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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Combined tag tracking and strain reconstruction from tagged cardiac MR images without user-defined myocardial contours.
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Combined tag tracking and strain reconstruction from tagged cardiac MR images without user-defined myocardial contours.

机译:无需用户定义的心肌轮廓,即可从标记的心脏MR图像中结合标签跟踪和应变重建功能。

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PURPOSE: To develop an unsupervised method for measuring quantitative three-dimensional regional strain in the left ventricular wall from tagged cardiac MR images. MATERIALS AND METHODS: A total of 10 normal human volunteers and eight patients with myocardial infarction were imaged using a parallel tagged imaging protocol. Each study was analyzed using the combined tag tracking and strain reconstruction (COTTER) algorithm. In contrast to existing techniques, which first track tag lines independently in each slice, then reconstruct myocardial deformation, the COTTER algorithm fits a three-dimensional cardiac deformation model directly to the image data. This approach ensures that tag line positions identified in the image data are consistent from slice to slice. A total of 10 imaging studies (six normals, four patients) were used to optimize parameters of the COTTER algorithm. RESULTS: In the remaining eight imaging studies, the root-mean-square difference between tags tracked by COTTER and user-supervised analysis was 0.66 pixels at end-systole. The correlation coefficient between circumferential shortening strains at end-systole computed by COTTER and user-supervised analysis was 0.84 (P < 0.005) at the midwall. CONCLUSION: The COTTER algorithm can compute accurate measurements of three-dimensional regional strain without user supervision. J. Magn. Reson. Imaging 2005;21:12-22. (c) 2004 Wiley-Liss, Inc.
机译:目的:从标记的心脏MR图像中开发一种无监督的方法来测量左心室壁的三维三维区域应变。材料与方法:使用平行标记成像方案对总共10名正常人类志愿者和8名心肌梗死患者进行了成像。使用标记追踪和应变重建(COTTER)组合算法对每项研究进行了分析。与先在每个切片中独立跟踪标签线,然后重建心肌变形的现有技术相反,COTTER算法将三维心脏变形模型直接拟合到图像数据。这种方法可确保图像数据中标识的标签线位置在切片之间保持一致。总共进行了10项影像学研究(6名正常人,4名患者),以优化COTTER算法的参数。结果:在其余八项影像学研究中,COTTER跟踪的标签与用户监督的分析之间的均方根差在收缩末期为0.66像素。通过COTTER计算的收缩末期周向缩短应变与用户监督分析之间的相关系数在中壁为0.84(P <0.005)。结论:COTTER算法可以计算出三维区域应变的精确测量值,而无需用户监督。 J.Magn。雷森成像2005; 21:12-22。 (c)2004年Wiley-Liss,Inc.

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