Barrett S R H, Sutcliffe M P F, Howarth S, Li Z-Y, Gillard J H
Department of Engineering, University of Cambridge, Trumpington Street, Cambridge CB2 1PZ, UK.
J Biomech. 2009 Aug 7;42(11):1650-5. doi: 10.1016/j.jbiomech.2009.04.025. Epub 2009 May 21.
Eleven carotid atherothrombotic plaque samples were harvested from patients. Three samples that were highly calcified were discarded, while eight yielded results. The elastic properties of the material were estimated by fitting the measured indentation response to finite element simulations. The methodology was refined and its accuracy quantified using a synthetic rubber. The neo-Hookean form of the material model gave a good fit to the measured response of the tissue. The inferred shear modulus mu was found to be in the range 7-100 kPa, with a median value of 11 kPa. A review of published materials data showed a wide range of material properties for human atherothrombotic tissue. The effects of anisotropy and time dependency in these published results were highlighted. The present measurements were comparable to the static radial compression tests of Lee et al, 1991 [Structure-dependent dynamic behaviour of fibrous caps from human atherosclerotic plaques. Circulation 83, 1764-1770].
从患者身上采集了11个颈动脉粥样硬化血栓形成斑块样本。3个高度钙化的样本被丢弃,8个样本得出了结果。通过将测量的压痕响应与有限元模拟进行拟合来估计材料的弹性特性。使用合成橡胶对该方法进行了改进并对其准确性进行了量化。材料模型的新胡克形式与测量的组织响应拟合良好。推断的剪切模量μ在7-100 kPa范围内,中值为11 kPa。对已发表的材料数据进行的综述表明,人类动脉粥样硬化血栓形成组织的材料特性范围很广。这些已发表结果中各向异性和时间依赖性的影响得到了强调。目前的测量结果与Lee等人1991年的静态径向压缩试验结果相当[人类动脉粥样硬化斑块纤维帽的结构依赖性动态行为。《循环》83,1764-1770]。