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颈椎活动度评估中标准化初始头部位置:可靠性与误差分析

Standardized initial head position in cervical range-of-motion assessment: reliability and error analysis.

作者信息

Solinger A B, Chen J, Lantz C A

机构信息

Research Department, Life Chiropractic College West, Hayward, CA 94541, USA.

出版信息

J Manipulative Physiol Ther. 2000 Jan;23(1):20-6.

Abstract

OBJECTIVE

To assess the clinical reliability and precision of the OSI CA-6000 Spinal Motion Analyzer for measurement of range of motion in cervical spines of pain-free subjects by using a novel procedure designed to minimize variability and quantitatively evaluate sources of errors.

METHODS

Twenty asymptomatic volunteer subjects were evaluated twice by each of two trained examiners in one session. Subject position was carefully standardized. Rotation, lateral bending, and flexion-extension were evaluated in repeated movements (cycles) from extreme to extreme.

ANALYSIS

Descriptive statistics and reliability coefficients (interclass correlation coefficients [ICCs]) were calculated for all full- and half-cycle motions. Possible sources of systematic errors were evaluated, and random errors were estimated.

RESULTS

ICCs indicate that the instrument performs very reliably for rotation and lateral bending (0.93-0.97) and acceptably for flexion-extension (0.75-0.93) measurements. Differences in instrument placement, subject posture, or both in different trials correlate neither with differences in measured values nor with variances. Within-trial errors did not correlate with ranges of motion. Standardizing head position resulted in increases in reliability of from 3% to 15% for axial rotation and lateral bending but actually decreased the ICCs for flexion-extension (up to 14%) compared with data collected under a less-stringent protocol. Errors in clinical use are estimated at 4.5 degrees.

CONCLUSIONS

By using our modifications to the accessories and standardization of subject position, the CA-6000 is a highly precise and reliable instrument for measuring active cervical motion about the 3 Cartesian axes. Individuals can repeat the same patterns of motion in sequential trials on the same day with very little variation. Ease of repetitious measurement without examiner intervention contributes to the instrument's ability to obtain highly reliable data. Changes in instrument placement or subject body posture between trials do not give rise to systematic errors. Design of the instrument for flexion-extension could be improved.

摘要

目的

通过使用一种旨在最小化变异性并定量评估误差来源的新程序,评估OSI CA - 6000脊柱运动分析仪测量无痛受试者颈椎活动范围的临床可靠性和精度。

方法

20名无症状志愿者受试者在一次测试中由两名经过培训的检查者分别进行两次评估。受试者的体位被仔细标准化。从极限位置到极限位置的重复运动(周期)中评估旋转、侧弯和屈伸情况。

分析

计算所有全周期和半周期运动的描述性统计量和可靠性系数(组内相关系数[ICC])。评估可能的系统误差来源,并估计随机误差。

结果

ICC表明该仪器在测量旋转和侧弯时表现出非常高的可靠性(0.93 - 0.97),在测量屈伸时表现尚可(0.75 - 0.93)。不同试验中仪器放置、受试者姿势或两者的差异与测量值的差异以及方差均无关联。试验内误差与活动范围无关。与在不太严格的方案下收集的数据相比,标准化头部位置使轴向旋转和侧弯的可靠性提高了3%至15%,但实际上降低了屈伸的ICC(高达14%)。临床使用中的误差估计为4.5度。

结论

通过对附件进行改进并标准化受试者位置,CA - 6000是一种用于测量颈椎在笛卡尔坐标系三个轴上主动运动的高精度且可靠的仪器。个体在同一天的连续试验中能够重复相同的运动模式,变化极小。无需检查者干预即可轻松进行重复测量,这有助于该仪器获得高度可靠的数据。试验之间仪器放置或受试者身体姿势的变化不会产生系统误差。该仪器在屈伸测量方面的设计可以改进。

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