首页> 外文期刊>The Journal of Urology >A catheter based method to activate urethral sensory nerve fibers.
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A catheter based method to activate urethral sensory nerve fibers.

机译:基于导管的激活尿道感觉神经纤维的方法。

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PURPOSE: The ability to control bladder activity would provide a valuable tool to assist individuals with neurological disorders or spinal cord injury (SCI). Recent studies in animal models have shown that bladder contractions can be evoked by electrical stimulation of urethral afferent nerves. We developed and validated in cats a minimally invasive method to stimulate electrically the sensory nerve fibers that innervate the urethra. MATERIALS AND METHODS: The urethra was stimulated electrically along its length via a catheter mounted circumferential electrode in 6 cats. The urethra was similarly stimulated in a male individual with complete SCI. RESULTS: Robust bladder contractions were generated via intraurethral electrical stimulation in all cat experiments. Peak responses were obtained in the proximal and prostatic urethra. In the individual with SCI bladder contractions were generated via intraurethral stimulation at a position 4 cm distal to the bladder. Responses in cats and the human depended on bladder volume. CONCLUSIONS: To our knowledge this study provides the first documentation of generating bladder contractions via intraurethral electrical stimulation in cats and humans. This method provides a research tool for future studies to investigate these pathways in humans. Preliminary human results suggest that urethral afferent mediated neural pathways demonstrated in animal models exist in humans and support the development of neural prostheses using electrical stimulation of these nerves to restore control of bladder function in individuals with neurological disorders or SCI.
机译:目的:控制膀胱活动的能力将为协助患有神经系统疾病或脊髓损伤(SCI)的人提供有价值的工具。动物模型的最新研究表明,电刺激尿道传入神经可以引起膀胱收缩。我们开发并在猫中验证了一种微创方法来电刺激神经刺激尿道的感觉神经纤维。材料与方法:6只猫通过安装在导管上的周向电极沿尿道长度方向电刺激尿道。患有完全SCI的男性个体也同样会刺激尿道。结果:在所有猫实验中,均通过尿道内电刺激产生了强有力的膀胱收缩。在尿道近端和前列腺中获得峰值响应。在患有SCI的个体中,膀胱收缩是通过尿道内刺激在距膀胱4 cm的位置产生的。猫和人的反应取决于膀胱体积。结论:据我们所知,本研究提供了第一个通过猫和人的尿道内电刺激产生膀胱收缩的文献。该方法为将来的研究提供了一种研究工具,以研究人类中的这些途径。人体的初步研究结果表明,动物模型中证实的尿道传入介导的神经通路存在于人体中,并通过电刺激这些神经来恢复神经系统或SCI患者的膀胱功能控制,从而支持了神经假体的发展。

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