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首页> 外文期刊>The Journal of heart valve disease >High-resolution assessment of velocity fields and shear stresses distal to prosthetic heart valves using high-field magnetic resonance imaging.
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High-resolution assessment of velocity fields and shear stresses distal to prosthetic heart valves using high-field magnetic resonance imaging.

机译:使用高场磁共振成像对假体心脏瓣膜远端的速度场和切应力进行高分辨率评估。

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BACKGROUND AND AIM OF THE STUDY: Complications after replacement of diseased heart valves with mechanical prostheses have been shown to be related to the hemodynamics distal to the valve. For this reason, the velocity patterns have been disclosed in vitro with a variety of different techniques. This study introduces a magnetic resonance imaging (MRI) -based technique, which entails easy acquisition of fluid velocity field data with a high accuracy and spatial resolution. METHODS: A high-field magnetic resonance scanner equipped with short echo time phase-contrast velocity measurement software was applied in a detailed mapping of the axial velocity profile across the entire vessel area at two positions downstream of a bileaflet valve prosthesis inserted in a pulsatile flow system in vitro. The laminar shear forces were calculated from the fluid velocity field data. RESULTS: The velocity profiles very close to the valve reflected the bileaflet design as also shown in previous studies, but the extent and velocities of the jet emanating from the slit between the leaflets were clearly better visualized. However, one diameter downstream of the valve the central jet was completely dispersed and the hemodynamic complexity was significantly reduced. Recirculation and retrograde flow regions that might be relevant for understanding typical long-term complications after implantation were observed close to the valve. CONCLUSIONS: In one scan experiment the presented method provides information on flow characteristics that previously required application of different types of experiment. Thus, the method seems promising as a new technique for detailed and extensive mapping of the velocities and laminar shear stresses downstream of prosthetic heart valves in vitro.
机译:研究背景和目的:已经证明用机械假体替换患病心脏瓣膜后的并发症与瓣膜远端的血流动力学有关。由于这个原因,已经用多种不同的技术在体外公开了速度模式。这项研究引入了一种基于磁共振成像(MRI)的技术,该技术可轻松获得具有高精度和空间分辨率的流体速度场数据。方法:将配备有短回波时间相衬速度测量软件的高场磁共振扫描仪应用于在脉动流中插入的双叶瓣膜假体下游两个位置的整个血管区域的轴向速度分布图的详细映射体外系统。由流体速度场数据计算层流剪切力。结果:非常接近瓣膜的速度分布反映了双叶设计,如先前的研究中所示,但是从小叶之间的缝隙射出的射流的程度和速度明显更清晰可见。但是,在瓣膜下游一个直径的中央射流已完全分散,血液动力学复杂性显着降低。在瓣膜附近观察到可能与了解植入后典型的长期并发症有关的回流和逆流区域。结论:在一个扫描实验中,本文提出的方法提供了以前需要使用不同类型实验的流动特性信息。因此,该方法作为一种新技术有望在体外详细,广泛地绘制人造心脏瓣膜下游的速度和层流切应力。

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