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Evaluation of complex joint motion with computer-based analysis of fluoroscopic sequences.

机译:通过荧光透视序列的基于计算机的分析来评估复杂的关节运动。

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RATIONALE AND OBJECTIVES: To develop a computer-assisted analysis of complex joint motion based on standard fluoroscopic sequences. MATERIALS AND METHODS: Fluoroscopic sequences of 10 normal shoulders and 20 patients after total shoulder arthroplasty were recorded during abduction and adduction. The analysis of the shoulder motion was based on automated tracking of selected components (models) of the shoulder joint. After processing the digitized images with an edge-detection procedure, visible edges were defined as base models. These models were tracked frame by frame. Several automated postprocessing evaluation procedures were developed and tested. RESULTS: The amounts of rotation and translation of the glenohumeral joint can be quantified and related. The mean translation parallel to the glenoid in the normal shoulder joints was 2.8 mm and 1.9 mm in joints after shoulder arthroplasty. The mean translation perpendicular to the glenoid was 0.9 mm and 0.8 mm, respectively. In complex motion patterns (ie, combined glenohumeral and thoracoscapular motion), electronic stabilization of an object (ie, stabilization of scapula) and, thus, separate analysis of each component. CONCLUSION: Computer assisted analysis allows automated evaluation of complex joint motion based on standard fluoroscopic sequences.
机译:理由和目的:基于标准的透视序列,开发复杂关节运动的计算机辅助分析。材料与方法:在外展和内收过程中记录10例正常肩关节和20例全肩关节置换术后患者的荧光镜检查序列。肩部运动的分析基于对肩关节选定组件(模型)的自动跟踪。用边缘检测程序处理数字化图像后,将可见边缘定义为基本模型。这些模型逐帧跟踪。开发并测试了几种自动化的后处理评估程序。结果:盂肱关节的旋转和平移量可以量化并相关。肩关节置换术后,正常肩关节中平行于关节盂的平均平移分别为2.8 mm和1.9 mm。垂直于关节盂的平均平移分别为0.9 mm和0.8 mm。在复杂的运动模式中(即盂肱和胸cap联合运动),对象的电子稳定(即肩骨的稳定),因此分别分析了每个成分。结论:计算机辅助分析可以根据标准的透视序列自动评估复杂的关节运动。

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