McGee Meredith J, Swan Brandon D, Danziger Zachary C, Amundsen Cindy L, Grill Warren M
Department of Biomedical Engineering, Duke University, Durham, NC.
Department of Obstetrics and Gynecology, Division of Urogynecology and Reconstructive Pelvic Surgery, Duke University Medical Center, Durham, NC.
Urology. 2017 Nov;109:210-215. doi: 10.1016/j.urology.2017.07.041. Epub 2017 Aug 8.
To measure the urodynamic effects of electrical co-stimulation of 2 individual sites in the proximal and distal urethra in persons with spinal cord injury (SCI). This work was motivated by preclinical findings that selective co-stimulation of the cranial urethral sensory nerve and the dorsal genital nerve, which innervate the proximal and distal portions of the urethra, respectively, increased reflex bladder activation and voiding efficiency.
Electrical co-stimulation of urethral afferents was conducted in persons with chronic SCI during urodynamics. The effects of different frequencies of intraurethral stimulation at multiple urethral locations on bladder pressure and pelvic floor electromyographic activity were measured.
Electromyographic activity indicated that multiple reflex pathways were recruited through stimulation that contributed to bladder activation. The size of reflex bladder contractions evoked by stimulation was dependent on stimulation location or reflex activated and stimulation frequency.
Pudendal nerve afferents are a promising target to restore lost bladder control, as stimulation with different frequencies may be used to treat urinary incontinence and increase continent volumes or to generate stimulation-evoked bladder contractions for on-demand voiding. This work identified that co-stimulation of multiple afferent reflex pathways can enhance activation of spinal circuits and may enable improved bladder emptying in SCI when stimulation of a single pathway is not sufficient.
测量脊髓损伤(SCI)患者尿道近端和远端两个独立部位电联合刺激的尿动力学效应。这项工作的动机源于临床前研究结果,即分别支配尿道近端和远端的尿道感觉神经和生殖器背神经的选择性联合刺激可增加反射性膀胱激活和排尿效率。
在尿动力学检查期间,对慢性SCI患者进行尿道传入神经电联合刺激。测量了多个尿道位置不同频率的尿道内刺激对膀胱压力和盆底肌电图活动的影响。
肌电图活动表明,通过刺激募集了多条反射通路,这些通路有助于膀胱激活。刺激诱发的反射性膀胱收缩大小取决于刺激位置或激活的反射以及刺激频率。
阴部神经传入神经是恢复丧失的膀胱控制的一个有前景的靶点,因为不同频率的刺激可用于治疗尿失禁和增加膀胱容量,或产生刺激诱发的膀胱收缩以按需排尿。这项研究发现,当单一通路刺激不足时,多条传入反射通路的联合刺激可增强脊髓回路的激活,并可能改善SCI患者的膀胱排空。