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首页> 外文期刊>Clinical biomechanics >Sagittal plane segmental motion of the cervical spine. A new precision measurement protocol and normal motion data of healthy adults.
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Sagittal plane segmental motion of the cervical spine. A new precision measurement protocol and normal motion data of healthy adults.

机译:颈椎的矢状平面节段运动。健康成年人的一种新的精确测量协议和正常运动数据。

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OBJECTIVE: (1) Precise documentation of sagittal plane segmental rotational and posteroanterior translational motion of segments C0/C1-C6/C7 of the human cervical spine from lateral radiographic views. (2) Compilation of a database describing normal motion. (3) Comparison of individual motion patterns with the normal database. DESIGN: Descriptive study based on computer-aided measurements from lateral radiographic views taken in flexion and extension. BACKGROUND: Previous studies concentrated on segmental rotational motion of the cervical spine. Normal data for translational motion were not available. Description of cervical spine motion patterns thus remained incomplete. METHODS: Based on computer-aided measurements from lateral radiographic views taken in flexion and extension, a new protocol determines rotational and translational motion for all segments (C0/C1-C6/C7) imaged on the radiographic views. Measured results are corrected for radiographic magnification and variation in stature; they are virtually uninfluenced by radiographic distortion and patient alignment errors. A database describing normal motion was compiled from 137 sets of lateral views of healthy adults taken in active flexion and extension. A specimen study as well as inter- and intra-observer studies quantify measurement errors. RESULTS: The error study demonstrated the error (SD) of a rotational motion measurement to amount to slightly less than 2 degrees. The error (SD) of a translational motion measurement amounts to less than 5% of vertebral depth; for a vertebra of 15 mm depth this corresponds to 0.7 mm. A normal database for rotational and translational motion was compiled. There was a linear relation between rotational and translational motion. This finding agrees qualitatively with results from previous studies; quantitative comparisons are not possible due to divergent definitions for translational motion. The relation between rotation and translation can be employed in individual cases to predict translational motion, in dependence on the rotation actually performed. A comparison of the rotational motion with the normal database and the difference between predicted and actual translational motion allow segmental hypo-, normal or hypermobility to be quantified. CONCLUSIONS: The new protocol measures segmental motion with high precision and corrects for radiographic distortion, variation in stature and alignment errors of patients. Thus, archive studies using existing radiographs are feasible. RELEVANCE: Flexion-extension radiographs of the cervical spine are performed to explore potential damage to the bony or ligamentous structure resulting in abnormal, segmental motion patterns. Determining rotational motion gives only an incomplete picture. The new protocol allows for precise quantification of translational motion and classification of segments as hypo- or hypermobile by comparison with normal motion data.
机译:目的:(1)从侧位X线片上准确记录人颈椎节段C0 / C1-C6 / C7的矢状面分段旋转和后前平移运动。 (2)汇编描述正常运动的数据库。 (3)将各个运动模式与普通数据库进行比较。设计:描述性研究是基于计算机辅助测量的屈曲和伸展侧位X线照相术。背景:以前的研究集中在颈椎节段性旋转运动上。无法提供平移运动的正常数据。颈椎运动方式的描述因此仍然不完整。方法:基于在屈曲和伸展过程中从侧面X射线照相图像获得的计算机辅助测量结果,一种新协议确定了在X射线照相图像上成像的所有节段(C0 / C1-C6 / C7)的旋转和平移运动。对测量结果进行了射线放大倍率和身高变化的校正;它们实际上不受射线照相畸变和患者对准误差的影响。从137名健康成年人主动屈伸运动的侧视图中收集了描述正常运动的数据库。样本研究以及观察者之间和观察者内部研究量化了测量误差。结果:误差研究表明旋转运动测量的误差(SD)总计略小于2度。平移运动测量的误差(SD)小于椎骨深度的5%;对于15毫米深度的椎骨,这相当于0.7毫米。编译了用于旋转和平移运动的普通数据库。旋转运动和平移运动之间存在线性关系。这一发现在质量上与以前的研究结果一致。由于对平移运动有不同的定义,因此无法进行定量比较。取决于实际执行的旋转,可以在个别情况下采用旋转和平移之间的关系来预测平移运动。通过将旋转运动与正常数据库进行比较,以及预测和平移运动与实际平移运动之间的差异,可以量化节段性低,正常或超活动性。结论:新协议可以高精度地测量节段运动,并纠正患者的射线照相畸变,身高变化和对准误差。因此,使用现有的射线照片进行档案研究是可行的。相关性:进行了颈椎屈伸影像学检查,以探究对骨骼或韧带结构的潜在损害,从而导致异常的分段运动模式。确定旋转运动仅给出不完整的图像。通过与正常运动数据进行比较,新协议允许对平移运动进行精确量化,并将节段分类为低运动或超运动。

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