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Analysis of forearm rotational motion using biplane fluoroscopic intensity-based 2D-3D matching

机译:使用双荧光透视强度的2D-3D匹配分析前臂旋转运动

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Measuring three-dimensional (3D) forearm rotational motion is difficult. We aimed to develop and validate a new method for analyzing 3D forearm rotational motion. We proposed biplane fluoroscopic intensity-based 2D-3D matching, which employs automatic registration processing using the evolutionary optimization strategy. Biplane fluoroscopy was conducted for forearm rotation at 12.5 frames per second along with computed tomography (CT) at one static position. An arm phantom was embedded with eight stainless steel spheres (diameter, 1.5 mm), and forearm rotational motion measurements using the proposed method were compared with those using radiostereometric analysis, which is considered the ground truth. As for the time resolution analysis, we measured radiohumeral joint motion in a patient with posterolateral rotatory instability and compared the 2D-3D matching method with the simulated multiple CT method, which uses CTs at multiple positions and interpolates between the positions. Rotation errors of the radius and ulna between these two methods were 0.31 +/- 0.35 degrees and 0.32 +/- 0.33 degrees, respectively, translation errors were 0.43 +/- 0.35 mm and 0.29 +/- 0.25 mm, respectively. Although the 2D-3D method could detect joint dislocation, the multiple CT method could not detect quick motion during joint dislocation. The proposed method enabled high temporal- and spatial-resolution motion analyses with low radiation exposure. Moreover, it enabled the detection of a sudden motion, such as joint dislocation, and may contribute to 3D motion analysis, including joint dislocation, which currently cannot be analyzed using conventional methods. (C) 2019 Elsevier Ltd. All rights reserved.
机译:测量三维(3D)前臂旋转运动是困难的。我们旨在开发和验证一种分析3D前臂旋转运动的新方法。我们提出了基于双荧光透视强度的2D-3D匹配,其使用进化优化策略采用自动注册处理。在每秒12.5帧的前臂旋转进行双旋转荧光镜,在一个静态位置的计算机断层扫描(CT)处。将臂幻影嵌入八个不锈钢球体(直径1.5mm),并将使用该方法的前臂旋转运动测量与使用射线静脉分析的人进行比较,这被认为是实践。至于时间分辨率分析,我们在具有后侧旋转不稳定性的患者中测量了患者的去除肿瘤关节运动,并将2D-3D匹配方法与模拟多CT方法进行了比较,其在多个位置使用CT并在位置之间插入。这两种方法之间半径和尺骨的旋转误差分别为0.31 +/- 0.35度,分别为0.32 +/- 0.33度,翻译误差分别为0.43 +/- 0.35 mm和0.29 +/- 0.25 mm。虽然2D-3D方法可以检测到关节位错,但是多CT方法在关节位错期间无法检测快速运动。所提出的方法使具有低辐射曝光的高颞间和空间分辨率运动分析。此外,它使得能够检测突然运动,例如关节位错,并且可以有助于3D运动分析,包括关节位错,该方法不能使用常规方法分析目前无法分析。 (c)2019年elestvier有限公司保留所有权利。

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