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Initial force and postural adaptations when pushing and pulling on floor surfaces with good and reduced resistance to slipping.

机译:在地板上推动和拉动时的初始力和姿势适应性良好,并减少了滑动阻力。

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The objective of the present study was to determine whether differences in the frictional properties of a floor surface may affect the kinematics and kinetics of pushing and pulling. Eight male participants were required to push and pull a four-wheeled trolley over two level surfaces, on which were mounted floor coverings with good (safety floor) and reduced (standard floor) frictional properties. A psychophysical approach was used to determine the initial maximum acceptable horizontal force required to move the trolley over a short distance (3 m). Three-dimensional (3D) hand and ground reaction forces and 3D postures were measured during initial force exertions. The results showed that psychophysically derived measures of initial horizontal force and horizontal components of hand forces did not differ significantly between floor surfaces. Despite the ability to exert similar forces, the measured maximum coefficient of friction varied according to floor surface. These changes reflected significant alterations in vertical and horizontal components of ground reaction and vertical hand forces, suggesting that participants had maximized the frictional properties available to them. Postures also changed as a consequence of floor surface, with significant changes occurring in knee flexion and trunk extension. This study has shown that handlers involved in the pushing and pulling of trolleys are capable of adjusting posture and the direction of hand and foot forces in order to compensate for reduced levels of floor friction. This has particular relevance when assessing the musculoskeletal loads imposed on the handler and the likely mechanisms of injury resulting from variations in floor conditions when workers undertake pushing and pulling tasks in the workplace.
机译:本研究的目的是确定地板表面摩擦性能的差异是否会影响推拉的运动学和动力学。要求八名男性参与者在两个水平表面上推拉四轮手推车,并在其上安装具有良好(安全地板)和降低(标准地板)摩擦性能的地板。使用一种心理物理方法来确定使手推车在短距离(3 m)内移动所需的初始最大可接受水平力。在初始施力期间测量了三维(3D)手和地面反作用力以及3D姿势。结果表明,从心理上得出的初始水平力和手的水平分量的度量在地板表面之间没有显着差异。尽管具有施加相似力的能力,但测得的最大摩擦系数会根据地板表面而变化。这些变化反映了地面反作用力和垂直手力的垂直和水平分量的显着变化,表明参与者已将其可获得的摩擦特性最大化。由于地板表面,姿势也发生了变化,膝部屈曲和躯干伸展发生了显着变化。这项研究表明,参与手推车推拉的操作员能够调节姿势和手脚力的方向,以补偿地板摩擦的减小。在评估施加在操作人员身上的肌肉骨骼负荷以及工人在工作场所执行推拉任务时地板状况的变化所导致的可能的伤害机制时,这一点特别重要。

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