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首页> 外文期刊>Journal of Theoretical Biology >Heterogeneous perfusion is a consequence of uniform shear stress in optimized arterial tree models.
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Heterogeneous perfusion is a consequence of uniform shear stress in optimized arterial tree models.

机译:在优化的动脉树模型中,异质灌注是均匀切应力的结果。

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摘要

Using optimized computer models of arterial trees we demonstrate that flow heterogeneity is a necessary consequence of a uniform shear stress distribution. Model trees are generated and optimized under different modes of boundary conditions. In one mode flow is delivered to the tissue as homogeneously as possible. Although this primary goal can be achieved, resulting shear stresses between blood and the vessel walls show very large spread. In a second mode, models are optimized under the condition of uniform shear stress in all segments which in turn renders flow distribution heterogeneous. Both homogeneous perfusion and uniform shear stress are desirable goals in real arterial trees but each of these goals can only be approached at the expense of the other. While the present paper refers only to optimized models, we assume that this dual relation between the heterogeneities in flow and shear stress may represent a more general principle of vascular systems.
机译:使用动脉树的优化计算机模型,我们证明了流量异质性是均匀剪切应力分布的必要结果。在不同的边界条件模式下生成并优化模型树。在一种模式下,流动被尽可能均匀地输送到组织。尽管可以实现这一主要目标,但血液与血管壁之间的剪切应力却显示出很大的分布。在第二种模式中,在所有段中均等的剪切应力的条件下对模型进行了优化,这又导致流量分布不均匀。在真实的动脉树中,均匀的灌注和均匀的剪切应力都是理想的目标,但是只能以牺牲其他目标为代价来实现这些目标中的每一个。虽然本文仅涉及优化模型,但我们假设流动和剪切应力的异质性之间的这种双重关系可能代表了血管系统的更一般原理。

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