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使用Zebris运动分析系统在体内测量颈椎运动。

The use of the Zebris motion analysis system for measuring cervical spine movements in vivo.

作者信息

Quinlan J F, Mullett H, Stapleton R, FitzPatrick D, McCormack D

机构信息

National Spinal Injuries Unit, Mater Misericordiae Hospital, Dublin, Ireland.

出版信息

Proc Inst Mech Eng H. 2006 Nov;220(8):889-96. doi: 10.1243/09544119JEIM53.

Abstract

The cervical spine exhibits the greatest range of motion among the spinal segments due to the complex interaction of its triplanar components of movement. As a result, measurement of movements of the cervical spine and of the various orthoses used in cervical spine injuries has proved difficult with no one method proving satisfactory. This paper uses the Zebris ultrasonic three-dimensional motion analysis system to measure flexion, extension, range of lateral bending, and range of axial rotation in five similar male and five similar female subjects with no history of neck injuries. The subjects were tested unrestrained and in soft and hard collars, as well as in Philadelphia, Miami J, and Minerva orthoses. Results show that the Minerva is the most stable construct for restriction of movement in all planes in both groups. Looking at these results allows ranking of the measured orthoses in order of their three-dimensional stability. Furthermore, by presenting reproducible data incorporating the composite triplanar movements of the cervical spine, thus allowing comparative analysis of the studied orthoses, they propose the Zebris as a reliable, repeatable, and safe method of measurement of cervical spine motion with low intersubject variability.

摘要

由于颈椎运动的三平面组成部分之间复杂的相互作用,颈椎在脊柱节段中表现出最大的运动范围。因此,事实证明,测量颈椎的运动以及用于颈椎损伤的各种矫形器的运动非常困难,没有一种方法能令人满意。本文使用Zebris超声三维运动分析系统,对五名无颈部损伤史的相似男性和五名相似女性受试者的前屈、后伸、侧屈范围和轴向旋转范围进行测量。对受试者在无约束状态下、佩戴软质和硬质颈托以及佩戴费城、迈阿密J型和米纳瓦矫形器的情况下进行测试。结果表明,米纳瓦矫形器是两组中限制所有平面运动最稳定的结构。查看这些结果可以按照测量的矫形器的三维稳定性对其进行排序。此外,通过呈现包含颈椎复合三平面运动的可重复数据,从而允许对所研究的矫形器进行比较分析,他们提出Zebris作为一种可靠、可重复且安全的测量颈椎运动的方法,受试者间变异性低。

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