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一种用于高级显微外科技术发展的隐动脉与大隐静脉吻合的新型超显微外科训练模型。

A New Supermicrosurgery Training Model of Saphenous Artery and Great Saphenous Vein Anastomosis for Development of Advanced Microsurgical Skills.

作者信息

Bas Can Emre, Cwykiel Joanna, Siemionow Maria

机构信息

Department of Orthopaedics, University of Illinois at Chicago, Chicago, Illinois.

出版信息

J Reconstr Microsurg. 2017 Jul;33(6):426-434. doi: 10.1055/s-0037-1599101. Epub 2017 Mar 10.

Abstract

This study aimed to confirm the feasibility and reliability of saphenous artery (SA) and great saphenous vein (GSV) anastomosis as a new supermicrosurgery training model and to compare the one-way-up anastomosis with the currently used end-to-end anastomosis technique.  Twenty supermicrosurgical anastomoses were performed in 10 Sprague Dawley rats. The external diameters of SA and GSV were measured using Leica LAS EZ software. The right-side SA and GSV anastomoses were performed using the standard end-to-end anastomosis technique. The left-side SA and GSV anastomoses were performed using the one-way-up technique with 11-0 monofilament-interrupted sutures. The duration of the surgery, patency rates, and technical challenges of the two anastomoses methods were compared.  The mean external diameters of SA and GSV were 0.273 ± 0.03 and 0.291 ± 0.02 mm, respectively, which qualify these vessels for supermicrosurgical training. The vessels were easily accessible and both anastomosis techniques were feasible. The one-way-up technique was proven to be faster as compared with the end-to-end anastomosis technique (artery: 34 ± 2.55 vs. 40.4 ± 2.97 minutes,  = 0.02; and vein: 37 ± 4.85 vs. 44 ± 2.35 minutes,  = 0.05, respectively). Short-term patency rates for arteries and veins were 100% for both techniques. Seven-day anastomosis patency rates for arteries and veins were 80 and 100% for the end-to-end technique and 100 and 80% for the one-way-up technique, respectively.  We confirmed that saphenous pedicle is suitable for creating a supermicrosurgery training model for practicing the ultrafine motor skills. To the best of our knowledge, this is the first report on supermicrosurgery of SA and GSV in the rat model.

摘要

本研究旨在证实隐动脉(SA)与大隐静脉(GSV)吻合作为一种新型超显微外科训练模型的可行性和可靠性,并将单向向上吻合术与目前使用的端端吻合技术进行比较。在10只Sprague Dawley大鼠身上进行了20次超显微外科吻合术。使用徕卡LAS EZ软件测量SA和GSV的外径。右侧SA和GSV吻合采用标准端端吻合技术。左侧SA和GSV吻合采用单向向上技术,使用11-0单丝间断缝合。比较两种吻合方法的手术时间、通畅率和技术挑战。SA和GSV的平均外径分别为0.273±0.03和0.291±0.02mm,这些血管适合进行超显微外科训练。这些血管易于暴露,两种吻合技术均可行。结果证明,与端端吻合技术相比,单向向上技术更快(动脉:34±2.55分钟对40.4±2.97分钟,P=0.02;静脉:37±4.85分钟对44±2.35分钟,P=0.05)。两种技术的动脉和静脉短期通畅率均为100%。端端技术的动脉和静脉7天吻合通畅率分别为80%和100%,单向向上技术分别为100%和80%。我们证实,隐蒂适合创建一个超显微外科训练模型,用于练习超精细运动技能。据我们所知,这是大鼠模型中关于SA和GSV超显微外科的首次报道。

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