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Reversible Conduction Block in Peripheral Mammalian Nerve Using Low Frequency Alternating Current

机译:使用低频交流电流的外围哺乳动物神经中的可逆传导块

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Activation of nerve fibers using electricity has been known since antiquity. Methods to block propagating action potentials (AP) are a more recent discovery. This paper describes a method to reversibly block nerve conduction using a low frequency (1 Hz) alternating current (LFACb) waveform. An in situ electrophysiology setup was used to assess the LFACb on propagating APs within the cervical vagus nerve in six anaesthetized Sprague-Dawley rats. Two sets of Pt-Ir hook electrodes were used. The rostral electrode was used to generate a volley of APs while the LFACb waveform was presented to the caudal electrode. This efferent volley, if unblocked, elicits acute bradycardia and hypotension. Block was assessed by ability to reduce this bradycardic drive by monitoring the heart rate (HR) and blood pressure (BP) during LFACb alone, LFACb and vagal stimulation, and vagal stimulation alone. Using the LFACb technique, 82 ± 15% conduction block was achieved with current levels 100 ± 36 μA_p.
机译:自古以来,已知使用电力的神经纤维的激活。阻止传播动作电位(AP)的方法是更新的发现。本文介绍了一种使用低频(1Hz)交流(LFACB)波形可逆地阻止神经传导的方法。原位电生理设置用于评估LFACB在六个麻醉的Sprague-Dawley大鼠中颈椎神经内的繁殖APS。使用两组PT-IR钩电极。在将LFACB波形呈现给尾部的同时,使用振动电极产生APS的凌射。如果未包容,这势杂的速度是引发急性心动过缓和低血压。通过监测LFACB单独,LFACB和迷入刺激期间的心率(HR)和血压(BP)来评估块的能力来评估这种心动率和血压,并且单独迷失刺激。使用LFACB技术,通过电流水平100±36μA_p实现82±15%的传导块。

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