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首页> 外文期刊>Neurourology and urodynamics. >Frequency‐dependent inhibition of bladder function by saphenous nerve stimulation in anesthetized rats
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Frequency‐dependent inhibition of bladder function by saphenous nerve stimulation in anesthetized rats

机译:膀胱神经刺激在麻醉大鼠中的膀胱功能依赖性抑制

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摘要

Aims Percutaneous tibial nerve stimulation (PTNS) is an effective neuromodulation therapy for treating overactive bladder (OAB). The therapeutic effects are achieved by repeatedly applying electrical stimulation through a percutaneous needle electrode that is used to target the tibial nerve (TN). Anatomical studies indicate there can be multiple saphenous nerve (SAFN) branches located near the site of electrical stimulation, and therefore we investigated the possibility of evoking a bladder‐inhibitory reflex by electrically activating the SAFN. Materials and Methods Acute experiments were conducted in 26 urethane‐anesthetized rats. Changes in bladder contraction rate (BCR) and bladder capacity were measured in response to 10‐min SAFN stimulation trials. Electrical pulses were applied at 25?μA and at stimulation frequencies between 2?Hz and 50?Hz. Results We report that SAFN stimulation at 20?Hz was most effective at reflexively decreasing the BCR (53.8?±?5.4% from baseline) and also increasing the bladder capacity (145.8?±?43.5% from baseline). In contrast, SAFN stimulation at other frequencies yielded inconsistent changes in bladder function. Carry‐over effects were minimized by randomizing the sequence of SAFN stimulation trials and also by allowing the bladder to return to the baseline conditions. Conclusions With notable changes in both the BCR and bladder capacity, our findings provide evidence of a novel bladder‐inhibitory reflex in anesthetized rats that is mediated by the SAFN. Further work is needed to determine the clinical relevance of this neural pathway.
机译:旨在经皮胫骨神经刺激(PTN)是一种治疗过度活性膀胱(OAB)的有效神经调节疗法。通过通过用于靶向胫骨神经(TN)的经皮针电极来施加电刺激来实现治疗效果。解剖学表明,可以有多个隐神经(SAFN)分支位于电刺激部位附近,因此我们研究了通过电激活SAFN来引发膀胱抑制反射的可能性。材料和方法在26种氨基甲酸酯 - 麻醉大鼠中进行急性实验。膀胱收缩率(BCR)和膀胱容量的变化是响应于10分钟的SAFN刺激试验而测量的。将电脉冲施加在25μAμA和25℃之间的刺激频率。结果我们报告说,在20?Hz的Safn刺激最有效地反复下降BCR(从基线53.8?±5.4%),并且还增加了膀胱容量(145.8?±43.5%来自基线)。相比之下,在其他频率下的SAFN刺激产生了膀胱功能的不一致变化。通过随机化SAFN刺激试验序列以及允许膀胱返回基线条件来最小化携带的效果。结论BCR和膀胱容量的显着变化,我们的研究结果提供了一种在SAFN介导的麻醉大鼠中新型膀胱抑制反射的证据。需要进一步的工作来确定这种神经途径的临床相关性。

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