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一种听觉脑机接口(BCI)。

An auditory brain-computer interface (BCI).

作者信息

Nijboer Femke, Furdea Adrian, Gunst Ingo, Mellinger Jürgen, McFarland Dennis J, Birbaumer Niels, Kübler Andrea

机构信息

Institute for Medical Psychology and Behavioral Neurobiology, University of Tübingen, Gartenstrasse 29, 72074 Tübingen, Germany.

出版信息

J Neurosci Methods. 2008 Jan 15;167(1):43-50. doi: 10.1016/j.jneumeth.2007.02.009. Epub 2007 Feb 20.

DOI:10.1016/j.jneumeth.2007.02.009
PMID:17399797
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7955811/
Abstract

Brain-computer interfaces (BCIs) translate brain activity into signals controlling external devices. BCIs based on visual stimuli can maintain communication in severely paralyzed patients, but only if intact vision is available. Debilitating neurological disorders however, may lead to loss of intact vision. The current study explores the feasibility of an auditory BCI. Sixteen healthy volunteers participated in three training sessions consisting of 30 2-3 min runs in which they learned to increase or decrease the amplitude of sensorimotor rhythms (SMR) of the EEG. Half of the participants were presented with visual and half with auditory feedback. Mood and motivation were assessed prior to each session. Although BCI performance in the visual feedback group was superior to the auditory feedback group there was no difference in performance at the end of the third session. Participants in the auditory feedback group learned slower, but four out of eight reached an accuracy of over 70% correct in the last session comparable to the visual feedback group. Decreasing performance of some participants in the visual feedback group is related to mood and motivation. We conclude that with sufficient training time an auditory BCI may be as efficient as a visual BCI. Mood and motivation play a role in learning to use a BCI.

摘要

脑机接口(BCIs)将大脑活动转化为控制外部设备的信号。基于视觉刺激的脑机接口可以在严重瘫痪患者中维持通信,但前提是要有完好的视力。然而,使人衰弱的神经系统疾病可能导致视力丧失。当前的研究探索了听觉脑机接口的可行性。16名健康志愿者参加了三次训练课程,每次课程由30次2 - 3分钟的运行组成,他们在这些运行中学习增加或降低脑电图的感觉运动节律(SMR)的幅度。一半的参与者接受视觉反馈,另一半接受听觉反馈。在每次课程之前评估情绪和动机。虽然视觉反馈组的脑机接口表现优于听觉反馈组,但在第三次课程结束时表现没有差异。听觉反馈组的参与者学习较慢,但八人中四人在最后一次课程中达到了超过70%的正确准确率,与视觉反馈组相当。视觉反馈组中一些参与者表现下降与情绪和动机有关。我们得出结论,经过足够的训练时间,听觉脑机接口可能与视觉脑机接口一样有效。情绪和动机在学习使用脑机接口中起作用。

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本文引用的文献

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Breaking the silence: brain-computer interfaces (BCI) for communication and motor control.打破沉默:用于通信和运动控制的脑机接口
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