椎间运动学分析中导数算子的定量性能比较

E. Andreozzi, M. A. Pirozzi, A. Fratini, G. Cesarelli, P. Bifulco
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引用次数: 1

摘要

通过定量性能分析的导数算子的比较在医学成像中很少得到解决。事实上,这些算子的主要应用是边缘的提取,由于边缘没有明确的定义,常见的趋势是根据提取的边缘和人类对物体边界的变化无常的感知之间的定性匹配来识别性能最好的算子。本研究通过定量分析特定任务(即脊柱运动学应用)中产生的结果,对四种一阶导数算子进行了客观比较。这种应用基于模板匹配方法,该方法通过对每一帧的图像导数进行操作,从脊柱运动的x射线透视序列中估计椎间节段的共同运动学参数。因此,通过不同的导数算子计算的图像导数的差异可能导致椎间运动学估计参数的差异。本研究中提出的比较集中在椎间节段的瞬时旋转中心(ICR)的轨迹上,因为它即使对位移和速度的非常小的差异也特别敏感。因此,通过定义定量措施,对四种考虑的导数算子中每一种得到的ICR轨迹之间的差异进行了定量分析。结果显示,所获得的ICR轨迹存在可检测的差异,因此强调了在旨在提供定量结果的应用中对导数算子性能进行定量分析的必要性。然而,这些差异对临床应用的显著性水平应该进一步评估,但是,目前,这是不可能的,因为在与特定脊柱病理相关的运动学参数特征方面没有共识和足够的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative performance comparison of derivative operators for intervertebral kinematics analysis
Comparison of derivative operators via quantitative performance analysis is rarely addressed in medical imaging. Indeed, the main application of such operators is the extraction of edges and, since there is no unequivocal definition of edges, the common trend is to identify the best performing operator based on a qualitative match between the extracted edges and the fickle human perception of object boundaries. This study presents an objective comparison of four first-order derivative operators through quantitative analysis of results yielded in a specific task, i.e. a spine kinematics application. Such application is based on a template matching method, which estimates common kinematic parameters of intervertebral segments from an X-ray fluoroscopy sequence of spine motion, by operating on the image derivatives of each frame. Therefore, differences in image derivatives, computed via different derivative operators, may lead to differences in estimated parameters of intervertebral kinematics. The comparison presented in this study focused on the trajectory of the instantaneous center of rotation (ICR) of an intervertebral segment, as it is particularly sensitive even to very small differences in displacements and velocities. Therefore, a quantitative analysis of the discrepancies between the ICR trajectories, obtained with each of the four considered derivative operators, was carried out by defining quantitative measures. The results showed detectable differences in the obtained ICR trajectories, thus highlighting the need for quantitative analysis of derivative operator performances in applications aimed at providing quantitative results. However, the significance level of such differences for clinical applications should be further assessed, but, currently, it is not possible, as there is no consensus and sufficient data on kinematic parameters features associated with specific spinal pathologies.
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