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血管狭窄和动脉瘤中的分形结构。

Fractal structures in stenoses and aneurysms in blood vessels.

机构信息

Instituto de Física, Universidade de São Paulo, Caixa Postal 66318, 05315-970 São Paulo, Brazil.

出版信息

Philos Trans A Math Phys Eng Sci. 2010 Dec 28;368(1933):5605-17. doi: 10.1098/rsta.2010.0268.

Abstract

Recent advances in the field of chaotic advection provide the impetus to revisit the dynamics of particles transported by blood flow in the presence of vessel wall irregularities. The irregularity, being either a narrowing or expansion of the vessel, mimicking stenoses or aneurysms, generates abnormal flow patterns that lead to a peculiar filamentary distribution of advected particles, which, in the blood, would include platelets. Using a simple model, we show how the filamentary distribution depends on the size of the vessel wall irregularity, and how it varies under resting or exercise conditions. The particles transported by blood flow that spend a long time around a disturbance either stick to the vessel wall or reside on fractal filaments. We show that the faster flow associated with exercise creates widespread filaments where particles can get trapped for a longer time, thus allowing for the possible activation of such particles. We argue, based on previous results in the field of active processes in flows, that the non-trivial long-time distribution of transported particles has the potential to have major effects on biochemical processes occurring in blood flow, including the activation and deposition of platelets. One aspect of the generality of our approach is that it also applies to other relevant biological processes, an example being the coexistence of plankton species investigated previously.

摘要

混沌平流领域的最新进展为重新研究血流中颗粒的动力学提供了动力,这些颗粒在存在血管壁不规则性的情况下被运输。这种不规则性,无论是血管的狭窄还是扩张,都模拟了狭窄或动脉瘤,会产生异常的流动模式,导致被输送颗粒呈现出奇特的丝状分布,如果这些颗粒在血液中,将包括血小板。使用一个简单的模型,我们展示了丝状分布如何取决于血管壁不规则性的大小,以及在休息或运动条件下如何变化。在血流中运输并在干扰周围停留很长时间的颗粒要么粘在血管壁上,要么附着在分形丝上。我们表明,与运动相关的较快血流会产生广泛的丝状结构,使颗粒可以被困更长时间,从而使这些颗粒有可能被激活。我们基于流动中主动过程领域的先前结果进行论证,认为被输送颗粒的非平凡长时间分布有可能对血流中发生的生化过程产生重大影响,包括血小板的激活和沉积。我们方法的普遍性的一个方面是,它也适用于其他相关的生物过程,例如以前研究过的浮游生物物种共存的情况。

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Finite-size effects on open chaotic advection.有限尺寸对开放混沌平流的影响。
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Chemical transients in closed chaotic flows: the role of effective dimensions.封闭混沌流中的化学瞬变:有效维度的作用。
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Experimental studies of pattern formation in a reaction-advection-diffusion system.反应-平流-扩散系统中图案形成的实验研究。
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