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Stimulus frequency-dependent inhibition of micturition contractions of the urinary bladder by electrical stimulation of afferent Aβ Aδ and C fibers in cutaneous branches of the pudendal nerve

机译:电刺激阴部神经皮支中的传入AβAδ和C纤维刺激频率依赖性抑制膀胱排尿收缩

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摘要

We aimed to examine the afferent mechanisms for the reflex inhibition of the rhythmic micturition contractions (RMCs) of the urinary bladder induced by stimulation of the perineal skin afferents in urethane-anesthetized rats. Electrical stimulation (pulse duration: 0.5 ms) was applied to the cutaneous branches of the pudendal nerve (CBPN) at frequencies of 0.1, 1, and 10 Hz for 1 min. Nerve fiber groups were defined by recording compound action potentials from CBPN. Activation of only Aβ fibers (0.2 V) produced an inhibition of RMCs at 7–11 min after the onset of stimulation (late inhibition), at any tested frequency. Additional activation of Aδ fibers (1 V) produced additional early inhibition (immediately after stimulation) at 1 and 10 Hz. Furthermore, additional activation of C fibers (10 V) at 10 Hz completely stopped RMCs for >10 min. This strong inhibition persisted after local application of capsaicin to the stimulating CBPN. We conclude that activities of Aβ, Aδ, and C afferent fibers, without capsaicin-sensitive channels, can contribute to the inhibition of bladder contractions.
机译:我们的目的是检查在麻醉聚氨酯的会阴部皮肤传入刺激的刺激下,抑制节律性排尿收缩(RMC)的传入机制。以0.1、1和10 Hz的频率对阴部神经(CBPN)的皮肤分支施加电刺激(脉冲持续时间:0.5 ms)1分钟。通过记录CBPN的复合动作电位来定义神经纤维组。在任何测试频率下,仅在刺激发生后的7-11分钟内激活Aβ纤维(0.2V)即可抑制RMC(晚期抑制)。 Aδ纤维(1V)的额外激活在1和10 Hz处产生了额外的早期抑制作用(刺激后立即)。此外,在10 Hz下对C纤维(10 V)的额外激活将RMC完全停止了超过10分钟的时间。在将辣椒素局部应用到刺激性CBPN后,这种强烈抑制作用仍然存在。我们得出的结论是,没有辣椒素敏感通道的Aβ,Aδ和C传入纤维的活性可有助于抑制膀胱收缩。

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