Enhancing home-based physical activity for neurodivergent children: adapting the InPACT at Home program with AI and universal design.

IF 3.2 3区 医学 Q2 PHYSIOLOGY Frontiers in Physiology Pub Date : 2025-01-07 eCollection Date: 2024-01-01 DOI:10.3389/fphys.2024.1496114
Tania Sapre, Haylie L Miller, Anna Schwartz, Leah R Ketcheson, Alanna Price, Kerry Winkelseth, Jeanne M Barcelona, Ronald F Zernicke, Rebecca E Hasson
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Abstract

Purpose: While it is common practice for schools across the United States to include neurodivergent children in physical education classes, many programs outside of school-such as those at home or in the community-are not effectively tailored to meet their support needs. This gap contributes to lower levels of physical activity among neurodivergent children. Our objective was to address this issue by systematically adapting the InPACT (Interrupting Prolonged sitting with ACTivity) at Home program to enable neurodivergent children to safely engage in physical activity at home.

Methods: The rapid-cycle research adaptation process involved several key steps: (1) sorting and grouping video content based on different types of skills and exercises (problem exploration); (2) assembling an expert team to guide the development of the instructions (knowledge exploration); and (3) using generative artificial intelligence (AI) to create concise instructions and cue words for each skill/exercise (solution development). These outputs were then fine-tuned by the expert team. The refinements were guided by the Universal Design for Learning (UDL) principle of "Representation," which acknowledges that learners perceive and understand information in diverse ways.

Results: From the 132 InPACT at Home videos, over 500 activities were identified and categorized into main skill groups: jumping, core, lateral, sport, upper body, lower body, and compound movements. Expert meetings emphasized the importance of the "Three C's"-consistency, conciseness, and clarity-in crafting instructions, along with the use of simple, elementary sight words. AI was employed to generate and refine prompts like "Provide simplified step-by-step instructions for a jumping jack, suitable for a neurodivergent child" and "Condense the step-by-step instructions for a jumping jack, suitable for a neurodivergent child".

Discussion: The adaptation of the existing InPACT at Home program was guided by dissemination and implementation science frameworks, aiming to increase equitable access to structured youth physical activity opportunities for neurodivergent children. By incorporating AI and UDL principles, we aim to further enhance the program's accessibility. Our next steps include evaluating the effectiveness of our program adaptations in encouraging participation in the InPACT at Home program and subsequently increasing physical activity levels among neurodivergent children.

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加强神经发散性儿童的家庭体育活动:采用人工智能和通用设计调整家庭影响计划。
目的:虽然在美国的学校中,将神经分化儿童纳入体育课是一种普遍的做法,但许多校外项目,如家庭或社区项目,并不能有效地满足他们的支持需求。这一差距导致神经分化儿童的身体活动水平较低。我们的目标是通过系统地调整impact(打断长时间坐着的活动)在家项目来解决这个问题,使神经分化儿童能够安全地在家里进行体育活动。方法:快速循环的研究适应过程包括几个关键步骤:(1)根据不同类型的技能和练习(问题探索)对视频内容进行分类和分组;(2)组建专家团队,指导说明书的开发(知识探索);(3)使用生成式人工智能(AI)为每个技能/练习(解决方案开发)创建简洁的说明和提示词。然后由专家小组对这些输出进行微调。这些改进是在学习通用设计(UDL)“表示”原则的指导下进行的,该原则承认学习者以不同的方式感知和理解信息。结果:从132个InPACT在家视频中,超过500个活动被确定并分类为主要技能组:跳跃,核心,侧身,运动,上半身,下半身和复合动作。专家会议强调了“三个C”的重要性——一致性(consistency)、简洁性(simplicity)和清晰性(clarity)——在制作说明时,以及使用简单、基本的视觉词汇。使用人工智能生成并完善“为跳高提供简化的分步指令,适合神经分化儿童”、“浓缩跳高的分步指令,适合神经分化儿童”等提示。讨论:在传播和实施科学框架的指导下,对现有的家庭影响计划进行了调整,旨在为神经分化儿童增加公平获得有组织的青少年体育活动机会。通过结合AI和UDL原则,我们的目标是进一步增强程序的可访问性。我们接下来的步骤包括评估我们的项目调整的有效性,以鼓励参与家庭影响项目,并随后增加神经分化儿童的体育活动水平。
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来源期刊
CiteScore
6.50
自引率
5.00%
发文量
2608
审稿时长
14 weeks
期刊介绍: Frontiers in Physiology is a leading journal in its field, publishing rigorously peer-reviewed research on the physiology of living systems, from the subcellular and molecular domains to the intact organism, and its interaction with the environment. Field Chief Editor George E. Billman at the Ohio State University Columbus is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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