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我们能否使用全球定位系统(GPS)来评估七人制橄榄球的短跑表现?一项同时效度和设备间可靠性研究。

Can we use GPS for assessing sprinting performance in rugby sevens? A concurrent validity and between-device reliability study.

作者信息

Lacome Mathieu, Peeters Alexis, Mathieu Bertrand, Bruno Marrier, Christopher Carling, Piscione Julien

机构信息

Research Department, French Rugby Union, Marcoussis, France.

Performance Department, Paris Saint Germain FC, Saint-Germain-En-Laye, France.

出版信息

Biol Sport. 2019 Mar;36(1):25-29. doi: 10.5114/biolsport.2018.78903. Epub 2018 Oct 15.

Abstract

The purpose of this study was to (1) provide data on maximal sprinting speed (MSS) and maximal acceleration (Amax) in elite rugby sevens players measured with GPS devices, (2) test the concurrent validity of the signal derived from a radar device and a commercially available 16 Hz GPS device, and (2) assess the between-device reliability of MSS and Amax of the same GPS. Fifteen elite rugby sevens players (90 ± 12 kg; 181 ± 8 cm; 26 ± 5 y) participated in the maximal sprinting test. A subset of five players participated in the concurrent validity and between-devices reliability study. A concurrent validity protocol compared the GPS units and a radar device (Stalker ATS II). The between-device reliability of the GPS signal during maximal sprint running was also assessed using 6 V2 GPS units (Sensorevery-where, Digital Simulation, Paris, France) attached to a custom-made steel sled and pushed by the five athletes who performed a combined total of 15 linear 40m sprints. CV ranged from 0.5, ±0.1 % for MSS and smoothed MSS to 6.4, ±1.1 % for Amax. TEM was trivial for MSS and smoothed MSS (0.09, ±0.01) and small for Amax and smoothed Amax (0.54, ±0.09 and 0.39, ±0.06 respectively). Mean bias ranged from -1.6, ±1.0 % to -3.0, ±1.1 % for smoothed MSS and MSS respectively. TEE were small (2.0, ±0.55 to 1.6, ±0.4 %, for MSS and smoothed MSS respectively. The main results indicate that the GPS units were highly reliable for assessing MSS and provided acceptable signal to noise ratio for measuring Amax, especially when a smoothing 0.5-s moving average is used. This 16 Hz GPS device provides sport scientists and coaches with an accurate and reliable means to monitor running performance in elite rugby sevens.

摘要

本研究的目的是

(1)提供关于使用GPS设备测量的精英七人制橄榄球运动员的最大冲刺速度(MSS)和最大加速度(Amax)的数据;(2)测试雷达设备和市售16Hz GPS设备所获信号的同时效度;(3)评估同一GPS设备的MSS和Amax在不同设备间的可靠性。15名精英七人制橄榄球运动员(90±12千克;181±8厘米;26±5岁)参加了最大冲刺测试。五名运动员的子集参加了同时效度和不同设备间可靠性研究。一个同时效度方案比较了GPS装置和一个雷达设备(Stalker ATS II)。还使用6个V2 GPS装置(法国巴黎数字模拟公司Sensorevery-where)评估了最大冲刺跑期间GPS信号在不同设备间的可靠性,这些装置附着在一个定制的钢雪橇上,由这五名运动员推动,他们总共进行了15次40米直线冲刺。变异系数(CV)对于MSS和平滑后的MSS范围为0.5±0.1%,对于Amax为6.4±1.1%。测量标准误(TEM)对于MSS和平滑后的MSS微不足道(0.09±0.01),对于Amax和平滑后的Amax较小(分别为0.54±0.09和0.39±0.06)。平均偏差对于平滑后的MSS和MSS分别为-1.6±1.0%至-3.0±1.1%。总误差(TEE)较小(对于MSS和平滑后的MSS分别为2.0±0.55至1.6±0.4%)。主要结果表明,GPS装置在评估MSS方面高度可靠,并为测量Amax提供了可接受的信噪比,特别是当使用0.5秒移动平均值进行平滑处理时。这种16Hz GPS设备为体育科学家和教练提供了一种准确可靠的方法来监测精英七人制橄榄球运动员的跑步表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1eb/6413573/f5ee5e76ac9b/JBS-36-78903-g001.jpg

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