School of Sport and Health Sciences, Cardiff Metropolitan University , Cardiff, Wales.
Department for Health, University of Bath , Bath, UK.
J Sports Sci. 2020 May;38(10):1140-1149. doi: 10.1080/02640414.2020.1743065. Epub 2020 Apr 7.
An essential component of any physical preparation programme is the selection of training exercises to facilitate desired performance outcomes, with practitioners balancing the principles of sports training to inform exercise selection. This study aimed to advance biomechanical understanding of the principles of overload and specificity within exercise selection, utilising novel joint kinetic and intra-limb joint coordination analyses. Three-dimensional kinematic and kinetic data were obtained from six male sprinters (100 m PB, 10.64-11.00) performing block starts (competitive motor task) and seven training exercises that encompassed traditionally viewed general and more specific exercises. Results highlighted the challenging nature of exercise selection, with all exercises demonstrating capacity to overload relevant joint kinetic features of the block start. In addition, all exercises were able to promote the emergence of proximal and in-phase extension joint coordination patterns linked with block start execution, although traditionally viewed non-specific exercises elicited greater overall coordination similarity. The current research helps advance biomechanical understanding of overload and specificity within exercise selection, by demonstrating how exercise selection should not solely be based on perceived replication of a competitive motor task. Instead, practitioners must consider how the musculoskeletal determinants of performance are overloaded, in addition to promoting task specific coordination patterns.
任何身体准备计划的一个重要组成部分是选择训练练习以促进所需的表现结果,从业者平衡运动训练的原则以告知练习选择。本研究旨在利用新的关节动力学和肢体内部关节协调分析,深入了解运动选择中超负荷和特异性的原则。从六名男性短跑运动员(100 米 PB,10.64-11.00)进行起跑(竞技运动任务)和七个训练练习中获得了三维运动学和动力学数据,这些练习包括传统上认为的一般性和更具体的练习。结果突出了练习选择的挑战性,所有练习都显示出有能力使相关的起跑关节动力学特征超负荷。此外,所有练习都能够促进与起跑执行相关的近端和同相伸展关节协调模式的出现,尽管传统上认为非特异性练习引起了更大的整体协调相似性。本研究通过展示练习选择不应仅仅基于对竞技运动任务的感知复制,而是从业者必须考虑如何使运动表现的骨骼肌肉决定因素超负荷,以及促进任务特定的协调模式,从而有助于深入了解运动选择中的超负荷和特异性。