Aug 2026· SAE technical paper series· Vol 1· 0 citations· 15 references
TL;DR
This study introduces a novel exoskeleton leg rehabilitation robot designed to support diverse rehabilitation exercises for individuals with leg disabilities during therapy, and utilizes multi-body dynamics simulation software ADAMS to conduct kinematic and dynamic analysis of the exoskeleton robot.
Abstract
In response to the challenges of training and rehabilitation for patients with leg dysfunction, this research focuses on two core requirements: “bionic adaptation” and “safety assistance”. It introduces a novel exoskeleton leg rehabilitation robot designed to support diverse rehabilitation exercises for individuals with leg disabilities during therapy. The robot system consists of a lumbar support structure, thigh mechanical components, calf mechanical components, leg fixation straps, and foot mechanical structures, and achieves multi degree of freedom motion simulation through three main joints: hip joint, knee joint, and ankle joint. Each mechanical leg has three independent degrees of freedom, which can effectively simulate the natural movements of the human lower limb, such as flexion, extension, abduction, etc., during the gait cycle, thus meeting the functional needs of patients for different movement modes during rehabilitation training.On the basis of structural design, this study further utilizes multi-body dynamics simulation software ADAMS to conduct kinematic and dynamic analysis of the exoskeleton robot. By simulating the joint torque of the exoskeleton legs under ideal working conditions, the rationality and smoothness of the mechanism design are verified. The simulation results not only reflect the performance of the robot in typical rehabilitation actions, but also provide a theoretical basis and data support for the selection and parameter matching of key execution components (such as servo motors, reducers, etc.), laying an important foundation for the physical development and control strategy optimization of the robot system.
Individuals with strokes or musculoskeletal conditions often experience a restricted shoulder range of motion, necessitating rehabilitation that is generally time-consuming, and due to high therapist workloads, patients often need to perform the exercises independently to complete their program. To address this, roboti...
Hemiplegia is a neurological condition characterized by complete motor loss on one side of the body. This condition severely limits walking ability and daily functional independence. To restore walking function, gait rehabilitation becomes an essential part of the recovery process. Traditional gait rehabilitation usual...
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Upper limb rehabilitation robots enable precise and repetitive joint-specific training and have become an important approach for post-stroke motor function recovery. To address the rehabilitation needs of stroke patients, this paper develops a 4-degree-of-freedom (DOF) cable-driven upper limb rehabilitation robot, esta...
Yong-Bai Liu, Gang-Yi Wang, Zhong-Bo Sun et al.· 2026 6th International Confe...· 0 citations
The study introduces the design and analysis of a passive mechanical knee prosthesis aimed at improving stability and functional mobility for lower limb amputees. The proposed system includes a dual four bar linkage system that can replicate the natural flexion and extension of the human knee to facilitate both level a...
D. A. L. D. Dissanayaka, H. W. N. Nawanjana, K. W. A. Keshan et al.· Moratuwa Engineering Researc...· 0 citations
Ankle injuries may lead to severe complications, including chronic instability and reduced mobility. Rehabilitation therefore plays a critical role in restoring normal ankle function and preventing long-term impairment. However, conventional manual physiotherapy presents several limitations, such as limited availabilit...
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OBJECTIVE
The shoulder joint is pivotal for upper-limb kinematics, yet individuals with post-stroke hemiparesis often require external shoulder support because of impaired motor control, excessive gravitational loading, and the risk of glenohumeral complications. Existing rehabilitation exoskeletons still face challeng...
Rongna Xu, Wen-Hao Yan, Songning Deng et al.· IEEE transactions on bio-med...· 0 citations
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