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Influence of Gender and Muscle Architecture Asymmetry on Jump and Sprint Performance

机译:性别和肌肉结构的不对称性对跳跃和短跑成绩的影响

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摘要

Muscle architecture is a determinant for sprinting speed and jumping power, which may be related to anaerobic sports performance. In the present investigation, the relationships between peak (PVJP) and mean (MVJP) vertical jump power, 30m maximal sprinting speed (30M), and muscle architecture were examined in 28 college-aged, recreationally-active men (n = 14; 24.3 ± 2.2y; 89.1 ± 9.3kg; 1.80 ± 0.07 m) and women (n = 14; 21.5 ± 1.7y; 65.2 ± 12.4kg; 1.63 ± 0.08 m). Ultrasound measures of muscle thickness (MT), pennation angle (PNG), cross-sectional area (CSA), and echo intensity (ECHO) were collected from the rectus femoris (RF) and vastus lateralis (VL) of both legs; fascicle length (FL) was estimated from MT and PNG. Men possessed lower ECHO, greater muscle size (MT & CSA), were faster, and were more powerful (PVJP & MVJP) than women. Stepwise regression indicated that muscle size and quality influenced speed and power in men. In women, vastus lateralis asymmetry negatively affected PVJP (MT: r = –0.73; FL: r = –0.60) and MVJP (MT: r = –0.76; FL: r = –0.64), while asymmetrical ECHO (VL) and FL (RF) positively influenced MVJP (r = 0.55) and 30M (r = 0.57), respectively. Thigh muscle architecture appears to influence jumping power and sprinting speed, though the effect may vary by gender in recreationally-active adults. Appropriate assessment of these ultrasound variables in men and women prior to training may provide a more specific exercise prescription.Key points class="unordered" style="list-style-type:disc">The manner in which thigh muscle architecture affects jumping power and sprinting speed varies by gender.In men, performance is influenced by the magnitude of muscle size and architecture.In women, asymmetrical muscle size and architectural asymmetry significantly influence performance.To develop effective and precise exercise prescription for the improvement of jumping power and/or sprinting speed, muscle architecture assessment prior to the onset of a training program is advised.
机译:肌肉结构是短跑速度和跳跃力量的决定因素,这可能与无氧运动表现有关。在本研究中,对28名大学娱乐活动活跃的男性(n = 14; 24.3)检查了峰值(PVJP)和平均(MVJP)垂直跳跃力,30m最大冲刺速度(30M)和肌肉结构之间的关系。女性(n = 14; 21.5±1.7y; 65.2±12.4kg; 1.63±0.08 m)±2.2y; 89.1±9.3kg; 1.80±0.07 m)。从双腿的股直肌(RF)和股外侧肌(VL)收集超声测量的肌肉厚度(MT),下垂角度(PNG),横截面积(CSA)和回声强度(ECHO);根据MT和PNG估算束长度(FL)。男性比女性具有更低的ECHO,更大的肌肉大小(MT&CSA),更快,更强大(PVJP&MVJP)。逐步回归表明,肌肉的大小和质量影响男性的速度和力量。在女性中,股外侧肌不对称对PVJP(MT:r = –0.73; FL:r = –0.60)和MVJP(MT:r = –0.76; FL:r = –0.64)产生负面影响,而ECHO(VL)和FL不对称(RF)分别对MVJP(r = 0.55)和30M(r = 0.57)产生积极影响。大腿肌肉结构似乎会影响跳跃力量和冲刺速度,尽管这种效果可能会因从事休闲运动的成年人的性别而异。在训练之前对男女的这些超声变量进行适当的评估可能会提供更具体的运动处方。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior =无序前缀词=标记类型=光盘最大标签大小= 0-> 大腿肌肉结构影响跳跃力量和冲刺速度的方式因性别而异。 在男性中,性能受肌肉大小和结构强度的影响。 在女性中,不对称的肌肉大小和结构不对称会显着影响性能。 制定有效而精确的运动处方以改善肌肉质量。跳跃力量和/或冲刺速度,建议在训练计划开始之前评估肌肉结构。

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