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经胫骨截肢患者关节力矩数据假体集成测量的标准效度和结构效度

Criterion and construct validity of prosthesis-integrated measurement of joint moment data in persons with transtibial amputation.

作者信息

Fiedler Goeran, Slavens Brooke, Smith Roger O, Briggs Douglas, Hafner Brian J

机构信息

Department of Rehabilitation Science and Technology, University of Pittsburgh, Pittsburgh, PA.

出版信息

J Appl Biomech. 2014 Jun;30(3):431-8. doi: 10.1123/jab.2013-0309. Epub 2014 Mar 4.

Abstract

Prosthesis-integrated sensors are appealing for use in clinical settings where gait analysis equipment is unavailable, but accurate knowledge of patients' performance is desired. Data obtained from load cells (inferring joint moments) may aid clinicians in the prescription, alignment, and gait rehabilitation of persons with limb loss. The purpose of this study was to assess the accuracy of prosthesis-integrated load cells for routine use in clinical practice. Level ground walking of persons with transtibial amputation was concurrently measured with a commercially available prosthesis-integrated load cell, a 10-camera motion analysis system, and piezoelectric force plates. Ankle and knee flexion/extension moments were derived and measurement methods were compared via correlation analysis. Pearson correlation coefficients ranged from 0.661 for ankle pronation/supination moments to 0.915 for ankle flexion/extension moments (P < .001). Root mean squared errors between measurement methods were in the magnitude of 10% of the measured range and were explainable. Differences in results depicted differences between systems in definition and computation of measurement variables. They may not limit clinical use of the load cell, but should be considered when data are compared directly to conventional gait analysis data. Construct validity of the load cell (ie, ability to measure joint moments in-situ) is supported by the study results.

摘要

假体集成传感器对于在无法使用步态分析设备但又需要准确了解患者表现的临床环境中使用很有吸引力。从测力传感器(推断关节力矩)获得的数据可能有助于临床医生对肢体缺失患者进行处方、调整和步态康复。本研究的目的是评估假体集成测力传感器在临床实践中常规使用的准确性。使用市售的假体集成测力传感器、10台摄像机的运动分析系统和压电力板同时测量经胫截肢患者在平地上行走的情况。得出踝关节和膝关节屈伸力矩,并通过相关性分析比较测量方法。皮尔逊相关系数范围从踝关节内旋/外旋力矩的0.661到踝关节屈伸力矩的0.915(P <.001)。测量方法之间的均方根误差在测量范围的10%左右,且可以解释。结果差异表明系统在测量变量的定义和计算方面存在差异。它们可能不会限制测力传感器的临床应用,但在将数据直接与传统步态分析数据进行比较时应予以考虑。研究结果支持了测力传感器的结构效度(即原位测量关节力矩的能力)。

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