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双叶人工心脏瓣膜中的涡街现象。

Vortex shedding in bileaflet heart valve prostheses.

作者信息

Gross J M, Shermer C D, Hwang N H

机构信息

Cardiovascular Flow Dynamics Laboratory, University of Houston, Texas 77004.

出版信息

ASAIO Trans. 1988 Jul-Sep;34(3):845-50.

PMID:3196609
Abstract

A dynamic study of two geometrically similar bileaflet heart valve prostheses (HVP) was performed using a physiologic mock circulatory flow loop. The HVPs studied were the 25 mm St. Jude Medical (SJM) and the 25 mm Carbomedics (CMI) in the aortic position and the 27 mm SJM and 27 mm CMI in the mitral position. All data were collected at a heart rate of 70 beats/min and a cardiac output of 5.0 L/min. Flow visualization was conducted in the transparent flow chambers of the pulsatile mock circulatory flow loop using a 15 mW He-Ne laser light source. A cylindrical lens and optics system converted the incident laser beam into a thin parallel light plane, and 420 microns tracer particles were suspended in the testing fluid to illuminate the flow field at selected planes. Frame-by-frame analysis of the 16 mm high-speed cine provides detailed phasic flow patterns in the vicinity of the HVP. A series of still photographs of flow patterns, taken at approximately 22.5 degrees phase intervals, are sequentially presented for each HVP. In the aortic position, a Karman-like vortex pattern appears downstream of the SJM at the end of the ejection phase. The CMI exhibits a rather symmetrical ejection flow pattern that turns into random motion immediately after the onset of ejection. In the mitral position, the SJM again exhibits a strong core flow during ventricular filling, whereas the CMI produces a more diffuse pattern during the same period. A pair of vortices shed from both the SJM and CMI are clearly visible toward the end of the ventricular filling phase. The vortex mechanisms are discussed in light of leaflet boundary layer formation.

摘要

使用生理模拟循环流动回路对两个几何形状相似的双叶心脏瓣膜假体(HVP)进行了动态研究。所研究的HVP在主动脉位置的是25毫米圣犹达医疗(SJM)和25毫米卡博梅迪克斯(CMI),在二尖瓣位置的是27毫米SJM和27毫米CMI。所有数据均在心率70次/分钟和心输出量5.0升/分钟的条件下收集。使用15毫瓦氦氖激光光源在脉动模拟循环流动回路的透明流动腔室中进行流动可视化。一个柱面透镜和光学系统将入射激光束转换为一个薄的平行光平面,并且420微米的示踪颗粒悬浮在测试流体中,以照亮选定平面处的流场。对16毫米高速电影进行逐帧分析,可提供HVP附近详细的相位流动模式。针对每个HVP依次呈现一系列以大约22.5度相位间隔拍摄的流动模式静态照片。在主动脉位置,在射血期末,SJM下游出现类似卡门涡街的涡旋模式。CMI呈现出相当对称的射血流动模式,在射血开始后立即转变为随机运动。在二尖瓣位置,SJM在心室充盈期间再次呈现出强烈的核心流,而CMI在同一时期产生的模式更为分散。在心室充盈期末,从SJM和CMI两者都明显可见一对涡旋脱落。根据瓣叶边界层形成对涡旋机制进行了讨论。

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