McGee Meredith J, Grill Warren M
Department of Biomedical Engineering, Duke University, Durham, North Carolina.
Neurourol Urodyn. 2014 Nov;33(8):1272-8. doi: 10.1002/nau.22474. Epub 2013 Aug 9.
Clinical application of pudendal nerve (PN) afferent stimulation to restore bladder emptying in persons with neurological disorders requires increased stimulation-evoked voiding efficiencies (VEs). We tested the hypothesis that selective co-stimulation of multiple PN branches, either bilateral dorsal nerve of the penis (DNP) stimulation or selective stimulation of both the cranial sensory nerve (CSN) and DNP, will evoke larger reflex bladder contractions and result in higher VEs than stimulation of any single afferent pathway alone.
We measured the strength of bladder contractions, threshold volumes, and VEs produced by unilateral and bilateral stimulation of the DNP as well as singular and selective unilateral co-stimulation of the DNP and CSN in cats anesthetized with α-chloralose.
Co-stimulation of afferent pathways generated significantly larger isovolumetric bladder contractions and evoked contractions at lower threshold volumes than individual stimulation. Co-stimulation of pudendal afferents also suppressed dyssynergic activity in the external anal sphincter produced by low frequency individual stimulation. VE was significantly improved with co-stimulation (172 ± 6% of distention evoked volumes) over individual stimulation (141 ± 6%).
Both types of co-stimulation evoked larger bladder contractions and increased VE over individual branch PN afferent stimulation and distention-evoked voiding. The decreased threshold volumes required for reflex bladder activation and increased VEs with co-stimulation support the use of stimulation of multiple individual stimulation-evoked reflexes to improve voiding efficiency.
将阴部神经(PN)传入刺激应用于临床,以恢复神经功能障碍患者的膀胱排空,需要提高刺激诱发的排尿效率(VE)。我们检验了以下假设:选择性共同刺激多条PN分支,即双侧阴茎背神经(DNP)刺激或同时选择性刺激颅部感觉神经(CSN)和DNP,将比单独刺激任何单一传入通路诱发更大的膀胱反射性收缩,并导致更高的VE。
我们测量了用α-氯醛糖麻醉的猫中,单侧和双侧刺激DNP以及DNP和CSN的单次和选择性单侧共同刺激所产生的膀胱收缩强度、阈值容量和VE。
与单独刺激相比,传入通路的共同刺激产生了显著更大的等容膀胱收缩,并在更低的阈值容量下诱发收缩。阴部传入神经的共同刺激还抑制了低频单独刺激引起的肛门外括约肌的协同失调活动。与单独刺激(141±6%)相比,共同刺激显著提高了VE(172±6%的扩张诱发容量)。
与单独刺激PN分支传入神经和扩张诱发排尿相比,两种类型的共同刺激都诱发了更大的膀胱收缩并提高了VE。反射性膀胱激活所需的阈值容量降低以及共同刺激时VE增加,支持使用刺激多个单独刺激诱发的反射来提高排尿效率。