Center for Congenital Heart Disease, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Center for Congenital Heart Disease, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands; Department of Cardiology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
J Thorac Cardiovasc Surg. 2020 Mar;159(3):1051-1059.e1. doi: 10.1016/j.jtcvs.2019.05.084. Epub 2019 Jul 5.
The Carpentier Edwards Perimount Magna Ease aortic valvular prosthesis (Edwards Lifesciences, Irvine, Calif) has been among the most frequently and successfully used tissue prosthetic cardiac valves. Furthermore, this prosthesis has been used off-label in the pulmonary position. Until now, there has been a paucity of data regarding the functioning of tissue prosthetic valves under pulmonary conditions.
Using a pulse duplicator, hydrodynamic characteristics of a 21-mm and 25-mm Magna Ease valve were evaluated. Among parameters evaluated were leakage orifice area, closing time (ie, time required to close), and leakage duration. This procedure was performed under different pulmonic pressure conditions (15/5 mm Hg, 28/11 mm Hg, 73/32 mm Hg) and normal aortic pressure (120/80 mm Hg) as a reference. Moving images were obtained using a Phantom MIRO M320S high-speed camera (Vision Research Inc, Wayne, NJ) at 600 frames per second and used to analyze valve area in closed position.
Under normal pulmonic conditions (28/11 mm Hg) the leakage orifice area was 0.020 ± 0.012 mm for the 21-mm valve and 0.054 ± 0.041 mm for the 25-mm valve (P = .03). Hydrodynamic characteristics of the valves differed between pulmonary and aortic testing condition. Valve closing volumes were significantly lower under pulmonary hypotension and normal pulmonary conditions than under normal aortic conditions (P < .05).
Under normal pulmonary pressure conditions, the hydrodynamic characteristics of Magna Ease valves are significantly different compared with aortic conditions. Further research is needed to determine whether these results are associated with prosthetic valve failure.
卡彭蒂尔-爱德华兹梅根特大易瓣主动脉瓣假体(爱德华兹生命科学公司,加利福尼亚州欧文)是使用最频繁且最成功的组织瓣心脏假体之一。此外,这种假体已被超适应证用于肺动脉瓣位置。到目前为止,关于组织瓣假体在肺动脉条件下的功能的数据还很少。
使用脉动复制器评估了 21 毫米和 25 毫米 Magna Ease 瓣的流体动力学特性。评估的参数包括泄漏口面积、关闭时间(即关闭所需的时间)和泄漏持续时间。该程序在不同的肺动脉压力条件(15/5mmHg、28/11mmHg、73/32mmHg)和正常主动脉压力(120/80mmHg)下进行,作为参考。使用 Phantom MIRO M320S 高速相机(Vision Research Inc,新泽西州韦恩)以每秒 600 帧的速度获取运动图像,并用于分析关闭位置的瓣口面积。
在正常肺动脉条件(28/11mmHg)下,21 毫米瓣的泄漏口面积为 0.020±0.012mm,25 毫米瓣的泄漏口面积为 0.054±0.041mm(P=0.03)。瓣膜在肺动脉低血压和正常肺动脉条件下的关闭容积明显低于主动脉条件下的关闭容积(P<0.05)。
在正常肺动脉压力条件下,Magna Ease 瓣膜的流体动力学特性与主动脉条件明显不同。需要进一步研究以确定这些结果是否与假体瓣膜失效有关。