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一种用于测量跳跃和着陆任务期间力-时间数据的便携式测力台的验证。

The validation of a portable force plate for measuring force-time data during jumping and landing tasks.

作者信息

Walsh Mark S, Ford Kevin R, Bangen Kyle J, Myer Gregory D, Hewett Timothy E

机构信息

Department of Physical Education, Health and Sport Studies, Miami University, Oxford, OH 45056, USA.

出版信息

J Strength Cond Res. 2006 Nov;20(4):730-4. doi: 10.1519/R-18225.1.

Abstract

The purpose of this study was to determine the reliability and validity of a portable force plate when analyzing jumping and landing tasks. Subjects performed 3 drop vertical jumps and 3 drop landings on both a standard strain gauge laboratory force plate and a portable force plate. In contrast to typical laboratory installed force plates, the portable 6-component force plate can be easily transported and used onsite at various training or data collection sites and incorporates Hall effect technology. The measured parameters included maximum force and time to maximum force for initial stance of the both tests, maximum takeoff force, and time to maximum takeoff force for the drop vertical jump. The Pearson correlation coefficients for the drop landing and the drop vertical jump for maximum force (r = 0.942, r = 0.940), time to maximum force (r = 0.891, r = 0.920) and for drop jump maximum jumping force (r = 0.971), and time to maximum takeoff force (r = 0.917) were all high and indicate that the force data collected by a resistor-type portable force plate provide similar measures to a standard strain-gauge laboratory force plate. Additionally, the within session reliability of the drop landing and the drop vertical jump measured by the portable force plate showed high interclass correlation coefficients for examined variables of 0.979 and 9.67 for maximum landing force and 0.917 and 0.920 for time to maximum landing force, respectively. The interclass correlation coefficients for the maximum takeoff force and time to maximum takeoff force during the drop vertical jump were 0.991 and 0.86. The results indicate the force and timing measurements from the portable force plate were both valid and reliable. Use of the portable force plate may facilitate methods of force measurement that can be applied out into the field and therefore a valuable tool for on site landing and jump force measurements in a variety of settings for large numbers of subjects.

摘要

本研究的目的是确定便携式测力台在分析跳跃和着陆任务时的可靠性和有效性。受试者在标准应变片式实验室测力台和便携式测力台上各进行3次垂直跳落和3次落地测试。与典型的实验室安装的测力台不同,便携式六分量测力台便于携带,可在各种训练或数据收集地点现场使用,并采用了霍尔效应技术。测量参数包括两次测试初始站立阶段的最大力和达到最大力的时间、最大起跳力以及垂直跳落的最大起跳力和达到最大起跳力的时间。垂直跳落和垂直跳测试中最大力的皮尔逊相关系数(r = 0.942,r = 0.940)、达到最大力的时间(r = 0.891,r = 0.920)、跳落最大起跳力(r = 0.971)以及达到最大起跳力的时间(r = 0.917)均很高,这表明电阻式便携式测力台收集的力数据与标准应变片式实验室测力台提供的测量结果相似。此外,便携式测力台测量的垂直跳落和垂直跳测试在同一测试时段内的可靠性显示,所检查变量的组内相关系数很高,最大着陆力分别为0.979和0.967,达到最大着陆力的时间分别为0.917和0.920。垂直跳过程中最大起跳力和达到最大起跳力的时间的组内相关系数分别为0.991和0.86。结果表明,便携式测力台的力和时间测量结果均有效且可靠。便携式测力台的使用可能会促进可应用于现场的力测量方法,因此是在各种环境中对大量受试者进行现场着陆和跳跃力测量的宝贵工具。

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