. This paper focuses specifically on social interaction subscale to observe the behaviour of the autistic children during interaction with the humanoid robot NAO. The observation is based on six items referenced from the Gilliam Autism Rating Scale-second edition (GARS-2). The use of humanoid robot NAO in the rehabilitation of autistic children is expected to help them to interact and practice their social traits just like normal children. The results evidently showed that children with autism are positively affected by NAO by giving encouraging responses in social interaction when interacting with the robot. Two-way communication between the child and robot in real time significantly give positive impact in the responses towards the robot. © (2013) Trans Tech Publications, Switzerland. |
2012 |
Shamsuddin, S; Yussof, H; Ismail, L; Hanapiah, F A; Mohamed, S; Piah, H A; Zahari, N I Initial response of autistic children in human-robot interaction therapy with humanoid robot NAO Conference 2012, ISBN: 9781467309615, (cited By 103). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Autism Spectrum Disorders, Autistic Children, Children with Autism, Developmental Disorders, Diseases, Human Computer Interaction, Human Robot Interaction, Humanoid Robot, Man Machine Systems, Pilot Experiment, Rehabilitation Robotics, Research, Robotics, Signal Processing, Visual Systems @conference{Shamsuddin2012188, title = {Initial response of autistic children in human-robot interaction therapy with humanoid robot NAO}, author = {S Shamsuddin and H Yussof and L Ismail and F A Hanapiah and S Mohamed and H A Piah and N I Zahari}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84861537641&doi=10.1109%2fCSPA.2012.6194716&partnerID=40&md5=32572eb3ebc7d201c02a90908128ae28}, doi = {10.1109/CSPA.2012.6194716}, isbn = {9781467309615}, year = {2012}, date = {2012-01-01}, journal = {Proceedings - 2012 IEEE 8th International Colloquium on Signal Processing and Its Applications, CSPA 2012}, pages = {188-193}, abstract = {The overall context proposed in this paper is part of our long-standing goal to contribute to a group of community that suffers from Autism Spectrum Disorder (ASD); a lifelong developmental disability. The objective of this paper is to present the development of our pilot experiment protocol where children with ASD will be exposed to the humanoid robot NAO. This fully programmable humanoid offers an ideal research platform for human-robot interaction (HRI). This study serves as the platform for fundamental investigation to observe the initial response and behavior of the children in the said environment. The system utilizes external cameras, besides the robot's own visual system. Anticipated results are the real initial response and reaction of ASD children during the HRI with the humanoid robot. This shall leads to adaptation of new procedures in ASD therapy based on HRI, especially for a non-technical-expert person to be involved in the robotics intervention during the therapy session. © 2012 IEEE.}, note = {cited By 103}, keywords = {Anthropomorphic Robots, Autism Spectrum Disorders, Autistic Children, Children with Autism, Developmental Disorders, Diseases, Human Computer Interaction, Human Robot Interaction, Humanoid Robot, Man Machine Systems, Pilot Experiment, Rehabilitation Robotics, Research, Robotics, Signal Processing, Visual Systems}, pubstate = {published}, tppubtype = {conference} } The overall context proposed in this paper is part of our long-standing goal to contribute to a group of community that suffers from Autism Spectrum Disorder (ASD); a lifelong developmental disability. The objective of this paper is to present the development of our pilot experiment protocol where children with ASD will be exposed to the humanoid robot NAO. This fully programmable humanoid offers an ideal research platform for human-robot interaction (HRI). This study serves as the platform for fundamental investigation to observe the initial response and behavior of the children in the said environment. The system utilizes external cameras, besides the robot's own visual system. Anticipated results are the real initial response and reaction of ASD children during the HRI with the humanoid robot. This shall leads to adaptation of new procedures in ASD therapy based on HRI, especially for a non-technical-expert person to be involved in the robotics intervention during the therapy session. © 2012 IEEE. |
