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未损伤和横切麻醉大鼠腰骶部硬膜外刺激的膀胱和肠道反应。

Bladder and bowel responses to lumbosacral epidural stimulation in uninjured and transected anesthetized rats.

机构信息

Department of Anatomical Sciences and Neurobiology, University of Louisville School of Medicine, MDR, 511 S. Floyd St., Room 111, Louisville, KY, 40202, USA.

Bioengineering Department, University of Louisville J. B. Speed School of Engineering, Louisville, KY, USA.

出版信息

Sci Rep. 2021 Feb 8;11(1):3268. doi: 10.1038/s41598-021-81822-3.

Abstract

Spinal cord epidural stimulation (scES) mapping at L5-S1 was performed to identify parameters for bladder and bowel inhibition and/or contraction. Using spinally intact and chronic transected rats of both sexes in acute urethane-anesthetized terminal preparations, scES was systematically applied using a modified Specify 5-6-5 (Medtronic) electrode during bladder filling/emptying cycles while recording bladder and colorectal pressures and external urethral and anal sphincter electromyography activity. The results indicate frequency-dependent effects on void volume, micturition, bowel peristalsis, and sphincter activity just above visualized movement threshold intensities that differed depending upon neurological intactness, with some sex-dependent differences. Thereafter, a custom-designed miniature 15-electrode array designed for greater selectivity was tested and exhibited the same frequency-dependent urinary effects over a much smaller surface area without any concurrent movements. Thus, select activation of autonomic nervous system circuitries with scES is a promising neuromodulation approach for expedient translation to individuals with SCI and potentially other neurologic disorders.

摘要

在 L5-S1 进行脊髓硬膜外刺激 (scES) 映射,以确定用于膀胱和肠道抑制和/或收缩的参数。使用在急性乌拉坦麻醉的末端制剂中具有完整和慢性横切的雄性和雌性脊髓完整和慢性横切大鼠,在记录膀胱和结直肠压力以及尿道外括约肌和肛门括约肌肌电图活动的同时,使用改良的 Specify 5-6-5(美敦力)电极系统地施加 scES,在膀胱充盈/排空循环期间。结果表明,在可见运动阈值强度以上,频率依赖性对排空量、排尿、肠蠕动和括约肌活动有影响,这取决于神经完整性,存在一些性别依赖性差异。此后,测试了一种专为更大选择性设计的定制微型 15 电极阵列,该阵列在没有任何伴随运动的情况下,在更小的表面积上表现出相同的频率依赖性尿流效应。因此,scES 选择性激活自主神经系统回路是一种很有前途的神经调节方法,可迅速应用于 SCI 患者和潜在的其他神经疾病患者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dba/7870824/4f659ad311cf/41598_2021_81822_Fig1_HTML.jpg

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