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首页> 外文期刊>Frontiers in Cellular Neuroscience >The Frequency-Dependent Neuronal Length Constant in Transcranial Magnetic Stimulation
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The Frequency-Dependent Neuronal Length Constant in Transcranial Magnetic Stimulation

机译:经颅磁刺激中的频率依赖性神经元长度常数

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Background: The behavior of the dendritic or axonal membrane voltage due to transcranial magnetic stimulation (TMS) is often modeled with the one-dimensional cable equation. For the cable equation, a length constant λ_(0)is defined; λ_(0)describes the axial decay of the membrane voltage in the case of constant applied electric field. In TMS, however, the induced electric field waveform is typically a segment of a sinusoidal wave, with characteristic frequencies of the order of several kHz. Objective: To show that the high frequency content of the stimulation pulse causes deviations in the spatial profile of the membrane voltage as compared to the steady state. Methods: We derive the cable equation in complex form utilizing the complex frequency-dependent representation of the membrane conductivity. In addition, we define an effective length constant λ_(eff), which governs the spatial decay of the membrane voltage. We model the behavior of a dendrite in an applied electric field oscillating at 3.9 kHz with the complex cable equation and by solving the traditional cable equation numerically. Results: The effective length constant decreases as a function of frequency. For a model dendrite or axon, for which λ_(0)= 1.5 mm, the effective length constant at 3.9 kHz is decreased by a factor 10 to 0.13 mm. Conclusion: The frequency dependency of the neuronal length constant has to be taken into account when predicting the spatial behavior of the membrane voltage as a response to TMS.
机译:背景:经颅磁刺激(TMS)引起的树突状或轴突膜电压的行为通常使用一维电缆方程建模。对于电缆方程,定义了一个长度常数λ_(0)。 λ_(0)描述在恒定施加电场的情况下膜电压的轴向衰减。但是,在TMS中,感应电场波形通常是正弦波的一部分,其特征频率约为几kHz。目的:表明与稳态相比,刺激脉冲的高频含量会导致膜电压的空间分布出现偏差。方法:我们利用膜电导率的复杂频率相关表示,以复杂形式导出电缆方程。此外,我们定义了有效长度常数λ_(eff),该常数控制膜电压的空间衰减。我们使用复杂的电缆方程并通过数值求解传统的电缆方程,对枝晶在3.9 kHz振荡的施加电场中的行为进行建模。结果:有效长度常数随频率降低。对于λ_(0)= 1.5 mm的模型枝晶或轴突,在3.9 kHz处的有效长度常数减少了10倍至0.13 mm。结论:在预测膜电压对TMS的反应的空间行为时,必须考虑神经元长度常数的频率依赖性。

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