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CFD 分析 HVAD 的血液动力学性能和血液损伤,并深入了解间隙清除。

CFD analysis of the HVAD's hemodynamic performance and blood damage with insight into gap clearance.

机构信息

CMT-Motores Térmicos, Universitat Politècnica de València, Camí de Vera, s/n, 46022, Valencia, Spain.

Servicio de Cirugía Cardíaca, Hospital Universitario La Fe, Avinguda de Fernando Abril Martorell, 106, 46026, Valencia, Spain.

出版信息

Biomech Model Mechanobiol. 2022 Aug;21(4):1201-1215. doi: 10.1007/s10237-022-01585-2. Epub 2022 May 11.

Abstract

Mechanical circulatory support using ventricular assist devices has become commonplace in the treatment of patients suffering from advanced stages of heart failure. While blood damage generated by these devices has been evaluated in depth, their hemodynamic performance has been investigated much less. This work presents the analysis of the complete operating map of a left ventricular assist device, in terms of pressure head, power and efficiency. Further investigation into its hemocompatibility is included as well. To achieve these objectives, computational fluid dynamics simulations of a centrifugal blood pump with a wide-blade impeller were performed. Several conditions were considered by varying the rotational speed and volumetric flow rate. Regarding the device's hemocompatibility, blood damage was evaluated by means of the hemolysis index. By relating the hemocompatibility of the device to its hemodynamic performance, the results have demonstrated that the highest hemolysis occurs at low flow rates, corresponding to operating conditions of low efficiency. Both performance and hemocompatibility are affected by the gap clearance. An innovative investigation into the influence of this design parameter has yielded decreased efficiencies and increased hemolysis as the gap clearance is reduced. As a further novelty, pump operating maps were non-dimensionalized to highlight the influence of Reynolds number, which allows their application to any working condition. The pump's operating range places it in the transitional regime between laminar and turbulent, leading to enhanced efficiency for the highest Reynolds number.

摘要

使用心室辅助装置的机械循环支持已成为治疗晚期心力衰竭患者的常规手段。虽然这些设备产生的血液损伤已经得到了深入评估,但它们的血液动力学性能却研究得相对较少。本工作从压力头、功率和效率的角度分析了左心室辅助装置的完整工作图谱。还包括对其血液相容性的进一步研究。为了实现这些目标,对具有宽叶片叶轮的离心泵进行了计算流体动力学模拟。通过改变转速和体积流量来考虑几种情况。关于设备的血液相容性,通过溶血指数评估血液损伤。通过将设备的血液相容性与其血液动力学性能相关联,结果表明溶血发生率最高发生在低流量下,对应于效率低的工作条件。性能和血液相容性都受到间隙间隙的影响。对该设计参数影响的创新性研究表明,随着间隙间隙的减小,效率降低,溶血增加。作为进一步的新颖性,将泵的工作图谱无量纲化,以突出雷诺数的影响,从而允许将其应用于任何工作条件。泵的工作范围使其处于层流和湍流之间的过渡状态,从而在最高雷诺数下提高效率。

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