首页> 外文期刊>Journal of aging and physical activity >Why Are Masters Sprinters Slower Than Their Younger Counterparts? Physiological, Biomechanical, and Motor Control Related Implications for Training Program Design
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Why Are Masters Sprinters Slower Than Their Younger Counterparts? Physiological, Biomechanical, and Motor Control Related Implications for Training Program Design

机译:为什么硕士跑车比年轻的同行慢慢? 生理,生物力学和电机控制相关的培训计划设计的影响

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摘要

Elite sprint performances typically peak during an athlete's 20s and decline thereafter with age. The mechanisms underpinning this sprint performance decline are often reported to be strength-based in nature with reductions in strength capacities driving increases in ground contact time and decreases in stride lengths and frequency. However, an as-of-yet underexplored aspect of Masters sprint performance is that of age-related degradation in neuromuscular infrastructure, which manifests as a decline in both strength and movement coordination. Here, the authors explore reductions in sprint performance in Masters athletes in a holistic fashion, blending discussion of strength and power changes with neuromuscular alterations along with mechanical and technical age-related alterations. In doing so, the authors provide recommendations to Masters sprinters-and the aging population, in general-as to how best to support sprint ability and general function with age, identifying nutritional interventions that support performance and function and suggesting useful programming strategies and injury-reduction techniques.
机译:精英短跑成绩通常在运动员20多岁时达到顶峰,之后随着年龄的增长而下降。据报道,支撑这种短跑成绩下降的机制通常是基于力量的本质,力量能力的降低导致地面接触时间增加,步幅和频率减少。然而,大师级短跑成绩的一个尚未被充分探索的方面是与年龄相关的神经肌肉基础设施退化,表现为力量和运动协调能力的下降。在这里,作者以整体的方式探索大师级运动员短跑成绩的下降,将力量和力量变化的讨论与神经肌肉变化以及机械和技术年龄相关的变化结合起来。在这样做的过程中,作者向短跑大师和老龄化人群提供建议,总体而言,如何最好地支持随着年龄增长的短跑能力和一般功能,确定支持性能和功能的营养干预措施,并建议有用的编程策略和减少损伤的技术。

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