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Changes in the Trunk and Lower Extremity Kinematics Due to Fatigue Can Predispose to Chronic Injuries in Cycling

机译:由于疲劳引起的躯干和下肢运动学的变化可以促使循环中的慢性伤害

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摘要

Kinematic analysis of the cycling position is a determining factor in injury prevention and optimal performance. Fatigue caused by high volume training can alter the kinematics of the lower body and spinal structures, thus increasing the risk of chronic injury. However, very few studies have established relationships between fatigue and postural change, being these in 2D analysis or incremental intensity protocols. Therefore, this study aimed to perform a 3D kinematic analysis of pedaling technique in a stable power fatigue protocol 23 amateur cyclists (28.3 ± 8.4 years) participated in this study. For this purpose, 3D kinematics in hip, knee, ankle, and lumbar joints, and thorax and pelvis were collected at three separate times during the protocol. Kinematic differences at the beginning, middle, and end of the protocol were analyzed for all joints using one-dimensional statistical parametric mapping. Significant differences (p < 0.05) were found in all the joints studied, but not all of them occur in the same planes or the same phase of the cycle. Some of the changes produced, such as greater lumbar and thoracic flexion, greater thoracic and pelvic tilt, or greater hip adduction, could lead to chronic knee and lumbar injuries. Therefore, bike fitting protocols should be carried out in fatigue situations to detect risk factor situations.
机译:循环位置的运动学分析是在损伤的预防和最佳的性能的决定性因素。疲劳引起的高体积训练可改变下部主体和脊柱结构的运动学,从而增加慢性损伤的风险。然而,很少有研究已经建立了疲劳和姿势变化之间的关系,在二维分析或增量强度的协议是这些。因此,本研究的目的是在参加了这项研究稳定的电力疲劳协议23业余骑自行车的人(28.3±8.4岁)进行蹬踏技术的3D运动分析。为了这个目的,在髋,膝,踝和腰椎关节,和胸部和骨盆3D运动学是在三个不同的时间协议期间收集。在开始,中间,以及协议的端运动的差异进行了分析,使用一维统计参数图的所有关节。显著差异(p <0.05)在所有研究的关节中发现的,但不是所有的人出现在相同平面上或该周期的相同的相位。一些产生的变化,如更大的腰椎和胸椎屈曲,更大的胸和骨盆倾斜,或臀部较大内收,可能导致慢性膝盖和腰部受伤。因此,自行车配件的协议应在疲劳的情况下进行检测危险因素的情况。

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