颅内动脉瘤模型中的多尺度流型。
Multiscale flow patterns within an intracranial aneurysm phantom.
机构信息
Biomedical Engineering and Physics Department, Academic Medical Center, University of Amsterdam, Amsterdam 1012 ZA, The Netherlands.
出版信息
IEEE Trans Biomed Eng. 2011 Dec;58(12):3447-50. doi: 10.1109/TBME.2011.2163070. Epub 2011 Jul 29.
Straightforward quantification of variations of flow patterns within aneurysms fails to accurately describe flow patterns of interest. We applied a multiscale decomposition of the flow in well-defined patterns to detect and quantify flow patterns in an aneurysm phantom that was studied with three different modalities: MRI, computational fluid dynamics, and particle image velocimetry. The method intuitively visualizes main patterns such as locally uniform flow, in- and outflow, and vortices. It is shown that this method is a valuable tool to quantitatively compare scale-dependent complex flow patterns in aneurysms.
单纯对动脉瘤内流型变化进行定量分析,无法准确描述感兴趣的流型。我们应用流的多尺度分解方法,检测并定量分析了用三种不同模式(MRI、计算流体动力学和粒子图像测速)研究的动脉瘤模型中的流型。该方法直观地显示了主要流型,如局部均匀流、流入和流出以及涡流。结果表明,该方法是定量比较动脉瘤中尺度相关复杂流型的有效工具。