2011 |
Ismail, L; Shamsuddin, S; Yussof, H; Hashim, H; Bahari, S; Jaafar, A; Zahari, I Face detection technique of Humanoid Robot NAO for application in robotic assistive therapy Conference 2011, ISBN: 9781457716423, (cited By 14). Abstract | Links | BibTeX | Tags: Anthropomorphic Robots, Assistive, Autism Spectrum Disorders, Autistic Children, Cameras, Children with Autism, Communication, Concentration Levels, Control Systems, Cutting Edges, Detection Tools, Developmental Disorders, Diseases, Face Detection, Face Recognition, Graphical User Interfaces, Humanoid Robot, Robotics, Social Interactions @conference{Ismail2011517, title = {Face detection technique of Humanoid Robot NAO for application in robotic assistive therapy}, author = {L Ismail and S Shamsuddin and H Yussof and H Hashim and S Bahari and A Jaafar and I Zahari}, url = {https://www.scopus.com/inward/record.uri?eid=2-s2.0-84862067305&doi=10.1109%2fICCSCE.2011.6190580&partnerID=40&md5=954caf63c5c5f7f05062436598a32a91}, doi = {10.1109/ICCSCE.2011.6190580}, isbn = {9781457716423}, year = {2011}, date = {2011-01-01}, journal = {Proceedings - 2011 IEEE International Conference on Control System, Computing and Engineering, ICCSCE 2011}, pages = {517-521}, abstract = {This paper proposed a face detection method for tracking the faces of children with Autism Spectrum Disorder in a robotic assistive therapy. The face detection is a novel approach in robotic assistive therapy involving autistic children since it is believe that those children will positively react with high-end devices, gadget and cutting edge devices. The intention of tracking the autistic children's faces is to measure the concentration level of the children in social interaction and communication since everyone knows that those children are suffering from communication disabilities and deficits due to brain developmental disorder. Humanoid Robot Nao with 573.2mm height equipped with 2 internal cameras is utilized for this research. The face detection tools in choregraphe and telepathe based on Graphical User Interface (GUI) module is used in this study. The non-verbal interaction between humanoid robot and autistic children is recorded by using 2 internal cameras from the robot's head. The interaction is going to take about 30 minutes and supervised by occupational therapist and certified psychologist. The autistic children will be introduced to the Humanoid Robot Nao and their reaction will be recorded simultaneously while the robot is trying to track their faces. © 2011 IEEE.}, note = {cited By 14}, keywords = {Anthropomorphic Robots, Assistive, Autism Spectrum Disorders, Autistic Children, Cameras, Children with Autism, Communication, Concentration Levels, Control Systems, Cutting Edges, Detection Tools, Developmental Disorders, Diseases, Face Detection, Face Recognition, Graphical User Interfaces, Humanoid Robot, Robotics, Social Interactions}, pubstate = {published}, tppubtype = {conference} } This paper proposed a face detection method for tracking the faces of children with Autism Spectrum Disorder in a robotic assistive therapy. The face detection is a novel approach in robotic assistive therapy involving autistic children since it is believe that those children will positively react with high-end devices, gadget and cutting edge devices. The intention of tracking the autistic children's faces is to measure the concentration level of the children in social interaction and communication since everyone knows that those children are suffering from communication disabilities and deficits due to brain developmental disorder. Humanoid Robot Nao with 573.2mm height equipped with 2 internal cameras is utilized for this research. The face detection tools in choregraphe and telepathe based on Graphical User Interface (GUI) module is used in this study. The non-verbal interaction between humanoid robot and autistic children is recorded by using 2 internal cameras from the robot's head. The interaction is going to take about 30 minutes and supervised by occupational therapist and certified psychologist. The autistic children will be introduced to the Humanoid Robot Nao and their reaction will be recorded simultaneously while the robot is trying to track their faces. © 2011 IEEE. |
2018 |
