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猪肺移植的技术要点。

Technical pearls for swine lung transplantation.

机构信息

The Division of Thoracic and Cardiovascular Surgery, University of Florida, Gainesville, Florida 32610-0129, USA.

出版信息

J Surg Res. 2011 Nov;171(1):e107-11. doi: 10.1016/j.jss.2011.05.067. Epub 2011 Jun 25.

Abstract

BACKGROUND

Since the advent of ex vivo lung perfusion (EVLP), there has been increased focus on swine models of lung transplantation; however, the anatomic differences between human and swine lungs and the technical challenges in performing porcine lung transplantation are not well described in the surgical literature.

METHODS

Surgically important anatomic variations are described, and the technical measures taken to address them during harvest and transplantation are introduced.

RESULTS

There are three surgically important anatomic variations in pigs. First, the right cranial lobe bronchus arises directly from the trachea, which makes right lung transplantation technically challenging if not prohibitive. Second, the left hemi-azygos vein is fully developed and courses upward through the posterior mediastinum, where it crosses the left pulmonary hilum and drains directly into the coronary sinus. During transplantation, this vein is ligated and dissected away to expose the underlying left pulmonary hilar structures. Third, the right inferior pulmonary vein crosses the midline to drain into the left atrium immediately adjacent to the left inferior pulmonary vein. During donor lung preparation, the right inferior pulmonary vein is ligated distally from the left atrium, which leaves an adequate atrial cuff around the left sided pulmonary veins for later anastomosis.

CONCLUSION

Experimental porcine lung transplantation is technically demanding. We have found recognition of the above described anatomical differences and technical nuances facilitate transplantation and provide reproducible results.

摘要

背景

自从体外肺灌注 (EVLP) 问世以来,人们越来越关注肺移植的猪模型;然而,在外科文献中,并未很好地描述人肺和猪肺之间的解剖差异以及进行猪肺移植的技术挑战。

方法

描述了手术中重要的解剖学变异,并介绍了在收获和移植过程中为解决这些问题而采取的技术措施。

结果

猪有三个手术中重要的解剖学变异。首先,右颅侧叶支气管直接从气管发出,这使得右肺移植在技术上具有挑战性,如果不是不可能的话。其次,左半奇静脉完全发育,向上穿过后纵隔,在那里穿过左肺门并直接流入冠状窦。在移植过程中,这条静脉被结扎和解剖,以暴露下面的左肺门结构。第三,右下肺静脉穿过中线,直接排入紧邻左下心房的左心房。在供肺准备过程中,右下肺静脉在距左心房远端结扎,在左肺静脉周围留下足够的心房袖口,以便以后进行吻合。

结论

实验性猪肺移植技术要求高。我们发现,认识到上述描述的解剖差异和技术细节有助于移植并提供可重复的结果。

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