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Modulation of Neuronal Activity With Extremely Low-Frequency Magnetic Fields: Insights From Biophysical Modeling

机译:具有极低频率磁场的神经元活动的调节:生物物理建模的见解

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Time-varying magnetic stimulation of the central nervous system is nowadays a promising therapeutic approach already used to alleviate the symptoms in a variety of neurological disorders. Transcranial Magnetic Stimulation (TMS) is an example of a successful application involving specific patterns of magnetic field (MF) for therapeutic use, which provides clinical improvement in movement disorders or depression. Other neuromodulation strategies consist in proposing several orders of magnitude lower magnetic stimuli that are more flexible in terms of shape and frequency of the signal. However, the refinement of both of these techniques is limited due to the lack of understanding of the underlying mechanisms supporting the interaction between the magnetic stimulus and brain tissue. To provide insights into the modulation of neuronal activity by extremely low-frequency (ELF) MF, we present biophysical modeling results regarding 1) single neuron exposure to an ELF MF, and 2) neuronal network exposure to an ELF MF. These results shed light on the effect of ELF MFs on neuronal activity from the single cell to the network level, and illustrate the importance of a number of factors both in ELF MF characteristics and brain tissue properties in determining the outcome of the exposure. These principles may guide future therapeutic developments.
机译:现在,中枢神经系统的时变磁刺激是一种有希望的治疗方法,已经用于缓解各种神经系统疾病的症状。经颅磁刺激(TMS)是涉及治疗用途的磁场(MF)的特定模式的成功应用的实例,其提供了运动障碍或抑郁症的临床改善。其他神经调节策略包括在信号的形状和频率方面提出几个级别较低的磁刺激。然而,由于对支持磁刺激和脑组织之间的相互作用的潜在机制缺乏了解,这两种技术的改进是有限的。通过极低频率(ELF)MF提供对神经元活性调节的洞察,我们将生物物理学建模结果呈现给1)单一神经元暴露于ELF MF和2)神经元网络暴露于精灵MF。这些结果揭示了ELF MFS对从单细胞到网络水平的神经元活动的影响,并说明了在确定暴露的结果时,均在ELF MF特性和脑组织性质中的许多因素的重要性。这些原则可以引导未来的治疗发展。

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