首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Effect of heart rate on the hemodynamics of bileaflet mechanical heart valves' prostheses (St. Jude Medical) in the aortic position and in the opening phase: A computational study
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Effect of heart rate on the hemodynamics of bileaflet mechanical heart valves' prostheses (St. Jude Medical) in the aortic position and in the opening phase: A computational study

机译:心率对主动脉位置和开放阶段双叶机械心脏瓣膜假体(St. Jude Medical)的血流动力学的影响:计算研究

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To date, to the best of the authors' knowledge, in almost all of the studies performed around the hemodynamics of bileaflet mechanical heart valves, a heart rate of 70-72beats/min has been considered. In fact, the heart rate of similar to 72beats/min does not represent the entire normal physiological conditions under which the aortic or prosthetic valves function. The heart rates of 120 or 50beats/min may lead to hemodynamic complications, such as plaque formation and/or thromboembolism in patients. In this study, the hemodynamic performance of the bileaflet mechanical heart valves in a wide range of normal and physiological heart rates, that is, 60-150beats/min, was studied in the opening phase. The model considered in this study was a St. Jude Medical bileaflet mechanical heart valve with the inner diameter of 27mm in the aortic position. The hemodynamics of the native valve and the St. Jude Medical valve were studied in a variety of heart rates in the opening phase and the results were carefully compared. The results indicate that peak values of the velocity profile downstream of the valve increase as heart rate increases, as well as the location of the maximum velocity changes with heart rate in the St. Jude Medical valve model. Also, the maximum values of shear stress and wall shear stresses downstream of the valve are proportional to heart rate in both models. Interestingly, the maximum shear stress and wall shear stress values in both models are in the same range when heart rate is <90beats/min; however, these values significantly increase in the St. Jude Medical valve model when heart rate is >90beats/min (up to similar to 40% growth compared to that of the native valve). The findings of this study may be of importance in the hemodynamic performance of bileaflet mechanical heart valves. They may also play an important role in design improvement of conventional prosthetic heart valves and the design of the next generation of prosthetic valves, such as percutaneous valves.
机译:迄今为止,据作者所知,在围绕双叶机械心脏瓣膜的血流动力学进行的几乎所有研究中,心率均被认为是70-72次/分钟。实际上,类似于72次/分钟的心率并不代表主动脉瓣膜或人工瓣膜起作用的整个正常生理状况。 120或50次/分钟的心率可能导致血液动力学并发症,例如患者斑块形成和/或血栓栓塞。在这项研究中,在开放阶段研究了双叶机械心脏瓣膜在正常和生理心率范围内(即60-150次/分钟)的血液动力学性能。本研究中考虑的模型是St. Jude Medical双叶机械心脏瓣膜,主动脉内径为27mm。在打开阶段以各种心率研究了天然瓣膜和St. Jude Medical瓣膜的血液动力学,并仔细比较了结果。结果表明,在St. Jude Medical瓣膜模型中,瓣膜下游速度曲线的峰值随心率增加而增加,并且最大速度的位置随心率而变化。同样,在两个模型中,瓣膜下游的切应力和壁切应力的最大值与心率成正比。有趣的是,当心率小于90次/分钟时,两个模型中的最大剪应力和壁剪应力值都在同一范围内。但是,当心率大于90次/分钟时,这些值在St. Jude Medical瓣膜模型中会显着增加(与天然瓣膜相比,增长率高达40%)。这项研究的发现可能对双叶机械心脏瓣膜的血液动力学性能具有重要意义。它们在常规人工心脏瓣膜的设计改进和下一代人工瓣膜(例如经皮瓣膜)的设计中也可能起重要作用。

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