大鼠气管的地形解剖特征和进行手术干预的可能性。

I. Kurganskiy, E. Inozemtsev, S. Lepekhova, O. A. Goldberg, K. Apartsin, Evgeniy Georgievich Grigor'yev
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引用次数: 0

摘要

相关性:尽管手术技术有所提高,但气管手术术后并发症的发生率仍然很高。改善治疗效果的方法之一是开发和研究新的外科干预措施。目的:本研究致力于研究大鼠气管结构的地形和解剖特征。材料和方法:本研究采用Wistar系大鼠进行,并经当地伦理委员会批准。采用描述性解剖学和形态学方法。结果:所获得的结果揭示了大鼠气管的地形解剖结构特征:环形透明软骨的存在;形成X、Y、W型骨融合的成熟软骨环;在气管的粘膜下层有多簇与淋巴组织相关的粘膜;明显的静脉样静脉丛;气管外膜发达而致密的气管外膜在大鼠中,上皮从多层扁平的非冠状细胞转变为单链的盗窃-synchoid发生在声带下方。从组织学结构上看,大鼠气管壁接近人气管,有外膜、软骨框架、粘膜下骨和粘膜。结论:Wistar大鼠气管结构的这些特征使其可以用于气管病理模型和手术干预。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Features of the topographic anatomy of the rat trachea and the possibility of performing surgical interventions.
Relevance: despite the improvement of surgical techniques, the number of postoperative complications in surgical interventions on the trachea remains high. One of the ways to improve the results of treatment is the development and study of new surgical interventions. Aim: The work is devoted to the study of the topographic and anatomical features of the structure of the rat trachea Materials and methods: The study was performed using rats of the Wistar line and was approved by a local ethical committee. Methods of descriptive anatomy and morphology were used. Results: the obtained results made it possible to reveal features of the topographic-anatomical structure of the rat trachea: the presence of hyaline cartilages in the form of a ring; grown-up cartilaginous rings forming the fusion of the X, Y, W forms; in the submucosal layer of the trachea there are multiple clusters of mucoses associated with lymphatic tissue; pronounced venous traheoidesis plexus; developed, dense adventitia of the trachea. In rats, the epithelial transition from a multilayer flat non-coronary to a single-stranded thief-synchoid occurs below the vocal cords. According to the histological structure, the rat trachea wall is close to the human trachea, has adventitia, a cartilaginous framework, a submucosal osseous and a mucous membrane. Conclusion: these features of the structure of the trachea of ​​Wistar rats allow them to be used to model pathology of the trachea and to develop surgical interventions.
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