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Computerized method to compensate for breathing body motion in dynamic chest radiographs

机译:动态胸部X光片中呼吸身体运动的计算机补偿方法

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Dynamic chest radiography combined with computer analysis allows quantitative analyses on pulmonary function and rib motion. The accuracy of kinematic analysis is directly linked to diagnostic accuracy, and thus body motion compensation is a major concern. Our purpose in this study was to develop a computerized method to reduce a breathing body motion in dynamic chest radiographs. Dynamic chest radiographs of 56 patients were obtained using a dynamic flat-panel detector. The images were divided into a 1 cm-square and the squares on body counter were used to detect the body motion. Velocity vector was measured using cross-correlation method on the body counter and the body motion was then determined on the basis of the summation of motion vector. The body motion was then compensated by shifting the images based on the measured vector. By using our method, the body motion was accurately detected by the order of a few pixels in clinical cases, mean 82.5% in right and left directions. In addition, our method detected slight body motion which was not able to be identified by human observations. We confirmed our method effectively worked in kinetic analysis of rib motion. The present method would be useful for the reduction of a breathing body motion in dynamic chest radiography.
机译:动态胸部放射线照相与计算机分析相结合,可以对肺功能和肋骨运动进行定量分析。运动学分析的准确性与诊断准确性直接相关,因此人体运动补偿是一个主要问题。我们在这项研究中的目的是开发一种计算机化方法,以减少动态胸部X光片中的呼吸身体运动。使用动态平板探测器获得了56例患者的动态胸部X光片。将图像划分为1 cm的正方形,并使用人体计数器上的正方形检测人体运动。使用互相关方法在人体计数器上测量速度矢量,然后根据运动矢量的总和确定人体运动。然后通过基于测量的矢量移动图像来补偿人体运动。通过使用我们的方法,在临床情况下,人体运动可以精确地检测到几个像素的数量级,在左右方向上的平均值为82.5%。另外,我们的方法检测到人体的轻微运动,这是人类观察无法识别的。我们证实了我们的方法在肋骨运动动力学分析中有效。本方法对于减少动态胸部放射线照相中的呼吸身体运动将是有用的。

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