Miller Justin G, Li Ming, Mazilu Dumitru, Hunt Tim, Horvath Keith A
Cardiothoracic Surgery Research Program, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, Md.
Cardiothoracic Surgery Research Program, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, Md.
J Thorac Cardiovasc Surg. 2016 May;151(5):1269-77. doi: 10.1016/j.jtcvs.2015.11.024. Epub 2015 Nov 22.
To demonstrate the feasibility of Real-time magnetic resonance imaging (rtMRI) guided transcatheter aortic valve replacement (TAVR) with an active guidewire and an MRI compatible valve delivery catheter system in a swine model.
The CoreValve system was minimally modified to be MRI-compatible by replacing the stainless steel components with fluoroplastic resin and high-density polyethylene components. Eight swine weighing 60-90 kg underwent rtMRI-guided TAVR with an active guidewire through a left subclavian approach.
Two imaging planes (long-axis view and short-axis view) were used simultaneously for real-time imaging during implantation. Successful deployment was performed without rapid ventricular pacing or cardiopulmonary bypass. Postdeployment images were acquired to evaluate the final valve position in addition to valvular and cardiac function.
Our results show that the CoreValve can be easily and effectively deployed through a left subclavian approach using rtMRI guidance, a minimally modified valve delivery catheter system, and an active guidewire. This method allows superior visualization before deployment, thereby allowing placement of the valve with pinpoint accuracy. rtMRI has the added benefit of the ability to perform immediate postprocedural functional assessment, while eliminating the morbidity associated with radiation exposure, rapid ventricular pacing, contrast media renal toxicity, and a more invasive procedure. Use of a commercially available device brings this rtMRI-guided approach closer to clinical reality.
在猪模型中证明使用主动导丝和磁共振成像(MRI)兼容的瓣膜输送导管系统进行实时磁共振成像(rtMRI)引导的经导管主动脉瓣置换术(TAVR)的可行性。
通过用氟塑料树脂和高密度聚乙烯组件替换不锈钢组件,对CoreValve系统进行了最小程度的改造,使其与MRI兼容。八只体重60 - 90千克的猪通过左锁骨下途径接受了rtMRI引导的TAVR,并使用了主动导丝。
在植入过程中同时使用两个成像平面(长轴视图和短轴视图)进行实时成像。成功进行了部署,无需快速心室起搏或体外循环。除了评估瓣膜和心脏功能外,还采集了部署后的图像以评估最终瓣膜位置。
我们的结果表明,使用rtMRI引导、经过最小程度改造的瓣膜输送导管系统和主动导丝,通过左锁骨下途径可以轻松有效地部署CoreValve。这种方法在部署前能实现更好的可视化,从而实现瓣膜的精确放置。rtMRI的额外好处是能够在术后立即进行功能评估,同时消除与辐射暴露、快速心室起搏、造影剂肾毒性以及更具侵入性的手术相关的发病率。使用市售设备使这种rtMRI引导的方法更接近临床实际。