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首页> 外文期刊>Medical Physics >Intervertebral anticollision constraints improve out-of-plane translation accuracy of a single-plane fluoroscopy-to-CT registration method for measuring spinal motion
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Intervertebral anticollision constraints improve out-of-plane translation accuracy of a single-plane fluoroscopy-to-CT registration method for measuring spinal motion

机译:椎间抗碰撞约束提高了用于测量脊柱运动的单平面透视到CT配准方法的面外平移精度

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摘要

Purpose: The study aimed to propose a new single-plane fluoroscopy-to-CT registration method integrated with intervertebral anticollision constraints for measuring three-dimensional (3D) intervertebral kinematics of the spine; and to evaluate the performance of the method without anticollision and with three variations of the anticollision constraints via an in vitro experiment.Methods: The proposed fluoroscopy-to-CT registration approach, called the weighted edge-matching with anticollision (WEMAC) method, was based on the integration of geometrical anticollision constraints for adjacent vertebrae and the weighted edge-matching score (WEMS) method that matched the digitally reconstructed radiographs of the CT models of the vertebrae and the measured single-plane fluoroscopy images. Three variations of the anticollision constraints, namely, T-DOF, R-DOF, and A-DOF methods, were proposed. An in vitro experiment using four porcine cervical spines in different postures was performed to evaluate the performance of the WEMS and the WEMAC methods.Results: The WEMS method gave high precision and small bias in all components for both vertebral pose and intervertebral pose measurements, except for relatively large errors for the out-of-plane translation component. The WEMAC method successfully reduced the out-of-plane translation errors for intervertebral kinematic measurements while keeping the measurement accuracies for the other five degrees of freedom (DOF) more or less unaltered. The means (standard deviations) of the out-of-plane translational errors were less than -0.5 (0.6) and -0.3 (0.8) mm for the T-DOF method and the R-DOF method, respectively.Conclusions: The proposed single-plane fluoroscopy-to-CT registration method reduced the out-of-plane translation errors for intervertebral kinematic measurements while keeping the measurement accuracies for the other five DOF more or less unaltered. With the submillimeter and subdegree accuracy, the WEMAC method was considered accurate for measuring 3D intervertebral kinematics during various functional activities for research and clinical applications.
机译:目的:该研究旨在提出一种新的单平面透视到CT配准方法,该方法结合了椎间抗碰撞约束,用于测量脊柱的三维(3D)椎间运动学。并通过体外实验评估无防撞方法和防撞约束条件的三种变化的方法的性能。方法:提出了荧光镜到CT配准方法,即加权防边缘加权匹配技术(WEMAC)。基于对相邻椎骨的几何防碰撞约束的整合以及加权边缘匹配得分(WEMS)方法,该方法使椎骨CT模型的数字重建射线照片与所测得的单平面透视图像相匹配。提出了三种抗碰撞约束条件,即T-DOF,R-DOF和A-DOF方法。进行了使用四个姿势不同的猪颈椎的体外实验,以评估WEMS和WEMAC方法的性能。结果:除了椎体姿势和椎间姿势测量外,WEMS方法在所有分量上都具有很高的精度和较小的偏差,除了对于平面外转换组件的相对较大的错误。 WEMAC方法成功减少了椎间运动学测量的面外平移误差,同时使其他五个自由度(DOF)的测量精度保持不变。对于T-DOF方法和R-DOF方法,平面外平移误差的平均值(标准偏差)分别小于-0.5(0.6)和-0.3(0.8)mm。平面透视到CT配准方法减少了椎间运动学测量的面外平移误差,同时使其他五个自由度的测量精度保持不变。由于具有亚毫米级和亚度级的精度,WEMAC方法被认为是在研究和临床应用的各种功能活动期间测量3D椎间运动学的准确方法。

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