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

Biomechanics in Rehabilitation and Therapy
( 25 Modules )

Module #1
Introduction to Biomechanics
Defining biomechanics, its importance in rehabilitation and therapy, and scope of application
Module #2
Anatomy and Movement
Review of human anatomy, movement patterns, and joint kinematics
Module #3
Forces and Movement
Understanding forces, torque, and momentum in human movement
Module #4
Kinematics of Movement
Describing movement using kinematic variables:position, velocity, and acceleration
Module #5
Kinetics of Movement
Understanding the causes of movement:forces, torques, and energies
Module #6
Biomechanical Analysis of Gait
Analyzing gait patterns, normal and abnormal gait, and gait abnormalities
Module #7
Biomechanical Analysis of Upper Extremity Movement
Analyzing movement of the shoulder, elbow, forearm, and hand
Module #8
Biomechanical Analysis of Lower Extremity Movement
Analyzing movement of the hip, knee, ankle, and foot
Module #9
Biomechanics of Spinal Movement
Understanding movement and stabilization of the spine
Module #10
Injury Mechanisms and Biomechanics
Understanding how injuries occur and the biomechanical factors involved
Module #11
Rehabilitation Principles
Overview of rehabilitation principles and goals
Module #12
Biomechanical Principles in Rehabilitation
Applying biomechanical principles to rehabilitation:exercise and treatment techniques
Module #13
Therapeutic Exercise and Biomechanics
Designing exercise programs based on biomechanical principles
Module #14
Manual Therapy and Biomechanics
Applying biomechanical principles to manual therapy techniques
Module #15
Modalities and Biomechanics
Using physical modalities (e.g. heat, cold, electrical stimulation) in rehabilitation and their biomechanical effects
Module #16
Assistive Devices and Biomechanics
Understanding the biomechanical effects of assistive devices (e.g. canes, walkers, prosthetics)
Module #17
Biomechanical Analysis of Sports Injuries
Analyzing sports injuries from a biomechanical perspective
Module #18
Biomechanical Analysis of Orthotics and Prosthetics
Designing and analyzing orthotics and prosthetics from a biomechanical perspective
Module #19
Functional Movement Screening and Biomechanics
Using functional movement screens to identify biomechanical limitations and predict injury risk
Module #20
Biomechanical Measurements and Instrumentation
Measurement tools and techniques in biomechanics, including motion capture and force plates
Module #21
Biomechanical Modeling and Simulation
Using models and simulations to analyze and predict human movement
Module #22
Biomechanics in Neurological Rehabilitation
Applying biomechanical principles to rehabilitation in neurological populations
Module #23
Biomechanics in Orthopedic Rehabilitation
Applying biomechanical principles to rehabilitation in orthopedic populations
Module #24
Biomechanics in Pediatric Rehabilitation
Applying biomechanical principles to rehabilitation in pediatric populations
Module #25
Course Wrap-Up & Conclusion
Planning next steps in Biomechanics in Rehabilitation and Therapy career


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