Neuromodulation Research, Medtronic Incorporated, 7000 Central Ave. NE, Minneapolis, MN 55432, USA.
Am J Physiol Renal Physiol. 2012 Oct 15;303(8):F1196-206. doi: 10.1152/ajprenal.00343.2012. Epub 2012 Aug 8.
Spinal nerve (SN) stimulation inhibits the bladder rhythmic contraction (BRC) in anesthetized rats. This preparation was used to study the effects of electrical stimulation of the tibial nerve (TN) and the dorsal nerve of the clitoris (DNC) on BRC. Stimulation of the TN and DNC for 10 min produced a frequency- and intensity-dependent attenuation of the frequency of bladder contractions. As observed with the SN, 10-Hz stimulation of either TN or DNC produced the greatest degree of inhibition, with lower or higher frequencies being either less efficacious or inactive. In contrast to the prolonged inhibition produced by SN stimulation, both TN and DNC stimulation produced "short" lasting inhibition of bladder contractions and the maximal inhibition occurred during stimulation. TN stimulation was effective over only a narrow range of current intensities [3-4 × motor threshold current for inducing a toe twitch (T(mot))] and only at a frequency of 10 Hz. Stimulation of TN at 10 Hz, 3 × T(mot) inhibited BRC to 23% of control. Ten-hertz DNC stimulation at 2 × T(EAS), the threshold current for evoking a reflex anal sphincter contraction, decreased the frequency of contractions to 4% of control. Although compared with the respective threshold current the BRC response was more sensitive to DNC compared with TN stimulation, the absolute current required to reduce BRC using DNC stimulation appeared to be higher. Comparing the effects of TN and DNC stimulation to our previous results with SN stimulation, SN stimulation produces the largest duration and efficacy of bladder inhibition.
脊神经(SN)刺激可抑制麻醉大鼠的膀胱节律性收缩(BRC)。本研究采用该方法观察电刺激胫神经(TN)和阴蒂背神经(DNC)对 BRC 的影响。TN 和 DNC 刺激 10min 可产生频率和强度依赖性的膀胱收缩频率抑制。与 SN 刺激相似,10Hz 的 TN 或 DNC 刺激可产生最大程度的抑制,较低或较高频率的刺激要么效果较差,要么无效。与 SN 刺激产生的长时间抑制不同,TN 和 DNC 刺激均可产生“短”时间的膀胱收缩抑制,最大抑制作用发生在刺激过程中。TN 刺激仅在较窄的电流强度范围内有效[引起脚趾抽搐(T(mot))的 3-4×运动阈电流],且仅在 10Hz 频率下有效。10Hz、3×T(mot)的 TN 刺激可将 BRC 抑制至对照的 23%。2×EAS(诱发反射性肛门括约肌收缩的阈电流)的 10Hz DNC 刺激可将收缩频率降低至对照的 4%。尽管与各自的阈电流相比,DNC 刺激对 BRC 的反应更为敏感,但使用 DNC 刺激抑制 BRC 所需的绝对电流似乎更高。与 TN 和 DNC 刺激的效果相比,我们之前使用 SN 刺激的结果表明,SN 刺激产生的膀胱抑制持续时间最长,效果最好。