Biomedical Engineering, Oregon Health and Science University, Portland, OR 97239, USA.
Biomedical Engineering, Oregon Health and Science University, Portland, OR 97239, USA
Philos Trans R Soc Lond B Biol Sci. 2018 Sep 24;373(1759):20170330. doi: 10.1098/rstb.2017.0330.
Blood flow conditions (haemodynamics) are crucial for proper cardiovascular development. Indeed, blood flow induces biomechanical adaptations and mechanotransduction signalling that influence cardiovascular growth and development during embryonic stages and beyond. Altered blood flow conditions are a hallmark of congenital heart disease, and disrupted blood flow at early embryonic stages is known to lead to congenital heart malformations. In spite of this, many of the mechanisms by which blood flow mechanics affect cardiovascular development remain unknown. This is due in part to the challenges involved in quantifying blood flow dynamics and the forces exerted by blood flow on developing cardiovascular tissues. Recent technologies, however, have allowed precise measurement of blood flow parameters and cardiovascular geometry even at early embryonic stages. Combined with computational fluid dynamics techniques, it is possible to quantify haemodynamic parameters and their changes over development, which is a crucial step in the quest for understanding the role of mechanical cues on heart and vascular formation. This study summarizes some fundamental aspects of modelling blood flow dynamics, with a focus on three-dimensional modelling techniques, and discusses relevant studies that are revealing the details of blood flow and their influence on cardiovascular development.This article is part of the Theo Murphy meeting issue 'Mechanics of development'.
血流条件(血液动力学)对心血管的正常发育至关重要。事实上,血流会引起生物力学适应性和力学转导信号,从而影响胚胎期及以后的心血管生长和发育。血流条件的改变是先天性心脏病的一个特征,早期胚胎阶段血流中断已知会导致先天性心脏畸形。尽管如此,血流力学如何影响心血管发育的许多机制仍不清楚。部分原因是量化血流动力学和血流对发育中心血管组织施加的力所涉及的挑战。然而,最近的技术使得即使在早期胚胎阶段也能够精确测量血流参数和心血管几何形状。与计算流体动力学技术相结合,就有可能量化血流动力学参数及其在发育过程中的变化,这是理解机械线索对心脏和血管形成作用的关键步骤。本研究总结了血流动力学建模的一些基本方面,重点介绍了三维建模技术,并讨论了揭示血流细节及其对心血管发育影响的相关研究。本文是“发育力学”Theo Murphy 会议专刊的一部分。