首页> 外文期刊>Autonomic neuroscience: basic & clinical >Transecting the hypogastric nerve to uncover the bladder-inhibitory pathways involved with saphenous nerve stimulation in anesthetized rats
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Transecting the hypogastric nerve to uncover the bladder-inhibitory pathways involved with saphenous nerve stimulation in anesthetized rats

机译:通过在麻醉大鼠中揭开膀胱神经以发现膀胱神经刺激的膀胱抑制途径

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Saphenous (SAFN) nerve stimulation was recently shown in anesthetized rats to elicit bladder-inhibitory responses in a frequency-dependent manner; however, the mechanism of action is unknown. The goal of this study was to investigate the potential role of the hypogastric nerve (HGN) in this inhibitory pathway by examining stimulation-evoked changes in bladder function under four different experimental conditions: (1) HGN intact, saline infusion (HGNi-s), (2) HGN transected, saline infusion (HGNt-s), (3) HGN intact, acetic acid (AA) infusion (HGNi-a), and (4) HGN transected, AA infusion (HGNt-a). Experiments were conducted in 33 urethane-anesthetized female rats, where continuous bladder infusion was provided through a suprapubic catheter. The experimental protocol involved two, 40-min stimulation trials in which electrical pulses were applied to the SAFN at a set frequency (10 Hz) and two different amplitudes (50 mu A and 100 mu A). In all experimental groups, SAFN stimulation resulted in complete suppression of bladder activity with an incidence rate of 25% to 50%. However, significant changes in the measured urodynamic changes (e.g., basal pressure, contraction amplitude, and inter-contraction interval) were found only in the HGNt-a animals. Our findings suggest that the HGN does not mediate the inhibitory effects of SAFN stimulation and that bladder inhibition is achieved through a different mechanism of action.
机译:最近在麻醉大鼠中显示隐含的(SAFN)神经刺激,以依赖依赖性方式引发膀胱抑制响应;但是,行动机制未知。本研究的目标是通过检查四种不同实验条件下的膀胱功能的刺激诱发的变化来研究肿瘤神经(HGN)在该抑制途径中的潜在作用:(1)HGN完整,盐水输注(HGNI-S) ,(2)HGN培生,盐水输注(HGNT-S),(3)HGN完整,乙酸(AA)输注(HGNI-A),和(4)HGN培养,AA输注(HGNT-A)。在33种氨基甲酸酯麻醉的雌性大鼠中进行实验,其中通过酶导管提供连续膀胱输注。实验方案涉及两个,40分钟的刺激试验,其中将电脉冲以设定的频率(10Hz)和两个不同的幅度(50μA和100​​μA)施加到SAFN上。在所有实验组中,SAFN刺激导致完全抑制膀胱活性,发病率为25%至50%。然而,仅在HGNT-A动物中发现了测量尿动力学变化(例如,基础压力,收缩幅度和收缩间隔)的显着变化。我们的研究结果表明,HGN不会介导SAFN刺激的抑制作用,并且通过不同的作用机制来实现膀胱抑制。

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