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首页> 外文期刊>Neural Systems and Rehabilitation Engineering, IEEE Transactions on >High-Frequency Stimulation Selectively Blocks Different Types of Fibers in Frog Sciatic Nerve
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High-Frequency Stimulation Selectively Blocks Different Types of Fibers in Frog Sciatic Nerve

机译:高频刺激选择性阻断青蛙坐骨神经中不同类型的纤维

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摘要

Conduction block using high-frequency alternating current (HFAC) stimulation has been shown to reversibly block conduction through various nerves. However, unlike simulations and experiments on myelinated fibers, prior experimental work in our lab on the sea-slug, Aplysia, found a nonmonotonic relationship between frequency and blocking thresholds in the unmyelinated fibers. To resolve this discrepancy, we investigated the effect of HFAC waveforms on the compound action potential of the sciatic nerve of frogs. Maximal stimulation of the nerve produces a compound action potential consisting of the A-fiber and C-fiber components corresponding to the myelinated and unmyelinated fibers' response. In our study, HFAC waveforms were found to induce reversible block in the A-fibers and C-fibers for frequencies in the range of 5–50 kHz and for amplitudes from 0.1–1 mA. Although the A-fibers demonstrated the monotonically increasing threshold behavior observed in published literature, the C-fibers displayed a nonmonotonic relationship, analogous to that observed in the unmyelinated fibers of Aplysia. This differential blocking behavior observed in myelinated and unmyelinated fibers during application of HFAC waveforms has diverse implications for the fields of selective stimulation and pain management.
机译:使用高频交流电(HFAC)刺激的传导阻滞已显示可逆地阻止各种神经的传导。但是,与对髓鞘纤维的模拟和实验不同,我们在之前在海ly Aplysia上的实验室中的实验工作发现,在未髓鞘纤维的频率与阻塞阈值之间存在非单调关系。为了解决这一差异,我们研究了HFAC波形对青蛙坐骨神经复合动作电位的影响。对神经的最大刺激会产生复合动作电位,该动作电位由对应于有髓和无髓纤维反应的A纤维和C纤维组成。在我们的研究中,发现HFAC波形在5–50 kHz范围内的振幅和0.1–1 mA的振幅下会在A光纤和C光纤中引起可逆阻塞。尽管A纤维表现出在公开文献中观察到的单调增加的阈值行为,但C纤维表现出非单调的关系,类似于在Aplysia的无髓纤维中观察到的关系。在施加HFAC波形期间,在有髓和无髓纤维中观察到的这种差异性阻塞行为对选择性刺激和疼痛管理领域具有不同的含义。

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