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首页> 外文期刊>American Journal of Physiology >Prolonged nonobstructive urinary retention induced by tibial nerve stimulation in cats
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Prolonged nonobstructive urinary retention induced by tibial nerve stimulation in cats

机译:胫骨神经刺激诱导的延长非机构尿潴留

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摘要

Nonobstructive urinary retention (NOUR) is a medical condition without an effective drug treatment, but few basic science studies have focused on this condition. In α-chloralose-anesthetized cats, the bladder was cannulated via the dome and infused with saline to induce voiding that could occur without urethral outlet obstruction. A nerve cuff electrode was implanted for tibial nerve stimulation (TNS). The threshold (T) intensity for TNS to induce toe twitch was determined initially. Repeated (6 times) application of 30-min TNS (5 Hz, 0.2 ms, 4-6T) significantly (P < 0.05) increased bladder capacity to 180% of control and reduced the duration of the micturition contraction to 30% of control with a small decrease in contraction amplitude (80% of control), which resulted in urinary retention with a low-voiding efficiency of 30% and a large amount of residual volume equivalent to 130% of control bladder capacity. This NOUR condition persisted for >2 h after the end of repeated TNS. However, lower frequency TNS (1 Hz, 0.2 ms, 4T) applied during voiding partially reversed the NOUR by significantly (P < 0.05) increasing voiding efficiency to 60% and reducing residual volume to 70% of control bladder capacity without changing bladder capacity. These results revealed that tibial nerve afferent input can activate either an excitatory or an inhibitory central nervous system mechanism depending on afferent firing frequencies (1 vs. 5 Hz). This study established the first NOUR animal model that will be useful for basic science research aimed at developing new treatments for NOUR.
机译:非结构性尿潴留(Nour)是一种没有有效药物治疗的医学条件,但很少有基础科学研究的重点是这种情况。在α-氯蔗糖麻醉的猫中,膀胱通过圆顶装入并注入盐水以诱导可能在没有尿道出口梗阻的情况下发生的空隙。植入神经袖带电极用于胫骨神经刺激(TNS)。最初确定用于诱导脚趾抽搐的TNS的阈值(t)强度。重复(6次)施加30分钟的TNS(5Hz,0.2ms,4-6T)显着(P <0.05)增加膀胱容量为180%的对照,并降低了一次测量收缩的持续时间达30%的控制收缩幅度的小降低(80%的对照),导致尿潴留的低空隙效率为30%和大量的残余体积,相当于对照膀胱容量的130%。在重复的TNS结束后持续存在> 2小时。然而,在排尿期间施加的较低频率TNS(1Hz,0.2ms,4t)部分地将Nour显着(P <0.05)增加到60%,并将残留体积降低到70%的控制膀胱容量而不改变膀胱容量。这些结果表明,胫骨神经传入输入可以取决于传入的烧制频率(1与5Hz)激活兴奋剂或抑制中枢神经系统机制。本研究建立了第一个Nour动物模型,可用于基本的科学研究,旨在开发Nour的新疗法。

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