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Experimental characterization of the distribution of collagen fiber recruitment

机译:胶原纤维募集分布的实验表征

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The passive biomechanical behavior of blood vessels is generally modeled by a parallel arrangement of elastin and collagen, with collagen recruitment depending on vessel strain. We experimentally determined the collagen recruitment distribution, using confocal microscopy. Digital images from sections of rabbit carotid artery under increasing circumferential stretch ratio were acquired. The straightness of the fibers was measured to compute the fraction of recruited fibers for each stretch ratio. The experimental distribution obtained was then used in the model proposed by Zulliger et al. This model is based on a strain energy function (SEF), which provides a constituent-based description of the wall mechanics. Using this model, a fit of the pressure—radius curve was then performed by using the experimental collagen recruitment distribution with the collagen elastic constant as a free fit parameter. The fit was good, but the value of the collagen elastic constant obtained was below values reported in the literature.A second fit of the pressure—radius curve was also performed, whereby the collagen distribution was left free to adapt while the collagen elastic constant was set to a physiological value. The differences between the experimental collagen engagement distribution and the distribution obtained when the collagen elastic constant was fixed were analyzed. Good qualitative agreement was found between the experimental distribution of collagen recruitment and the model. Some experimental limitations and modeling approximations remain. Nevertheless, experimental proof of progressive collagen recruitment was established,which validates the basic hypothesis of the model.
机译:血管的被动生物力学行为通常通过弹性蛋白和胶原蛋白的平行排列来建模,胶原蛋白的吸收取决于血管张力。我们使用共聚焦显微镜通过实验确定了胶原蛋白的募集分布。在周向拉伸比增加的情况下,获取了来自兔颈动脉切片的数字图像。测量纤维的笔直度以计算每个拉伸比的回收纤维比例。然后将获得的实验分布用于Zulliger等人提出的模型。该模型基于应变能函数(SEF),该函数提供了墙体力学的基于成分的描述。使用该模型,然后使用实验性胶原募集分布以胶原弹性常数作为自由拟合参数,对压力-半径曲线进行拟合。拟合良好,但获得的胶原弹性常数值低于文献报道的值。还进行了压力-半径曲线的第二次拟合,从而使胶原分布自由适应,而胶原弹性常数为设置为生理值。分析了实验胶原结合分布与固定胶原弹性常数时获得的分布之间的差异。在胶原蛋白募集的实验分布与模型之间发现了良好的定性一致性。仍然存在一些实验限制和建模近似。尽管如此,建立了渐进的胶原蛋白募集的实验证据,证实了该模型的基本假设。

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