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残余应力/应变对易损冠状动脉斑块生物力学稳定性的影响:对评估斑块破裂风险的潜在影响。

Influence of residual stress/strain on the biomechanical stability of vulnerable coronary plaques: potential impact for evaluating the risk of plaque rupture.

作者信息

Ohayon Jacques, Dubreuil Olivier, Tracqui Philippe, Le Floc'h Simon, Rioufol Gilles, Chalabreysse Lara, Thivolet Françoise, Pettigrew Roderic I, Finet Gérard

机构信息

National Heart, Blood and Lung Institute, NIH, Pettigrew's Laboratory, Bldg. 10, 10 Center Drive, Bethesda, MD 20892, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2007 Sep;293(3):H1987-96. doi: 10.1152/ajpheart.00018.2007. Epub 2007 Jun 29.

Abstract

In a vulnerable plaque (VP), rupture often occurs at a site of high stress within the cap. It is also known that vessels do not become free of stress when all external loads are removed. Previous studies have shown that such residual stress/strain (RS/S) tends to make the stress distribution more uniform throughout the media of a normal artery. However, the influence of RS/S on the wall stress distribution in pathological coronaries remains unclear. The aim of this study was to investigate the effects of RS/S on the biomechanical stability of VPs. RS/S patterns were studied ex vivo in six human vulnerable coronary plaque samples. Because the existence of RS/S can only be assessed by releasing it, the opening angle technique was the experimental approach used to study the geometrical opening configurations of the diseased arteries, producing an arterial wall in a near-zero stress state. Reciprocally, these opening geometries were used in finite element simulations to reconstruct the RS/S distributions in closed arteries. It was found that the RS/S 1) is not negligible, 2) dramatically affects the physiological peak stress amplitude in the thin fibrous cap, 3) spotlights some new high stress areas, and 4) could be a landmark of the lipid core's developmental process within a VP. This study demonstrates that plaque rupture is not to be viewed as a consequence of intravascular pressure alone, but rather of a subtle combination of external loading and intraplaque RS/S.

摘要

在易损斑块(VP)中,破裂通常发生在帽内高应力部位。同样已知的是,当所有外部负荷去除后,血管并非没有应力。先前的研究表明,这种残余应力/应变(RS/S)倾向于使正常动脉中膜的应力分布更加均匀。然而,RS/S对病理性冠状动脉壁应力分布的影响仍不清楚。本研究的目的是探讨RS/S对易损斑块生物力学稳定性的影响。在六个人类易损冠状动脉斑块样本中对RS/S模式进行了离体研究。由于RS/S的存在只能通过释放它来评估,因此开口角度技术是用于研究病变动脉几何开口构型的实验方法,从而使动脉壁处于接近零应力状态。相反,这些开口几何形状用于有限元模拟,以重建闭合动脉中的RS/S分布。研究发现,RS/S 1)不可忽略,2)显著影响薄纤维帽中的生理峰值应力幅度,3)突出了一些新的高应力区域,4)可能是易损斑块内脂质核心发育过程的一个标志。本研究表明,斑块破裂不应仅被视为血管内压力的结果,而应被视为外部负荷和斑块内RS/S微妙组合的结果。

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