首页> 外文会议>Visualization, Image-Guided Procedures, and Display; Progress in Biomedical Optics and Imaging; vol.7,no.27 >Image segmentation and registration for the analysis of joint motion from 3D MRI
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Image segmentation and registration for the analysis of joint motion from 3D MRI

机译:图像分割和配准,用于从3D MRI分析关节运动

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We report an image segmentation and registration method for studying joint morphology and kinematics from in vivo MRI scans and its application to the analysis of ankle joint motion. Using an MR-compatible loading device, a foot was scanned in a single neutral and seven dynamic positions including maximal flexion, rotation and inversion/eversion. A segmentation method combining graph cuts and level sets was developed which allows a user to interactively delineate 14 bones in the neutral position volume in less than 30 minutes total, including less than 10 minutes of user interaction. In the subsequent registration step, a separate rigid body transformation for each bone is obtained by registering the neutral position dataset to each of the dynamic ones, which produces an accurate description of the motion between them. We have processed six datasets, including 3 normal and 3 pathological feet. For validation our results were compared with those obtained from 3DViewnix, a semi-automatic segmentation program, and achieved good agreement in volume overlap ratios (mean: 91.57%, standard deviation: 3.58%) for all bones. Our tool requires only 1/50 and 1/150 of the user interaction time required by 3DViewnix and NIH Image Plus, respectively, an improvement that has the potential to make joint motion analysis from MRI practical in research and clinical applications.
机译:我们报告了一种图像分割和配准方法,用于从体内MRI扫描研究关节形态和运动学及其在踝关节运动分析中的应用。使用兼容MR的加载设备,在单个中立位置和七个动态位置(包括最大屈曲,旋转和倒立/倒立)中扫描脚。开发了一种结合了图形切割和水平集的分割方法,该方法允许用户在不到30分钟的时间内(包括少于10分钟的用户交互)以交互方式描绘出中立位置体积中的14条骨骼。在随后的配准步骤中,通过将中立位置数据集配准到每个动态的位置数据集,可以为每个骨骼获得单独的刚体变换,从而对它们之间的运动进行精确描述。我们已经处理了六个数据集,包括3个正常脚和3个病理脚。为了进行验证,我们将结果与半自动分割程序3DViewnix的结果进行了比较,并且所有骨骼的体积重叠率(均值:91.57%,标准差:3.58%)达成了良好的一致性。我们的工具分别仅需要3DViewnix和NIH Image Plus所需用户交互时间的1/50和1/150,这一改进有可能使MRI的联合运动分析在研究和临床应用中切实可行。

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