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首页> 外文期刊>Journal of Applied Biomechanics >Accuracy and Feasibility of Dual Fluoroscopy and Model-Based Tracking to Quantify in Vivo Hip Kinematics During Clinical Exams
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Accuracy and Feasibility of Dual Fluoroscopy and Model-Based Tracking to Quantify in Vivo Hip Kinematics During Clinical Exams

机译:双重荧光检查和基于模型的跟踪在临床检查期间体内髋关节运动学定量的准确性和可行性

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摘要

Accurate measurements of in-vivo hip kinematics may elucidate the mechanisms responsible for impaired function and chon-drolabral damage in hips with femoroacetabular impingement (FAI). The objectives of this study were to quantify the accuracy and demonstrate the feasibility of using dual fluoroscopy to measure in-vivo hip kinematics during clinical exams used in the assessment of FAI. Steel beads were implanted into the pelvis and femur of two cadavers. Specimens were imaged under dual fluoroscopy during the impingement exam, FABER test, and rotational profile. Bead locations measured with model-based tracking were compared with those measured using dynamic radiostereometric analysis. Error was quantified by bias and precision, defined as the average and standard deviation of the differences between tracking methods, respectively. A normal male volunteer was also imaged during clinical exams. Bias and precision along a single axis did not exceed 0.17 and 0.21 mm, respectively. Comparing kinematics, positional error was less than 0.48 mm and rotational error was less than 0.58°. For the volunteer, kinematics were reported as joint angles and bone-bone distance. These results demonstrate that dual fluoroscopy and model-based tracking can accurately measure hip kinematics in living subjects during clinical exams of the hip.
机译:体内髋运动学的准确测量可以阐明造成股骨髋臼撞击(FAI)的髋关节功能受损和软骨-胸唇损伤的机制。这项研究的目的是量化准确性,并证明在评估FAI的临床检查过程中使用双透视检查法测量体内髋运动学的可行性。将钢珠植入两个尸体的骨盆和股骨中。在冲击检查,FABER测试和旋转轮廓过程中,样品在双透视下成像。将通过基于模型的跟踪测量的珠子位置与使用动态放射立体分析法测量的珠子位置进行比较。误差通过偏差和精度进行量化,分别定义为跟踪方法之间差异的平均值和标准偏差。在临床检查期间,还对一名正常的男性志愿者进行了成像。沿单个轴的偏差和精度分别不超过0.17和0.21 mm。比较运动学,位置误差小于0.48 mm,旋转误差小于0.58°。对于志愿者,运动学被报告为关节角度和骨-骨距离。这些结果表明,双重荧光检查和基于模型的跟踪可以在髋关节的临床检查过程中准确测量活体受试者的髋关节运动学。

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