磁刺激
电磁线圈
肌电图
神经生理学
计算机科学
神经科学
刺激
生物医学工程
心理学
物理
医学
量子力学
作者
Jaakko O. Nieminen,Alexey S. Pospelov,Lari M. Koponen,Pauliina Yrjölä,Anastasia Shulga,Stanislav Khirug,Claudio Rivera
标识
DOI:10.3389/fnins.2022.935268
摘要
Transcranial magnetic stimulation (TMS) is widely applied on humans for research and clinical purposes. TMS studies on small animals, e.g., rodents, can provide valuable knowledge of the underlying neurophysiological mechanisms. Administering TMS on small animals is, however, prone to technical difficulties, mainly due to their small head size. In this study, we aimed to develop an energy-efficient coil and a compatible experimental set-up for administering TMS on rodents. We applied a convex optimization process to develop a minimum-energy coil for TMS on rats. As the coil windings of the optimized coil extend to a wide region, we designed and manufactured a holder on which the rat lies upside down, with its head supported by the coil. We used the set-up to record TMS-electromyography, with electromyography recorded from limb muscles with intramuscular electrodes. The upside-down placement of the rat allowed the operator to easily navigate the TMS without the coil blocking their field of view. With this paradigm, we obtained consistent motor evoked potentials from all tested animals.
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