Suppr超能文献

人类膀胱三角区的三维神经图谱。

A three dimensional nerve map of human bladder trigone.

作者信息

Purves J Todd, Spruill Laura, Rovner Eric, Borisko Elyse, McCants Alden, Mugo Elizabeth, Wingard Ainsley, Trusk Thomas C, Bacro Thierry, Hughes Francis M

机构信息

Division of Urology, Department of Surgery, Duke University Medical Center, Durham, North Carolina.

Department of Urology, Medical University of South Carolina, Charleston, South Carolina.

出版信息

Neurourol Urodyn. 2017 Apr;36(4):1015-1019. doi: 10.1002/nau.23049. Epub 2016 Jun 6.

Abstract

AIM

Central efferent and afferent neural pathways to and from the human urinary bladder are well-characterized, but the location and arborization of these nerves as they traverse the serosa, muscularis, and urothelial layers are not clearly defined. The purpose of this study was to create a three dimensional map of the innervation of the human bladder trigone from the extrinsic perivesical adventitial nerve trunks to the urothelium.

METHODS

A male and a female human bladder were harvested from fresh frozen cadavers and fixed in formalin. The bladder neck and trigone region were serially sectioned (5 μm) and every 20th slide was stained (S100), scanned and aligned to create 3D maps.

RESULTS

Nerve penetration into the detrusor muscle occurs with the highest frequency at the bladder neck and interureteric ridge. Nerves traveling parallel to the bladder lumen do so in the adventitia, beyond the outer border of detrusor. In females, the depth of these nerve bands is uniform at 0.7-1.7 cm below the luminal surface, the outer limits of which include the anterior vaginal wall. In the male, depth is more variable owing to detrusor hypertrophy with the minimum depth of nerves approximately 0.5 cm near the interureteric ridge and over 1 cm near the bladder neck.

CONCLUSIONS

Myelinated neural pathways traversing in the human bladder in the region of the trigone have a discreet regional density. This 3D map of trigonal innervation may provide guidance to more precisely direct therapies for urinary incontinence or pelvic pain. Neurourol. Urodynam. 36:1015-1019, 2017. © 2016 Wiley Periodicals, Inc.

摘要

目的

人类膀胱的中枢传出和传入神经通路已得到充分表征,但这些神经在穿过浆膜、肌层和尿路上皮层时的位置和分支情况尚未明确界定。本研究的目的是创建从膀胱周围外膜神经干到尿路上皮的人类膀胱三角区神经支配的三维图谱。

方法

从新鲜冷冻尸体中获取一男一女的人类膀胱,并固定在福尔马林中。将膀胱颈和三角区进行连续切片(5μm),每隔20张切片进行染色(S100)、扫描并对齐以创建三维图谱。

结果

神经穿透逼尿肌的频率在膀胱颈和输尿管间嵴处最高。与膀胱腔平行走行的神经位于外膜,在逼尿肌外边界之外。在女性中,这些神经带的深度在腔面以下0.7 - 1.7厘米处较为均匀,其外边界包括阴道前壁。在男性中,由于逼尿肌肥大,深度变化更大,神经的最小深度在输尿管间嵴附近约为0.5厘米,在膀胱颈附近超过1厘米。

结论

在人类膀胱三角区穿行的有髓神经通路具有离散的区域密度。这种三角区神经支配的三维图谱可为更精确地指导治疗尿失禁或盆腔疼痛提供指引。《神经泌尿学与尿动力学》36:1015 - 1019, 2017。© 2016威利期刊公司。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验