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首页> 外文期刊>Clinical biomechanics >In vivo intersegmental motion of the cervical spine using an inverse kinematics procedure.
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In vivo intersegmental motion of the cervical spine using an inverse kinematics procedure.

机译:使用反向运动学程序对颈椎进行体内节段运动。

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摘要

BACKGROUND: The main functions of the cervical spine are the stabilization and the orientation of the head. Pathologies are complex and difficult to diagnose. The first sign of the dysfunction is an abnormal intervertebral motion. It is the purpose of this feasibility study to determine the intersegmental motions and loading conditions of the cervical spine in vivo with standard clinical investigation methods. METHODS: We propose a new approach which merges full flexion-extension X-ray images, and continuous motion of the whole cervical spine obtained with a tracking motion system. These data were used as input for a subject-specific rigid body model of the cervical spine computed with the software MSC.Adams. This model simulates the cervical spine extension/flexion, the intervertebral motions are deduced using an inverse kinematics procedure. FINDINGS: Subject-specific rigid body models were computed from data of two subjects. The intersegmental motion and loading conditions were calculated. We found that the loading amplitudes depended on the intervertebral level, and that subject specific patterns were highlighted. We noticed an unsymmetrical behavior in flexion and extension. Furthermore intervertebral rotations were correlated with the global motion of the cervical spine. INTERPRETATION: A subject-specific rigid body model merged data from classical flexion-extension radiographs and noninvasive external motion capture. Our approach is based on inverse kinematics allowing the estimation of the intervertebral motion and mechanical behavior of the cervical spine in vivo, which gives valuable information concerning biomechanics of the cervical spine in vivo for cervical spine clinical investigation.
机译:背景:颈椎的主要功能是稳定头部。病理很复杂且难以诊断。功能障碍的第一个征兆是椎间运动异常。本可行性研究的目的是通过标准的临床研究方法确定体内颈椎的节段运动和负荷情况。方法:我们提出了一种新的方法,该方法可以合并完整的屈伸X线图像和跟踪运动系统获得的整个颈椎的连续运动。这些数据用作使用软件MSC.Adams计算的特定于受试者的颈椎刚体模型的输入。该模型模拟颈椎伸展/屈曲,使用逆运动学方法推导椎间运动。结果:从两个受试者的数据计算出特定于受试者的刚体模型。计算段间运动和载荷条件。我们发现负荷幅度取决于椎间盘水平,并且突出显示了受试者的特定模式。我们注意到屈伸中的不对称行为。此外,椎间旋转与颈椎的整体运动相关。解释:特定对象的刚体模型合并了来自经典屈伸X线片和无创性外部运动捕捉的数据。我们的方法基于逆运动学,可以估算体内颈椎的椎间运动和机械行为,从而为颈椎临床研究提供有关体内颈椎生物力学的宝贵信息。

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