De Paulis Ruggero, Schmitz Christoph, Scaffa Raffaele, Nardi Paolo, Chiariello Luigi, Reul Helmut
Cardiac Surgery Department, University of Tor Vergata, Rome, Italy.
J Thorac Cardiovasc Surg. 2005 Oct;130(4):1016-21. doi: 10.1016/j.jtcvs.2005.04.028.
This study was undertaken to determine whether the presence of vortices immediately above a prosthetic aortic valve could negatively influence the in vitro hydrodynamic performances of a biologic or mechanical valve implanted in a new Dacron polyester fabric conduit that incorporates sculpted sinuses of Valsalva.
With a computer-controlled pulse duplicator, the in vitro performance (pressure differences, closure and leakage volumes, and energy losses) of a 25-mm mechanical or biologic prosthesis implanted in a standard Dacron straight conduit or in the new Dacron graft with a sculpted sinus were analyzed and compared.
The mechanical and biologic prostheses at 7 L/min cardiac output showed pressure drops across the valve of 8.72 mm Hg and 13.45 mm Hg, respectively, when inserted in the new Valsalva-style graft and of 7.97 mm Hg and 12.94 mm Hg, respectively, when inserted in the standard graft. The closure and leakage volumes for mechanical valves were higher than those for biologic valves; however, the presence or absence of sinuses did not result in significant differences in closure and leakage volumes. The maximal total energy losses were 5.89% and 9.49% for mechanical and biologic valves, respectively. No differences were evident between the two different Dacron grafts for each prosthetic heart valve.
The normal opening and closing behavior of a prosthetic aortic valve was not altered or modified by a different root shape above the heart valve. The presence of vortices inside the pseudosinuses of Valsalva did not influence the hydrodynamic properties of the biologic and mechanical valves tested.
本研究旨在确定人工主动脉瓣上方立即出现的涡流是否会对植入包含塑形主动脉窦的新型涤纶聚酯纤维导管中的生物瓣膜或机械瓣膜的体外流体动力学性能产生负面影响。
使用计算机控制的脉搏模拟器,分析并比较植入标准涤纶直管或带有塑形窦的新型涤纶移植物中的25毫米机械或生物假体的体外性能(压力差、关闭和泄漏量以及能量损失)。
在心输出量为7升/分钟时,机械瓣膜和生物瓣膜植入新型主动脉窦式移植物时,瓣膜两端的压力降分别为8.72毫米汞柱和13.45毫米汞柱,植入标准移植物时分别为7.97毫米汞柱和12.94毫米汞柱。机械瓣膜的关闭和泄漏量高于生物瓣膜;然而,有无窦在关闭和泄漏量方面并未导致显著差异。机械瓣膜和生物瓣膜的最大总能量损失分别为5.89%和9.49%。对于每种人工心脏瓣膜而言,两种不同的涤纶移植物之间没有明显差异。
人工主动脉瓣的正常开闭行为不会因瓣膜上方不同的根部形状而改变或受到影响。主动脉窦内涡流的存在不会影响所测试的生物瓣膜和机械瓣膜的流体动力学特性。