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阐明犬类雌性杂种犬的膀胱、尿道外括约肌和阴蒂的神经支配:一项神经元示踪研究。

Clarification of the Innervation of the Bladder, External Urethral Sphincter and Clitoris: A Neuronal Tracing Study in Female Mongrel Hound Dogs.

机构信息

Department of Anatomy and Cell Biology, Lewis Katz School of Medicine at Temple University, Philadelphia, Pennsylvania, 19140.

Department of Electrical and Computer Engineering, College of Engineering, Temple University, Philadelphia, Pennsylvania, 19140.

出版信息

Anat Rec (Hoboken). 2018 Aug;301(8):1426-1441. doi: 10.1002/ar.23808. Epub 2018 Mar 30.

Abstract

Many studies examining the innervation of genitourinary structures focus on either afferent or efferent inputs, or on only one structure of the system. We aimed to clarify innervation of the bladder, external urethral sphincter (EUS) and clitoris. Retrograde dyes were injected into each end organ in female dogs. Spinal cord, mid-bladder, and spinal, caudal mesenteric, sympathetic trunk and pelvic plexus ganglia were examined for retrograde dye-labeled neurons. Neurons retrogradely labeled from the bladder were found primarily in L7-S2 spinal ganglia, spinal cord lateral zona intermedia at S1-S3 levels, caudal mesenteric ganglia, T11-L2 and L6-S2 sympathetic trunk ganglia, and pelvic plexus ganglia. The mid-bladder wall contained many intramural ganglia neurons labeled anterogradely from the pelvic nerve, and intramural ganglia retrogradely labeled from dye labeling sites surrounding ureteral orifices. Neurons retrogradely labeled from the clitoris were found only in L7 and S1 spinal ganglia, L7-S3 spinal cord lateral zona intermedia, and S1 sympathetic trunk ganglia, and caudal mesenteric ganglia. Neurons retrogradely labeled from the EUS were found in primarily at S1 and S2 spinal ganglia, spinal cord lamina IX at S1-S3, caudal mesenteric ganglia, and S1-S2 sympathetic trunk ganglia. Thus, direct inputs from the spinal cord to each end organ were identified, as well as multisynaptic circuits involving several ganglia, including intramural ganglia in the bladder wall. Knowledge of this complex circuitry of afferent and efferent inputs to genitourinary structures is necessary to understand and treat genitourinary dysfunction. Anat Rec, 2018. © 2018 Wiley Periodicals, Inc.

摘要

许多研究都集中在生殖泌尿系统结构的传入或传出输入上,或者只研究该系统的一个结构。我们旨在阐明膀胱、尿道外括约肌(EUS)和阴蒂的神经支配。在雌性犬的每个终末器官中注射逆行染料。检查脊髓、中膀胱和脊髓、尾肠系膜、交感干和盆丛神经节中逆行染料标记的神经元。从膀胱逆行标记的神经元主要位于 L7-S2 脊神经节、S1-S3 水平脊髓侧中间区、尾肠系膜神经节、T11-L2 和 L6-S2 交感干神经节以及盆丛神经节。中膀胱壁含有许多从盆神经顺行标记的壁内神经节神经元,以及从围绕输尿管口的染色部位逆行标记的壁内神经节神经元。从阴蒂逆行标记的神经元仅在 L7 和 S1 脊神经节、L7-S3 脊髓侧中间区和 S1 交感干神经节以及尾肠系膜神经节中发现。从 EUS 逆行标记的神经元主要位于 S1 和 S2 脊神经节、S1-S3 的脊髓 IX 层、尾肠系膜神经节和 S1-S2 交感干神经节。因此,鉴定了从脊髓到每个终末器官的直接输入,以及涉及几个神经节的多突触回路,包括膀胱壁内的神经节。了解生殖泌尿系统结构传入和传出输入的这种复杂电路对于理解和治疗生殖泌尿系统功能障碍是必要的。解剖记录,2018 年。© 2018 威利父子公司

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