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Information theoretic analysis of plaque in MR imaging

机译:MR成像中斑块的信息理论分析

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Magnetic resonance (MR) imaging and analysis have become one of the most important tools in medical research and clinical applications. To quantitatively evaluate the quality of MR images, some research work has been done previously. However, most of the research was only based on 2D spin echo images which can hardly be applied to atherosclerosis study. In this paper, we apply Shannon's information theory for optimal MR imaging and lesion index analysis. First, we review the information content (IC) which is used as a subjective criterion of image quality measurement in our work. Then we extend the existing spatial spectrum model to the 3D time-of-flight (ToF) imaging technique and find the optimal imaging resolution with which the maximum image information content can be obtained. A theoretical proof of its uniqueness is also given. At last, a lesion index system is proposed and developed for the blood vessel wall plaque analysis in our study. It is used to determine atherosclerotic lesion complexity and identify lesion changes over time. Some phantom and in vivo MR images are analyzed along with examples to demonstrate the performance.
机译:磁共振(MR)成像和分析已成为医学研究和临床应用中最重要的工具之一。为了定量评估MR图像的质量,先前已经进行了一些研究工作。但是,大多数研究仅基于2D自旋回波图像,很难应用于动脉粥样硬化研究。在本文中,我们将Shannon信息理论应用于最佳MR成像和病变指数分析。首先,我们回顾信息内容(IC),该信息内容是我们工作中图像质量测量的主观标准。然后,我们将现有的空间光谱模型扩展到3D飞行时间(ToF)成像技术,并找到可获取最大图像信息内容的最佳成像分辨率。还给出了其唯一性的理论证明。最后,提出并开发了一种病变指数系统,用于我们研究中的血管壁斑块分析。它用于确定动脉粥样硬化病变的复杂程度并确定病变随时间的变化。分析了一些幻影和体内MR图像以及示例,以演示其性能。

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