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Non-invasive Detection of Cortical Control Signals for Brain-Computer Interfaces.

机译:用于脑机接口的皮质控制信号的非侵入性检测。

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摘要

In the sensorimotor areas of the cortex, motor execution and imagery have been found to be associated with increases in the high gamma (HG) frequency band, as well as decreases in the beta, and mu frequency bands. Because these cortical rhythms can be intentionally modulated by motor imagery or execution, they have often been used in brain-computer interface (BCI) studies as a control signal. However, the non-invasive recording of the modulation of the HG frequency band is still a relatively novel concept and most HG studies have been limited to invasive recording methods, due to the low signal-to-noise ratio of the neuronal ensemble activity at these frequencies. Consequently, the systematic study of HG effects has been limited to narrow populations (typically epilepsy patients) and cortical locations, which are usually determined by clinical needs rather than by the experimental paradigm one wishes to study. This thesis serves as a proof-of-concept that the HG frequency band can be studied non-invasively, thus opening up this band to a much wider subject population and range of experimental paradigms. In addition, this thesis provides evidence that an implanted subdermal recording electrode system may provide a reliable, long-term, portable method for recording these motor related control signals for BCI control.
机译:在皮层的感觉运动区域,发现运动执行和图像与高伽玛(HG)频段的增加以及β和μ频段的减少有关。由于这些皮层节律可以通过运动图像或执行来有意调节,因此它们经常在脑机接口(BCI)研究中用作控制信号。然而,HG频段调制的非侵入式记录仍是一个相对较新的概念,由于在这些位置神经元集合活动的信噪比较低,因此大多数HG研究仅限于侵入式记录方法。频率。因此,对HG效应的系统研究仅限于狭窄的人群(通常是癫痫患者)和皮质位置,这通常是由临床需求而不是人们希望研究的实验范式确定的。本论文作为概念证明,可以无创地研究HG频段,从而为更广泛的受试者群体和实验范式开放了该频段。另外,本论文提供了证据,即植入的皮下记录电极系统可以提供可靠,长期,便携式的方法来记录这些与电机有关的控制信号,以进行BCI控制。

著录项

  • 作者

    Smith, Melissa M.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Neurosciences.;Computer engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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