Concept design of a bionic grasp to capture the hand motion
Islam, M.; Li, X.; Chizari, M.
Show abstract
This study has focused on designing a device allowing the user to perform hand exercise motions, in relation with previous methods with good effects in stroke rehabilitation. The project is mainly aimed at designing a low cost, easy to handle and easy to manufacture smart glove to assist users with finger flexion and extensions, which can at the same time transfer data to an application. The methodology used here includes research, design, simulation testing and finalised design. It started with research and investigations on the needs of the users and previous efficient stroke rehabilitation methods. This has been followed with 4 concept designs, which has been tested and evaluated in the next stage for possible optimizations using a computer modelling technique. At the final step, the virtual prototype and product design specification (PDS) of the finalise concept for the interactive device has been illustrated.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Successful transfer of myoelectric skill from virtual interface to prosthesis control 94%
- Virtual reality simulation of epi-retinal prosthetic vision highlights the relevance of the visual angle 94%
- Estimating Speed-Accuracy Trade-offs to Evaluate and Understand Closed-Loop Prosthesis Interfaces 93%
Similar papers in this journal
- Modeling and Visualization of Rice Root Based on Morphological Parameters 91%
- Reliable data collection in participatory trials to assess digital healthcare apps. 90%
- HeartNet: Self Multi-Head Attention Mechanism via Convolutional Network with Adversarial Data Synthesis for ECG-based Arrhythmia Classification 89%
Similar papers in this journal
- A Increased trunk flexion in standing up is related to muscle weakness rather than pain avoidance in individuals with unilateral knee pain; a simulation study 90%
- Minimization of metabolic cost of transport predicts changes in gait mechanics over a range of ankle-foot orthosis stiffnesses in individuals with bilateral plantar flexor weakness 90%
- Comparing sparse inertial sensor setups for sagittal-plane walking and running reconstructions 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.