五杆机构辅助手指屈伸康复,实现自然运动轨迹控制。
A five-bar mechanism to assist finger flexion-extension movement: system implementation
- 采用五杆机构设计,通过梯度法优化尺寸以匹配自然手部运动。
- 实验验证在垂直平面内可精准控制双自由度,实现全范围手指活动。
- 适合康复工程研究者与假肢/外骨骼开发人员参考使用。
当前医疗领域面临专业人员和辅助技术不足的挑战,且趋势将持续加剧。对于研究人员与工程师而言,这为创新康复设备提供了机遇。手部损伤最为常见,需通过康复训练恢复功能。本文提出一种基于五杆机构的末端执行器原型,用于实现手指自然的屈伸运动。机构尺寸通过梯度法优化,并在Matlab中进行评估。实验在垂直平面内开展,验证了该机构在重力影响下的功能有效性。采用带路径点的五阶多项式进行关节空间位置控制。通过理论对比分析,将实测手指屈伸轨迹与惯性测量单元(IMU)获取的角度数据进行比对。结果表明,在轨迹多个点上控制两自由度,可有效保证末端执行器轨迹,从而实现完整的手指活动范围,有助于患者全面康复。
原文摘要 · Abstract (English)
The lack of specialized personnel and assistive technology to assist in rehabilitation therapies is one of the challenges facing the health sector today, and it is projected to increase. For researchers and engineers, it represents an opportunity to innovate and develop devices that improve and optimize rehabilitation services for the benefit of society. Among the different types of injuries, hand injuries occur most frequently. These injuries require a rehabilitation process in order for the hand to regain its functionality. This article presents the fabrication and instrumentation of an end-effector prototype, based on a five-bar configuration, for finger rehabilitation that executes a natural flexion-extension movement. The dimensions were obtained through the gradient method optimization and evaluated through Matlab. Experimental tests were carried out to demonstrate the prototype's functionality and the effectiveness of a five-bar mechanism acting in a vertical plane, where gravity influences the mechanism's performance. Position control using fifth-order polynomials with via points was implemented in the joint space. The design of the end-effector was also evaluated by performing a theoretical comparison, calculated as a function of a real flexion-extension trajectory of the fingers and the angle of rotation obtained through an IMU. As a result, controlling the two degrees of freedom of the mechanism at several points of the trajectory assures the end-effector trajectory and therefore the fingers' range of motion, which helps for full patient recovery.
Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。