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Capability and recruitment patterns of trunk during isometric uniaxial and biaxial upright exertion.

机译:等轴测单轴和双轴直立运动时躯干的能力和募集模式。

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BACKGROUND: Work-related risk factors of low back disorders have been identified to be external moments, awkward postures, and asymmetrical dynamic lifting amongst others. The distinct role of asymmetry of load versus posture is hard to discern from the literature. Hence, the aim of this study is to measure isometric trunk exertions at upright standing posture at different exertion level and degree of asymmetry to further delineate the effects of exertion level and asymmetry on neuromuscular capability response. METHODS: Fifteen healthy volunteers randomly performed trunk exertions at three levels (30%, 60%, and 100% of maximum voluntary exertion and five different angles (0 degrees , 45 degrees , 90 degrees , 135 degrees , and 180 degrees ) of normalized resultant moments. During each trial, the normalized EMG activity of 10 selected trunk muscles was quantified. FINDINGS: The EMG activity of the 10 trunk muscles was significantly (P<0.001) affected by the level of exertion and angle of normalized resultant moment, and their interactions. The controllability of the torque generation was reduced in biaxial exertions. The capability to generate and control the required trunk moments is significantly lowered during biaxial trunk exertions, while all muscles present higher EMG activity. These results suggest that the trunk muscles will be taxed higher while performing biaxial exertion tasks, increasing muscle fatigue possibly leading to a higher probability of low back injury. INTERPRETATION: The prediction of biaxial trunk performance based on uniaxial data will result in an overestimation of capability and controllability of the trunk during physically demanding tasks. This study provides a better understanding of the potential mechanisms of injury during asymmetrical and biaxial trunk exertion during work-related tasks.
机译:背景:已发现与工作相关的下背部疾病的危险因素包括外部力矩,尴尬的姿势和不对称的动态举升等。载荷与姿势不对称的独特作用很难从文献中辨别出来。因此,本研究的目的是在不同的运动水平和不对称程度下以直立站立姿势测量等距躯干运动,以进一步描述运动水平和不对称性对神经肌肉能力反应的影响。方法:15名健康志愿者随机以三个水平(最大自愿运动的30%,60%和100%)和五个不同角度(0度,45度,90度,135度和180度)进行躯干锻炼。在每项试验中,量化了10条选定躯干肌的EMG活性标准化结果:10条躯干肌的EMG活性显着(P <0.001)受劳力水平和归一化合力矩的角度及其影响。在双轴运动中,扭矩产生的可控制性降低;在双轴运动中,产生和控制所需躯干力矩的能力显着降低,而所有肌肉均表现出较高的EMG活性,这些结果表明,将对躯干肌肉加重负担。在执行双轴运动任务时较高,可能会增加肌肉疲劳,从而导致下背部受伤的可能性更高。基于单轴数据的双轴躯干性能预测会导致在身体要求苛刻的任务期间对躯干的能力和可控性进行高估。这项研究可以更好地了解与工作有关的任务中,不对称和双轴躯干劳累时受伤的潜在机制。

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