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首页> 外文期刊>Clinical biomechanics >The effect of lower extremity fatigue on shock attenuation during single-leg landing.
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The effect of lower extremity fatigue on shock attenuation during single-leg landing.

机译:下肢疲劳对单腿着陆过程中震动衰减的影响。

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BACKGROUND: The forces that are imposed on the body due to landings must be attenuated primarily in the lower extremity. Muscles assist in the absorption of these forces, and it has been shown that a fatigued muscle decreases the body's ability to attenuate shock from running. The purpose of the study was to determine the effect of lower extremity fatigue on shock attenuation and joint mechanics during a single-leg drop landing. METHODS: Ten active male participants were recruited (eight used for analysis). Each participant took part in a fatigue landing protocol. This protocol included cycles of a drop landing, a maximal countermovement jump, and five squats, repeated until exhaustion. Accelerometers attached to the skin measured tibia and head accelerations. Lower extremity kinematics were collected using an electromagnetic tracking system and kinetics were collected using a forceplate. A repeated-measures ANOVA (P<0.05) was performed on each of the dependent variables across the cycles of the fatigue protocol. FINDINGS: Fatigue was induced, however there was no significant change in shock attenuation throughout the body. Hip and knee flexion increased and ankle plantarflexion decreased at touchdown with fatigue. Hip joint work increased and ankle work decreased. INTERPRETATION: This change in work distribution is thought to be a compensatory response to utilize the larger hip extensors that are better suited to absorb the mechanical energy of the impact. The results suggested that the lower extremity is able to adapt to fatigue though altering kinematics at impact and redistributing work to larger proximal muscles.
机译:背景:由于着陆而施加在身体上的力必须主要在下肢减弱。肌肉有助于吸收这些力,并且已经证明,疲劳的肌肉会降低人体减弱跑步时震动的能力。该研究的目的是确定下肢疲劳对单腿下降着陆过程中冲击衰减和关节力学的影响。方法:招募了十名活跃的男性参与者(八名用于分析)。每个参与者都参加了疲劳着陆协议。该规程包括降落降落,最大反跳和五个下蹲的循环,重复进行直至疲惫。附着在皮肤上的加速度计可测量胫骨和头部的加速度。使用电磁跟踪系统收集下肢运动学,并使用测力板收集动力学。在疲劳方案的各个周期中,对每个因变量执行重复测量方差分析(P <0.05)。结果:引起了疲劳,但是整个身体的震动衰减没有明显变化。着陆时,由于疲劳,髋部和膝部屈曲增加,而踝plant屈减少。髋关节工作增加而踝关节工作减少。解释:这种工作分配的变化被认为是对较大髋关节伸肌的补偿性反应,较大的髋伸肌更适合吸收撞击的机械能。结果表明,下肢通过改变冲击时的运动学并将工作重新分配到较大的近端肌肉,从而能够适应疲劳。

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