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首页> 外文期刊>Journal of neural engineering >Classification of the intention to generate a shoulder versus elbow torque by means of a time–frequency synthesized spatial patterns BCI algorithm
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Classification of the intention to generate a shoulder versus elbow torque by means of a time–frequency synthesized spatial patterns BCI algorithm

机译:利用时频综合空间模式BCI算法对产生肩膀与肘部扭矩的意图进行分类

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摘要

In this paper, we attempt to determine a subject's intention of generating torque at the shoulder or elbow, two neighboring joints, using scalp electroencephalogram signals from 163 electrodes for a brain–computer interface (BCI) application. To achieve this goal, we have applied a time–frequency synthesized spatial patterns (TFSP) BCI algorithm with a presorting procedure. Using this method, we were able to achieve an average recognition rate of 89% in four healthy subjects, which is comparable to the highest rates reported in the literature but now for tasks with much closer spatial representations on the motor cortex. This result demonstrates, for the first time, that the TFSP BCI method can be applied to separate intentions between generating static shoulder versus elbow torque. Furthermore, in this study, the potential application of this BCI algorithm for brain-injured patients was tested in one chronic hemiparetic stroke subject. A recognition rate of 76% was obtained, suggesting that this BCI method can provide a potential control signal for neural prostheses or other movement coordination improving devices for patients following brain injury.
机译:在本文中,我们尝试使用来自163个电极的头皮脑电图信号来确定对象在大脑或计算机接口(BCI)应用中在肩膀或肘部,两个相邻关节处产生扭矩的意图。为了实现此目标,我们将时频综合空间模式(TFSP)BCI算法与预排序过程一起应用。使用这种方法,我们能够在四个健康受试者中获得89%的平均识别率,这与文献中报道的最高识别率相当,但是现在对于运动皮层上具有更紧密空间表示的任务而言。该结果首次证明,TFSP BCI方法可用于分离产生静态肩部扭矩与肘部扭矩之间的意图。此外,在这项研究中,该BCI算法在脑损伤患者中的潜在应用已在一名慢性偏中风患者中进行了测试。获得了76%的识别率,表明该BCI方法可以为神经假体或其他脑损伤患者的运动协调改善设备提供潜在的控制信号。

著录项

  • 来源
    《Journal of neural engineering》 |2005年第4期|p. 131-138|共8页
  • 作者单位

    Department of Biomedical Engineering, Northwestern University, Chicago, IL, USA;

    Department of Physical Therapy and Human Movement Sciences, Northwestern University, 645 North Michigan Avenue, Suite 1100, Chicago, IL 60611-2814, USA;

    Department of Biomedical Engineering, Northwestern University, Chicago, IL, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

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