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首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >A variational approach to image registration in dynamic contrast-enhanced MRI of the human kidney
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A variational approach to image registration in dynamic contrast-enhanced MRI of the human kidney

机译:人肾脏动态对比增强MRI中的图像配准变化方法

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摘要

Kidney function can be accessed by dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) measurements which yield spatially resolved maps of physiological parameters like perfusion or filtration. The motion of the kidneys during the scan is a dominant limitation of the measurement quality, and image registration is necessary for accurate quantification. We analyzed the feasibility of applying an algorithm, originally developed for multimodal registration, to kidney perfusion time series. The algorithm uses a variational calculation scheme to align the images. In four out of five data sets, kidney motion could be reduced to below the spatial resolution of the images of 1.6. mm while preserving the enhancement pattern of kidney perfusion. Fitting a pharmacokinetic model to the data showed an average reduction of the Akaike fit error of 10% for the registered data, suggesting more stable parameters. We conclude that this image registration algorithm is feasible for correcting kidney motion in renal DCE-MRI.
机译:肾脏功能可通过动态对比增强磁共振成像(DCE-MRI)测量来访问,该测量可产生生理参数(例如灌注或过滤)的空间分辨图。扫描期间肾脏的运动是测量质量的主要限制,并且图像配准对于精确定量是必需的。我们分析了将最初为多模式配准开发的算法应用于肾脏灌注时间序列的可行性。该算法使用变分计算方案来对齐图像。在五分之四的数据集中,肾脏运动可降低至1.6图像的空间分辨率以下。毫米,同时保留肾脏灌注的增强模式。对数据拟合药代动力学模型表明,注册数据的Akaike拟合误差平均降低了10%,这表明参数更稳定。我们得出结论,该图像配准算法对于校正肾脏DCE-MRI中的肾脏运动是可行的。

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