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A novel electric design for electromagnetic stimulation-the Slinky coil

机译:一种新颖的电磁刺激电气设计-Slinky线圈

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A novel coil design for inductive electromagnetic stimulation of neural cells has been simulated and experimentally tested. This coil improves the focal effect of a magnetic stimulator, and it reduces its inductance, hence the efficiency of the system is improved. The basic structure of the device is derived from the popular "Slinky" toy. The actual device is formed by winding different numbers of loops forming a helical coil on a half torus. The loops are bunched at the axis of the torus. The coil, due to its geometry, generates a unique distribution of eddy currents in nearby tissues which is favorable compared to a solenoid type stimulator. This renders the Slinky coil more selective than conventional coils used for magnetic stimulation. The distribution of eddy currents was analyzed using Matlab, following Faraday's Law of Induction. Improved focality permits the current through the coil to be reduced for the same effect. In addition, the reduced inductance of the Slinky coil decreases the power requirement; thus, the improved efficiency of the system may allow the generation of bursts of pulses, and expand the utilization of the system to possible functional activation of certain neuro-muscular structures when peripheral nerves are stimulated.
机译:用于神经细胞感应电磁刺激的新型线圈设计已经过仿真和实验测试。该线圈改善了磁刺激器的聚焦效果,并且减小了其电感,因此提高了系统的效率。该设备的基本结构源自流行的“ Slinky”玩具。实际的设备是通过在半圆环上缠绕不同数量的线圈来形成螺旋形线圈而形成的。环束聚集在圆环的轴上。线圈由于其几何形状会在附近组织中产生独特的涡流分布,这与螺线管型刺激器相比是有利的。这使得Slinky线圈比用于磁刺激的常规线圈更具选择性。遵循法拉第感应定律,使用Matlab分析涡流的分布。改善的聚焦性允许减少通过线圈的电流,以达到相同的效果。另外,Slinky线圈的电感减小,从而降低了功率要求;因此,系统的提高的效率可以允许脉冲突发的产生,并且可以在刺激周围神经时将系统的利用扩展到某些神经肌肉结构的可能的功能激活。

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