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评估步行过程中脊柱运动分析扫描的可重复性。

Evaluating the Reproducibility of Motion Analysis Scanning of the Spine during Walking.

作者信息

Gipsman Aaron, Rauschert Lisa, Daneshvar Michael, Knott Patrick

机构信息

Chicago Medical School, Rosalind Franklin University of Medicine and Science, 3333 Green Bay Road, North Chicago, IL 60064, USA.

出版信息

Adv Med. 2014;2014:721829. doi: 10.1155/2014/721829. Epub 2014 Jul 17.

Abstract

The Formetric 4D dynamic system (Diers International GmbH, Schlangenbad, Germany) is a rasterstereography based imaging system designed to evaluate spinal deformity, providing radiation-free imaging of the position, rotation, and shape of the spine during the gait cycle. Purpose. This study was designed to evaluate whether repeated measurements with the Formetric 4D dynamic system would be reproducible with a standard deviation of less than +/- 3 degrees. This study looked at real-time segmental motion, measuring kyphosis, lordosis, trunk length, pelvic, and T4 and L1 vertebral body rotation. Methods. Twenty healthy volunteers each underwent 3 consecutive scans. Measurements for kyphosis, lordosis, trunk length, and rotations of T4, L1, and the pelvis were recorded for each trial. Results. The average standard deviations of same-day repeat measurements were within +/- 3 degrees with a range of 0.51 degrees to 2.3 degrees. Conclusions. The surface topography system calculated reproducible measurements with error ranges comparable to the current gold standard in dynamic spinal motion analysis. Therefore, this technique should be considered of high clinical value for reliably evaluating segmental motion and spinal curvatures and should further be evaluated in the setting of adolescent idiopathic scoliosis.

摘要

Formetric 4D动态系统(德国施兰根巴德的迪尔斯国际有限公司)是一种基于光栅立体摄影的成像系统,旨在评估脊柱畸形,在步态周期中提供脊柱位置、旋转和形状的无辐射成像。目的。本研究旨在评估使用Formetric 4D动态系统进行重复测量时,标准差是否小于±3度,测量脊柱前凸、脊柱后凸、躯干长度、骨盆以及T4和L1椎体旋转的实时节段运动。方法。20名健康志愿者每人连续接受3次扫描。每次试验记录脊柱前凸、脊柱后凸、躯干长度以及T4、L1和骨盆旋转的测量值。结果。同一天重复测量的平均标准差在±3度以内,范围为0.51度至2.3度。结论。表面地形系统计算出的测量值具有可重复性,误差范围与当前动态脊柱运动分析的金标准相当。因此,该技术在可靠评估节段运动和脊柱曲度方面应被视为具有较高临床价值,并且应在青少年特发性脊柱侧凸的背景下进一步评估。

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