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团队运动中的训练负荷监测:一种分离生理和生物力学负荷适应途径的新框架。

Training Load Monitoring in Team Sports: A Novel Framework Separating Physiological and Biomechanical Load-Adaptation Pathways.

机构信息

Faculty of Kinesiology and Rehabilitation Sciences, KU Leuven, Tervuursevest 101, Bus 1501, 3001, Leuven, Belgium.

Research Institute for Sport and Exercise Science, Liverpool John Moores University, Liverpool, UK.

出版信息

Sports Med. 2017 Nov;47(11):2135-2142. doi: 10.1007/s40279-017-0714-2.

Abstract

There have been considerable advances in monitoring training load in running-based team sports in recent years. Novel technologies nowadays offer ample opportunities to continuously monitor the activities of a player. These activities lead to internal biochemical stresses on the various physiological subsystems; however, they also cause internal mechanical stresses on the various musculoskeletal tissues. Based on the amount and periodization of these stresses, the subsystems and tissues adapt. Therefore, by monitoring external loads, one hopes to estimate internal loads to predict adaptation, through understanding the load-adaptation pathways. We propose a new theoretical framework in which physiological and biomechanical load-adaptation pathways are considered separately, shedding new light on some of the previously published evidence. We hope that it can help the various practitioners in this field (trainers, coaches, medical staff, sport scientists) to align their thoughts when considering the value of monitoring load, and that it can help researchers design experiments that can better rationalize training-load monitoring for improving performance while preventing injury.

摘要

近年来,在监测基于跑步的团队运动的训练负荷方面已经取得了相当大的进展。如今,新技术为持续监测运动员的活动提供了充足的机会。这些活动会导致各种生理子系统产生内部生化压力;然而,它们也会对各种肌肉骨骼组织造成内部机械压力。基于这些压力的数量和阶段性,各个子系统和组织会进行适应。因此,通过监测外部负荷,人们希望通过了解负荷适应途径来估计内部负荷,从而预测适应。我们提出了一个新的理论框架,其中分别考虑了生理学和生物力学的负荷适应途径,这为一些先前发表的证据提供了新的视角。我们希望它可以帮助该领域的各个从业者(教练、医生、运动科学家)在考虑监测负荷的价值时,能够统一他们的思路,并帮助研究人员设计更好地合理化训练负荷监测的实验,从而在预防损伤的同时提高运动表现。

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