Li Chi-Pei, Lu Po-Chien
Department of Water Resources and Environmental Engineering, Tamkang University, 151 Ying-Chuan Road, Tamsui, New Taipei, 251, Taiwan.
J Artif Organs. 2012 Dec;15(4):364-74. doi: 10.1007/s10047-012-0650-8. Epub 2012 Jun 13.
The closing velocity of the leaflets of mechanical heart valves is excessively rapid and can cause the cavitation phenomenon. Cavitation bubbles collapse and produce high pressure which then damages red blood cells and platelets. The closure mechanism of the trileaflet valve uses the vortices in the aortic sinus to help close the leaflets, which differs from that of the monoleaflet or bileaflet mechanical heart valves which mainly depends on the reverse flow. We used the commercial software program Fluent to run numerical simulations of the St. Jude Medical bileaflet valve and a new trileaflet mechanical heart valve. The results of these numerical simulations were validated with flow field experiments. The closing velocity of the trileaflet valve was clearly slower than that of the St. Jude Medical bileaflet valve, which would effectively reduce the occurrence of cavitation. The findings of this study are expected to advance the development of the trileaflet valve.
机械心脏瓣膜瓣叶的关闭速度过快,会导致空化现象。空化气泡破裂并产生高压,进而损伤红细胞和血小板。三叶瓣的关闭机制利用主动脉窦中的涡流来帮助瓣叶关闭,这与主要依赖反流的单叶或双叶机械心脏瓣膜不同。我们使用商业软件Fluent对圣犹达医疗双叶瓣和一种新型三叶机械心脏瓣膜进行了数值模拟。这些数值模拟结果通过流场实验得到了验证。三叶瓣的关闭速度明显慢于圣犹达医疗双叶瓣,这将有效减少空化现象的发生。本研究结果有望推动三叶瓣的发展。