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WIZAPE
Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Rehabilitation Technology and Biomechanics
( 25 Modules )

Module #1
Introduction to Rehabilitation Technology
Overview of the field of rehabilitation technology, its significance, and applications
Module #2
Human Movement and Biomechanics
Fundamentals of human movement, joint anatomy, and biomechanical principles
Module #3
Rehabilitation Engineering
Design and development of assistive technologies for rehabilitation purposes
Module #4
Prosthetics and Orthotics
Design, fabrication, and fitting of prosthetic and orthotic devices
Module #5
Biomechanics of Movement Disorders
Biomechanical analysis of movement disorders such as stroke, Parkinsons disease, and cerebral palsy
Module #6
Sensorimotor Systems and Control
Physiological and biomechanical principles of sensorimotor systems and control
Module #7
Electromyography (EMG) and Neurophysiology
Principles and applications of EMG and neurophysiology in rehabilitation
Module #8
Computer-Aided Analysis of Human Movement
Use of computer-based systems for analyzing human movement and gait
Module #9
Rehabilitation Robotics
Design and application of robots in rehabilitation therapy
Module #10
Virtual Reality (VR) and Augmented Reality (AR) in Rehabilitation
Applications of VR and AR in rehabilitation therapy and assessment
Module #11
Wearable Sensors and IoT in Rehabilitation
Use of wearable sensors and IoT technologies in rehabilitation monitoring and assessment
Module #12
3D Printing and Additive Manufacturing in Rehabilitation
Applications of 3D printing and additive manufacturing in rehabilitation technology
Module #13
Biomechanics of Spine and Upper Limb
Biomechanical analysis of the spine and upper limb
Module #14
Biomechanics of Lower Limb and Gait
Biomechanical analysis of the lower limb and gait
Module #15
Neuromuscular Diseases and Disorders
Pathophysiology and rehabilitation strategies for neuromuscular diseases and disorders
Module #16
Sports Injury and Rehabilitation
Biomechanical analysis and rehabilitation strategies for sports-related injuries
Module #17
Rehabilitation Technology for Elderly and Aging
Design and application of rehabilitation technologies for elderly and aging populations
Module #18
Tele-Rehabilitation and Remote Monitoring
Applications and challenges of tele-rehabilitation and remote monitoring
Module #19
Clinical Gait Analysis
Principles and applications of clinical gait analysis in rehabilitation
Module #20
Orthopedic and Musculoskeletal Rehabilitation
Rehabilitation strategies for orthopedic and musculoskeletal injuries and disorders
Module #21
Neurological Rehabilitation
Rehabilitation strategies for neurological disorders and injuries
Module #22
Rehabilitation Technology for Pediatric Populations
Design and application of rehabilitation technologies for children and adolescents
Module #23
Ethical and Regulatory Considerations in Rehabilitation Technology
Ethical and regulatory considerations in the development and application of rehabilitation technologies
Module #24
Case Studies in Rehabilitation Technology
Real-world examples and case studies of rehabilitation technology applications
Module #25
Course Wrap-Up & Conclusion
Planning next steps in Rehabilitation Technology and Biomechanics career


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