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Force Application Technique, Sprint Performance, and Training Implications

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Manage episode 444319217 series 3600057
内容由Athletics提供。所有播客内容(包括剧集、图形和播客描述)均由 Athletics 或其播客平台合作伙伴直接上传和提供。如果您认为有人在未经您许可的情况下使用您的受版权保护的作品,您可以按照此处概述的流程进行操作https://zh.player.fm/legal

This episode discusses a research paper examining the biomechanics of sprint running and how these factors affect performance in the 100m race. The study explores the importance of ground reaction force (GRF), particularly its horizontal component, in determining acceleration. The authors used a motorised instrumented treadmill to measure GRF in detail and found that the ability to orient GRF forward is crucial for sprint performance, even more so than the total force produced. The study also investigates how different levels of athletes, ranging from non-specialists to world-class performers, apply force differently during sprinting. The results highlight the need for training programs that focus on both physical strength and technical skill development, specifically in orienting force forward during acceleration.
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Artwork
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Manage episode 444319217 series 3600057
内容由Athletics提供。所有播客内容(包括剧集、图形和播客描述)均由 Athletics 或其播客平台合作伙伴直接上传和提供。如果您认为有人在未经您许可的情况下使用您的受版权保护的作品,您可以按照此处概述的流程进行操作https://zh.player.fm/legal

This episode discusses a research paper examining the biomechanics of sprint running and how these factors affect performance in the 100m race. The study explores the importance of ground reaction force (GRF), particularly its horizontal component, in determining acceleration. The authors used a motorised instrumented treadmill to measure GRF in detail and found that the ability to orient GRF forward is crucial for sprint performance, even more so than the total force produced. The study also investigates how different levels of athletes, ranging from non-specialists to world-class performers, apply force differently during sprinting. The results highlight the need for training programs that focus on both physical strength and technical skill development, specifically in orienting force forward during acceleration.
Source

  continue reading

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