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首页> 外文期刊>International Journal of Industrial Ergonomics >Validation of tri-axial accelerometer for the calculation of elevation angles
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Validation of tri-axial accelerometer for the calculation of elevation angles

机译:三轴加速度计用于仰角计算的验证

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One of the main issues in occupational studies focusing on musculoskeletal disorders of the upper extremity is how to best quantify workers' exposures to risk factors during a workday. Direct measurement is preferred because it is objective and provides precise measurements. To measure elevation angle exposure of the upper extremity, accelerometers are commonly used. The main problem with the use of accelerometers is the fact that they are sensitive to linear acceleration and can only assess two axes of rotation. In the present study the Virtual Corset, a pager-sized, battery powered, tri-axial linear accelerometer with an integrated data logger, was validated in vitro for the reconstruction of elevation angles under static conditions and angle error prediction under dynamic conditions. For static conditions, the RMS angle error was less than 1°. Under dynamic conditions the elevation angle error was influenced by the radius and angular acceleration. However, the angle error was predicted well with an RMS difference of 3°. It was concluded that the Virtual Corset can be used to accurately predict arm elevation angles under static conditions. Under dynamic conditions, an understanding of the motion being studied and the placement of the Virtual Corset relative to the joint are necessary. Relevance to industry: A device is tested that could capture posture exposure of the shoulder at the workplace during a workday. Such exposure measurement can be used to test interventions and to develop preventive guidelines to reduce risk factors associated with musculoskeletal injuries of the upper extremity.
机译:在针对上肢的肌肉骨骼疾病的职业研究中,主要问题之一是如何最好地量化工人在工作日中暴露于危险因素的程度。直接测量是首选,因为它是客观的并且可以提供精确的测量。为了测量上肢的仰角暴露,通常使用加速度计。使用加速度计的主要问题是,它们对线性加速度很敏感,并且只能评估两个旋转轴。在本研究中,Virtual Corset是一种寻呼机大小,电池供电的三轴线性加速度计,具有集成的数据记录器,已在体外进行了验证,可用于静态条件下的仰角重建和动态条件下的角度误差预测。对于静态条件,RMS角度误差小于1°。在动态条件下,仰角误差受半径和角加速度的影响。但是,可以很好地预测角度误差,RMS差为3°。结论是,虚拟紧身胸衣可用于准确预测静态条件下的手臂仰角。在动态条件下,必须了解所研究的运动以及虚拟紧身胸衣相对于关节的位置。与行业的关系:经过测试的设备可以在工作日捕获肩膀在工作场所的姿势暴露。这种暴露测量可用于测试干预措施并制定预防性指南,以减少与上肢肌肉骨骼损伤相关的危险因素。

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