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主支血管支架置入术对内皮剪切应力的影响:侧支血管直径、角度和病变的作用。

Impact of main branch stenting on endothelial shear stress: role of side branch diameter, angle and lesion.

机构信息

Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN, USA.

出版信息

J R Soc Interface. 2012 Jun 7;9(71):1187-93. doi: 10.1098/rsif.2011.0675. Epub 2011 Nov 23.

Abstract

In-stent restenosis and stent thrombosis remain clinically significant problems for bifurcation lesions. The objective of this study is to determine the haemodynamic effect of the side branch (SB) on main branch (MB) stenting. We hypothesize that the presence of a SB has a negative effect on MB wall shear stress (WSS), wall shear stress gradient (WSSG) and oscillatory shear index (OSI); and that the bifurcation diameter ratio (SB diameter/MB diameter) and angle are important contributors. We further hypothesized that stent undersizing exaggerates the negative effects on WSS, WSSG and OSI. To test these hypotheses, we developed computational models of stents and non-Newtonian blood. The models were then interfaced, meshed and solved in a validated finite-element package. Stents at bifurcation models were created with 30° and 70° bifurcation angles and bifurcations with diameter ratios of SB/MB = 1/2 and 3/4. It was found that stents placed in the MB at a bifurcation lowered WSS dramatically, while elevating WSSG and OSI. Undersizing the stent exaggerated the decrease in WSS, increase in WSSG and OSI, and disturbed the flow between the struts and the vessel wall. Stenting the MB at bifurcations with larger SB/MB ratios or smaller SB angles (30°) resulted in lower WSS, higher WSSG and OSI. Stenosis at the SB lowered WSS and elevated WSSG and OSI. These findings highlight the effects of major biomechanical factors in MB stenting on endothelial WSS, WSSG, OSI and suggests potential mechanisms for the potentially higher adverse clinical events associated with bifurcation stenting.

摘要

在分叉病变中,支架内再狭窄和支架内血栓仍然是临床重要问题。本研究旨在确定侧支(SB)对主支(MB)支架的血流动力学影响。我们假设 SB 的存在对 MB 壁面切应力(WSS)、壁面切应力梯度(WSSG)和振荡剪切指数(OSI)有负面影响;并且分叉直径比(SB 直径/MB 直径)和角度是重要的影响因素。我们进一步假设支架过小会夸大对 WSS、WSSG 和 OSI 的负面影响。为了验证这些假设,我们开发了支架和非牛顿血液的计算模型。然后,这些模型在经过验证的有限元包中进行接口、网格划分和求解。在 30°和 70°分叉角度的分叉模型中创建了支架,分叉的直径比为 SB/MB = 1/2 和 3/4。结果发现,在分叉处放置 MB 支架会显著降低 WSS,同时升高 WSSG 和 OSI。支架过小会夸大 WSS 的降低、WSSG 和 OSI 的增加,并扰乱支架和血管壁之间的流动。在具有较大 SB/MB 比或较小 SB 角度(30°)的分叉处对 MB 进行支架置入会导致更低的 WSS、更高的 WSSG 和 OSI。SB 处的狭窄会降低 WSS 并升高 WSSG 和 OSI。这些发现强调了 MB 支架置入时主要生物力学因素对内皮 WSS、WSSG、OSI 的影响,并提示了与分叉支架置入相关的潜在更高不良临床事件的潜在机制。

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Impact of bifurcation dual stenting on endothelial shear stress.分叉双支架置入术对内皮剪切应力的影响。
J Appl Physiol (1985). 2015 Sep 15;119(6):627-32. doi: 10.1152/japplphysiol.00082.2015. Epub 2015 Jul 16.

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Impact of bifurcation dual stenting on endothelial shear stress.分叉双支架置入术对内皮剪切应力的影响。
J Appl Physiol (1985). 2015 Sep 15;119(6):627-32. doi: 10.1152/japplphysiol.00082.2015. Epub 2015 Jul 16.

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