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On the development of a novel adaptive prosthetic hand with compliant joints: experimental platform and EMG control

机译:关于新型具有顺应性关节的自适应义肢的开发:实验平台和肌电图控制

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In this paper, some recent results about the experimental trials we are performing on a functional prosthetic hand characterized by an EMG-control and by a simple and low cost fabrication technology are shown. The innovation described in this paper is the fabrication of a compliant under-actuated prosthetic hand. The structure of the hand (both palm and fingers) is moulded as a soft polymeric single part with compliant joints and embedded tendon driven under-actuated mechanism for providing adaptive grasp. The prosthetic hand has been designed following a biomechatronic approach based on biologically-inspired design solutions. We describe the second release of this prosthesis. The evaluating tests are related to the maximum force exerted during grasping and to the fatigue problems occurring with cables and joint.
机译:在本文中,显示了一些有关我们正在以EMG控制和简单且低成本的制造技术为特征的功能性假肢上进行的实验研究的一些最新结果。本文描述的创新是制造顺应性不足的假肢手。手(手掌和手指)的结构模制成柔软的聚合物单件,具有顺应性的关节和嵌入的肌腱驱动的欠驱动机制,以提供自适应的抓握力。假手是根据生物启发的设计解决方案以生物机电一体化方法设计的。我们描述了该假体的第二版。评估测试与抓握过程中施加的最大力以及电缆和接头出现的疲劳问题有关。

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