Papanastasiou George, Drigas Athanasios, Skianis Charalabos, Lytras Miltiadis
NSCR Demokritos, Patr. Gregoriou E' & 27, Neapoleos str., 15341, Greece.
University of the Aegean Karlovassi Samos, 83200, Greece.
Heliyon. 2020 Sep 5;6(9):e04250. doi: 10.1016/j.heliyon.2020.e04250. eCollection 2020 Sep.
The aim of this article is to explore a paradigm shift on Brain Computer Interface (BCI) research, as well as on intervention best practices for training and rehabilitation of students with neurodevelopmental disorders. Recent studies indicate that BCI devices have positive impact on students' attention skills and working memory as well as on other skills, such as visuospatial, social, imaginative and emotional abilities. BCI applications aim to emulate humans' brain and address the appropriate understanding for each student's neurodevelopmental disorders. Studies conducted to provide knowledge about BCI-based intervention applications regarding memory, attention, visuospatial, learning, collaboration, and communication, social, creative and emotional skills are highlighted. Only non-invasive BCI type of applications are being investigated based upon representative, non-exhaustive and state-of-the-art studies within the field. This article examines the progress of BCI research so far, while different BCI paradigms are investigated. BCI-based applications could successfully regulate students' cognitive abilities when used for their training and rehabilitation. Future directions to investigate BCI-based applications for training and rehabilitation of students with neurodevelopmental disorders concerning the different populations involved are discussed.
本文旨在探讨脑机接口(BCI)研究的范式转变,以及针对神经发育障碍学生的训练与康复的最佳干预实践。近期研究表明,BCI设备对学生的注意力技能、工作记忆以及其他技能,如视觉空间、社交、想象和情感能力,均有积极影响。BCI应用旨在模拟人类大脑,并针对每个学生的神经发育障碍进行适当的理解。重点介绍了为提供有关基于BCI的干预应用在记忆、注意力、视觉空间、学习、协作、沟通、社交、创造力和情感技能方面的知识而开展的研究。基于该领域具有代表性、非详尽且最新的研究,仅对非侵入式BCI类型的应用进行了调查。本文在研究不同BCI范式的同时,考察了迄今为止BCI研究的进展。基于BCI的应用在用于学生的训练和康复时,可以成功调节他们的认知能力。讨论了未来针对不同相关人群研究基于BCI的应用以对神经发育障碍学生进行训练和康复的方向。