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角速度和训练状态对动态控制平衡的影响。

The Effects of Angular Velocity and Training Status on the Dynamic Control Equilibrium.

作者信息

Alt Tobias, Knicker Axel, Strueder Heiko

机构信息

Institute of Movement and Neuroscience, German Sport University, Cologne, Germany.

SPRINZ Sport Performance Research Institute of New Zealand, Auckland University of Technology, New Zealand.

出版信息

Sports Med Int Open. 2017 Jan 31;1(1):E23-E29. doi: 10.1055/s-0042-123497. eCollection 2017 Jan.

Abstract

Thigh muscle imbalances may impair sports performance and cause injuries. Common diagnostic parameters of knee muscle balance lack practical applicability. This cross-sectional study aimed to evaluate the effects of angular velocity and training status on the dynamic control ratio at the equilibrium point representing the intersection of eccentric knee flexion and concentric knee extension moment-angle curves. 58 trained and 58 untrained male participants (22.1 years, 82.4 kg) performed concentric and eccentric knee flexions (prone position) and extensions (supine position) on an isokinetic dynamometer operating at 30 and 150°/s. Trained participants had significantly higher DCRe moments at all angular velocities compared with their untrained counterparts (trained : 1.86, 1.90 Nm/kg; untrained : 1.56, 1.60 Nm/kg; p<0.001, partial η²=0.345). Dynamic control equilibrium moments rose with increasing velocity (p=0.001, partial η²=0.095), whereas dynamic control equilibrium angles (trained : 28.9, 30.8°; untrained : 26.1, 27.0°) were influenced by training status (p=0.004, partial η²=0.072), but not by angular velocity (p=0.241, partial η²=0.012). Dynamic control equilibrium parameters detect thigh muscle balance and reflect the trained participants' capacity to resist high eccentric knee flexor moments, especially during fast movements. Direct links to muscular loading during sprinting are conceivable, but warrant further investigation. The assessment of dynamic control equilibrium moments and angles might help physiotherapists and coaches to improve functional muscle screening, injury prevention and purposeful return to sport.

摘要

大腿肌肉失衡可能会损害运动表现并导致受伤。膝关节肌肉平衡的常见诊断参数缺乏实际适用性。这项横断面研究旨在评估角速度和训练状态对平衡点处动态控制率的影响,该平衡点代表离心膝关节屈曲和向心膝关节伸展力矩 - 角度曲线的交点。58名受过训练和58名未受过训练的男性参与者(22.1岁,82.4千克)在以30和150°/秒运行的等速测力计上进行向心和离心膝关节屈曲(俯卧位)和伸展(仰卧位)。与未受过训练的参与者相比,受过训练的参与者在所有角速度下的动态控制率力矩均显著更高(受过训练的:1.86,1.90牛米/千克;未受过训练的:1.56,1.60牛米/千克;p<0.001,偏η² = 0.345)。动态控制平衡力矩随速度增加而升高(p = 0.001,偏η² = 0.095),而动态控制平衡角度(受过训练的:28.9,30.8°;未受过训练的:26.1,27.0°)受训练状态影响(p = 0.004,偏η² = 0.072),但不受角速度影响(p = 0.241,偏η² = 0.012)。动态控制平衡参数可检测大腿肌肉平衡,并反映受过训练的参与者抵抗高离心膝关节屈肌力矩的能力,尤其是在快速运动期间。可以想象到与短跑期间肌肉负荷的直接联系,但需要进一步研究。动态控制平衡力矩和角度的评估可能有助于物理治疗师和教练改善功能性肌肉筛查、预防损伤以及有针对性地恢复运动。

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