Comparative kinematic analysis of high-speed treadmill vs. overground sprinting across athletic levels and sex.

IF 1.2 4区 医学 Q3 SPORT SCIENCES
Samuel Montalvo, Fayon Gonzales, Gruber Lance, Matthew P Gonzalez, Martin S Dietze-Hermosa, Sandor Dorgo
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引用次数: 0

Abstract

Background: This investigation aimed to dissect the kinematic differences in sprinting between high-speed treadmill and overground conditions, examining how these variations are influenced by the athlete's training status and biological sex.

Methods: A total of 40 participants, 20 NCAA Division 1 sprinters and 20 recreational runners, performed a series of maximal sprints on a high-speed treadmill and on a standardized competition overground track. Sprinting kinematic variables such as stride length, stride frequency, contact time, and flight time were collected via photoelectric sensors. Maximal sprinting kinematics were analyzed by linear mixed-effects models, considering the impacts of sprinting environment (treadmill vs. overground), training level, and sex, with leg length as fixed factors and individual athletes as random effects. Statistical significance was set at a significance level of 0.05.

Results: The statistical analysis revealed that high-speed treadmill sprinting significantly affects all measured kinematic variables, leading to increased stride frequency and contact time. Elite sprinters demonstrated enhanced kinematic efficiency over recreational runners, characterized by increased stride length and frequency and reduced contact time. Sex-based kinematic distinctions also emerged, with male athletes exhibiting superior stride length and frequency compared to female athletes. Leg length significantly influenced stride frequency, and an interaction effect was observed for flight time between sprint type and athletic group.

Conclusions: These findings elucidate the distinct biomechanical profiles across sprinting modalities and athlete demographics, emphasizing the need for sprint training customization. This study's insights offer a valuable reference for coaches and athletes to refine training and performance assessment in varied sprinting environments.

不同运动水平和性别的高速跑步机冲刺与地面冲刺的运动学比较分析。
背景:这项调查旨在剖析高速跑步机和地面条件下短跑的运动学差异,研究这些差异如何受到运动员训练状况和生理性别的影响:共有 40 名参与者(20 名 NCAA 一级短跑运动员和 20 名休闲跑运动员)在高速跑步机上和标准化比赛地面跑道上进行了一系列最大短跑。通过光电传感器收集冲刺运动变量,如步长、步频、接触时间和飞行时间。考虑到短跑环境(跑步机与地面跑道)、训练水平和性别的影响,最大短跑运动学采用线性混合效应模型进行分析,腿长为固定因素,运动员个体为随机效应。统计显著性设定为 0.05:统计分析显示,高速跑步机短跑对所有测量的运动变量都有显著影响,导致步频和接触时间增加。与休闲跑步者相比,精英短跑运动员的运动效率更高,其特点是步长和步频增加,接触时间减少。基于性别的运动学差异也显现出来,男运动员的步长和步频都优于女运动员。腿长对步频有明显影响,在短跑类型和运动组别之间观察到飞行时间的交互效应:这些研究结果阐明了不同短跑模式和运动员人口统计学特征的生物力学特征,强调了短跑训练定制化的必要性。这项研究的见解为教练员和运动员在不同的短跑环境中完善训练和成绩评估提供了有价值的参考。
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来源期刊
CiteScore
2.90
自引率
5.90%
发文量
393
审稿时长
6-12 weeks
期刊介绍: The Journal of Sports Medicine and Physical Fitness publishes scientific papers relating to the area of the applied physiology, preventive medicine, sports medicine and traumatology, sports psychology. Manuscripts may be submitted in the form of editorials, original articles, review articles, case reports, special articles, letters to the Editor and guidelines.
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