Sridhar Eshwara Prasad, Erel Veysel, Nasirian Aida, Wijesundara Muthu B J, Rahman Mahmudur
Industrial, Manufacturing, and Systems Engineering Department, The University of Texas at Arlington, Arlington, TX, USA.
Biomedical Technologies Division, The University of Texas at Arlington Research Institute, Fort Worth, TX, USA.
J Rehabil Assist Technol Eng. 2025 Jun 2;12:20556683251347517. doi: 10.1177/20556683251347517. eCollection 2025 Jan-Dec.
To reduce muscle strain and enhance user comfort, a Pneumatically Actuated Soft Wearable Robotic Elbow Exoskeleton was developed. The design integrates human joint mechanics with a single-piece pneumatic structure for optimal assistance and reduced complexity.
Nineteen participants performed tasks under "Support On" and "Support Off" conditions to evaluate their effectiveness and feasibility. Muscle activity was measured using Surface Electromyography, while torque output and inflation times were assessed to gauge mechanical performance.
The Soft Wearable Robotic Elbow Exoskeleton reduced muscle activity in the biceps by 22.36% and in the triceps by 18.19% at 18 PSI (Pounds per Square Inch). Torque tests revealed a maximum output of 4.39 Nm at 21 PSI. Inflation time tests showed that the exoskeleton could reach total inflation in as little as 0.22 seconds in high mode at 25 PSI, demonstrating the ability to achieve rapid actuation speed and efficiency.
These results indicate that the Soft Wearable Robotic Elbow Exoskeleton significantly reduces muscle activation, which may help mitigate the risk of work-related musculoskeletal disorders. By providing effective assistance during repetitive tasks, the exoskeleton enhances both mechanical performance and user comfort.
为了减轻肌肉劳损并提高用户舒适度,研发了一种气动驱动的可穿戴式柔性机器人肘部外骨骼。该设计将人体关节力学与一体式气动结构相结合,以实现最佳辅助效果并降低复杂性。
19名参与者在“开启支撑”和“关闭支撑”条件下执行任务,以评估其有效性和可行性。使用表面肌电图测量肌肉活动,同时评估扭矩输出和充气时间以衡量机械性能。
在18磅力每平方英寸(PSI)的压力下,可穿戴式柔性机器人肘部外骨骼使肱二头肌的肌肉活动减少了22.36%,使肱三头肌的肌肉活动减少了18.19%。扭矩测试显示在21 PSI时最大输出扭矩为4.39牛米。充气时间测试表明,在25 PSI的高模式下,外骨骼能够在短短0.22秒内达到完全充气,证明其具备实现快速驱动速度和效率的能力。
这些结果表明,可穿戴式柔性机器人肘部外骨骼显著降低了肌肉激活程度,这可能有助于降低与工作相关的肌肉骨骼疾病的风险。通过在重复性任务中提供有效辅助,该外骨骼提高了机械性能和用户舒适度。