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Measurement of Intervertebral Cervical Motion by Means of Dynamic X-Ray Image Processing and Data Interpolation

机译:动态X射线图像处理和数据插值法测量椎间盘运动

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摘要

Accurate measurement of intervertebral kinematics of the cervical spine can support the diagnosis of widespread diseases related to neck pain, such as chronic whiplash dysfunction, arthritis, and segmental degeneration. The natural inaccessibility of the spine, its complex anatomy, and the small range of motion only permit concise measurement in vivo. Low dose X-ray fluoroscopy allows time-continuous screening of cervical spine during patient's spontaneous motion. To obtain accurate motion measurements, each vertebra was tracked by means of image processing along a sequence of radiographic images. To obtain a time-continuous representation of motion and to reduce noise in the experimental data, smoothing spline interpolation was used. Estimation of intervertebral motion for cervical segments was obtained by processing patient's fluoroscopic sequence; intervertebral angle and displacement and the instantaneous centre of rotation were computed. The RMS value of fitting errors resulted in about 0.2 degree for rotation and 0.2 mm for displacements.
机译:准确测量颈椎的椎间运动学可以支持诊断与颈部疼痛有关的广泛疾病,例如慢性鞭打功能障碍,关节炎和节段性变性。脊椎的自然不可及性,复杂的解剖结构和小的运动范围仅允许在体内进行简洁的测量。低剂量X射线荧光透视可以在患者自发运动期间对颈椎进行连续的筛查。为了获得准确的运动测量结果,通过沿放射线图像序列进行图像处理来跟踪每个椎骨。为了获得运动的时间连续表示并减少实验数据中的噪声,使用了平滑样条插值。通过处理患者的荧光透视序列来估计颈段的椎间运动。计算椎间角和位移以及瞬时旋转中心。拟合误差的RMS值导致旋转约为0.2度,位移约为0.2mm。

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