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从右冠状动脉系统到左冠状动脉系统序贯移植的血流动力学分析。

Hemodynamic analysis of sequential graft from right coronary system to left coronary system.

作者信息

Wang Wenxin, Mao Boyan, Wang Haoran, Geng Xueying, Zhao Xi, Zhang Huixia, Xie Jinsheng, Zhao Zhou, Lian Bo, Liu Youjun

机构信息

College of Life Science and Bio-engineering, Beijing University of Technology, No.100 Pingleyuan, Chaoyang District, 100124, Beijing, China.

Beijing Anzhen Hospital Affiliated to Capital Medical University, Beijing, China.

出版信息

Biomed Eng Online. 2016 Dec 28;15(Suppl 2):132. doi: 10.1186/s12938-016-0259-x.

Abstract

BACKGROUND

Sequential and single grafting are two surgical procedures of coronary artery bypass grafting. However, it remains unclear if the sequential graft can be used between the right and left coronary artery system. The purpose of this paper is to clarify the possibility of right coronary artery system anastomosis to left coronary system.

METHODS

A patient-specific 3D model was first reconstructed based on coronary computed tomography angiography (CCTA) images. Two different grafts, the normal multi-graft (Model 1) and the novel multi-graft (Model 2), were then implemented on this patient-specific model using virtual surgery techniques. In Model 1, the single graft was anastomosed to right coronary artery (RCA) and the sequential graft was adopted to anastomose left anterior descending (LAD) and left circumflex artery (LCX). While in Model 2, the single graft was anastomosed to LAD and the sequential graft was adopted to anastomose RCA and LCX. A zero-dimensional/three-dimensional (0D/3D) coupling method was used to realize the multi-scale simulation of both the pre-operative and two post-operative models.

RESULTS

Flow rates in the coronary artery and grafts were obtained. The hemodynamic parameters were also showed, including wall shear stress (WSS) and oscillatory shear index (OSI). The area of low WSS and OSI in Model 1 was much less than that in Model 2.

CONCLUSIONS

Model 1 shows optimistic hemodynamic modifications which may enhance the long-term patency of grafts. The anterior segments of sequential graft have better long-term patency than the posterior segments. With rational spatial position of the heart vessels, the last anastomosis of sequential graft should be connected to the main branch.

摘要

背景

序贯移植和单支移植是冠状动脉旁路移植术的两种手术方式。然而,序贯移植能否用于右冠状动脉系统和左冠状动脉系统之间仍不明确。本文旨在阐明右冠状动脉系统与左冠状动脉系统吻合的可能性。

方法

首先基于冠状动脉计算机断层扫描血管造影(CCTA)图像重建患者特异性三维模型。然后使用虚拟手术技术在该患者特异性模型上实施两种不同的移植方式,即正常多支移植(模型1)和新型多支移植(模型2)。在模型1中,单支移植与右冠状动脉(RCA)吻合,序贯移植用于吻合左前降支(LAD)和左旋支动脉(LCX)。而在模型2中,单支移植与LAD吻合,序贯移植用于吻合RCA和LCX。采用零维/三维(0D/3D)耦合方法对术前模型和两个术后模型进行多尺度模拟。

结果

获得了冠状动脉和移植血管中的血流速度。还展示了血流动力学参数,包括壁面切应力(WSS)和振荡切应力指数(OSI)。模型1中低WSS和OSI的区域远小于模型2。

结论

模型1显示出乐观的血流动力学改变,这可能提高移植血管的长期通畅率。序贯移植的前段比后段具有更好的长期通畅率。在心脏血管具有合理空间位置的情况下,序贯移植的最后一个吻合口应连接到主支。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebe7/5259902/b42bfe18a5b4/12938_2016_259_Fig1_HTML.jpg

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