首页> 外文期刊>Journal of athletic training >Lower limb joint kinetics during moderately sloped running.
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Lower limb joint kinetics during moderately sloped running.

机译:中度倾斜跑步过程中的下肢关节动力学。

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CONTEXT: Knowledge of the kinetic changes that occur during sloped running is important in understanding the adaptive gait-control mechanisms at work and can provide additional information about the poorly understood relationship between injury and changes in kinetic forces in the lower extremity. A study of these potential kinetic changes merits consideration, because training and return-to-activity programs are potentially modifiable factors for tissue stress and injury risk. OBJECTIVE: To contribute further to the understanding of hill running by quantifying the 3-dimensional alterations in joint kinetics during moderately sloped decline, level, and incline running in a group of healthy runners. DESIGN: Crossover study. SETTING: Three-dimensional motion analysis laboratory. PATIENTS OR OTHER PARTICIPANTS: Nineteen healthy young runners/joggers (age = 25.3 +/- 2.5 years). INTERVENTION(S): Participants ran at 3.13 m/s on a treadmill under the following 3 different running-surface slope conditions: 4 degrees decline, level, and 4 degrees incline. MAIN OUTCOME MEASURE(S): Lower extremity joint moments and powers and the 3 components of the ground reaction force. RESULTS: Moderate changes in running-surface slope had a minimal effect on ankle, knee, and hip joint kinetics when velocity was held constant. Only changes in knee power absorption (increased with decline-slope running) and hip power (increased generation on incline-slope running and increased absorption on decline-slope running in early stance) were noted. We observed an increase only in the impact peak of the vertical ground reaction force component during decline-slope running, whereas the nonvertical components displayed no differences. CONCLUSIONS: Running style modifications associated with running on moderate slopes did not manifest as changes in 3-dimensional joint moments or in the active peaks of the ground reaction force. Our data indicate that running on level and moderately inclined slopes appears to be a safe component of training regimens and return-to-run protocols after injury.
机译:背景:了解在斜坡跑步过程中发生的动力学变化对于了解工作中的自适应步态控制机制非常重要,并且可以提供有关受伤与下肢动力学力变化之间关系不甚了解的其他信息。对这些潜在动力学变化的研究值得考虑,因为训练和恢复活动计划是组织压力和损伤风险的潜在可修改因素。目的:通过量化一组健康跑步者在中等坡度的下降,水平和倾斜跑步过程中关节动力学的三维变化来进一步帮助了解越野跑。设计:交叉研究。地点:三维运动分析实验室。患者或其他参与者:19位健康的年轻跑步者/慢跑者(年龄= 25.3 +/- 2.5岁)。干预:参与者在以下3种不同的运行表面倾斜条件下以3.13 m / s的速度在跑步机上奔跑:下降4度,水平和4度倾斜。主要观察指标:下肢关节力矩和力量以及地面反作用力的3个组成部分。结果:当速度保持恒定时,跑步表面坡度的适度变化对脚踝,膝盖和髋关节动力学的影响最小。仅注意到膝盖力量吸收(随下坡跑步增加)和臀部力量(倾斜下坡跑步产生的增加以及早期站立时下坡跑步吸收的增加)的变化。我们观察到在下降坡运行期间,垂直地面反作用力分量的冲击峰只会增加,而非垂直分量则没有差异。结论:与中等坡度上的跑步相关的跑步方式修改未表现为3维关节力矩或地面反作用力活动峰值的变化。我们的数据表明,在水平和中等倾斜的斜坡上跑步似乎是受伤后训练方案和重返跑步方案的安全组成部分。

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