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A method for estimation of stimulated brain sites based on columnar structure of cerebral cortex in transcranial magnetic stimulation

机译:基于经颅磁刺激的大脑皮层柱状结构的受刺激脑位估计方法

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摘要

Transcranial magnetic stimulation (TMS) is a noninvasive method to stimulate the cortex. In TMS with a figure-of-eight coil, the induced electric field elicited by the pulsed magnetic fields is gathered beneath the center of the figure-of-eight coil, so the point on the cortex beneath the center of the figure-of-eight coil has been regarded as a stimulating site conventionally. However, the stimulating point determined in this way is not supposed to be plausible because electric field induced in TMS is dispersed over the brain vectorially. The present study proposed the novel method for the accurate estimation of stimulating points of the cortex in TMS. In our proposed method, the cortical structure and property of neural excitation in magnetic nerve stimulation were taken into account. The basic unit of the cerebral cortex is the cylindrical column containing pyramidal neurons perpendicular to the cortical surface, and neural excitation in the magnetic nerve stimulation is determined by the spatial derivative of the electric field parallel to the cablelike neuron such as a pyramidal neuron. According to these understandings, the relative intensity of nerve stimulation in TMS corresponds to the strength of the component of the induced electrical field perpendicular to the cortical surface. We realized the method for the estimation of stimulating sites of the cortex in TMS by using this principle. The component of the electric field perpendicular to the cortical surface at each pixel of magnetic resonance imaging was obtained with computation of the dot product of the electric field and the unit vector perpendicular to the cortex surface. The strength of the component of the electric field perpendicular to the cortical surface was regarded as the stimulating strength at each pixel of the cortical surface in TMS. We conducted the experiments of TMS to confirm the validity of this method. The cortex sites, which innervate muscles of the upper limb, were successfully delineated in primary motor area by the proposed method.
机译:经颅磁刺激(TMS)是刺激皮层的一种非侵入性方法。在具有八字形线圈的TMS中,由脉冲磁场引起的感应电场被收集在八字形线圈的中心下方,因此皮层上的点位于八字形的中心下方。传统上,八个线圈被认为是刺激部位。但是,以这种方式确定的刺激点被认为是不合理的,因为TMS中感应的电场在矢量上会分散在大脑上。本研究提出了一种新的方法,用于准确估计TMS中皮层的刺激点。在我们提出的方法中,考虑了磁神经刺激中神经兴奋的皮质结构和性质。大脑皮层的基本单元是圆柱体,其中包含垂直于皮层表面的锥体神经元,而磁神经刺激中的神经兴奋由平行于电缆状神经元(例如锥体神经元)的电场的空间导数确定。根据这些理解,TMS中神经刺激的相对强度对应于垂直于皮层表面的感应电场分量的强度。利用这一原理,我们实现了估算TMS皮层刺激部位的方法。通过计算电场的点积和垂直于皮质表面的单位矢量,可以得到磁共振成像每个像素处垂直于皮质表面的电场分量。在TMS中,垂直于皮质表面的电场分量的强度被视为皮质表面每个像素处的刺激强度。我们进行了TMS实验,以确认该方法的有效性。通过提出的方法成功地在初级运动区中描绘了神经支配上肢肌肉的皮质部位。

著录项

  • 来源
    《Journal of Applied Physics》 |2009年第2期|521-523|共3页
  • 作者

    Osamu Hiwaki; Tomonori Inoue;

  • 作者单位

    Graduate School of Information Sciences, Hiroshima City University, Hiroshima 731-3194, Japan;

    Graduate School of Information Sciences, Hiroshima City University, Hiroshima 731-3194, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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