首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Toward a P300 Based Brain-Computer Interface for Aphasia Rehabilitation after Stroke: Presentation of Theoretical Considerations and a Pilot Feasibility Study
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Toward a P300 Based Brain-Computer Interface for Aphasia Rehabilitation after Stroke: Presentation of Theoretical Considerations and a Pilot Feasibility Study

机译:迈向中风后失语症康复的基于P300的脑机接口:理论考量的介绍和可行性研究

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摘要

People with post-stroke motor aphasia know what they would like to say but cannot express it through motor pathways due to disruption of cortical circuits. We present a theoretical background for our hypothesized connection between attention and aphasia rehabilitation and suggest why in this context, Brain-Computer Interface (BCI) use might be beneficial for patients diagnosed with aphasia. Not only could BCI technology provide a communication tool, it might support neuronal plasticity by activating language circuits and thereby boost aphasia recovery. However, stroke may lead to heterogeneous symptoms that might hinder BCI use, which is why the feasibility of this approach needs to be investigated first. In this pilot study, we included five participants diagnosed with post-stroke aphasia. Four participants were initially unable to use the visual P300 speller paradigm. By adjusting the paradigm to their needs, participants could successfully learn to use the speller for communication with accuracies up to 100%. We describe necessary adjustments to the paradigm and present future steps to investigate further this approach.
机译:脑卒中后运动性失语症患者知道他们想说些什么,但由于皮质回路中断,无法通过运动途径表达。我们为注意力和失语症康复之间的假设联系提供了理论背景,并提出了为什么在这种情况下使用脑机接口(BCI)可能对诊断为失语症的患者有益的原因。 BCI技术不仅可以提供交流工具,还可以通过激活语言回路来支持神经元可塑性,从而促进失语症的恢复。但是,中风可能导致异种症状,可能会妨碍BCI的使用,这就是为什么需要首先研究这种方法的可行性的原因。在这项前瞻性研究中,我们纳入了五名被诊断为中风后失语的参与者。最初有四名参与者无法使用视觉P300拼写范例。通过根据自己的需要调整范例,参与者可以成功学习使用拼写器进行交流,且准确性最高可达100%。我们描述了对范式的必要调整,并提出了进一步研究这种方法的未来步骤。

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