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研究输卵管解剖结构和力学特性,确定内镜检查的压力极限。

Study of fallopian tube anatomy and mechanical properties to determine pressure limits for endoscopic exploration.

机构信息

Department of Biomedical Engineering, University of Arizona, Tucson, AZ, USA.

Department of Obstetrics and Gynecology, University of Arizona, Tucson, AZ, USA.

出版信息

J Histotechnol. 2022 Mar;45(1):10-20. doi: 10.1080/01478885.2021.1972250. Epub 2021 Sep 9.

Abstract

Falloposcopy is the endoscopic examination of the fallopian tubes, which are challenging to access due to their deep body location, small opening from the uterus, and lumen filled with plicae. We and others have developed endoscopes that are inserted through the uterus guided by a hysteroscope into the tubal ostium. To better understand how to utilize these endoscopes either as standalone devices or in concert with everting delivery balloons, a preliminary study of anatomy and mechanical behavior was performed on porcine and human fallopian tubes. Segments of fallopian tubes from the isthmus, ampulla and infundibulum were inflated with saline either to bursting or held at sub-burst pressures with saline or a saline-filled balloon. Formalin fixed, paraffin embedded tissue sections stained with Masson's trichrome were examined for damage to the mucosa and muscularis. Porcine fallopian tubes tolerated saline pressurization at 15 psi for 1 minute without morphological damage. Balloon inflation to 15 psi caused no apparent damage to the muscle layer or rupture of the fallopian tube, but balloon movement within the tube can denude the mucosal epithelial layer. Human fallopian tubes averaged higher burst pressure values than porcine tubes. Under pressurization, the external tube diameter expanded by minimal to moderate amounts. Human and porcine tissues were similar in histological appearance. These studies suggest that moderate pressurization is acceptable but will not appreciably expand the fallopian tube diameter. The results also indicate that pigs are a reasonable model to study damage from falloscopy as seen in human tissue.

摘要

输卵管镜检查是对输卵管进行的内镜检查,由于其位于身体深处、与子宫相连的开口小以及管腔内充满皱褶,因此检查极具挑战性。我们和其他人已经开发出了可以通过子宫内置入的宫腔镜进入输卵管口的内窥镜。为了更好地了解如何单独使用这些内窥镜或与外翻输送球囊一起使用,我们对猪和人输卵管的解剖结构和力学行为进行了初步研究。使用盐水将输卵管的峡部、壶腹部和漏斗部的各个部分充气到破裂或在亚破裂压力下用盐水或盐水填充的球囊保持。使用Masson 三色染色对福尔马林固定、石蜡包埋的组织切片进行检查,以观察粘膜和肌层是否受损。猪的输卵管可以耐受 15psi 的盐水加压 1 分钟而不会发生形态学损伤。充气至 15psi 不会对肌层造成明显损伤或导致输卵管破裂,但球囊在管内的移动可能会使粘膜上皮层脱落。人输卵管的破裂压力平均值高于猪输卵管。在加压下,外管直径仅适度扩张。人输卵管和猪输卵管在组织学外观上相似。这些研究表明,适度的加压是可以接受的,但不会明显扩大输卵管的直径。结果还表明,猪是研究人输卵管镜检查中所见损伤的合理模型。

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