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首页> 外文期刊>Communications in Numerical Methods in Engineering >A continuum model for platelet plug formation and growth
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A continuum model for platelet plug formation and growth

机译:血小板栓塞形成和生长的连续模型

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摘要

When the wall of a blood vessel is damaged, the immediate response of the body to prevent blood loss is the creation of a platelet plug. The process is both chemical (platelets are chemically activated to adhere to the injured wall) and mechanical (platelets are convected by blood flow, which interacts with the forming plug). A continuum model for platelet plug formation and growth is presented in this work, which allows to study the interaction between platelet plug morphology and local haemodynamics. The numerical framework consists of two parts: a biochemical model combined with a new plug growth model. The biochemical model is a system of convection-diffusion-reaction equations, each of which represents the dynamics of platelets and chemicals involved in the plug formation process. The plug growth model defines the plug interface displacement based on the outcome of the biochemical model, that is, on the number of deposited bounded platelets on the injured part of the vessel wall. Results for different cases are shown, together with a comparison between the sole biochemical model and the complete model that includes plug growth. The framework opens the way to the development of continuum models for full blood clot formation and growth in physiologically relevant configurations.
机译:当血管壁受损时,防止血小板流失的身体即刻反应就是产生血小板栓塞。该过程既是化学过程(血小板被化学活化以粘附到受伤的壁上),又是机械过程(血小板被与成形栓相互作用的血流对流)。在这项工作中提出了一个血小板栓塞形成和生长的连续模型,该模型可以研究血小板栓塞形态与局部血流动力学之间的相互作用。数值框架包括两个部分:生化模型和新的栓塞生长模型。生化模型是一个对流-扩散-反应方程式的系统,每个方程式都代表参与塞子形成过程的血小板和化学物质的动力学。栓塞生长模型基于生化模型的结果,即基于在血管壁的受损部分上沉积的边界血小板的数量,定义了栓塞界面位移。显示了不同情况下的结果,以及唯一的生化模型与包括栓塞生长的完整模型之间的比较。该框架为在生理相关构型下全血凝块形成和生长的连续模型的开发开辟了道路。

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