Scotto di Luzio Francesco, Tamantini Christian, Di Maro Raffaele, Carnazzo Chiara, Spada Stefania, Draicchio Francesco, Zollo Loredana
Research Unit of Advanced Robotics and Human-Centred Technologies, Università Campus Bio-Medico di Roma, Rome, Italy.
Institute of Cognitive Sciences and Technologies, National Research Council of Italy, Rome, Italy.
Wearable Technol. 2025 Aug 1;6:e37. doi: 10.1017/wtc.2025.10021. eCollection 2025.
In the last two decades, the adoption of exoskeletal devices for the reduction of the biomechanical overload of workers has hugely increased. They allow relief of the biomechanical load of the operator and ensure the operator's contact with the object without binding its interaction. In this work, the biomechanical and physiological effects on the user wearing upper limb passive exoskeletons have been evaluated to highlight the benefits and possible drawbacks introduced by their use in typical manufacturing tasks. MATE and PAEXO Shoulder passive exoskeletons have been assessed during the execution of different working gestures among static, dynamic, and quasi-static tasks on 16 healthy volunteers. The obtained results confirm that the adoption of such systems significantly impacts the users by reducing the muscular load, increasing endurance, and reducing the perceived effort. Moreover, this analysis pointed out the specific benefits introduced by one exoskeleton with respect to the other according to the specific task. The MATE has the potential to reduce muscle load during the execution of static tasks. Conversely, the PAEXO Shoulder positively impacts the users' biomechanical performances in dynamic tasks.
在过去二十年中,用于减轻工人生物力学过载的外骨骼设备的应用大幅增加。它们能够减轻操作员的生物力学负荷,并确保操作员与物体接触,而不会限制其相互作用。在这项工作中,已评估了上肢被动外骨骼对使用者的生物力学和生理影响,以突出其在典型制造任务中使用所带来的益处和可能的缺点。在对16名健康志愿者进行的静态、动态和准静态任务中的不同工作姿势执行过程中,对MATE和PAEXO肩部被动外骨骼进行了评估。所得结果证实,采用此类系统可通过减轻肌肉负荷、提高耐力和减轻感知到的努力程度,对使用者产生显著影响。此外。该分析指出了根据特定任务,一种外骨骼相对于另一种外骨骼所带来的特定益处。MATE有可能在执行静态任务期间减轻肌肉负荷。相反,PAEXO肩部外骨骼在动态任务中对使用者的生物力学性能产生积极影响。