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蛋白质和血小板在生物材料表面的沉积与栓塞模型。

A model of deposition and embolization of proteins and platelets on biomaterial surfaces.

作者信息

Wilson R S, Marmur A, Cooper S L

出版信息

Ann Biomed Eng. 1986;14(4):383-400. doi: 10.1007/BF02367410.

Abstract

A theoretical model for the deposition and detachment of protein and platelets on biomaterial surfaces is presented here. This work is an extension of the model previously reported. Two mechanisms of protein and platelet removal are assumed: A characteristic time elapses before adsorbed protein detaches from the surface, carrying away platelets and protein which have deposited on top of it; and thrombi that attain a critical size are subject to hydrodynamic forces which embolize them from the surface. A theoretical distribution of thrombus sizes is assumed. Analysis of the effects of varying model parameters on predicted protein and platelet deposition reveals that the addition of the embolization process does not change the overall structure of the deposition profiles, but does significantly affect the finer details.

摘要

本文提出了一个关于蛋白质和血小板在生物材料表面沉积与分离的理论模型。这项工作是先前报道模型的扩展。假定了蛋白质和血小板去除的两种机制:吸附的蛋白质从表面分离之前会经过一段特征时间,在此过程中会带走沉积在其上面的血小板和蛋白质;达到临界尺寸的血栓会受到流体动力作用而从表面脱落形成栓子。假定了血栓大小的理论分布。对不同模型参数对预测的蛋白质和血小板沉积的影响进行分析后发现,栓塞过程的加入并没有改变沉积曲线的整体结构,但显著影响了更细微的细节。

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