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Asynchronous steady-state visual evoked potential based BCI control of a 2-DoF artificial upper limb

机译:基于异步稳态视觉诱发电位的2自由度人工上肢BCI控制

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摘要

A brain-computer interface (BCI) provides a direct connection between the human brain and a computer. One type of BCI can be realized using steady-state visual evoked potentials (SSVEPs), resulting from repetitive stimulation. The aim of this study was the realization of an asynchronous SSVEP-BCI, based on canonical correlation analysis, suitable for the control of a 2-degrees of freedom (DoF) hand and elbow neuroprosthesis. To determine whether this BCI is suitable for the control of 2-DoF neuroprosthetic devices, online experiments with a virtual and a robotic limb feedback were conducted with eight healthy subjects and one tetraple-gic patient. All participants were able to control the artificial limbs with the BCI. In the online experiments, the positive predictive value (PPV) varied between 69% and 83% and the false negative rate (FNR) varied between 1% and 17%. The spinal cord injured patient achieved PPV and FNR values within one standard deviation of the mean for all healthy subjects.
机译:脑机接口(BCI)提供了人脑与计算机之间的直接连接。 BCI的一种类型可以使用重复刺激产生的稳态视觉诱发电位(SSVEP)来实现。这项研究的目的是基于规范的相关性分析实现异步SSVEP-BCI,适用于控制2自由度(DoF)的手和肘神经假体。为了确定该BCI是否适合控制2-DoF神经假体设备,对8名健康受试者和1名四肢瘫痪患者进行了虚拟和机器人肢体反馈的在线实验。所有参与者都能够使用BCI控制假肢。在在线实验中,阳性预测值(PPV)在69%和83%之间变化,假阴性率(FNR)在1%和17%之间变化。脊髓损伤患者的PPV和FNR值均在所有健康受试者平均值的标准偏差之内。

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