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Seated postural loads caused by shock-type whole-body vibration when driving over obstacles

机译:驾驶障碍物时,通过冲击式全身振动引起的姿势载荷

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Operators of mobile machines within forestry work long hours in seated postures while being exposed to whole-body vibration (WBV) that is associated with pain in the lower back and neck. Still, little is known about the contribution from postural loads. In this study postural loads and shock-type WBV exposure on drivers operating a forwarder during terrain-like conditions was measured and quantified using inertial measurement units (IMUs). Five male drivers drove a forwarder repeatedly over standardized steel obstacles using a predefined speed and posture followed by driving over natural obstacles along a terrain course using a self-selected speed and posture. IMUs were affixed along the spine, on the back of the head of the driver and on the seat to detect orientation, velocity, and acceleration. The result shows that the methodology for measuring WBV and postural load with IMUs is feasible. Postural loads, expressed as range of motions (ROMs), when driving over a single standardized obstacle at a speed of 3.3 km/h were up to 21° in the neck segments. Increasing vehicle speed and size of obstacles increased postural loads. The terrain course resulted in higher ROMs in all body segments compared to a standardized obstacle, a difference in sideway seat acceleration but no differences regarding angular velocities of the head. Mechanical shocks at the seat were prevalent but the action limit value was exceeded only for one driver. Postural loads remained small during all conditions indicating that the spine can remain stable during exposure to shock-type WBV of this nature.
机译:林业中的移动机器的操作员在坐姿长时间工作,同时暴露于与下背部和颈部疼痛相关的全身振动(WBV)。尽管如此,关于姿势载荷的贡献仍然少。在本研究中,使用惯性测量单元(IMU)测量并定量在地形样条件下操作转发器的驱动器上的姿势负载和冲击式WBV暴露。使用预定刻度和姿势,五个雄性司机反复使用标准化的钢障碍物,随后使用自选择的速度和姿势沿着地形课程推动天然障碍物。 Imus沿着脊柱固定在驾驶员头部和座椅上,以检测方向,速度和加速度。结果表明,用于测量WBV和IMU姿势载荷的方法是可行的。姿势载荷,表示为运动范围(ROM),当在颈段3.3 km / h的速度超过3.3 km / h的标准化障碍物时驾驶速度高达21°。增加车速和障碍物的尺寸增加了姿势载荷。与标准化的障碍相比,所有身体段中的地形路线导致所有身体段中的更高的ROM,侧向座椅加速度的差异,但没有关于头部角速度的差异。座椅处的机械冲击普遍,但仅针对一个驱动器超过动作极限值。在所有条件下,姿势载荷仍然很小,表明脊柱在暴露于这种性质的冲击式WBV期间脊柱稳定。

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