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SPEXOR passive spinal exoskeleton decreases metabolic cost during symmetric repetitive lifting

机译:Spexor被动脊柱外骨骼在对称重复升降期间降低代谢成本

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Purpose Besides mechanical loading of the back, physiological strain is an important risk factor for low-back pain. Recently a passive exoskeleton (SPEXOR) has been developed to reduce loading on the low back. We aimed to assess the effect of this device on metabolic cost of repetitive lifting. To explain potential effects, we assessed kinematics, mechanical joint work, and back muscle activity. Methods We recruited ten male employees, working in the luggage handling department of an airline company and having ample experience with lifting tasks at work. Metabolic cost, kinematics, mechanical joint work and muscle activity were measured during a 5-min repetitive lifting task. Participants had to lift and lower a box of 10 kg from ankle height with and without the exoskeleton. Results Metabolic cost was significantly reduced by 18% when wearing the exoskeleton. Kinematics did not change significantly, while muscle activity decreased by up to 16%. The exoskeleton took over 18-25% of joint work at the hip and L5S1 joints. However, due to large variation in individual responses, we did not find a significant reduction of joint work around the individual joints. Conclusion Wearing the SPEXOR exoskeleton decreased metabolic cost and might, therefore, reduce fatigue development and contribute to prevention of low-back pain during repetitive lifting tasks. Reduced metabolic cost can be explained by the exoskeleton substituting part of muscle work at the hip and L5S1 joints and consequently decreasing required back muscle activity.
机译:目的除了机械加载后,生理菌株是腰痛的重要风险因素。最近,已经开发了一种被动外骨骼(Spexor)以减少低压负载。我们旨在评估该器件对重复提升的代谢成本的影响。为了解释潜在的效果,我们评估了运动学,机械联合工作和背部肌肉活动。方法我们招募了十名男性员工,在航空公司行李搬运部门工作,并在工作中举办了充足的举办任务经验。在5分钟重复的提升任务期间测量了代谢成本,运动学,机械联合工作和肌肉活动。参与者必须从脚踝高度抬起和降低10公斤的盒子,没有外骨骼。佩戴外骨骼时,结果代谢成本明显减少了18%。运动学没有显着变化,而肌肉活动减少了高达16%。外骨骼在臀部和L5S1关节上花了超过18-25%的关节工作。但是,由于个别反应的巨大变化,我们没有发现各个关节周围的联合工作的显着减少。结论穿着尖端的外骨骼降低代谢成本,因此可能降低疲劳发育,并有助于防止在重复提升任务期间的腰痛。可以通过在髋关节和L5S1关节处取代部分肌肉作用的外骨骼进行降低的代谢成本,从而降低所需的背部肌肉活动。

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