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Performance trade-offs and ageing in the ‘worlds greatest athletes’

机译:世界上最伟大的运动员的表现取舍和老化

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摘要

The mechanistic foundations of performance trade-offs are clear: because body size and shape constrains movement, and muscles vary in strength and fibre type, certain physical traits should act in opposition with others (e.g. sprint versus endurance). Yet performance trade-offs are rarely detected, and traits are often positively correlated. A potential resolution to this conundrum is that within-individual performance trade-offs can be masked by among-individual variation in ‘quality’. Although there is a current debate on how to unambiguously define and account for quality, no previous studies have partitioned trait correlations at the within- and among-individual levels. Here, we evaluate performance trade-offs among and within 1369 elite athletes that performed in a total of 6418 combined-events competitions (decathlon and heptathlon). Controlling for age, experience and wind conditions, we detected strong trade-offs between groups of functionally similar events (throwing versus jumping versus running) occurring at the among-individual level. We further modelled individual (co)variation in age-related plasticity of performance and found previously unseen trade-offs in throwing versus running performance that manifest through ageing. Our results verify that human performance is limited by fundamental genetic, environmental and ageing constraints that preclude the simultaneous improvement of performance in multiple dimensions. Identifying these constraints is fundamental to understanding performance trade-offs and predicting the ageing of motor function.
机译:权衡取舍的机制基础很明确:由于身体的大小和形状限制了运动,并且肌肉的力量和纤维类型各不相同,因此某些身体特征应该与其他人相反(例如冲刺和耐力)。然而,性能折衷很少被发现,特征通常是正相关的。解决这个难题的潜在方法是,个体之间的绩效权衡可以被个体之间“质量”的差异所掩盖。尽管目前存在关于如何明确定义和解释质量的争论,但以前的研究都没有在个体内部和个体之间对特征相关性进行划分。在这里,我们评估了在1369名精英运动员之间进行的性能折衷,他们在总共6418项联合项目比赛(十项全能和七项全能)中进行了表演。通过控制年龄,经验和风况,我们发现了在个体之间发生的功能相似事件组(投掷,跳跃,跑步)之间的强烈权衡。我们进一步模拟了与年龄相关的表现可塑性的个体(共同)变化,并发现了在老化过程中表现出的投掷与跑步表现之间从未见过的折衷。我们的结果证明,人类的表现受到基本的遗传,环境和衰老的限制,从而无法同时提高多个方面的表现。识别这些约束是了解性能折衷和预测运动功能老化的基础。

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