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双叶机械心脏瓣膜的异步关闭和瓣叶撞击速度

Asynchronous closure and leaflet impact velocity of bileaflet mechanical heart valves.

作者信息

Wu Z J, Hwang N H

机构信息

Department of Biomedical Engineering, University of Miami, FL 33124, USA.

出版信息

J Heart Valve Dis. 1995 Jul;4 Suppl 1:S38-49.

PMID:8581210
Abstract

The effect of gravitational field on the asynchronous closure of four different types of bileaflet heart valves (BHV) were investigated in an in vitro mock circulation system. The experimental study involved the 29 mm St. Jude Medical Standard, 29 mm CarboMedics, 29mm Edwards-Duromedics and 29 mm Edwards-Tekna BHVs. The valves were tested in the mitral position on an inclined 45 degrees plane of the pulsatile mock flow loop. The test valves were orientated with their pivotal axis horizontal so that the gravitational vectors on the two leaflets were clearly disparate. Using a specially designed laser optical system, the time difference at which the closing leaflets made their first contacts with the valve housing was measured. The closing velocity of each leaflet was measured separately by the laser sweeping technique (LST). The experiments were conducted under physiologic ventricular and aortic pressures at the heart rates of 70, 90, and 120 beats/minute with the corresponding flow rates of 5.0, 6.0, and 7.5 liters/minute. Asynchronous closing motions were registered in all four tested BHVs. The leaflet closing motions were random in nature, but indicated clear dependency on the orientations with respect to the gravitational field. The lower leaflet which makes a generally level swing to close, was assisted initially by the gravity and was always found to close earlier than the upper leaflet, which swing upward to close. The initial closure of the upper leaflet was against the gravity which delayed the leaflet motion. Depending on the BHV designs, the time delays between the two leaflets were found to vary from beat to beat but to follow certain probability distributions. In general, the leaflet/housing contact time between the two valve leaflets exhibited the clear trend of decreasing delay time at closure with the increase of the heart rate. For each of the valves tested, the average impact velocity of the first closing leaflet was found always smaller than that of the second closing leaflet at all three heart rates tested. The impact velocities of both the BHV leaflets were found to increase with the heart rate. The difference in the closing velocities between the two leaflets decreases with the increase of the heart rate and is generally proportional to the impact time delay between the two leaflets.

摘要

在体外模拟循环系统中研究了重力场对四种不同类型双叶心脏瓣膜(BHV)异步关闭的影响。实验研究涉及29毫米圣犹达医疗标准型、29毫米卡博美迪克斯型、29毫米爱德华兹 - 杜罗梅迪克斯型和29毫米爱德华兹 - 泰克纳型BHV。这些瓣膜在脉动模拟流回路倾斜45度的平面上处于二尖瓣位置进行测试。测试瓣膜的枢轴水平放置,以使两个瓣叶上的重力矢量明显不同。使用专门设计的激光光学系统,测量关闭瓣叶与瓣膜外壳首次接触的时间差。通过激光扫描技术(LST)分别测量每个瓣叶的关闭速度。实验在生理心室和主动脉压力下进行,心率分别为70、90和120次/分钟,相应的流速分别为5.0、6.0和7.5升/分钟。在所有四种测试的BHV中均记录到异步关闭运动。瓣叶关闭运动本质上是随机的,但表明明显依赖于相对于重力场的方向。通常水平摆动关闭的下瓣叶最初受到重力辅助,并且总是比向上摆动关闭的上瓣叶更早关闭。上瓣叶的初始关闭是逆着重力的,这延迟了瓣叶运动。根据BHV的设计,发现两个瓣叶之间的时间延迟逐搏变化,但遵循一定的概率分布。一般来说,两个瓣膜瓣叶之间的瓣叶/外壳接触时间呈现出随着心率增加关闭时延迟时间减少的明显趋势。对于每个测试的瓣膜,在所有三个测试心率下,始终发现第一个关闭瓣叶的平均撞击速度小于第二个关闭瓣叶的平均撞击速度。发现两种BHV瓣叶的撞击速度均随心率增加。两个瓣叶之间关闭速度的差异随着心率增加而减小,并且通常与两个瓣叶之间的撞击时间延迟成正比。

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