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A videofluoroscopy-based tracking algorithm for quantifying the time course of human intervertebral displacements

机译:基于视频透视的跟踪算法,用于量化人体椎间位移的时间过程

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The motions of individual intervertebral joints can affect spine motion, injury risk, deterioration, pain, treatment strategies, and clinical outcomes. Since standard kinematic methods do not provide precise time-course details about individual vertebrae and intervertebral motions, information that could be useful for scientific advancement and clinical assessment, we developed an iterative template matching algorithm to obtain this data from videofluoroscopy images. To assess the bias of our approach, vertebrae in an intact porcine spine were tracked and compared to the motions of high-contrast markers. To estimate precision under clinical conditions, motions of three human cervical spines were tracked independently ten times and vertebral and intervertebral motions associated with individual trials were compared to corresponding averages. Both tests produced errors in intervertebral angular and shear displacements no greater than 0.4 degrees and 0.055mm, respectively. When applied to two patient cases, aberrant intervertebral motions in the cervical spine were typically found to correlate with patient-specific anatomical features such as disc height loss and osteophytes. The case studies suggest that intervertebral kinematic time-course data could have value in clinical assessments, lead to broader understanding of how specific anatomical features influence joint motions, and in due course inform clinical treatments.
机译:单个椎间关节的运动会影响脊柱运动,受伤风险,恶化,疼痛,治疗策略和临床结果。由于标准的运动学方法不能提供有关单个椎骨和椎间运动的精确的时程细节,因此这些信息可能对科学进步和临床评估有用,因此,我们开发了一种迭代模板匹配算法,以从视频透视图像中获取此数据。为了评估我们的方法的偏见,对完整的猪脊椎中的椎骨进行了追踪,并将其与高对比度标记的运动进行了比较。为了估计临床条件下的精确度,对三个人类颈椎的运动进行了十次独立跟踪,并将与各个试验相关的椎骨和椎间运动与相应的平均值进行了比较。两项测试均导致椎间角位移和剪切位移的误差分别不大于0.4度和0.055mm。当应用于两个患者时,通常发现颈椎中的异常椎间运动与患者特定的解剖特征(例如椎间盘高度减低和骨赘)相关。案例研究表明,椎间运动时程数据可能在临床评估中具有价值,使人们对特定的解剖特征如何影响关节运动有更广泛的了解,并在适当的时候为临床治疗提供依据。

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