Liu J S, Lu P C, Chu S H
Department of Water Resources and Environmental Engineering, Tamkang University, Taipei, Taiwan.
J Biomech Eng. 2000 Apr;122(2):118-24. doi: 10.1115/1.429643.
This study was focused on a series of in vitro tests on the turbulent flow characteristics of three bileaflet aortic valves: St. Jude Medical (SJM), CarboMedics (CM), and Edwards Tekna (modified Duromedics, DM). The flow fields of the valves were measured in a pulsatile flow model with a laser-Doppler anemometer (LDA) at the aortic sinus area downstream of the valves. The heart rate was set at 70 beats per minute, the cardiac output was maintained at 5 liters per minute, and the aortic pressure wave forms were kept within the physiological range. Cycle-resolved analysis was applied to obtain turbulence data, including mean velocity, Reynolds stresses, autocorrelation coefficients, energy spectral density functions, and turbulence scales. The Reynolds shear stresses of all three valves induced only minor damage to red blood cells, but directly damaged the platelets, increasing the possibility of thrombosis. The smallest turbulence length scale, which offers a more reliable estimate of the effects of turbulence on blood cell damage, was three times the size of red blood cells and five times the size of platelets. This suggests that there is more direct interaction with the blood cells, thus causing more damage.
本研究聚焦于对三种双叶主动脉瓣(圣犹达医疗公司(SJM)、卡博梅迪克斯公司(CM)和爱德华兹泰克纳公司(改良杜罗梅迪克斯,DM))的湍流特性进行一系列体外测试。在瓣膜下游的主动脉窦区域,使用激光多普勒测速仪(LDA)在脉动流模型中测量瓣膜的流场。心率设定为每分钟70次搏动,心输出量维持在每分钟5升,主动脉压力波形保持在生理范围内。应用周期分辨分析来获取湍流数据,包括平均速度、雷诺应力、自相关系数、能量谱密度函数和湍流尺度。所有三种瓣膜的雷诺剪切应力仅对红细胞造成轻微损伤,但直接损伤血小板,增加了血栓形成的可能性。最小的湍流长度尺度是红细胞大小的三倍,血小板大小的五倍,它能更可靠地估计湍流对血细胞损伤的影响。这表明与血细胞有更直接的相互作用,从而造成更多损伤。