METHOD FOR POST-PROCESSING FLOW-SENSITIVE PHASE CONTRAST MAGNETIC RESONANCE IMAGES
    4.
    发明申请
    METHOD FOR POST-PROCESSING FLOW-SENSITIVE PHASE CONTRAST MAGNETIC RESONANCE IMAGES 审中-公开
    用于后处理流敏相位对比磁共振图像的方法

    公开(公告)号:US20160358328A1

    公开(公告)日:2016-12-08

    申请号:US15102853

    申请日:2014-12-10

    摘要: A method for generating fluid flow images of a region of interest is disclosed. The method includes: scanning the region of interest to acquire a set of 4D-Flow magnetic resonance images, wherein the set comprises an anatomical magnitude image, a first velocity component image, a second velocity component image, and a third velocity component image; isolating the anatomical magnitude image, the first velocity component image, the second velocity component image, and the third velocity component image from the set of 4D-Flow magnetic resonance images; converting the first, second, and third velocity component images into a velocity vector field; modeling a location of an anatomical wall within the region of interest; calculating at least one flow dynamics parameter for the region of interest; and generating a visual representation of the anatomical wall and the at least one flow dynamics parameter.

    摘要翻译: 公开了一种用于产生感兴趣区域的流体流动图像的方法。 该方法包括:扫描感兴趣区域以获取一组4D-Flow磁共振图像,其中该组包括解剖幅度图像,第一速度分量图像,第二速度分量图像和第三速度分量图像; 从4D-Flow磁共振图像的组中分离解剖幅度图像,第一速度分量图像,第二速度分量图像和第三速度分量图像; 将第一,第二和第三速度分量图像转换成速度矢量场; 在感兴趣区域内建模解剖墙的位置; 计算感兴趣区域的至少一个流动动力学参数; 以及产生所述解剖壁和所述至少一个流动动力学参数的视觉表示。

    Method for post-processing flow-sensitive phase contrast magnetic resonance images

    公开(公告)号:US10134127B2

    公开(公告)日:2018-11-20

    申请号:US15102853

    申请日:2014-12-10

    摘要: A method for generating fluid flow images of a region of interest is disclosed. The method includes: scanning the region of interest to acquire a set of 4D-Flow magnetic resonance images, wherein the set comprises an anatomical magnitude image, a first velocity component image, a second velocity component image, and a third velocity component image; isolating the anatomical magnitude image, the first velocity component image, the second velocity component image, and the third velocity component image from the set of 4D-Flow magnetic resonance images; converting the first, second, and third velocity component images into a velocity vector field; modeling a location of an anatomical wall within the region of interest; calculating at least one flow dynamics parameter for the region of interest; and generating a visual representation of the anatomical wall and the at least one flow dynamics parameter.