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膀胱排尿反射大鼠模型中脊髓神经刺激脉冲宽度的评估

Evaluation of Pulse-Width of Spinal Nerve Stimulation in a Rat Model of Bladder Micturition Reflex.

作者信息

Su Xin, Simenson Heather A, Dinsmoor David A, Orser Heather D

机构信息

Restorative Therapies Group, Research & Core Technology, Medtronic, Inc., Minneapolis, MN, USA.

Physiological Research Laboratories, Medtronic, Inc., Minneapolis, MN, USA.

出版信息

Neuromodulation. 2017 Dec;20(8):793-798. doi: 10.1111/ner.12650. Epub 2017 Sep 8.

Abstract

OBJECTIVES

The spinal nerve stimulation (SNS) evoked motor threshold (T ) response across different pulse-widths (PWs) was first explored and a subset of selected stimulation PWs were further assessed with respect to bladder reflex contraction (BRC).

MATERIALS AND METHODS

In anesthetized female rats, wire electrodes were placed under each of the L6 spinal nerves to produce bilateral SNS. The relationship of T response with PW was analyzed using a monoexponential nonlinear regression. A cannula was placed into the bladder via the urethra to ensure an isovolumetric bladder. Saline infusion induced BRC.

RESULTS

The chronaxie of the T -PW curve was 0.04 ms. The stimulation charges/energies (current × PW) associated with shorter PWs of 0.02, 0.03, and 0.06 ms were significantly lower than those with longer PW (e.g., >0.15 ms). SNS (T , 10 Hz) at selected PWs from 0.03 to 0.21 ms inhibited the frequency of BRCs. There were no significantly different attenuations among tested PWs. SNS of PWs of 0.03, 0.06, and 0.09 ms decreased bladder contraction frequency from 103 ± 3%, 100 ± 4%, and 103 ± 4% of controls, to 52 ± 16% (n = 8, p = 0.02, paired t-test), 56 ± 15% (n = 11, p = 0.02) and 40 ± 19% (n = 10, p = 0.01), respectively.

CONCLUSIONS

Effective PWs to produce bladder inhibitory effects in the rat appear much shorter than 0.21 ms typically used with sacral neuromodulation in practice. Potential battery savings manifested by shorter PW while maintaining equivalent efficacy would provide more efficient therapy delivery and increased longevity of the stimulator.

摘要

目的

首次探究脊髓神经刺激(SNS)在不同脉宽(PW)下诱发的运动阈值(T)反应,并针对膀胱反射收缩(BRC)进一步评估选定刺激脉宽的子集。

材料与方法

在麻醉的雌性大鼠中,将线电极置于L6每条脊神经下方以产生双侧SNS。使用单指数非线性回归分析T反应与PW的关系。通过尿道将套管置入膀胱以确保膀胱等容。盐水灌注诱发BRC。

结果

T - PW曲线的时值为0.04毫秒。与0.02、0.03和0.06毫秒等较短脉宽相关的刺激电荷/能量(电流×脉宽)显著低于较长脉宽(如>0.15毫秒)时的刺激电荷/能量。在0.03至0.21毫秒的选定脉宽下进行SNS(T,10赫兹)可抑制BRC的频率。测试脉宽之间的衰减无显著差异。脉宽为0.03、0.06和0.09毫秒的SNS分别使膀胱收缩频率从对照组的103±3%、100±4%和103±4%降至52±16%(n = 8,p = 0.02,配对t检验)、56±15%(n = 11,p = 0.02)和40±19%(n = 10,p = 0.01)。

结论

在大鼠中产生膀胱抑制作用的有效脉宽似乎比实际用于骶神经调节的典型0.21毫秒短得多。在保持同等疗效的同时,较短脉宽可节省电池电量,从而提供更高效的治疗并延长刺激器的使用寿命。

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