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Electrical stimulation of the saphenous nerve in anesthetized rats: A novel therapeutic approach to treating overactive bladder

机译:麻醉大鼠隐神经的电气刺激:一种治疗过度活性膀胱的新型治疗方法

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Posterior Tibial Nerve Stimulation (PTNS) is a minimally invasive yet effective therapy for treating overactive bladder (OAB) symptoms with electrical stimulations applied at 20 Hz coupled with amplitudes approximating the foot-twitch threshold (T). However, pre-clinical studies indicate that PTNS-evoked bladder reflexes require stimulation amplitudes exceeding 2T. The objective of this work was to evaluate the presence of secondary low-threshold sensory pathways in the hind-limb region that can be a potential target of activation during clinical PTNS set-up. Given the close proximity of the electrode tip and the cutaneous branches in the lower leg, we hypothesized the concomitant activation of saphenous nerve (SAFN) afferents during percutaneous PTNS. To this end, urodynamic model was established in ten anesthetized rats to investigate (1) the isolated role of SAFN trunk in modulating bladder activity and (2) characterize frequency-dependent changes in inhibitory response at low stimulation amplitudes. Our pre-clinical findings suggest that direct stimulation of SAFN can elicit robust and consistent inhibitory effects at 20 Hz. This novel inhibitory reflex may rationalize the therapeutic effects of clinical PTNS therapy and support the feasibility of enhancing the current algorithm of incontinence care.
机译:后胫神经刺激(PTNS)是一种微创且有效的治疗,用于治疗过度活性膀胱(OAB)症状,其施加20Hz的电刺激与近似脚踏阈值(T)的幅度耦合。然而,临床前研究表明,PTNS诱发的膀胱反射需要刺激幅度超过2T。这项工作的目的是评估后肢区域中的次级低阈值感觉途径的存在,其可以是临床PTNS设置期间激活的潜在目标。鉴于电极尖端和小腿中的皮肤分支的近距离接近,我们假设在经皮PTN期间的隐神经(SAFN)传入的伴随激活。为此,在十个麻醉大鼠中建立了尿动力学模型,以研究(1)Safn树干在调节膀胱活性中的分离作用,(2)表征低刺激振荡抑制响应的频率依赖性变化。我们的临床前调查结果表明,SAFN的直接刺激可以在20 Hz中引发鲁棒和一致的抑制作用。这种新的抑制反射可以合理化临床PTNS治疗的治疗效果,并支持增强目前尿失禁护理算法的可行性。

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