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首页> 外文期刊>Neurourology and urodynamics. >Modulation of the rat micturition reflex with transcutaneous ultrasound
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Modulation of the rat micturition reflex with transcutaneous ultrasound

机译:用经皮超声调制大鼠射击反射

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INTRODUCTION Low intensity focused ultrasound has recently been identified as a novel method of stimulating targeted neurons. We hypothesized that ultrasound stimulation of the posterior tibial nerve would inhibit bladder contractions in an established rat model of rhythmic bladder contractions. METHODS Cyclical detrusor contractions were initiated by placing a transurethral catheter in female rats and infusing saline into the bladder. Transcutaneous ultrasound pulses were then delivered to the lower extremity of a rat (overlying the posterior tibial nerve) using a single element spherically focused 250?kHz transducer. Sixty‐three cycles were repeated at 2?kHz for 300?ms at peak negative pressure of 900?kPa pulsed at 0.5?Hz. RESULTS We report successful suppression of bladder contractions using ultrasound stimulation in 10 animals. The average latency between the initiation of ultrasound and suppression of bladder contractions was 3?min 23?s (±51?s), the average time of contraction suppression was 13?min and 50?s (±2?min 25?s) and the average time from the end of ultrasound to return of contractions was 9?min 37?s (±2 min and 30?s). CONCLUSION In this work, we demonstrate the ability of targeted transcutaneous ultrasound to inhibit rhythmic bladder contractions in anesthetized rats. Due to its non‐invasive nature and ease of application, we believe ultrasound mediated suppression of the micturition reflex is potentially an ideal outpatient treatment of overactive bladder and dysfunctional elimination.
机译:介绍低强度聚焦超声最近被鉴定为刺激靶向神经元的新方法。我们假设后胫骨神经的超声刺激将抑制膀胱收缩在已建立的节奏膀胱收缩中。方法通过将经尿道导管放置在雌性大鼠中并将盐水注入膀胱中来引发周期性尿道瘤收缩。然后使用单个元件球形聚焦的250 kHz换能器将经皮超声脉冲递送至大鼠的下肢(覆盖后胫骨神经)。在2℃下重复六十三个循环300Ω·MS,峰值负压为900Ω,KPA脉冲以0.5ΩHz。结果我们报告了10只动物的超声刺激成功抑制了膀胱收缩。超声波和抑制膀胱收缩的平均潜伏期为3?最小23?S(±51〜S),收缩抑制的平均时间为13?min,50?s(±2?min 25?s)从超声结束到收缩结束的平均时间为9?min 37?s(±2 min和30. s)。结论在这项工作中,我们证明了针对性超声抑制麻醉大鼠节奏膀胱收缩的能力。由于其非侵入性和易于应用,我们认为超声介导的抑制误操作反射可能是过度活性膀胱和功能障碍消除的理想外部治疗。

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