
Bicycle Fitting Course
Master the complete science and practice of bicycle fitting, from biomechanics and body measurement to saddle setup, cockpit adjustment, and injury prevention. This course gives you the technical skills to fit any rider on any bike with confidence and precision. Whether you are launching a fitting business or levelling up your mechanical expertise, this is the training that separates professionals from guesswork.
What you will learn:
You will build a thorough understanding of cycling biomechanics, rider morphology, and bike geometry so every adjustment you make is grounded in evidence. You will learn to use professional measurement tools, perform repeatable body assessments, and apply standardised protocols for saddle, cleat, and cockpit setup. The course covers dynamic video analysis so you can spot knee tracking issues, hip rocking, and other faults in real pedalling conditions. You will also study discipline-specific fitting for road, mountain, triathlon, and commuter riders, plus injury recognition and professional referral pathways. Business and client communication modules prepare you to run a fitting practice from day one.
How you study in practice Bicycle Fitting Course
How you practise Bicycle Fitting Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your company and its specific needs.
Course content
8 Chapters • 37 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Bicycle Fitting
Foundations of Bicycle Fitting
Lesson 1 • Rider Morphology and Body Types
Examines limb-length ratios, torso proportions, and flexibility profiles. Establishes why identical riders may require different setups on the same frame.
Lesson 2 • Human Anatomy for Bike Fitters
Covers skeletal landmarks, joint ranges, and muscle groups relevant to cycling posture. Connects anatomical knowledge to later measurement and adjustment decisions.
Lesson 3 • Bicycle Geometry Fundamentals
Introduces frame angles, tube lengths, and stack-and-reach measurements. Learners learn to read geometry charts and predict how changes affect rider fit.
Lesson 4 • Cycling Biomechanics Principles
Explains force transfer through the pedal stroke and joint loading patterns. Provides the mechanical rationale behind every fitting adjustment made later.
Chapter 2HideHide detailsSee detailsMeasurement Tools and Techniques
Measurement Tools and Techniques
Lesson 1 • Digital Fitting Tools
Explores motion-capture apps, laser plumb tools, and pressure-mapping systems. Learners learn when digital tools add value versus when manual methods suffice.
Lesson 2 • Bike Measurement Protocols
Covers saddle height, setback, handlebar reach, and drop measurement methods. Standardised protocols ensure consistent baseline data across fitting sessions.
Lesson 3 • Body Measurement Instruments
Introduces plumb bobs, goniometers, tape measures, and digital calipers for rider assessment. Accurate body data is the foundation of every subsequent fitting decision.
Lesson 4 • Measurement Error and Repeatability
Identifies sources of measurement error and teaches inter-rater reliability practices. Reliable data prevents incorrect adjustments and protects fitter credibility.
Chapter 3HideHide detailsSee detailsSaddle Fitting and Adjustment
Saddle Fitting and Adjustment
Lesson 1 • Saddle Fore-Aft Positioning
Covers knee-over-pedal-spindle alignment and its effect on power and joint load. Fore-aft position directly influences saddle height and must be set first.
Lesson 2 • Saddle Troubleshooting
Addresses numbness, chafing, lower-back pain, and knee pain linked to saddle setup. Learners practise systematic diagnosis using rider symptoms and visual observation.
Lesson 3 • Saddle Tilt and Roll
Explains neutral, nose-down, and nose-up tilt effects on pelvic stability and soft tissue. Learners learn to use a digital level and interpret rider feedback.
Lesson 4 • Saddle Height Determination
Teaches heel-drop, LeMond, and Holmes angle methods for setting saddle height. Correct height maximises power output and reduces knee overuse risk.
Lesson 5 • Saddle Selection Criteria
Guides selection based on sit-bone width, pelvic tilt, and riding discipline. Proper saddle shape prevents pressure injuries and supports optimal pelvic position.
Chapter 4HideHide detailsSee detailsCleat and Foot Interface Setup
Cleat and Foot Interface Setup
Lesson 1 • Wedges, Shims, and Orthotics
Covers forefoot wedges, leg-length shims, and custom orthotic integration. These interventions correct structural asymmetries that cleat placement alone cannot address.
Lesson 2 • Cleat Rotation and Float
Explains Q-angle, natural foot angle, and float selection for knee protection. Learners learn to identify the rider's natural foot angle before setting rotation.
Lesson 3 • Foot Anatomy and Cycling
Reviews metatarsal anatomy, arch types, and forefoot varus or valgus conditions. Foot structure directly determines cleat placement and wedge requirements.
Lesson 4 • Cleat Fore-Aft and Lateral Placement
Teaches ball-of-foot over pedal-spindle alignment and lateral offset adjustment. Correct placement reduces knee tracking issues and Achilles tendon strain.
