Water Resources and Environmental Engineering, Tamkang University, 151 Ying-Chuan Road, Tamsui, Taipei County, 251, Taiwan.
Ann Biomed Eng. 2010 Mar;38(3):903-16. doi: 10.1007/s10439-009-9867-y. Epub 2009 Dec 18.
Among the clinical complications of mechanical heart valves (MHVs), hemolysis was previously thought to result from Reynolds stresses in turbulent flows. A more recent hypothesis suggests viscous dissipative stresses at spatial scales similar in size to red blood cells may be related to hemolysis in MHVs, but the resolution of current instrumentation is insufficient to measure the smallest eddy sizes. We studied the St. Jude Medical (SJM) 27 mm valve in the aortic position of a pulsatile circulatory mock loop under physiologic conditions with particle image velocimetry (PIV). Assuming a dynamic equilibrium assumption between the resolved and sub-grid-scale (SGS) energy flux, the SGS energy flux was calculated from the strain rate tensor computed from the resolved velocity fields and the SGS stress was determined by the Smagorinsky model, from which the turbulence dissipation rate and then the viscous dissipative stresses were estimated. Our results showed Reynolds stresses up to 80 N/m2 throughout the cardiac cycle, and viscous dissipative stresses below 12 N/m2. The viscous dissipative stresses remain far below the threshold of red blood cell hemolysis, but could potentially damage platelets, implying the need for further study in the phenomenon of MHV hemolytic complications.
在机械心脏瓣膜 (MHV) 的临床并发症中,溶血以前被认为是由湍流中的雷诺应力引起的。最近的一个假设表明,在类似于红细胞大小的空间尺度上的粘性耗散应力可能与 MHV 中的溶血有关,但目前仪器的分辨率不足以测量最小的涡旋尺寸。我们使用粒子图像测速法 (PIV) 在生理条件下研究了脉动循环模拟回路中主动脉位置的圣犹达医疗公司 (SJM) 27 毫米瓣膜。假设 resolved 和亚网格尺度 (SGS) 能量通量之间存在动态平衡假设,从 resolved 速度场计算的应变率张量计算 SGS 能量通量,通过 Smagorinsky 模型确定 SGS 应力,由此估算湍流耗散率和粘性耗散应力。我们的结果表明,整个心动周期内的雷诺应力高达 80 N/m2,而粘性耗散应力低于 12 N/m2。粘性耗散应力仍远低于红细胞溶血的阈值,但可能会损害血小板,这意味着需要进一步研究 MHV 溶血并发症的现象。