论文标题

模块化脉冲合成器,用于经颅磁刺激,并具有柔性用户定义的脉冲成型和序列快速变化的脉冲

Modular Pulse Synthesizer for Transcranial Magnetic Stimulation with Flexible User-Defined Pulse Shaping and Rapidly Changing Pulses in Sequences

论文作者

Li, Z., Zhang, J., Peterchev, A. V., Goetz, S. M.

论文摘要

经颅磁刺激(TMS)中脉冲的时间形状会影响神经元种群优先激活的神经元种群以及神经调节作用的强度甚至方向。此外,各种脉冲形状的效率,线圈加热,感觉知觉和咔嗒声不同。但是,可用的TMS脉冲形状库仍然非常局限于几个具有正弦或近部形状的脉冲。单相脉冲尽管发现神经调节更具选择性和更强,但产生了效率低下,因此仅在简单的低频重复方案中可用。尽管利用TMS脉冲形状和脉冲序列的时间效应非常兴趣,但波形控制相对不灵活,并且仅在某些限制内进行参数。先前提出的柔性脉冲形状控制的方法,例如通过电力电子逆变器,具有重大局限性:在与游离脉冲成型相关的巨大电力应力下,现有的半导体开关可能会失败,并且大多数常规的电源逆变器拓扑都无法产生光滑的电场或现有的脉冲形状。利用大量的模块化电力电子初步工作,我们提出了一种模块化脉冲合成器(MPS)技术,该技术可以首次灵活地生成具有用户定义的电场形状的高功率TMS脉冲以及具有高输出质量的快速脉冲序列。电路拓扑破坏了同时高功率和切换速度为较小,易于管理的部分的问题。 MPS TMS几乎可以通过对诱导电场进行精细量化的任何脉冲形状(包括常规脉冲)合成。

The temporal shape of a pulse in transcranial magnetic stimulation (TMS) influences which neuron populations are activated preferentially as well as the strength and even direction of neuromodulation effects. Furthermore, various pulse shapes differ in their efficiency, coil heating, sensory perception, and clicking sound. However, the available TMS pulse shape repertoire is still very limited to a few pulses with sinusoidal or near-rectangular shapes. Monophasic pulses, though found to be more selective and stronger in neuromodulation, are generated inefficiently and therefore only available in simple low-frequency repetitive protocols. Despite a strong interest to exploit the temporal effects of TMS pulse shapes and pulse sequences, waveform control is relatively inflexible and only possible parametrically within certain limits. Previously proposed approaches for flexible pulse shape control, such as through power electronic inverters, have significant limitations: Existing semiconductor switches can fail under the immense electrical stress associated with free pulse shaping, and most conventional power inverter topologies are incapable of generating smooth electric fields or existing pulse shapes. Leveraging intensive preliminary work on modular power electronics, we present a modular pulse synthesizer (MPS) technology that can, for the first time, flexibly generate high-power TMS pulses with user-defined electric field shape as well as rapid sequences of pulses with high output quality. The circuit topology breaks the problem of simultaneous high power and switching speed into smaller, manageable portions. MPS TMS can synthesize practically any pulse shape, including conventional ones, with fine quantization of the induced electric field.

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