Sun Lei, Ding Lijie, Li Lei, Yin Ningning, Yang Nianen, Zhang Yi, Xing Xiaodong, Zhang Zhiyong, Dong Chen
Laboratory of Virtual Reality and Simulation Technology, Shandong Sport University, Jinan 250102, China.
China National Football Academy, Shandong Sport University, Rizhao 276827, China.
Life (Basel). 2023 Feb 1;13(2):407. doi: 10.3390/life13020407.
Zero and partial gravities (ZPG) increase cardiovascular risk, while the corresponding theoretical foundation remains uncertain. In the article, the ZPG were generated through a rotating frame with two degrees of freedom in combination with the random walk algorithm. A precise 3D geometric configuration of the cardiovascular system was developed, and the laminar flow and solid mechanics were used as governing equations for blood flow and the surrounding tissue in the cardiovascular system. The ZPG were designed into governing equations through the volume force term. The computational fluid dynamics' (CFD) simulations in combination with proper boundary conditions were carried out to investigate the influences of ZPG on the distribution of blood flow velocity, pressure, and shear stress in the cardiovascular system. The findings show that as simulated gravity gradually decreases from 0.7 g to 0.5 g to 0.3 g to 0 g, as opposed to normal gravity of 1 g, the maximum values of blood flow velocity, pressure, and shear stress on the walls of the aorta and its ramification significantly increase, which would lead to cardiovascular diseases. The research will lay a theoretical foundation for the comprehension of the ZPG effect on cardiovascular risk and the development of effective prevention and control measures under the circumstance of ZPG.
零重力和部分重力(ZPG)会增加心血管疾病风险,但其相应的理论基础仍不明确。在本文中,通过一个具有两个自由度的旋转框架结合随机游走算法来产生ZPG。构建了心血管系统精确的三维几何构型,并将层流和固体力学用作心血管系统中血流及周围组织的控制方程。通过体积力项将ZPG设计到控制方程中。结合适当的边界条件进行计算流体动力学(CFD)模拟,以研究ZPG对心血管系统中血流速度、压力和剪切应力分布的影响。研究结果表明,与1g的正常重力相比,当模拟重力从0.7g逐渐降低到0.5g、0.3g直至0g时,主动脉及其分支壁上的血流速度、压力和剪切应力的最大值显著增加,这可能会导致心血管疾病。该研究将为理解ZPG对心血管疾病风险的影响以及在ZPG情况下制定有效的预防和控制措施奠定理论基础。