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The moderating role of end-tidal CO2 on upper trapezius muscle activity in response to sustained attention

机译:末端二氧化碳对持续关注持续关注的延伸肌活动的调节作用

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With higher levels of automation in modern manufacturing, there is increased monitoring of the process by the human operator. Prolonged monitoring or sustained attention has been found to be stressful for human operators. Plant and process operators have also been found to have one of the highest level of work demands (work speed, pace) in a recent European survey (Eurofound, 2015). Along with this, the incidence of Work Related Musculoskeletal Disorders (WRMSDs) remains at a high level in the manufacturing sector. This research endeavoured to determine if end-tidal CO2 levels decreased and upper trapezius muscle activity increased concurrently with increased levels of attention. We then developed a model to investigate if end-tidal CO2 moderated the relationship between mental workload due to sustained attention and upper trapezius muscle activity. The resulting interactional model found that end-tidal CO2 moderated the relationship (p = 0.004) when end-tidal CO2 reached the hypocapnic range (>35 mm Hg). This model indicates the possibility that a high level of sustained attention is a risk factor in the development of WRMSDs and should therefore be included in workplace risk assessments. (C) 2017 Elsevier B.V. All rights reserved.
机译:在现代制造业中具有更高水平的自动化,人类运营商的过程监测增加。已被发现长期监测或持续关注人类运营商强大。还发现植物和过程运营商在最近的欧洲调查中拥有最高的工作需求(工作速度,步伐)之一(Eurofound,2015)。除此之外,工作相关肌肉骨骼障碍(WRMSDS)的发生率仍处于制造业的高水平。本研究致力于确定终端二氧化碳水平降低,上梯肌活动同时增加,注意力水平增加。然后,我们开发了一种模型来调查终端二氧化碳,如果由于持续的关注和上梯肌肉活动为导致的心理工作量之间的关系。所得到的互动模型发现,当终端二氧化碳达到次映射范围(> 35mm Hg)时,终端二氧化碳调节关系(p = 0.004)。该模型表示高水平持续关注的可能性是WRMSDS发展中的危险因素,因此应包括在工作场所风险评估中。 (c)2017 Elsevier B.v.保留所有权利。

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