Literature DB >> 33501125

Long-Term Personalization of an In-Home Socially Assistive Robot for Children With Autism Spectrum Disorders.

Caitlyn Clabaugh1, Kartik Mahajan1, Shomik Jain1, Roxanna Pakkar1, David Becerra1, Zhonghao Shi1, Eric Deng1, Rhianna Lee1, Gisele Ragusa2, Maja Matarić1.   

Abstract

Socially assistive robots (SAR) have shown great potential to augment the social and educational development of children with autism spectrum disorders (ASD). As SAR continues to substantiate itself as an effective enhancement to human intervention, researchers have sought to study its longitudinal impacts in real-world environments, including the home. Computational personalization stands out as a central computational challenge as it is necessary to enable SAR systems to adapt to each child's unique and changing needs. Toward that end, we formalized personalization as a hierarchical human robot learning framework (hHRL) consisting of five controllers (disclosure, promise, instruction, feedback, and inquiry) mediated by a meta-controller that utilized reinforcement learning to personalize instruction challenge levels and robot feedback based on each user's unique learning patterns. We instantiated and evaluated the approach in a study with 17 children with ASD, aged 3-7 years old, over month-long interventions in their homes. Our findings demonstrate that the fully autonomous SAR system was able to personalize its instruction and feedback over time to each child's proficiency. As a result, every child participant showed improvements in targeted skills and long-term retention of intervention content. Moreover, all child users were engaged for a majority of the intervention, and their families reported the SAR system to be useful and adaptable. In summary, our results show that autonomous, personalized SAR interventions are both feasible and effective in providing long-term in-home developmental support for children with diverse learning needs.
Copyright © 2019 Clabaugh, Mahajan, Jain, Pakkar, Becerra, Shi, Deng, Lee, Ragusa and Matarić.

Entities:  

Keywords:  autism spectrum disorders; early childhood; home robot; long-term human-robot interaction; personalization; reinforcement learning; socially assistive robotics

Year:  2019        PMID: 33501125      PMCID: PMC7805891          DOI: 10.3389/frobt.2019.00110

Source DB:  PubMed          Journal:  Front Robot AI        ISSN: 2296-9144


  34 in total

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  8 in total

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Authors:  Aida Amirova; Nazerke Rakhymbayeva; Aida Zhanatkyzy; Zhansaule Telisheva; Anara Sandygulova
Journal:  J Autism Dev Disord       Date:  2022-01-28

2.  Introducing CARESSER: A framework for in situ learning robot social assistance from expert knowledge and demonstrations.

Authors:  Antonio Andriella; Carme Torras; Carla Abdelnour; Guillem Alenyà
Journal:  User Model User-adapt Interact       Date:  2022-03-12       Impact factor: 4.412

3.  Personalised socially assistive robot for cardiac rehabilitation: Critical reflections on long-term interactions in the real world.

Authors:  Bahar Irfan; Nathalia Céspedes; Jonathan Casas; Emmanuel Senft; Luisa F Gutiérrez; Mónica Rincon-Roncancio; Carlos A Cifuentes; Tony Belpaeme; Marcela Múnera
Journal:  User Model User-adapt Interact       Date:  2022-07-19       Impact factor: 4.230

4.  Subsentence Extraction from Text Using Coverage-Based Deep Learning Language Models.

Authors:  JongYoon Lim; Inkyu Sa; Ho Seok Ahn; Norina Gasteiger; Sanghyub John Lee; Bruce MacDonald
Journal:  Sensors (Basel)       Date:  2021-04-12       Impact factor: 3.576

5.  Visual and Hearing Sensitivity Affect Robot-Based Training for Children Diagnosed With Autism Spectrum Disorder.

Authors:  P Chevalier; D Ghiglino; F Floris; T Priolo; A Wykowska
Journal:  Front Robot AI       Date:  2022-01-12

6.  "Sequencing Matters": Investigating Suitable Action Sequences in Robot-Assisted Autism Therapy.

Authors:  Kim Baraka; Marta Couto; Francisco S Melo; Ana Paiva; Manuela Veloso
Journal:  Front Robot AI       Date:  2022-03-09

7.  Promoting Social Engagement With a Multi-Role Dancing Robot for In-Home Autism Care.

Authors:  Hifza Javed; Chung Hyuk Park
Journal:  Front Robot AI       Date:  2022-06-20

8.  A Long-Term Engagement with a Social Robot for Autism Therapy.

Authors:  Nazerke Rakhymbayeva; Aida Amirova; Anara Sandygulova
Journal:  Front Robot AI       Date:  2021-06-16
  8 in total

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