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单范式和混合脑机接口及其在残疾患者中的应用。

Single-paradigm and hybrid brain computing interfaces and their use by disabled patients.

机构信息

Department of Neurosciences, Laboratory for Neuro- & Psychophysiology, KU Leuven-University of Leuven, B-3000 Leuven, Belgium.

出版信息

J Neural Eng. 2019 Oct 23;16(6):061001. doi: 10.1088/1741-2552/ab2706.

Abstract

Brain computer interfacing (BCI) has enjoyed increasing interest not only from research communities such as engineering and neuroscience but also from visionaries that predict it will change the way we will interact with technology. Since BCIs establish an alternative communication channel between the brain and the outside world, they have been hailed to provide solutions for patients suffering from severe motor- and/or communication disabilities such as fully paralyzed locked-in syndrome patients. However, despite single-case successes, which sometimes reach a broad audience, BCIs are actually not routinely used to support patients in their daily life activities. This review focusses on non-invasive BCIs, introduces the main paradigms and applications, and shows how the technology has improved over recent years. We identify patient groups that potentially can benefit from BCIs by referring to disability levels and etiology. We list the requirements, indicate how BCIs can tap into their spared competences, and discuss performance issues also in view of other assistive communication technologies. We discuss hybrid BCIs, a more recent development that combines paradigms and signals, possibly also of non-brain origin, to increase performance in terms of accuracy and/or communication speed, also as a way to counter the low performance with a given paradigm by involving another, more suitable one (BCI illiteracy). Finally, we list a few hybrid BCI solutions for patients and note that demonstrations with the ones based entirely on brain activity are still scarce.

摘要

脑机接口(BCI)不仅受到工程和神经科学等研究界的越来越多的关注,也受到一些有远见的人士的关注,他们预测它将改变我们与技术交互的方式。由于 BCI 在大脑和外部世界之间建立了一种替代的通信通道,因此它被认为可以为患有严重运动和/或交流障碍的患者提供解决方案,例如完全瘫痪的闭锁综合征患者。然而,尽管有个别的成功案例,有时甚至引起了广泛的关注,但 BCI 实际上并没有常规用于支持患者的日常生活活动。这篇综述重点介绍了非侵入性 BCI,介绍了主要的范式和应用,并展示了该技术近年来的改进。我们通过参考残疾程度和病因来确定可能受益于 BCI 的患者群体。我们列出了要求,指出了 BCI 如何利用他们的剩余能力,并讨论了性能问题,也考虑了其他辅助通信技术。我们讨论了混合 BCI,这是一种最近的发展,它结合了范式和信号,也可能是非大脑来源的,以提高准确性和/或通信速度方面的性能,也是一种通过涉及另一种更合适的范式来克服给定范式的低性能的方法(BCI 文盲)。最后,我们列出了一些针对患者的混合 BCI 解决方案,并注意到基于完全基于脑活动的解决方案仍然很少。

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