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Platform simulated wave motions inhibit neuromuscular responses

机译:平台模拟的波浪运动抑制神经肌肉反应

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摘要

BACKGROUND: Seafaring workers must contend with motions that could impact their work performance and safety. OBJECTIVE: To compare and analyze the neuromuscular responses to a stable immediate environment placed in a moving (simulated wave platform motions) extended environment. METHODS: Isometric maximum voluntary contraction (MVC) forces of the elbow flexors and leg extensors as well as electromyography (EMG) of the biceps brachii and vastus lateralis were recorded. The EMG activity of the triceps brachii, semitendonosis, internal obliques, and lower lumbar erector spinae muscles were also monitored during the upper and lower limb MVCs. Three types of rotational motion (pitch, roll and mixed, all combined with a linear heave motion) created by a motion platform were randomly allocated for 1 minute each. While securely strapped and seated with the platform moving, two MVCs each were performed for the right elbow flexors and right knee extensors at the beginning and at the end of the one-minute wave motion protocol. RESULTS: Platform motions impaired (p < 0.0001) knee extension (pitch = -8%; roll = -13.4%; mixed = -13.5%) and elbow flexor MVC force (pitch = -21.1%; roll = -26.7%; mixed = -25.1%) compared to control conditions. Vastus lateralis EMG was reduced 13.3% with roll motions compared to control. CONCLUSIONS: Platform simulated wave motions can be detrimental to force production when the individual is strapped in a secure and stable seated position. Such impairments can impact the safety and work performance of employees on sea going vessels.
机译:背景:航海工作者必须应对可能影响其工作表现和安全的动作。目的:比较和分析放置在移动(模拟波平台运动)扩展环境中的稳定即时环境的神经肌肉反应。方法:记录肘部屈肌和腿伸肌的等距最大自动收缩力(MVC)以及肱二头肌和股外侧肌的肌电图(EMG)。在上肢和下肢MVC期间,还监测肱三头肌,肌腱炎,内斜肌和下腰直肌脊柱肌的肌电活动。由运动平台创建的三种类型的旋转运动(俯仰,滚动和混合运动,均与线性升沉运动结合)分别随机分配1分钟。在平台移动的情况下安全绑紧并就位时,在一分钟波动方案的开始和结束时分别对右肘屈肌和右膝伸肌进行两个MVC。结果:平台运动受损(p <0.0001)膝盖伸展(俯仰= -8%;侧倾= -13.4%;混合= -13.5%)和肘屈肌MVC力(俯仰= -21.1%;侧倾= -26.7%;混合= -25.1%)。与对照组相比,侧倾肌外侧肌肌电图通过侧倾运动减少了13.3%。结论:当个人被绑在安全稳定的坐姿时,平台模拟的波浪运动可能不利于产生力。此类损害可能会影响海上船只上员工的安全和工作绩效。

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