Trivedi Udayan, Joshi Anand Y
Mechatronics Engineering Department, Parul University, Vadodara, Gujarat, India.
Heliyon. 2024 Feb 8;10(4):e26060. doi: 10.1016/j.heliyon.2024.e26060. eCollection 2024 Feb 29.
This article discusses the significance of knee joint mechanics and the consequences of knee dysfunctions on an individual's quality of life. The utilization of active knee braces, which incorporate concepts of mechatronics systems, is investigated here as a potential treatment option. The complexity of the construction of the knee joint, which has six degrees of motion and is more prone to injury since it bears weight, is emphasized in this article. By wearing braces and using other support devices, one's knee can increase stability and mobility. In addition, the paper discusses various technologies that can be used to measure the knee adduction moment and supply spatial information on gait. Actuators for active knee braces must be compact, lightweight, and capable of producing a significant amount of torque; as a result, electric, hydraulic, and pneumatic actuators are the most common types. Creating control mechanisms, such as position control techniques and force/torque control approaches, is essential to knee exoskeleton research and development. These methods might make knee joint rehabilitation and assistive technology safer and more effective.
本文讨论了膝关节力学的重要性以及膝关节功能障碍对个人生活质量的影响。本文研究了结合机电一体化系统概念的主动膝关节支具作为一种潜在治疗选择的应用。本文强调了膝关节结构的复杂性,它有六个运动自由度,并且由于承受体重而更容易受伤。通过佩戴支具和使用其他支撑装置,人的膝盖可以增加稳定性和灵活性。此外,本文还讨论了可用于测量膝关节内收力矩并提供步态空间信息的各种技术。主动膝关节支具的致动器必须紧凑、轻便且能够产生大量扭矩;因此,电动、液压和气动致动器是最常见的类型。创建诸如位置控制技术和力/扭矩控制方法等控制机制对于膝关节外骨骼的研发至关重要。这些方法可能会使膝关节康复和辅助技术更安全、更有效。