Chapter 5HideHide detailsSee detailsHandlebar and Cockpit Adjustment
Handlebar and Cockpit Adjustment
Lesson 1 • Aero Bar and Extension Setup
Covers pad width, pad height, and extension angle for time-trial and triathlon positions. Aero setup must balance aerodynamic gain against breathing and power output.
Lesson 2 • Handlebar Width and Flare
Explains shoulder-width matching, flare angles, and their effect on breathing and control. Width selection differs by discipline and rider shoulder anatomy.
Lesson 3 • Reach and Stack Adjustment
Covers stem length, stem angle, and spacer use to modify reach and stack height. Reach and stack are the primary levers for upper-body position optimisation.
Lesson 4 • Cockpit Troubleshooting
Diagnoses neck pain, hand numbness, and shoulder tension from cockpit misalignment. Learners apply a symptom-to-adjustment mapping framework for efficient resolution.
Lesson 5 • Bar Angle and Hood Position
Teaches drop-bar rotation, hood angle, and brake-lever reach adjustment. Correct hood position prevents wrist extension and ulnar nerve compression.
Chapter 6HideHide detailsSee detailsDynamic Fitting and Video Analysis
Dynamic Fitting and Video Analysis
Lesson 1 • Joint Angle Analysis
Guides measurement of knee, hip, and ankle angles at key pedal-stroke positions. Target angle ranges are compared against evidence-based benchmarks for each joint.
Lesson 2 • Setting Up a Fitting Studio
Covers trainer selection, camera placement, lighting, and background for accurate video capture. A controlled environment eliminates visual artefacts that distort angle measurements.
Lesson 3 • Identifying Dynamic Faults
Identifies knee tracking deviation, hip rocking, and foot drop through video review. Each fault is linked to a specific adjustment or referral pathway.
Lesson 4 • Iterative Adjustment and Recheck
Establishes a make-one-change-at-a-time protocol with video recheck after each adjustment. Systematic iteration prevents compounding errors and isolates the effect of each change.
Lesson 5 • Video Capture Protocols
Teaches frame rate, resolution, and warm-up duration standards for reliable dynamic data. Consistent capture protocols allow valid comparison across sessions.
Chapter 7HideHide detailsSee detailsDiscipline-Specific Fitting Approaches
Discipline-Specific Fitting Approaches
Lesson 1 • Road Cycling Fit Parameters
Covers aggressive versus endurance road positions, drop depth, and reach trade-offs. Road fit balances aerodynamics, power output, and multi-hour comfort.
Lesson 2 • Adaptive and Inclusive Fitting
Covers fitting for riders with limb differences, chronic pain, or post-surgical conditions. Learners learn to modify standard protocols and identify referral thresholds.
Lesson 3 • Triathlon and Time-Trial Fit
Focuses on hip angle, pelvic rotation, and run-off leg preservation in aero position. Triathlon fit must account for the transition from cycling to running performance.
Lesson 4 • Mountain Bike Fit Considerations
Addresses cockpit height, bar rise, and saddle height for technical terrain demands. MTB fit prioritises control and weight distribution over aerodynamic efficiency.
Lesson 5 • Commuter and Urban Bike Fit
Adapts fit for upright posture, visibility, and stop-and-go riding demands. Commuter fit prioritises comfort and safety over performance metrics.
Chapter 8HideHide detailsSee detailsInjury Prevention and Referral Protocols
Injury Prevention and Referral Protocols
Lesson 1 • Professional Referral Pathways
Establishes when and how to refer riders to physiotherapists, podiatrists, and sports physicians. Clear referral language and documentation protect both rider and fitter.
Lesson 2 • Common Cycling Overuse Injuries
Profiles knee, lower-back, neck, and hand injuries linked to poor fit. Understanding injury mechanisms enables fitters to address root causes rather than symptoms.
Lesson 3 • Post-Injury Return-to-Ride Fitting
Guides fit modifications for riders returning after injury, surgery, or extended rest. Graduated load protocols and conservative adjustments reduce re-injury risk.
Lesson 4 • Fit-Based Injury Prevention
Maps specific fit errors to injury risk and prescribes corrective adjustments. Prevention strategies are prioritised over reactive fixes throughout the fitting process.
Lesson 5 • Recognising Medical Red Flags
Identifies symptoms beyond fit scope, including nerve damage, vascular issues, and structural pathology. Early recognition protects riders and limits fitter liability.
Your valid completion certificate
This course is for you:
Bike shop mechanic: ready to add fitting expertise to technical skills.
Cycling coach: wanting a biomechanical foundation to support athlete performance decisions.
Physical therapist: seeking to extend clinical knowledge into cycling rehabilitation contexts.
Competitive cyclist: determined to understand and self-manage their own position precisely.
Career changer: drawn to the cycling industry and building a fitting practice from scratch.
Sports science student: looking for applied, hands-on training beyond classroom theory.
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