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旋转活塞式血泵中的流体动力学

Fluid Dynamics in Rotary Piston Blood Pumps.

作者信息

Wappenschmidt Johannes, Sonntag Simon J, Buesen Martin, Gross-Hardt Sascha, Kaufmann Tim, Schmitz-Rode Thomas, Autschbach Ruediger, Goetzenich Andreas

机构信息

Institute of Applied Medical Engineering, Helmholtz-Institute RWTH Aachen University, Pauwelsstraße 20, 52074, Aachen, Germany.

Department of Thoracic and Cardiovascular Surgery, RWTH Aachen University Hospital, Pauwelsstraße 30, 52074, Aachen, Germany.

出版信息

Ann Biomed Eng. 2017 Mar;45(3):554-566. doi: 10.1007/s10439-016-1700-9. Epub 2016 Jul 27.

Abstract

Mechanical circulatory support can maintain a sufficient blood circulation if the native heart is failing. The first implantable devices were displacement pumps with membranes. They were able to provide a sufficient blood flow, yet, were limited because of size and low durability. Rotary pumps have resolved these technical drawbacks, enabled a growing number of mechanical circulatory support therapy and a safer application. However, clinical complications like gastrointestinal bleeding, aortic insufficiency, thromboembolic complications, and impaired renal function are observed with their application. This is traced back to their working principle with attenuated or non-pulsatile flow and high shear stress. Rotary piston pumps potentially merge the benefits of available pump types and seem to avoid their complications. However, a profound assessment and their development requires the knowledge of the flow characteristics. This study aimed at their investigation. A functional model was manufactured and investigated with particle image velocimetry. Furthermore, a fluid-structure interaction computational simulation was established to extend the laboratory capabilities. The numerical results precisely converged with the laboratory measurements. Thus, the in silico model enabled the investigation of relevant areas like gap flows that were hardly feasible with laboratory means. Moreover, an economic method for the investigation of design variations was established.

摘要

如果自身心脏功能衰竭,机械循环支持可维持足够的血液循环。最早的可植入设备是带有隔膜的置换泵。它们能够提供足够的血流量,但由于尺寸和耐用性低而受到限制。旋转泵解决了这些技术缺陷,使越来越多的机械循环支持治疗成为可能,并使其应用更安全。然而,在其应用过程中会观察到诸如胃肠道出血、主动脉瓣关闭不全、血栓栓塞并发症和肾功能受损等临床并发症。这可追溯到它们的工作原理,即血流减弱或无搏动以及高剪切应力。旋转活塞泵可能融合了现有泵类型的优点,并且似乎可以避免它们的并发症。然而,对其进行深入评估和研发需要了解其流动特性。本研究旨在对其进行调查。制造了一个功能模型并用粒子图像测速技术进行研究。此外,建立了流固耦合计算模拟以扩展实验室的研究能力。数值结果与实验室测量结果精确吻合。因此,计算机模拟模型能够对诸如间隙流等用实验室方法几乎无法实现的相关区域进行研究。此外,还建立了一种用于研究设计变化的经济方法。

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