手持式测力仪与光电系统膝关节强度测量质量的初步研究

A. Ancillao, S. Rossi, F. Patané, P. Cappa
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引用次数: 2

摘要

力量测量在临床实践中很流行,用于评估患者的健康状况和量化训练计划的结果。目前测量强度的常用方法是基于手持测力计(HHD),这是依赖于操作人员的。对强度测量的可重复性进行了一些研究,但仅限于对反复测量的力进行统计分析。在这项工作中,作者开发了一种方法,通过测量HHD相对于患者的有效位置和方向来研究膝关节屈伸强度测量的质量。HHD定位姿态是通过一个光电系统来测量的,该系统的标记协议是自定义的。该方法可以通过定量指标来评估测量质量和操作人员的能力。该方案允许评估:HHD应用的角度,膝关节的角度运动范围和HHD的运动范围。RMSE参数允许量化与所选指数相关的不准确性。结果表明,操作者无法使受试者的肢体完全静止。受试者在膝关节伸展时施加的力比预期的要大,膝关节活动范围比预期的要大,然而在膝关节屈曲试验中,操作者在握住HHD时遇到了更多的困难。研究表明,HHD定位在强度评价中起着重要作用,应尽可能准确。此外,操作者应该经过适当的训练,并且应该有足够的力量来抵消主体的力量。
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A preliminary study on quality of knee strength measurements by means of Hand Held Dynamometer and Optoelectronic System
Strength measurements are popular in the clinical practice to evaluate the health status of patients and quantify the outcome of training programs. Currently a common method to measure strength is based on Hand Held Dynamometers (HHD) which is operator-dependent. Some studies were conducted on repeatability of strength measurements but they were limited to the statistical analysis of repeated measurements of force. In this work, the authors developed a methodology to study the quality of knee flexion/extension strength measurements by measuring the effective HHD position and orientation with respect to the patient. HHD positioning attitude was measured by means of an Optoelectronic System for which a marker protocol was defined ad-hoc. The approach allowed to assess quality of measurements and operator's ability by means of quantitative indices. The protocol permitted the evaluation of: angles of HHD application, angular range of motion of the knee and range of motion of the HHD. RMSE parameters allowed to quantify the inaccuracy associated to the selected indices. Results showed that the operator was not able to keep the subject's limb completely still. The force exerted by the subject was higher in knee extension and the knee range of motion was higher than expected, however the operator had more difficulties in holding the HHD in knee flexion trials. This work showed that HHD positioning should be as accurate as possible, as it plays an important role for the strength evaluation. Moreover, the operator should be properly trained and should be strong enough to counteract the force of the subject.
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