Department of Mechanical and Aerospace Engineering, University at Buffalo, State University of New York, Buffalo, NY 14260, USA.
Comput Math Methods Med. 2013;2013:395081. doi: 10.1155/2013/395081. Epub 2013 Apr 17.
The left ventricle (LV) pumps oxygenated blood from the lungs to the rest of the body through systemic circulation. The efficiency of such a pumping function is dependent on blood flow within the LV chamber. It is therefore crucial to accurately characterize LV hemodynamics. Improved understanding of LV hemodynamics is expected to provide important clinical diagnostic and prognostic information. We review the recent advances in numerical and experimental methods for characterizing LV flows and focus on analysis of intraventricular flow fields by echocardiographic particle image velocimetry (echo-PIV), due to its potential for broad and practical utility. Future research directions to advance patient-specific LV simulations include development of methods capable of resolving heart valves, higher temporal resolution, automated generation of three-dimensional (3D) geometry, and incorporating actual flow measurements into the numerical solution of the 3D cardiovascular fluid dynamics.
左心室(LV)通过体循环将含氧血液从肺部泵送到身体的其他部位。这种泵送功能的效率取决于 LV 腔室内的血流。因此,准确描述 LV 血液动力学至关重要。提高对 LV 血液动力学的理解有望提供重要的临床诊断和预后信息。我们回顾了用于描述 LV 流动的数值和实验方法的最新进展,并重点介绍了通过超声心动图粒子图像测速法(echo-PIV)分析心室内流动场的方法,因为它具有广泛而实用的潜力。推进针对特定患者的 LV 模拟的未来研究方向包括开发能够解析心脏瓣膜的方法、更高的时间分辨率、自动生成三维(3D)几何形状,以及将实际流量测量值纳入 3D 心血管流体动力学数值解中。