Humanoid robot intervention with autism: The conceptual model in demonstrating the emotional responses of children with autism Journal Article Advances in Intelligent Systems and Computing, 739 , pp. 574-579, 2018, ISSN: 21945357, (cited By 0). |
2017 |
HRI Assessment of ASKNAO Intervention Framework via Typically Developed Child Conference 105 , Elsevier B.V., 2017, ISSN: 18770509, (cited By 1). |
Work-family Conflict among Working Parents of Children with Autism in Malaysia Conference 105 , Elsevier B.V., 2017, ISSN: 18770509, (cited By 2). |
2016 |
Institute of Electrical and Electronics Engineers Inc., 2016, ISBN: 9781479966783, (cited By 1). |
2015 |
A content validated tool to observe autism behavior in child-robot interaction Conference 2015-November , Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781467367042, (cited By 1). |
A humanoid robot for autism rehabilitation: Does IQ influence response in child-robot interaction? Inproceedings Selamat, MZ; MatDan, R (Ed.): PROCEEDINGS OF MECHANICAL ENGINEERING RESEARCH DAY 2015, pp. 145-146, Univ Teknikal Malaysia Melaka, Fac Mech Engn; Univ Teknikal Malaysia Melaka, Ctr Adv Res Energy CENTRE ADVANCED RESEARCH ENERGY-CARE, FAC MECHANICAL ENGINEERING, UNIV TEKNIKAL MALAYASIA MELAKA, HANG TUAH JAYA, DURIAN TUNGGAL, MEKALA 76100, MALAYSIA, 2015, ISBN: 978-967-0257-51-8, (Mechanical Engineering Research Day (MERD), Univ Teknikal Malaysia Melaka, Kampus Teknologi, Malaysia, MALAYSIA, MAR 31, 2015). |
Autism children: Cost and benefit analysis of using humanoid in Malaysia Conference Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781479957651, (cited By 3). |
Autistic Children's Kansei Responses Towards Humanoid-Robot as Teaching Mediator Conference 76 , Elsevier B.V., 2015, ISSN: 18770509, (cited By 6). |
Experimental Framework for the Categorization of Special Education Programs of ASKNAO Conference 76 , Elsevier B.V., 2015, ISSN: 18770509, (cited By 4). |
Humanoid-robot intervention for children with autism: A conceptual model on FBM Journal Article Communications in Computer and Information Science, 545 , pp. 231-241, 2015, ISSN: 18650929, (cited By 3). |
Programming platform for NAO robot in cognitive interaction applications Conference Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781479957651, (cited By 2). |
Review on training policy for teachers and parents in using humanoid for children with autism Conference Institute of Electrical and Electronics Engineers Inc., 2015, ISBN: 9781479957651, (cited By 1). |
Robot-Assisted learning for communication-care in autism intervention Conference 2015-September , IEEE Computer Society, 2015, ISSN: 19457898, (cited By 5). |
Telerehabilitation Service with a Robot for Autism Intervention Conference 76 , Elsevier B.V., 2015, ISSN: 18770509, (cited By 11). |
2014 |
Institute of Electrical and Electronics Engineers Inc., 2014, ISBN: 9781479966790, (cited By 10). |
Response of children with autism to robotic intervention and association with IQ levels Conference Institute of Electrical and Electronics Engineers Inc., 2014, ISBN: 9781479975402, (cited By 1). |
Telerehabilitation in robotic assistive therapy for children with developmental disabilities Conference Institute of Electrical and Electronics Engineers Inc., 2014, ISBN: 9781479920280, (cited By 6). |
2013 |
53 (1), 2013, ISSN: 17578981, (cited By 5). |
Human-robot interaction (HRI) for children with autism to augment communication skills Journal Article Applied Mechanics and Materials, 393 , pp. 598-603, 2013, ISSN: 16609336, (cited By 1). |
Robot-assisted to elicit behaviors for autism screening Journal Article Applied Mechanics and Materials, 393 , pp. 567-572, 2013, ISSN: 16609336, (cited By 2). |
Robots as Adjunct Therapy: Reflections and Suggestions in Rehabilitation for People with Cognitive Impairments Journal Article Communications in Computer and Information Science, 376 CCIS , pp. 390-404, 2013, ISSN: 18650929, (cited By 6). |
Study on social interaction between children with autism and humanoid robot NAO Journal Article Applied Mechanics and Materials, 393 , pp. 573-578, 2013, ISSN: 16609336, (cited By 10). |
2012 |
Initial response of autistic children in human-robot interaction therapy with humanoid robot NAO Conference 2012, ISBN: 9781467309615, (cited By 103). |
2011 |
Face detection technique of Humanoid Robot NAO for application in robotic assistive therapy Conference 2011, ISBN: 9781457716423, (cited By 14). |