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A multiple modulation synthesis method with high spatial resolution for noninvasive neurostimulation

机译:用于非侵入性神经刺激的具有高空间分辨率的多调制合成方法

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摘要

Noninvasive neurostimulation plays a pivotal role in the direct control of neural circuits and the modulation of neuronal function. However, it is difficult to balance both spatial resolution and penetration depth when stimulating deep neurons. Here, we designed a multiple (time-division, frequency and polarity) modulation synthesis (MMS) method for noninvasively stimulating deep neurons with low-frequency envelopes. Compared to conventional transcranial electrical stimulation, we demonstrated that it can stimulate deep neurons at the desired firing rate (beat frequency) with higher spatial resolution via a computational model combining finite element analysis and Hodgkin-Huxley action potential model. Additionally, we measured the distribution of stimulus waveforms in saline solution to validate its effect. Taken together, the results of this study indicate that MMS stimulation with higher spatial resolution is steerable and might be a potential alternative to traditional implanted electrodes.
机译:非侵入性神经刺激在直接控制神经回路和调节神经元功能中起着关键作用。但是,当刺激深层神经元时,很难同时兼顾空间分辨率和穿透深度。在这里,我们设计了一种多种(时分,频率和极性)调制合成(MMS)方法,用于无创地刺激具有低频包络的深层神经元。与传统的经颅电刺激相比,我们证明了它可以通过有限元分析和霍奇金-赫克斯利动作电位模型相结合的计算模型,以较高的空间分辨率以所需的发射速率(搏动频率)刺激深层神经元。此外,我们测量了盐水溶液中刺激波形的分布,以验证其效果。两者合计,这项研究的结果表明,具有较高空间分辨率的MM​​S刺激是可操纵的,并且可能是传统植入电极的潜在替代方法。

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