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首页> 外文期刊>Annals of Biomedical Engineering >Flow Interactions with Cells and Tissues: Cardiovascular Flows and Fluid–Structure Interactions Sixth International Bio-Fluid Mechanics Symposium and Workshop, March 28–30, 2008, Pasadena, California
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Flow Interactions with Cells and Tissues: Cardiovascular Flows and Fluid–Structure Interactions Sixth International Bio-Fluid Mechanics Symposium and Workshop, March 28–30, 2008, Pasadena, California

机译:与细胞和组织的流动相互作用:心血管流动和液-构相互作用第六届国际生物流体力学专题讨论会和研讨会,2008年3月28日至30日,加利福尼亚州帕萨迪纳

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摘要

Interactions between flow and biological cells and tissues are intrinsic to the circulatory, respiratory, digestive and genitourinary systems. In the circulatory system, an understanding of the complex interaction between the arterial wall (a living multi-component organ with anisotropic, non-linear material properties) and blood (a shear-thinning fluid with 45% by volume consisting of red blood cells, platelets, and white blood cells) is vital to our understanding of the physiology of the human circulation and the etiology and development of arterial diseases, and to the design and development of prosthetic implants and tissue-engineered substitutes. Similarly, an understanding of the complex dynamics of flow past native human heart valves and the effect of that flow on the valvular tissue is necessary to elucidate the etiology of valvular diseases and in the design and development of valve replacements. In this paper we address the influence of biomechanical factors on the arterial circulation. The first part presents our current understanding of the impact of blood flow on the arterial wall at the cellular level and the relationship between flow-induced stresses and the etiology of atherosclerosis. The second part describes recent advances in the application of fluid–structure interaction analysis to arterial flows and the dynamics of heart valves.
机译:血流与生物细胞和组织之间的相互作用是循环,呼吸,消化和泌尿生殖系统所固有的。在循环系统中,了解动脉壁(具有各向异性,非线性材料特性的活的多组分器官)与血液(体积分数为45%的由红细胞组成的稀释稀释液)之间的复杂相互作用,血小板和白细胞)对于我们对人体循环生理学,动脉疾病的病因学和发展以及假体植入物和组织工程替代物的设计与开发至关重要。类似地,必须了解流经天然人心脏瓣膜的复杂动力及其对瓣膜组织的影响,以阐明瓣膜疾病的病因以及瓣膜置换的设计和开发。在本文中,我们探讨了生物力学因素对动脉循环的影响。第一部分介绍了我们目前对血流在细胞水平上对动脉壁的影响以及血流诱发的压力与动脉粥样硬化病因之间的关系的理解。第二部分描述了流体结构相互作用分析在动脉血流和心脏瓣膜动力学中的最新应用。

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