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麻醉大鼠胫后神经刺激引发的膀胱功能反射性神经调节

Reflex neuromodulation of bladder function elicited by posterior tibial nerve stimulation in anesthetized rats.

作者信息

Kovacevic Mario, Yoo Paul B

机构信息

Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, Ontario, Canada; and.

Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, Ontario, Canada; and Department of Electrical and Computer Engineering, University of Toronto, Toronto, Ontario, Canada

出版信息

Am J Physiol Renal Physiol. 2015 Feb 15;308(4):F320-9. doi: 10.1152/ajprenal.00212.2014. Epub 2014 Nov 26.

Abstract

Although posterior tibial nerve stimulation (PTNS) has been shown in both clinical and animal studies to elicit bladder-inhibitory reflexes, our understanding of the role of posterior tibial nerve (PTN) afferents that elicit these responses is significantly limited. To this end, we investigated the effects of frequency-dependant PTNS in urethane-anesthetized rats undergoing repeated urodynamic fills. Nerve stimulation trials (10 min) resulted in statistically significant inhibition of the urinary bladder, both during and after nerve stimulation (P < 0.05). PTNS applied at 5 Hz resulted in both acute and prolonged changes that corresponded to 38.0% and 34.1% reductions in the bladder contraction frequency, respectively. In contrast, PTNS applied at 10 Hz could only elicit an acute decrease (22.9%) in bladder activity. Subsequent electrical activation of individual PTN branches (lateral or medial plantar nerves) confirmed that these bladder reflexes are mediated by specific subsets of the PTN trunk. Both acute and prolonged inhibition of the bladder were achieved by electrical stimulation of the lateral plantar (10 and 20 Hz) and medial plantar (5 and 10 Hz) nerves. Finally, we report a bladder-excitatory reflex that is elicited by electrical activation of either the PTN trunk or lateral plantar nerve at 50 Hz. This study shows that multiple bladder reflexes are tuned to specific subsets of nerve afferents and stimulation frequencies, each of which provide novel insights into the physiological effects of PTNS.

摘要

尽管在临床和动物研究中均已表明胫后神经刺激(PTNS)可引发膀胱抑制反射,但我们对引发这些反应的胫后神经(PTN)传入神经的作用的了解仍极为有限。为此,我们研究了频率依赖性PTNS对接受重复尿动力学充盈的乌拉坦麻醉大鼠的影响。神经刺激试验(10分钟)在神经刺激期间和之后均导致膀胱受到具有统计学意义的抑制(P < 0.05)。以5 Hz施加的PTNS导致急性和持续性变化,分别对应膀胱收缩频率降低38.0%和34.1%。相比之下,以10 Hz施加的PTNS仅能引发膀胱活动的急性下降(22.9%)。随后对单个PTN分支(外侧或内侧足底神经)进行电激活证实,这些膀胱反射由PTN主干的特定亚群介导。通过电刺激外侧足底神经(10和20 Hz)和内侧足底神经(5和10 Hz)均实现了对膀胱的急性和持续性抑制。最后,我们报告了一种膀胱兴奋反射,该反射由以50 Hz对PTN主干或外侧足底神经进行电激活所引发。本研究表明,多种膀胱反射针对神经传入的特定亚群和刺激频率进行调节,其中每一种都为PTNS的生理效应提供了新的见解。

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