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基因治疗腹主动脉瘤壁应力的随机建模

Stochastic modelling of wall stresses in abdominal aortic aneurysms treated by a gene therapy.

作者信息

Mohand-Kaci Faïza, Ouni Anissa Eddhahak, Dai Jianping, Allaire Eric, Zidi Mustapha

机构信息

aCNRS EAC 4396, Université Paris-Est Créteil Val de Marne, Faculté de Médecine, Centre de Recherches Chirurgicales, 8 Rue du Général Sarrail, F-94010 Créteil Cedex, France.

出版信息

Comput Methods Biomech Biomed Engin. 2012;15(4):435-43. doi: 10.1080/10255842.2010.540759. Epub 2011 May 24.

DOI:10.1080/10255842.2010.540759
PMID:21264784
Abstract

A stochastic mechanical model using the membrane theory was used to simulate the in vivo mechanical behaviour of abdominal aortic aneurysms (AAAs) in order to compute the wall stresses after stabilisation by gene therapy. For that, both length and diameter of AAAs rats were measured during their expansion. Four groups of animals, control and treated by an endovascular gene therapy during 3 or 28 days were included. The mechanical problem was solved analytically using the geometric parameters and assuming the shape of aneurysms by a 'parabolic-exponential curve'. When compared to controls, stress variations in the wall of AAAs for treated arteries during 28 days decreased, while they were nearly constant at day 3. The measured geometric parameters of AAAs were then investigated using probability density functions (pdf) attributed to every random variable. Different trials were useful to define a reliable confidence region in which the probability to have a realisation is equal to 99%. The results demonstrated that the error in the estimation of the stresses can be greater than 28% when parameters uncertainties are not considered in the modelling. The relevance of the proposed approach for the study of AAA growth may be studied further and extended to other treatments aimed at stabilisation AAAs, using biotherapies and pharmacological approaches.

摘要

为了计算基因治疗稳定后的腹主动脉瘤(AAA)壁应力,采用基于薄膜理论的随机力学模型来模拟AAA的体内力学行为。为此,在AAA大鼠扩张过程中测量其长度和直径。研究纳入了四组动物,分别为对照组以及接受3天或28天血管内基因治疗的处理组。利用几何参数并假设动脉瘤形状为“抛物线 - 指数曲线”,通过解析方法求解力学问题。与对照组相比,接受治疗28天的AAA动脉壁应力变化减小,而在第3天时应力变化几乎保持不变。然后使用归因于每个随机变量的概率密度函数(pdf)研究AAA的测量几何参数。不同的试验有助于定义一个可靠的置信区域,在该区域内实现的概率等于99%。结果表明,在建模中不考虑参数不确定性时,应力估计误差可能大于28%。所提出的方法对于AAA生长研究的相关性可进一步研究,并扩展到使用生物疗法和药理学方法旨在稳定AAA的其他治疗方法。

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