首页> 外文期刊>Neurorehabilitation and neural repair >Transcutaneously coupled, high-frequency electrical stimulation of the pudendal nerve blocks external urethral sphincter contractions.
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Transcutaneously coupled, high-frequency electrical stimulation of the pudendal nerve blocks external urethral sphincter contractions.

机译:阴部神经的经皮耦合高频电刺激可阻断尿道括约肌的外部收缩。

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BACKGROUND: Detrusor-sphincter dyssynergia is a condition in which reflexive contractions of the external urethral sphincter occur during bladder contractions, preventing the expulsion of urine. High-frequency stimulation (kHz range) has been shown to elicit a fast-acting and reversible block of action potential propagation in peripheral nerves, which may be a useful technique in the management of this condition. OBJECTIVE: The aim of these experiments was to see if a newly developed stimulus delivery system, capable of transmitting current transcutaneously to remote peripheral nerves using a passive implanted conductor, was an effective way to transmit high-frequency waveforms to the pudendal nerve to block ongoing sphincter contractions. METHODS: High-frequency waveforms were delivered through the skin to the pudendal nerve using a passive implanted conductor in 6 adult cats anesthetized with isoflurane. Five of the experiments were acute, terminal procedures, and the remaining cat was implanted with a permanent electrode system allowing evaluation for 6 months. Typical stimulation parameters were in the range of 1 to 10 kHz and 1 to 10 mA. RESULTS: Complete blocking of external urethral sphincter contractions was achieved in 5 of the 6 animals. High-frequency stimulation was also tested in the chronically implanted animal without anesthesia, and the stimulation was tolerated with minimal aversive reactions. CONCLUSIONS: The transcutaneous passive implanted conductor stimulus delivery system is an effective way to stimulate the pudendal nerve at high frequency, leading to sphincter relaxation. This system may provide a simple means to implement this stimulation paradigm in people with detrusor-sphincter dyssynergia.
机译:背景:逼尿肌括约肌功能失调是在膀胱收缩过程中发生尿道外括约肌反射性收缩的情况,从而阻止尿液排出。高频刺激(kHz范围)已显示出在周围神经中引起动作电位传播的快速作用和可逆性阻滞,这可能是处理这种情况的有用技术。目的:这些实验的目的是观察新开发的刺激传递系统是否能够使用被动植入导体将电流经皮传递到远端周围神经,是一种将高频波形传递到阴部神经以阻止正在进行的刺激的有效方法括约肌收缩。方法:使用6只成年猫用异氟烷麻醉后,使用被动植入导体将高频波形通过皮肤传递至阴部神经。其中五个实验是急性的末期手术,其余的猫植入了永久性电极系统,可进行6个月的评估。典型的刺激参数在1至10 kHz和1至10 mA的范围内。结果:6只动物中有5只完全阻断了尿道外括约肌的收缩。还对没有麻醉的长期植入动物进行了高频刺激测试,并且该刺激耐受性很小。结论:经皮被动植入式导体刺激传递系统是高频刺激阴部神经,导致括约肌松弛的有效方法。该系统可以为在逼尿肌括约肌功能障碍患者中实施这种刺激范例提供一种简单的方法。

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