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Cellular Mechanism Underlying rTMS Treatment for the Neural Plasticity of Nervous System in Drosophila Brain

机译:rTMS治疗果蝇神经系统神经可塑性的细胞机制

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摘要

Repetitive transcranial magnetic stimulation (rTMS) is used as a research tool and clinical treatment for the non-clinical and clinical populations, to modulate brain plasticity. In the case of neurologic and psychiatric disease, there is significant evidence to suggest that rTMS plays an important role in the functional recovery after neurological dysfunction. However, the causal role for rTMS in the recovery of nervous dysfunction remains unclear. The purpose of the present study is to detect the regulation of rTMS on the excitatory neuronal transmission and specify the mode of action of rTMS on the neural plasticity using Drosophila whole brain. Therefore, we identified the effects of rTMS on the neural plasticity of central neural system (CNS) by detecting the electrophysiology properties of projection neurons (PNs) from adult Drosophila brain after rTMS. Using patch clamp recordings, we recorded the mini excitatory postsynaptic current (mEPSC) of PNs after rTMS at varying frequencies (1 Hz and 100 Hz) and intensities (1%, 10%, 50%, and 100%). Then, the chronic electrophysiology recordings, including mEPSC, spontaneous action potential (sAP), and calcium channel currents from PNs after rTMS at low frequency (1 Hz), with low intensity (1%) were detected and the properties of the recordings were analyzed. Finally, the frequency and decay time of mEPSC, the resting potential and frequency of sAP, and the current density and rise time of calcium channel currents were significantly changed by rTMS. Our work reveals that rTMS can be used as a tool to regulate the presynaptic function of neural circuit, by modulating the calcium channel in a frequency-, intensity- and time-dependent manner.
机译:重复经颅磁刺激(rTMS)被用作非临床和临床人群的研究工具和临床治疗方法,以调节大脑可塑性。对于神经系统疾病和精神疾病,有大量证据表明rTMS在神经功能障碍后的功能恢复中起着重要作用。但是,rTMS在神经功能障碍恢复中的因果作用仍不清楚。本研究的目的是利用果蝇全脑检测rTMS对兴奋性神经元传递的调控,并阐明rTMS对神经可塑性的作用方式。因此,我们通过检测rTMS后成人果蝇脑中投射神经元(PNs)的电生理特性,确定了rTMS对中枢神经系统(CNS)的神经可塑性的影响。使用膜片钳记录,我们记录了rTMS在不同频率(1 Hz和100 Hz)和强度(1%,10%,50%和100%)下PNs的微型兴奋性突触后电流(mEPSC)。然后,检测了长期电生理记录,包括mEPSC,自发动作电位(sAP)和rTMS在低频(1 Hz),低强度(1%)后来自PN的钙通道电流,并分析了记录的性质。最后,rTMS显着改变了mEPSC的频率和衰减时间,sAP的静息电位和频率以及钙通道电流的电流密度和上升时间。我们的工作表明,通过以频率,强度和时间相关的方式调节钙通道,rTMS可用作调节神经回路突触前功能的工具。

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