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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Relationship between stimulus amplitude, stimulus frequency and neural damage during electrical stimulation of sciatic nerve of cat.
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Relationship between stimulus amplitude, stimulus frequency and neural damage during electrical stimulation of sciatic nerve of cat.

机译:猫坐骨神经电刺激过程中刺激幅度,刺激频率与神经损伤的关系。

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摘要

The relation is investigated between stimulus frequency, stimulus pulse amplitude and the neural damage induced by continuous stimulation of the cat's sciatic nerve. The chronically implanted electrodes were pulsed continuously and the effects of the electrical stimulation were quantified as the amount of early axonal degeneration (EAD) present in the nerves seven days after the continuous stimulation. The primary effect of stimulating at 100 Hz rather than 50 Hz was to cause an increase in the slope of the plot of the amount of EAD versus stimulus amplitude, but the threshold stimulus for the induction of EAD also was slightly lower. There was a small amount of EAD in three of the nerves stimulated at 20 Hz, but there was no detectable correlation between the amount of EAD and the stimulus amplitude. This suggests that continuous electrical stimulation of peripheral nerves at a low frequency induce little or no neural damage, even if the stimulus amplitude is very high. A preliminary presentation of the results has been made elsewhere (Agnew et al., 1993).
机译:研究了刺激频率,刺激脉冲幅度与猫坐骨神经持续刺激引起的神经损伤之间的关系。连续脉冲植入长期植入的电极,并将电刺激的效果量化为连续刺激后7天神经中出现的早期轴突变性(EAD)的量。以100 Hz而不是50 Hz进行刺激的主要作用是引起EAD量与刺激幅度的关系曲线的斜率增加,但是诱发EAD的阈值刺激也略低。在20 Hz刺激的三只神经中,有少量EAD,但EAD量与刺激幅度之间没有可检测的相关性。这表明,即使刺激幅度非常高,低频连续电刺激周围神经也不会引起神经损伤,甚至不会引起神经损伤。在其他地方已经对结果进行了初步介绍(Agnew等,1993)。

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