Exercise Science
Unit Outlines

Exercise Science

AI Generated Intermediate 60 hours 9 topics

Learning Objectives

5 objectives
  • Understand the fundamental concepts and scope of exercise science and its role in health promotion.
  • Analyze human anatomy and physiology related to exercise, including muscular, cardiovascular, and respiratory systems.
  • Apply principles of biomechanics to assess and improve movement efficiency during physical activity.
  • Design exercise programs tailored to individual needs using evidence-based prescription principles.
  • Evaluate nutritional strategies and psychological factors influencing exercise performance and adherence.

Content Outline

Preview

Unit 1795: Foundations of Exercise Science

1. Introduction to Exercise Science

  • Definition and scope of exercise science
  • Importance in promoting health, fitness, and well-being
  • Overview of interdisciplinary nature (physiology, biomechanics, psychology, nutrition)

2. Anatomy and Physiology in Exercise Science

2.1 Muscular Physiology

  • Types of muscle tissue
  • Muscle contraction mechanisms
  • Muscle fiber types and their roles in exercise

2.2 Cardiovascular Responses

  • Structure and function of the heart
  • Blood circulation during rest and exercise
  • Cardiovascular adaptations to regular physical activity

2.3 Respiratory Adaptations

  • Anatomy of the respiratory system
  • Gas exchange and oxygen transport
  • Respiratory changes during acute and chronic exercise

3. Biomechanics and Movement Analysis

3.1 Principles of Biomechanics

  • Forces acting on the body (internal and external)
  • Newton’s laws of motion applied to human movement

3.2 Joint Mechanics

  • Types of joints and range of motion
  • Joint stability and mobility

3.3 Movement Efficiency

  • Analysis of gait and common movement patterns
  • Techniques to improve performance and reduce injury risk

4. Exercise Prescription and Programming

4.1 Principles of Exercise Training

  • Overload, progression, specificity, and reversibility

4.2 Designing Exercise Programs

  • Assessing client goals and fitness levels
  • Structuring aerobic, resistance, flexibility, and neuromotor exercises

4.3 Safety and Modifications

  • Contraindications and precautions
  • Adapting programs for individual differences

5. Nutrition for Exercise Performance

5.1 Macronutrient Requirements

  • Role of carbohydrates, proteins, and fats
  • Timing and quantity for exercise optimization

5.2 Hydration Strategies

  • Effects of dehydration on performance
  • Guidelines for hydration before, during, and after exercise

5.3 Nutrition for Different Athletes

  • Endurance vs strength athletes
  • Special considerations (e.g., vegetarian athletes, weight category sports)

6. Exercise Psychology and Behavior Change

6.1 Motivation Theories

  • Intrinsic vs extrinsic motivation
  • Self-determination theory

6.2 Goal Setting and Adherence

  • SMART goals
  • Strategies to enhance long-term exercise adherence

6.3 Behavior Change Models

  • Transtheoretical model
  • Techniques to facilitate behavior change

7. Fitness Assessment and Testing

7.1 Cardiorespiratory Fitness Tests

  • VO2 max, submaximal tests

7.2 Muscular Strength and Endurance Assessments

  • 1RM testing, endurance protocols

7.3 Flexibility and Body Composition

  • Sit-and-reach, skinfold measurements, bioelectrical impedance

8. Special Populations in Exercise Science

8.1 Older Adults

  • Age-related physiological changes
  • Tailoring exercise programs

8.2 Chronic Disease Considerations

  • Exercise for cardiovascular disease, diabetes, arthritis

8.3 Pregnancy and Postpartum

  • Safety guidelines and modifications

8.4 Athletes with Disabilities

  • Adapted physical activity principles
  • Inclusive program design

9. Exercise Science Research and Evidence-Based Practice

9.1 Research Methods in Exercise Science

  • Experimental, observational studies
  • Ethical considerations

9.2 Interpreting Scientific Literature

  • Critical appraisal of research articles
  • Understanding statistics and results

9.3 Applying Evidence-Based Practice

  • Integrating research findings into program design
  • Continuous professional development
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Quick Information

Unit Exercise Science
Difficulty Intermediate
Duration60 hours
Topics9
CreatedJul 20, 2026
GeneratedJul 20, 2026 01:06

Prerequisites

  • Basic human biology or anatomy knowledge
  • Fundamentals of health and physical education
  • Introduction to health sciences or related field

Recommended Resources

  • McArdle, W.D., Katch, F.I., & Katch, V.L. (2015). Exercise Physiology: Nutrition, Energy, and Human Performance. Lippincott Williams & Wilkins.
  • Enoka, R.M. (2015). Neuromechanics of Human Movement. Human Kinetics.
  • Baechle, T.R., & Earle, R.W. (2008). Essentials of Strength Training and Conditioning. Human Kinetics.
  • American College of Sports Medicine (ACSM) Guidelines for Exercise Testing and Prescription.
  • Pescatello, L.S. (2014). ACSM's Guidelines for Exercise Testing and Prescription. Wolters Kluwer Health.
  • Journal of Applied Physiology, Medicine & Science in Sports & Exercise (for current research articles).

Unit Topics

9
Introduction to Exercise Science
This topic will cover the basics of exercise science, including its definition, scope, and importanc...
Anatomy and Physiology in Exercise Science
Explore the human body's structure and function as they relate to exercise and physical activity, in...
Biomechanics and Movement Analysis
Delve into the principles of biomechanics and the analysis of human movement during exercise, focusi...
Exercise Prescription and Programming
Learn how to design safe and effective exercise programs for individuals based on their fitness goal...
Nutrition for Exercise Performance
Understand the role of nutrition in optimizing exercise performance and recovery, including macronut...
Exercise Psychology and Behavior Change
Examine the psychological factors that influence exercise participation and adherence, including mot...
Fitness Assessment and Testing
Learn about the various methods and protocols used to assess fitness levels, including measurements...
Special Populations in Exercise Science
Explore considerations for working with special populations such as older adults, individuals with c...
Exercise Science Research and Evidence-Based Practice
Understand the importance of research in exercise science, including interpreting scientific literat...