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Effects of stimulation site and stimulation parameters on bladder inhibition by electrical nerve stimulation

机译:刺激部位和刺激参数对电神经刺激抑制膀胱的影响

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OBJECTIVE: ? To quantify the effects of acute electrical stimulation frequency and amplitude at the dorsal nerve of the penis (DNP), pudendal nerve (PN) and S1 sacral nerve (S1) on isovolumetric reflex bladder contractions and maximum cystometric capacity in anaesthetized male cats. MATERIALS AND METHODS: ? Experiments were conducted in 14 adult male cats anaesthetized with α-chloralose. ? The effects of stimulation on the pressure - time integral of reflex bladder contractions were evaluated using a randomized block design with the following factors randomized: stimulation intensity (0.8, 1, or 2x the threshold for evoking a reflex electromyogram response in the external anal sphincter [T]), frequency (2 Hz, 5 Hz, 7.5 Hz, 10 Hz, 5 Hz, 20 Hz, or 33 Hz) and location (PN, S1 or DNP). ? The effects of stimulation (with parameters that produced maximum inhibition of isovolumetric bladder contractions) on cystometric capacity were evaluated using a randomized block design, with the order of stimulation location randomized and control trials interleaved with stimulation trials. RESULTS: ? Inhibition of isovolumetric bladder contractions was significantly dependent on stimulation location, frequency, amplitude and the interactions between any two of these variables. ? Stimulation of the DNP, at 5 Hz, 7.5 Hz or 10 Hz, and at 2T caused greater reductions in normalized bladder contraction area than any other location, frequency or amplitude tested. ? Stimulation of the PN or S1 at 7.5 Hz or 10 Hz and 2T, or of the DNP at 5 Hz, 7.5 Hz or 10 Hz and 0.8T, 1T or 2T generated maximum inhibition of isovolumetric bladder contractions. ? Cystometric capacity was significantly larger with stimulation (10 Hz, 1T-2T) than control. ? There was no significant difference in cystometric capacity based upon stimulation location. CONCLUSIONS: ? There was no significant difference in the maximum degree to which the respective optimum parameters inhibited bladder contractions or increased cystometric capacity by location. ? The range of amplitudes and frequencies that caused maximum inhibition was larger for DNP stimulation than for PN or S1 stimulation. ? These findings have implications on the selection of anatomical target and device programming for clinical neuromodulation for treatment of the symptoms of overactive bladder.
机译:目的:为了量化在麻醉的雄性猫中,阴茎背神经(DNP),阴部神经(PN)和S骨S1(S1)的急性电刺激频率和幅度对等容反射性膀胱收缩和最大膀胱容量的影响。材料和方法: ?实验是在14只成年雄性猫中用α-氯藻糖麻醉的。 ?使用随机区组设计评估刺激对反射性膀胱收缩的压力-时间积分的影响,并随机分配以下因素:刺激强度(在肛门外括约肌中引起反射肌电图反应的阈值的0.8、1或2倍[ T]),频率(2 Hz,5 Hz,7.5 Hz,10 Hz,5 Hz,20 Hz或33 Hz)和位置(PN,S1或DNP)。 ?使用随机区组设计评估刺激(具有产生最大等体积膀胱收缩抑制作用的参数)对膀胱容量的影响,将刺激位置的顺序随机化,将对照试验与刺激试验进行交错。结果:?等体积膀胱收缩的抑制作用显着取决于刺激位置,频率,幅度以及这些变量中任何两个变量之间的相互作用。 ?以5 Hz,7.5 Hz或10 Hz以及2T刺激DNP导致的正常膀胱收缩面积减少幅度比任何其他位置,频率或幅度都大。 ?分别以7.5 Hz或10 Hz和2T刺激PN或S1,或以5 Hz,7.5 Hz或10 Hz和0.8T,1T或2T刺激DNP,可以最大程度地抑制等容膀胱收缩。 ?刺激(10 Hz,1T-2T)下的膀胱容量明显大于对照组。 ?基于刺激位置的膀胱测压能力没有显着差异。结论:?各个最佳参数按位置抑制膀胱收缩或增加膀胱测压能力的最大程度没有显着差异。 ?引起最大抑制的幅度和频率范围对于DNP刺激要大于PN或S1刺激。 ?这些发现对选择用于临床神经调节以治疗膀胱过度活动症症状的解剖学靶标和装置编程有影响。

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