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用于测量马垂直地面反作用力的仪器化跑步机。

Instrumented treadmill for measuring vertical ground reaction forces in horses.

作者信息

Weishaupt Michael A, Hogg Hermann P, Wiestner Thomas, Denoth Jachen, Stüssi Edgar, Auer Jörg A

机构信息

Department of Veterinary Surgery, University of Zurich, Switzerland.

出版信息

Am J Vet Res. 2002 Apr;63(4):520-7. doi: 10.2460/ajvr.2002.63.520.

Abstract

OBJECTIVE

To develop and validate a novel instrumented treadmill capable of determining vertical ground reaction forces of all 4 limbs simultaneously in horses.

SAMPLE POPULATION

Data obtained while a horse was walking and trotting on the treadmill.

PROCEDURE

18 piezo-electric force transducers were mounted between the treadmill frame and supporting steel platform to measure the actual forces at the corresponding bearing points. Each of the 18 sensor forces is equal to the sum of the unknown hoof forces weighted with the transfer coefficients of the corresponding force application points. The 4 force traces were calculated, solving at each time point the resulting equation system, using the Gaussian least-squares method. System validation comprised the following tests: determination of the survey accuracy of the positioning system, determination of the natural frequencies of the system, linearity test of the force transfer to the individual sensors, determination of superimposed forces with the treadmill-integrated force measuring system (TiF) in a static configuration, and comparison of vertical ground reaction forces determined simultaneously by use of TiF and force shoes mounted on the forelimbs of a horse.

RESULTS

Comparison between static test loads and TiF-calculated forces revealed deviations of < 1.4%. Force traces of TiF-calculated values and those recorded by use of the force shoes were highly correlated (r > or = 0.998).

CONCLUSIONS AND CLINICAL RELEVANCE

This instrumented treadmill allows a reliable assessment of load distribution and interlimb coordination in a short period and, therefore, is suitable for use in experimental and clinical investigations.

摘要

目的

研发并验证一种新型仪器化跑步机,该跑步机能够同时测定马匹四肢的垂直地面反作用力。

样本群体

在跑步机上行走和小跑的马匹所获得的数据。

步骤

18个压电式力传感器安装在跑步机框架与支撑钢平台之间,以测量相应支撑点处的实际力。18个传感器力中的每一个都等于未知蹄力之和,这些未知蹄力由相应力作用点的传递系数加权。通过高斯最小二乘法在每个时间点求解所得方程组,计算出4条力曲线。系统验证包括以下测试:定位系统测量精度的测定、系统固有频率的测定、力向各个传感器传递过程的线性测试、在静态配置下与跑步机集成测力系统(TiF)叠加力的测定,以及使用TiF和安装在马前肢的测力蹄铁同时测定垂直地面反作用力的比较。

结果

静态测试载荷与TiF计算力之间的比较显示偏差小于1.4%。TiF计算值的力曲线与使用测力蹄铁记录的力曲线高度相关(r≥0.998)。

结论及临床意义

这种仪器化跑步机能够在短时间内可靠地评估负荷分布和肢体间协调性,因此适用于实验和临床研究。

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