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

Sports Biomechanics for Rehabilitation
( 30 Modules )

Module #1
Introduction to Sports Biomechanics
Overview of sports biomechanics, significance in rehabilitation, and importance in injury prevention
Module #2
Fundamentals of Biomechanics
Basic concepts of biomechanics, including kinematics, kinetics, and movement analysis
Module #3
Anatomy and Movement Analysis
Anatomy of major joints and muscle groups, movement patterns, and joint motion analysis
Module #4
Movement Patterns in Sports
Analysis of movement patterns in various sports, including running, jumping, and throwing
Module #5
Injury Mechanisms and Risk Factors
Understanding injury mechanisms, risk factors, and prevention strategies
Module #6
Biomechanical Analysis of Injuries
Biomechanical analysis of common injuries in sports, including sprains, strains, and fractures
Module #7
Rehabilitation Principles
Overview of rehabilitation principles, including exercise prescription and progression
Module #8
Biomechanical Principles of Rehabilitation
Application of biomechanical principles to rehabilitation, including movement re-education and strength training
Module #9
Gait Analysis for Rehabilitation
Gait analysis for rehabilitation, including normal and abnormal gait patterns
Module #10
Running Biomechanics and Rehabilitation
Biomechanical analysis of running, common injuries, and rehabilitation strategies
Module #11
Jumping and Landing Biomechanics
Biomechanical analysis of jumping and landing, common injuries, and rehabilitation strategies
Module #12
Throwing Biomechanics and Rehabilitation
Biomechanical analysis of throwing, common injuries, and rehabilitation strategies
Module #13
Upper Extremity Biomechanics and Rehabilitation
Biomechanical analysis of the upper extremity, common injuries, and rehabilitation strategies
Module #14
Lower Extremity Biomechanics and Rehabilitation
Biomechanical analysis of the lower extremity, common injuries, and rehabilitation strategies
Module #15
Core and Trunk Biomechanics and Rehabilitation
Biomechanical analysis of the core and trunk, common injuries, and rehabilitation strategies
Module #16
Return to Play Protocols
Developing and implementing return to play protocols for athletes
Module #17
Injury Prevention Strategies
Implementing injury prevention strategies in sports, including strength training and plyometrics
Module #18
Using Technology in Sports Biomechanics
Overview of technology used in sports biomechanics, including motion capture and wearable devices
Module #19
Research and Evidence-Based Practice
Applying research and evidence-based practice in sports biomechanics and rehabilitation
Module #20
Case Studies in Sports Biomechanics
Real-life case studies in sports biomechanics and rehabilitation
Module #21
group Project:Biomechanical Analysis of a Sport
Student-led group project:biomechanical analysis of a sport and development of rehabilitation strategies
Module #22
Current Topics and Trends in Sports Biomechanics
Overview of current topics and trends in sports biomechanics, including cutting-edge research and applications
Module #23
Career Development in Sports Biomechanics
Career development opportunities in sports biomechanics, including certification and professional organizations
Module #24
Ethical Considerations in Sports Biomechanics
Ethical considerations in sports biomechanics, including consent, privacy, and data management
Module #25
Cultural and Diversity Considerations in Sports Biomechanics
Cultural and diversity considerations in sports biomechanics, including athlete individuality and cultural differences
Module #26
Sports Biomechanics in Special Populations
Sports biomechanics in special populations, including youth, masters, and adaptive athletes
Module #27
Sports Biomechanics in Team Sports
Sports biomechanics in team sports, including soccer, basketball, and football
Module #28
Sports Biomechanics in Individual Sports
Sports biomechanics in individual sports, including tennis, golf, and distance running
Module #29
Capstone Project:Development of a Rehabilitation Program
Student-led capstone project:development of a rehabilitation program for a specific sport or injury
Module #30
Course Wrap-Up & Conclusion
Planning next steps in Sports Biomechanics for Rehabilitation career


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