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Axonal blocking and injuring responses caused by asymmetric high frequency electrical stimulations of frog's sciatic nerve

机译:青蛙坐骨神经不对称高频电刺激引起的轴突阻滞和损伤反应

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High frequency (HF) electrical stimulations have proven to be able to block nerve conductions, which would have widespread potential clinical applications. However, some studies demonstrated that the HF blocking stimulus of short duration of 5 s could also cause long lasting injuries to neural conductions. Further revelations of the effects of various kinds of HF stimulus on nerve's conduction would provide more insights into the possible underlying mechanisms and directions towards designing more safe and efficacious HF waveforms. This study investigated the blocking and injuring effects of the asymmetric HF currents on neural conductions on bullfrog's sciatic nerves. The used stimulus included the 5 s low frequency (10 Hz) pulse train to generate control and test compound action potentials (CAPs) and the 5 s HF asymmetric currents to block the CAPs conduction. The asymmetric HF waveforms were characterized by various frequencies (F=1, 2, or 5 kHz) and anode-to-cathode pulse width ratios (r=1, 2, or 3), and the first cathode pulse had a constant width of 0.05 ms. The parameters of blocking rates (BR) and injuring rates (IR) were measured to identify the possible effects. The results demonstrated that the HF currents of relatively high F (5 kHz) and low r (1 and 2) might be useful for achieving nerve conduction blockades of relatively high blocking rates and low injury rates.
机译:高频(HF)电刺激已被证明能够阻断神经传导,这将在临床上具有广泛的潜在应用。但是,一些研究表明,短时5 s的HF阻断刺激也可能对神经传导造成长期持续的伤害。各种HF刺激对神经传导的影响的进一步揭示,将为设计更安全有效的HF波形提供可能的潜在机制和方向的更多见解。这项研究调查了不对称HF电流对牛蛙坐骨神经神经传导的阻滞和伤害作用。所使用的刺激包括5 s低频(10 Hz)脉冲序列以生成控制和测试复合动作电位(CAPs),以及5 s HF非对称电流以阻止CAPs传导。非对称HF波形的特征在于各种频率(F = 1、2或5 kHz)和阳极与阴极的脉冲宽度比(r = 1、2或3),并且第一个阴极脉冲的恒定宽度为0.05毫秒测量了阻塞率(BR)和伤害率(IR)的参数,以确定可能的影响。结果表明,相对较高的F(5 kHz)和较低的r(1和2)的HF电流对于实现较高阻塞率和较低损伤率的神经传导阻滞可能是有用的。

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