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血液对动脉粥样硬化斑块的机械作用:狭窄形状和形态的影响。

Mechanical action of the blood onto atheromatous plaques: influence of the stenosis shape and morphology.

作者信息

Belzacq Tristan, Avril Stéphane, Leriche Emmanuel, Delache Alexandre

机构信息

a Ecole Nationale Supérieure des Mines, Centre Ingénierie et Santé , CNRS UMR 5146, 158 Cours Fauriel, 42023 Saint-Etienne Cedex 2 , France.

出版信息

Comput Methods Biomech Biomed Engin. 2014 Apr;17(5):527-38. doi: 10.1080/10255842.2012.697898. Epub 2012 Jul 4.

Abstract

The vulnerability of atheromatous plaques in the carotid artery may be related to several factors, the most important being the degree of severity of the endoluminal stenosis and the thickness of the fibrous cap. It has recently been shown that the plaque length can also affect the mechanical response significantly. However, in their study on the effect of the plaque length, the authors did not consider the variations of the plaque morphology and the shape irregularities that may exist independently of the plaque length. These aspects are developed in this paper. The mechanical interactions between the blood flow and an atheromatous plaque are studied through a numerical model considering fluid-structure interaction. The simulation is achieved using the arbitrary Lagrangian-Eulerian scheme in the COMSOL TM commercial finite element package. The stenosis severity and the plaque length are, respectively, set to 45% and 15 mm. Different shapes of the stenosis are modelled, considering irregularities made of several bumps over the plaque. The resulting flow patterns, wall shear stresses, plaque deformations and stresses in the fibrous cap reveal that the effects of the blood flow are amplified if the slope upstream stenosis is steep or if the plaque morphology is irregular with bumps. More specifically, the maximum stress in the fibrous cap is 50% larger for a steep slope than for a gentle slope. These results offer new perspectives for considering the shape of plaques in the evaluation of the vulnerability.

摘要

颈动脉粥样斑块的易损性可能与多种因素有关,其中最重要的是管腔内狭窄的严重程度和纤维帽的厚度。最近有研究表明,斑块长度也会对力学响应产生显著影响。然而,在他们关于斑块长度影响的研究中,作者没有考虑斑块形态的变化以及可能独立于斑块长度而存在的形状不规则性。本文将阐述这些方面。通过考虑流固相互作用的数值模型,研究了血流与粥样斑块之间的力学相互作用。使用COMSOL TM商业有限元软件包中的任意拉格朗日 - 欧拉格式进行模拟。狭窄严重程度和斑块长度分别设定为45%和15毫米。考虑到斑块上由多个凸起构成的不规则性,对不同形状的狭窄进行建模。由此产生的流动模式、壁面剪应力、斑块变形以及纤维帽中的应力表明,如果上游狭窄的坡度较陡或者斑块形态因凸起而不规则,血流的影响会被放大。更具体地说,陡坡时纤维帽中的最大应力比缓坡时大50%。这些结果为在评估易损性时考虑斑块形状提供了新的视角。

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