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A Dielectric Rod Antenna for Picosecond Pulse Stimulation of Neurological Tissue

机译:皮秒脉冲刺激神经组织的介电棒状天线。

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摘要

A dielectrically loaded wideband rod antenna has been studied as a pulse delivery system to subcutaneous tissues. Simulation results applying 100 ps electrical pulse show that it allows us to generate critical electric field for biological effects, such as brain stimulation, in the range of several centimeters. In order to reach the critical electric field for biological effects, which is approximately 20 kV/cm, at a depth of 2 cm, the input voltage needs to be 175 kV. The electric field spot size in the brain at this position is approximately 1 cm2. Experimental studies in free space with a conical antenna (part of the antenna system) with aluminum nitride as the dielectric have confirmed the accuracy of the simulation. These results set the foundation for high voltage in situ experiments on the complete antenna system and the delivery of pulses to biological tissue.
机译:已经研究了介电负载的宽带棒状天线作为皮下组织的脉冲传输系统。施加100 ps电脉冲的仿真结果表明,它使我们能够在几厘米范围内为生物效应(例如脑部刺激)产生临界电场。为了在2 cm的深度处达到大约20 kV / cm的生物效应临界电场,输入电压必须为175 kV。在此位置,大脑中的电场斑大小约为1 cm 2 。在使用氮化铝作为电介质的锥形天线(天线系统的一部分)的自由空间中进行的实验研究证实了仿真的准确性。这些结果为完整天线系统上的高压原位实验以及向生物组织的脉冲传输奠定了基础。

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