Three-dimensional modelling of wheelchair contrived with lower limb exoskeleton for right hemiplegic dysfunction
Autor: | N Vigneshwari, S Poonguzhali, A. N. Nithyaa |
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Rok vydání: | 2020 |
Předmět: |
030506 rehabilitation
0209 industrial biotechnology Weakness medicine.medical_specialty Motion analysis Computer science medicine.medical_treatment Hemiplegia 02 engineering and technology Lower limb 03 medical and health sciences Imaging Three-Dimensional 020901 industrial engineering & automation Wheelchair Physical medicine and rehabilitation Age groups medicine Humans Physical Therapy Modalities Rehabilitation Mechanical Engineering Dimensional modeling Robotics General Medicine Exoskeleton Device Biomechanical Phenomena Exoskeleton Lower Extremity Wheelchairs Computer-Aided Design medicine.symptom 0305 other medical science |
Zdroj: | Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine. 234:651-659 |
ISSN: | 2041-3033 0954-4119 |
DOI: | 10.1177/0954411920909053 |
Popis: | Hemiplegia is a type of paralysis that affects one side of the body due to stroke, characterizing severe weakness or rigid movement. Many people of different age groups are affected by this condition which cannot be completely cured but can be minimized through proper physiotherapy. A continuous and repeated exercise has to be given to the hemiplegic subjects to regain their motor function. To serve this purpose, a three-dimensional model of wheelchair contrived with lower limb exoskeleton is designed and motion analysis is done using SolidWorks. This virtual model of the object is created with the assistance of computer-aided design software. Professionals can be able to do the experiment on what-if scenarios with their three-dimensional designs, which helps to validate their devices and identify any snags with design quality. The pattern of behaviour of lower limb exoskeleton is predicted using SimMechanics in MATLAB. |
Databáze: | OpenAIRE |
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