Sung H W, Kingsbury C J, Quintero L J, Myers K E, Le T N, Yoganathan A P, Quijano R C
Baxter Edwards CVS Division, Irvine, California 92714.
ASAIO Trans. 1991 Jul-Sep;37(3):M172-4.
Currently available aortic bioprosthetic heart valves are all relatively suboptimal due to the constraints placed on leaflets by stenting. The constraints on the stenting mechanism may directly or indirectly cause turbulence in the orifice neighborhood, be nidi of tissue calcification, and impart transleaflet stress differentials. To address all these deficiencies, we undertook the development of a stentless porcine aortic bioprosthesis (SPAB). This study evaluates the hemodynamic performance and durability of this design in special chambers with near physiologic compliance. The results are compared to those shown by a stented porcine aortic bioprosthesis. The pressure measurements under steady flow conditions showed that the hemodynamic performance (including pressure gradient and effective orifice area) of SPAB is superior to that of its stented counterpart, especially in the smaller sizes. In addition, it is expected that this stentless design should minimize the mechanical stress to which the leaflets are subjected throughout the cardiac cycle, thus enhancing the durability of the bioprosthesis. In our accelerated durability study for up to 2 equivalent years, no valve failure has been observed. More in vitro studies under pulsatile flow conditions, including color Doppler flow visualization, are currently being conducted.
目前可用的主动脉生物人工心脏瓣膜由于支架对瓣叶的限制,都相对不太理想。支架机制的限制可能直接或间接导致瓣口附近出现湍流,成为组织钙化的病灶,并产生跨瓣叶应力差异。为了解决所有这些缺陷,我们着手研发一种无支架猪主动脉生物假体(SPAB)。本研究评估了这种设计在具有接近生理顺应性的特殊腔室中的血流动力学性能和耐久性。将结果与有支架猪主动脉生物假体的结果进行比较。稳定流动条件下的压力测量表明,SPAB的血流动力学性能(包括压力梯度和有效瓣口面积)优于其有支架的同类产品,尤其是在较小尺寸时。此外,预计这种无支架设计应能在整个心动周期中将瓣叶所承受的机械应力降至最低,从而提高生物假体的耐久性。在我们长达2个等效年的加速耐久性研究中,未观察到瓣膜失效。目前正在进行更多在脉动流条件下的体外研究,包括彩色多普勒血流显像。