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首页> 外文期刊>Microsurgery. >Opened end-to-side technique for end-to-side anastomosis and analyses by an elastic true-to-scale silicone rubber model
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Opened end-to-side technique for end-to-side anastomosis and analyses by an elastic true-to-scale silicone rubber model

机译:开放式端对端吻合技术,并通过弹性真实比例硅橡胶模型进行分析

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摘要

The end-to-side anastomosis is frequently used in microvascular free flap transfer, but detailed rheological analyses are not available. The purpose of this study was to introduce a new modified end-to-side (Opened End-to-Side, OES-) technique and compare the resulting flow pattern to a conventional technique. The new technique was based on a bi-triangulated preparation of the branching-vessel end, resulting in a "fish-mouthed" opening. We performed two different types of end-to-side anastomoses in forty pig coronary arteries and produced one elastic, true-to-scale silicone rubber model of each anastomosis. Then we installed the transparent models in a circulatory experimental setup that simulated the physiological human blood flow. Flow velocity was measured with the one-component Laser-Doppler-Anemometer system, recording flow axial and perpendicular to the model at four defined cross-sections for seven heart cycles in each model. Maximal and minimal axial velocities ranged in the conventional model between 0.269 and -0.122 m/s and in the experimental model between 0.313 and -0.153 m/s. A less disturbed flow velocity distribution was seen in the experimental model distal to the anastomosis. The OES-technique showed superior flow profiles distal to the anastomosis with minor tendencies of flow separation and represents a new alternative for end-to-side anastomosis.
机译:端侧吻合经常用于微血管游离皮瓣转移,但尚无详细的流变学分析。这项研究的目的是介绍一种新的端到端改进(开放式端到端,OES-)技术,并将所得的流型与常规技术进行比较。新技术基于分支容器末端的双三角准备,从而导致“鱼嘴形”开口。我们在40头猪的冠状动脉中进行了两种不同类型的端到端吻合术,并为每种吻合术制作了一个弹性,真实比例的硅橡胶模型。然后,我们在循环实验装置中安装了透明模型,以模拟人体的生理血流。使用单组分激光多普勒风速计系统测量流速,在每个模型中记录七个心动周期的四个定义横截面,记录轴向和垂直于模型的流速。在常规模型中,最大和最小轴向速度在0.269和-0.122 m / s之间,在实验模型中,最大和最小轴向速度在0.313和-0.153 m / s之间。在吻合远端的实验模型中看到的扰动流速分布较小。 OES技术在吻合远端显示出优越的流动特性,并具有较小的流分离趋势,是端到端吻合的新选择。

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