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Characterization of Regional Pulmonary Mechanics from Serial MRI Data

机译:来自串行MRI数据的区域肺部机械的特征

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We describe a method for quantification of lung motion from the registration of successive images in serial MR acquisitions during normal respiration. MR quantification of pulmonary motion enables in vivo assessment of parenchymal mechanics within the lung in order to assist disease diagnosis or treatment monitoring. Specifically, we obtain estimates of pulmonary motion by summing the normalized cross-correlation over the lung images to identify corresponding locations between the images. The normalized correlation is robust to linear intensity distortions in the image acquisition, which may occur as a consequence of changes in average proton density resulting from changes in lung volume during the respiratory cycle. The estimated motions correspond to deformations of an elastic body and reflect to a first order approximation the true physical behavior of lung parenchyma. The method is validated on a serial MRI study of the lung, for which breath-hold images were acquired of a healthy volunteer at different phases of the respiratory cycle.
机译:我们描述了一种在正常呼吸期间串行MR采集中连续图像的登记量化肺部的方法。肺动动的定量使得肺部内实质力学的体内评估能够进行体内评估,以协助疾病诊断或治疗监测。具体地,通过求解肺图像上的标准化互相关来获得肺动作的估计,以识别图像之间的相应位置。归一化相关性是在图像获取中的线性强度失真的稳健性,这可能由于呼吸循环期间肺部体积的变化而导致的平均质子密度的变化发生。估计的运动对应于弹性体的变形,并反射到一阶近似肺实质的真实物理行为。该方法在肺部的序列MRI研究中验证,在呼吸循环的不同阶段获得了呼吸保持图像。

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