期刊
JOURNAL OF SPORTS SCIENCES
卷 40, 期 22, 页码 2524-2532出版社
TAYLOR & FRANCIS LTD
DOI: 10.1080/02640414.2023.2172797
关键词
Ground reaction forces; performance; sprint start; sprinting; technique; track and field
This study investigated the relationships between selected kinematic characteristics and force generation during the initial acceleration phase. The results showed that placing the stance foot further behind the body's center of mass and having a more anterior orientation of the foot and shank segments at touchdown were associated with higher force generation. Additionally, a greater ankle dorsiflexion range of motion during early stance was also related to higher force generation.
In track sprinting, acceleration performance is largely determined by the ability to generate a high ratio of forces (RF), but the technical features associated with this remain unknown. This study therefore investigated the relationships between selected kinematic characteristics and RF during the initial acceleration phase. Fourteen male sprinters completed two maximal 60 m sprints from a block start. Full-body kinematic and external kinetic data were obtained from the first four steps, and the relationships between selected kinematic characteristics and mean RF over the first four steps were determined. Placing the stance foot further behind (or less far in front of) the whole-body centre of mass at touchdown was significantly related to greater RF (r = -0.672), and more anterior orientation of the proximal end of the foot (r = -0.724) and shank (r = -0.764) segments at touchdown were also significantly related to greater RF. Following touchdown, greater ankle dorsiflexion range of motion during early stance was significantly related to greater RF (r = 0.728). When aiming to enhance RF during initial acceleration, practitioners should be encouraged to focus on lower leg configurations when manipulating touchdown distance, and the role of dorsiflexion during early stance is also an important consideration.
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