Etoundi Appolinaire C, Semasinghe Chathura L, Agrawal Subham, Dobner Alexander, Jafari Aghil
Bristol Robotics Laboratory, University of the West of England, Bristol, United Kingdom.
Front Robot AI. 2021 Sep 1;8:613574. doi: 10.3389/frobt.2021.613574. eCollection 2021.
The knee joint is a complex structure that plays a significant role in the human lower limb for locomotion activities in daily living. However, we are still not quite there yet where we can replicate the functions of the knee bones and the attached ligaments to a significant degree of success. This paper presents the current trend in the development of knee joints based on bio-inspiration concepts and modern bio-inspired knee joints in the research field of prostheses, power-assist suits and mobile robots. The paper also reviews the existing literature to describe major turning points during the development of hardware and control systems associated with bio-inspired knee joints. The anatomy and biomechanics of the knee joint are initially presented. Then the latest bio-inspired knee joints developed within the last 10 years are briefly reviewed based on bone structure, muscle and ligament structure and control strategies. A leg exoskeleton is then introduced for enhancing the functionality of the human lower limb that lacks muscle power. The design consideration, novelty of the design and the working principle of the proposed knee joint are summarized. Furthermore, the simulation results and experimental results are also presented and analyzed. Finally, the paper concludes with design difficulties, design considerations and future directions on bio-inspired knee joint design. The aim of this paper is to be a starting point for researchers keen on understanding the developments throughout the years in the field of bio-inspired knee joints.
膝关节是一种复杂的结构,在人类下肢进行日常生活中的运动活动时发挥着重要作用。然而,我们在很大程度上成功复制膝关节骨骼及附着韧带的功能方面仍未完全实现。本文介绍了基于仿生概念的膝关节发展现状以及假肢、助力服和移动机器人研究领域中的现代仿生膝关节。本文还回顾了现有文献,以描述与仿生膝关节相关的硬件和控制系统发展过程中的主要转折点。首先介绍了膝关节的解剖结构和生物力学。然后基于骨骼结构、肌肉和韧带结构以及控制策略,简要回顾了过去10年内开发的最新仿生膝关节。接着引入了一种腿部外骨骼,以增强缺乏肌肉力量的人类下肢的功能。总结了所提出膝关节的设计考量、设计新颖性和工作原理。此外,还展示并分析了仿真结果和实验结果。最后,本文以仿生膝关节设计的困难、设计考量和未来方向作为结论。本文旨在为热衷于了解仿生膝关节领域多年来发展情况的研究人员提供一个起点。