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计算流体动力学在淋巴系统建模中的应用:现有模型回顾与未来方向。

Computational fluid dynamic modeling of the lymphatic system: a review of existing models and future directions.

机构信息

Auckland Bioengineering Institute, The University of Auckland, Auckland, New Zealand.

School of Biological Sciences, The University of Auckland, Auckland, New Zealand.

出版信息

Biomech Model Mechanobiol. 2024 Feb;23(1):3-22. doi: 10.1007/s10237-023-01780-9. Epub 2023 Oct 30.

Abstract

Historically, research into the lymphatic system has been overlooked due to both a lack of knowledge and limited recognition of its importance. In the last decade however, lymphatic research has gained substantial momentum and has included the development of a variety of computational models to aid understanding of this complex system. This article reviews existing computational fluid dynamic models of the lymphatics covering each structural component including the initial lymphatics, pre-collecting and collecting vessels, and lymph nodes. This is followed by a summary of limitations and gaps in existing computational models and reasons that development in this field has been hindered to date. Over the next decade, efforts to further characterize lymphatic anatomy and physiology are anticipated to provide key data to further inform and validate lymphatic fluid dynamic models. Development of more comprehensive multiscale- and multi-physics computational models has the potential to significantly enhance the understanding of lymphatic function in both health and disease.

摘要

从历史上看,由于对淋巴系统缺乏了解以及对其重要性的认识有限,对淋巴系统的研究一直被忽视。然而,在过去的十年中,淋巴研究取得了实质性的进展,包括开发了各种计算模型来帮助理解这个复杂的系统。本文综述了现有的淋巴系统计算流体动力学模型,涵盖了包括初始淋巴管、前收集和收集血管以及淋巴结在内的每个结构组成部分。接下来,总结了现有计算模型的局限性和差距,以及迄今为止阻碍该领域发展的原因。在未来十年,预计进一步描述淋巴解剖和生理学的努力将提供关键数据,以进一步为淋巴液动力学模型提供信息和验证。开发更全面的多尺度和多物理计算模型有可能显著提高对健康和疾病中淋巴功能的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79df/10901951/c77bb714b98e/10237_2023_1780_Fig1_HTML.jpg

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