Bhadra Narendra, Bhadra Niloy, Kilgore Kevin, Gustafson Kenneth J
Department of Biomedical Engineering, Case Western Reserve University, 10900 Euclid Avenue, Wickenden, Cleveland OH 44106-7207, USA.
J Neural Eng. 2006 Jun;3(2):180-7. doi: 10.1088/1741-2560/3/2/012. Epub 2006 May 16.
A reversible electrical block of the pudendal nerves may provide a valuable method for restoration of urinary voiding in individuals with bladder-sphincter dyssynergia. This study quantified the stimulus parameters and effectiveness of high frequency (HFAC) sinusoidal waveforms on the pudendal nerves to produce block of the external urethral sphincter (EUS). A proximal electrode on the pudendal nerve after its exit from the sciatic notch was used to apply low frequency stimuli to evoke EUS contractions. HFAC at frequencies from 1 to 30 kHz with amplitudes from 1 to 10 V were applied through a conforming tripolar nerve cuff electrode implanted distally. Sphincter responses were recorded with a catheter mounted micro-transducer. A fast onset and reversible motor block was obtained over this range of frequencies. The HFAC block showed three phases: a high onset response, often a period of repetitive firing and usually a steady state of complete or partial block. A complete EUS block was obtained in all animals. The block thresholds showed a linear relationship with frequency. HFAC pudendal nerve stimulation effectively produced a quickly reversible block of evoked urethral sphincter contractions. The HFAC pudendal block could be a valuable tool in the rehabilitation of bladder-sphincter dyssynergia.
阴部神经的可逆性电阻滞可能为膀胱括约肌协同失调患者恢复排尿提供一种有价值的方法。本研究量化了高频(HFAC)正弦波形对阴部神经产生尿道外括约肌(EUS)阻滞的刺激参数和有效性。在阴部神经从坐骨切迹穿出后,使用近端电极施加低频刺激以诱发EUS收缩。通过植入远端的贴合式三极神经袖套电极施加频率为1至30kHz、幅度为1至10V的HFAC。用安装在导管上的微型换能器记录括约肌反应。在该频率范围内获得了快速起效且可逆的运动阻滞。HFAC阻滞表现出三个阶段:高起始反应、通常为一段重复放电期以及通常为完全或部分阻滞的稳定状态。所有动物均获得了完全的EUS阻滞。阻滞阈值与频率呈线性关系。HFAC阴部神经刺激有效地产生了诱发尿道括约肌收缩的快速可逆阻滞。HFAC阴部神经阻滞可能是膀胱括约肌协同失调康复中的一种有价值的工具。