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首页> 外文期刊>IEEE Transactions on Medical Imaging >Deformation-based mapping of volume change from serial brain MRI in the presence of local tissue contrast change
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Deformation-based mapping of volume change from serial brain MRI in the presence of local tissue contrast change

机译:在局部组织对比度改变存在的情况下,基于序列脑MRI的体积变化基于变形的映射

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This paper is motivated by the analysis of serial structural magnetic resonance imaging (MRI) data of the brain to map patterns of local tissue volume loss or gain over time, using registration-based deformation tensor morphometry. Specifically, we address the important confound of local tissue contrast changes which can be induced by neurodegenerative or neurodevelopmental processes. These not only modify apparent tissue volume, but also modify tissue integrity and its resulting MRI contrast parameters. In order to address this confound we derive an approach to the voxel-wise optimization of regional mutual information (RMI) and use this to drive a viscous fluid deformation model between images in a symmetric registration process. A quantitative evaluation of the method when compared to earlier approaches is included using both synthetic data and clinical imaging data. Results show a significant reduction in errors when tissue contrast changes locally between acquisitions. Finally, examples of applying the technique to map different patterns of atrophy rate in different neurodegenerative conditions is included.
机译:本文的动机是,通过使用基于配准的变形张量形态学分析大脑的连续结构磁共振成像(MRI)数据,以绘制随时间变化的局部组织体积丢失或增加的图。具体而言,我们解决了可能由神经变性或神经发育过程引起的局部组织对比度变化的重要混杂问题。这些不仅改变表观组织体积,而且改变组织完整性及其产生的MRI对比参数。为了解决这个问题,我们推导了区域互信息(RMI)体素优化的方法,并使用它在对称配准过程中驱动图像之间的粘性流体变形模型。与合成方法和临床成像数据相比,该方法与早期方法相比具有定量评估。结果显示,在采集之间组织对比度局部改变时,误差显着降低。最后,包括应用该技术绘制不同神经退行性疾病中不同萎缩率模式的实例。

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