韩国针对注意力缺陷/多动症和自闭症谱系障碍的医疗器械开发趋势:叙述性评论。

Yunah Cho, Sharon L Talboys
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引用次数: 0

摘要

背景:注意缺陷/多动障碍(ADHD)和自闭症谱系障碍(ASD)是韩国学龄青少年中最常见的精神障碍,这可能是教师和学校特殊教育课程压力不断增加的原因之一。韩国教育工作者普遍抱怨特殊教育缺乏支持,教师、学生和家长之间关系紧张,教师缺勤的后备力量有限。筛查和治疗多动症和自闭症的新技术创新可以通过更早和更有效的诊断、获得治疗方案以及最终更好地管理护理和期望,为学生、家长和教师提供帮助:本叙事性文献综述介绍了韩国在诊断和管理多动症和 ASD 方面使用和开发医疗设备的情况,并强调了研究缺口:在 4 个数据库(PubMed、韩国国会图书馆、Scopus 和 PsycINFO)中进行了叙述性综述。如果期刊论文、学位论文和政府研发报告中讨论了治疗 ADHD 和 ASD 的医疗设备,则将其纳入其中。只收录韩文或英文论文。如果资源与研究目标不符,或没有讨论至少一个有关 ADHD 和 ASD 医疗设备的主题,则将其排除在外。期刊论文如果未经同行评审,则排除在外。资源仅限于 2013 年至 2024 年 7 月 22 日期间发表的文章:共有 1794 条关于韩国医疗器械发展动向的记录被分为两大类:数字疗法和传统疗法。数字疗法分为 5 个分组:虚拟现实与人工智能、机器学习与机器人、游戏与视觉内容、眼动反馈与运动干预、脑电图与神经反馈。传统疗法产生了 3 个分组:认知行为疗法和工作记忆;诊断和评分表;音乐、文学疗法和正念减压。在韩国,使用人工智能、机器学习和脑电图技术的数字疗法比传统疗法占了最大的发展份额。大多数资源(94.15%(1689/1794))来自韩国国会图书馆:研究的局限性包括:许多文章的研究对象规模较小,无法得出结论;讨论 ASD 医疗设备的文章数量较少;大多数文章为论文。通过促进早期诊断和干预,新兴的数字医疗设备以及与传统疗法相结合的医疗设备是降低韩国多动症和自闭症患病率的重要解决方案。此外,这些设备的应用将为患有多动症或自闭症的学生提供直接的支持资源,从而减轻教师和学校特殊教育课程的压力。据预测,未来多动症和自闭症医疗设备的发展将在很大程度上依赖于数字技术,如那些能感知人们行为、眼球运动和脑电波的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trends in South Korean Medical Device Development for Attention-Deficit/Hyperactivity Disorder and Autism Spectrum Disorder: Narrative Review.

Background: Attention-deficit/hyperactivity disorder (ADHD) and autism spectrum disorder (ASD) are among the most prevalent mental disorders among school-aged youth in South Korea and may play a role in the increasing pressures on teachers and school-based special education programming. A lack of support for special education; tensions between teachers, students, and parents; and limited backup for teacher absences are common complaints among Korean educators. New innovations in technology to screen and treat ADHD and ASD may offer relief to students, parents, and teachers through earlier and efficient diagnosis; access to treatment options; and ultimately, better-managed care and expectations.

Objective: This narrative literature review provides an account of medical device use and development in South Korea for the diagnosis and management of ADHD and ASD and highlights research gaps.

Methods: A narrative review was conducted across 4 databases (PubMed, Korean National Assembly Library, Scopus, and PsycINFO). Journal articles, dissertations, and government research and development reports were included if they discussed medical devices for ADHD and ASD. Only Korean or English papers were included. Resources were excluded if they did not correspond to the research objective or did not discuss at least 1 topic about medical devices for ADHD and ASD. Journal articles were excluded if they were not peer reviewed. Resources were limited to publications between 2013 and July 22, 2024.

Results: A total of 1794 records about trends in Korean medical device development were categorized into 2 major groups: digital therapeutics and traditional therapy. Digital therapeutics resulted in 5 subgroups: virtual reality and artificial intelligence, machine learning and robot, gaming and visual contents, eye-feedback and movement intervention, and electroencephalography and neurofeedback. Traditional therapy resulted in 3 subgroups: cognitive behavioral therapy and working memory; diagnosis and rating scale; and musical, literary therapy, and mindfulness-based stress reduction. Digital therapeutics using artificial intelligence, machine learning, and electroencephalography technologies account for the biggest portions of development in South Korea, rather than traditional therapies. Most resources, 94.15% (1689/1794), were from the Korean National Assembly Library.

Conclusions: Limitations include small sizes of populations to conclude findings in many articles, a lower number of articles discussing medical devices for ASD, and a majority of articles being dissertations. Emerging digital medical devices and those integrated with traditional therapies are important solutions to reducing the prevalence rates of ADHD and ASD in South Korea by promoting early diagnosis and intervention. Furthermore, their application will relieve pressures on teachers and school-based special education programming by providing direct supporting resources to students with ADHD or ASD. Future development of medical devices for ADHD and ASD is predicted to heavily rely on digital technologies, such as those that sense people's behaviors, eye movement, and brainwaves.

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