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全球定位系统与特定运动项目测试。

Global positioning system and sport-specific testing.

作者信息

Larsson Peter

机构信息

Department of Surgical and Perioperative Sciences, Sports Medicine Unit, 901 87 Umeå, Sweden.

出版信息

Sports Med. 2003;33(15):1093-101. doi: 10.2165/00007256-200333150-00002.

Abstract

Most physiological testing of athletes is performed in well-controlled situations in the laboratory. Multiple factors that are hard to control for have limited the use of sport-specific field testing. Recently, the technique of the differential global positioning system (dGPS) has been put forward as a way to monitor the position and speed of an athlete during outdoor activities with acceptable precision, thus controlling the two most important factors of performance in endurance athletics, i.e. inclination and speed. A detailed analysis of performance has been shown to be possible in combination with metabolic gas measurements. The combination of accelerometry and dGPS has also been shown to improve physiological field testing. The technique of dGPS could probably also be combined with other bio-measurements (e.g. electromyography and cycling cadence and power) and may enable other studies of exercise physiology in the field, otherwise restricted to the laboratory environment. This technique may also be of use in general exercise physiology where monitoring of patients with, for example, cardiovascular and pulmonary diseases, could be of interest for the future.

摘要

大多数针对运动员的生理测试是在实验室中严格控制的条件下进行的。多种难以控制的因素限制了特定运动项目的现场测试的应用。最近,差分全球定位系统(dGPS)技术被提出,作为一种在户外活动期间以可接受的精度监测运动员位置和速度的方法,从而控制耐力运动中两个最重要的表现因素,即坡度和速度。结合代谢气体测量已证明可以对运动表现进行详细分析。加速度测量法和dGPS的结合也已证明能改善生理现场测试。dGPS技术可能还可以与其他生物测量方法(如肌电图、骑行踏频和功率)相结合,并可能使其他野外运动生理学研究成为可能,否则这些研究只能局限于实验室环境。这项技术在一般运动生理学中可能也有用处,例如对心血管和肺部疾病患者的监测在未来可能会受到关注。

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