The first slow-motion video I saw of my own running gait was useful for an unexpected reason: it replaced impressions with observable events. I was not landing the way I thought, and the change became larger when pace increased. The video did not diagnose an injury. It gave me a baseline and better questions.
A running gait analysis is a structured assessment of how you run at a defined speed, surface, shoe condition, and fatigue state. It can measure timing, joint motion, foot strike, forces, pressure, and symmetry. Its value depends less on a dramatic freeze-frame than on the protocol, the person interpreting it, and whether the findings lead to a testable plan.
This guide explains retail screens, clinical 2D video, 3D motion capture, force plates, pressure systems, and wearables. It also shows what common gait findings do—and do not—mean for shoes, pain, performance, and gait retraining. For the full framework connecting gait, load, form, and shoe geometry, use my running biomechanics guide.
Clinical boundary: Running gait analysis can support an evaluation, but a video or foot scan cannot diagnose the cause of pain by itself. New trauma, inability to bear weight, marked swelling, neurologic symptoms, chest pain, fainting, or pain that is worsening at rest needs appropriate medical assessment.
Evidence reviewed August 16, 2026. Prices and insurance coverage vary by provider and location; confirm the fee, credentials, protocol, and deliverables before booking.
📖 What’s in This Guide ▼ Click to expand
- Quick decision guide
- What gait analysis is
- Retail, 2D, 3D, and wearables
- What the test measures
- The running gait cycle
- How to interpret common findings
- What analysis cannot prove
- Treadmill vs outdoor testing
- Pace, fatigue, and footwear
- Shoe-store gait analysis
- When clinical analysis is worth it
- How to choose a provider
- What to expect
- Cost and insurance
- At-home video protocol
- Turning data into action
- Pain and red flags
- Frequently asked questions
Running Gait Analysis: The Quick Decision Guide
Choose the least complex assessment that can answer your question, then demand repeatable measures and a clear follow-up plan. More equipment does not automatically produce a better decision.
| Your question | Best starting point | What it should deliver | Upgrade when |
|---|---|---|---|
| Which shoes feel and fit best? | Specialty-store fitting plus short run | Fit, comfort, use-case comparison | Pain or complex history needs clinical context |
| What does my running gait look like? | Standardized 2D video | Side and rear views, pace recorded, key events | The question needs forces or three-plane angles |
| Why does pain recur? | Sports PT/sports-medicine evaluation with running analysis | History, exam, load review, gait findings, treatment plan | Complex case needs instrumented lab |
| Do mechanics change late in a race? | Baseline plus fatigued condition | Same speed or documented speed change | Outdoor wearable validation is required |
| Do I need 3D analysis? | Only if the extra variables change management | Three-plane kinematics and clearly defined outputs | Never upgrade for visuals alone |
Ken’s decision rule: Do not pay for a measurement unless you know what decision it could change. A useful report connects one finding to one intervention, one dose, and one re-test date.
I start with the runner’s question, not the camera. A pain-free beginner choosing a shoe needs a different service from a runner with six months of unilateral knee pain. The first may need fit and comfort; the second needs a clinician who can combine gait with history, strength, range of motion, training load, and symptom behavior.
What Is Running Gait Analysis?
Running gait analysis records and interprets movement during running under stated conditions; it is a measurement process, not a diagnosis. The conditions belong in the result.
A complete observation identifies the runner, speed, grade, surface, shoes, warm-up, camera views, sampling method, symptoms, and fatigue state. Without those details, a number such as cadence or hip adduction has less meaning because running gait changes with the task.
Running analysis is narrower than the full subject of biomechanics. It measures selected outcomes. The proper running form guide handles practical posture, arm swing, foot landing, and overstriding cues; this page focuses on how those features are captured and interpreted. For a pace-specific retraining process, follow my step-by-step overstriding guide.
| Term | Plain-English meaning | Examples |
|---|---|---|
| Spatiotemporal | When and how far each step occurs | Cadence, step length, contact time, flight time |
| Kinematics | How body segments and joints move | Angles, position, velocity, range of motion |
| Kinetics | Forces and moments producing or resisting motion | Ground reaction force, loading rate, joint moment |
| Plantar pressure | Where pressure acts under the foot | Peak pressure, contact area, pressure-time pattern |
| Qualitative observation | A trained description without direct force measurement | Foot strike, trunk position, crossover pattern |
Retail Screens, 2D Video, 3D Labs, and Wearables
Retail screens answer fitting questions; clinical video adds context; instrumented labs quantify variables that ordinary cameras cannot directly measure. These services are not interchangeable.
| Method | Usually measures | Strength | Main limitation |
|---|---|---|---|
| Retail observation/foot scan | Foot dimensions, basic video, shoe response | Fast comparison during fitting | Sales setting; limited clinical scope |
| 2D high-speed video | Visible angles, cadence, strike pattern, step position | Accessible and useful for repeated views | Depth and out-of-plane motion are lost |
| 3D motion capture | Three-plane segment and joint motion | Detailed kinematics | Cost, setup, marker/model assumptions |
| Force plate/instrumented treadmill | Ground reaction force and force-time variables | Direct kinetic data | Force does not identify pain source alone |
| Pressure platform/insole | Underfoot pressure distribution | Foot-loading pattern in shoe or barefoot | Pressure is not whole-body force or joint load |
| Wearable/IMU | Device-dependent timing, acceleration, impact proxies | Many strides outside the lab | Algorithms and validity vary by device and placement |
A 2023 systematic review found that 2D video was generally reliable for repeated angular measurements, but validity against 3D systems was poor or moderate for many parameters, especially in frontal and transverse planes. That makes 2D useful—not omniscient. See the 2D running-angle review.
For foot-strike pattern and step rate, the evidence is more favorable: another systematic review reported strong reliability and good concurrent validity for those specific measures. The correct question is therefore not ‘Is 2D valid?’ but ‘Valid for which variable?’ Read the foot-strike and step-rate review.
What Should a Running Gait Test Measure?
A sound test measures variables tied to the runner’s question and reports them with speed, symptoms, side, and method. A longer dashboard is not necessarily a better report.
| Domain | Useful variables | Interpret with | Common mistake |
|---|---|---|---|
| Timing | Cadence, contact time, flight time | Speed and grade | Treating 180 spm as universal |
| Step geometry | Step length, width, foot position | Body size and pace | Calling every forward landing overstriding |
| Foot/ankle | Strike pattern, tibial angle, eversion | Shoe, view, surface | Equating pronation with injury |
| Knee/hip | Flexion, adduction, pelvic motion | Task and measurement validity | Diagnosing from one angle |
| Trunk | Lean, side bend, rotation | Hill, speed, symptoms | Forcing a generic upright posture |
| Loading | Force peaks, impulses, loading rate | Instrument and normalization | Assuming one peak predicts injury |
| Symmetry | Side-to-side timing or force | Normal variability and injury history | Demanding perfect symmetry |
I want three layers in a report: observation, interpretation, and decision. ‘Cadence was 164’ is observation. ‘It was measured at 9:30 per mile and fell late in the trial’ is context. ‘Test a 5% cue during easy running, monitor symptoms, and recheck in two weeks’ is a decision.
If cadence is the question, compare the report with the running cadence guide and use the cadence and step-length calculator to model small changes without adopting an arbitrary target.
The Running Gait Cycle in Practical Terms
Running alternates stance and swing with a flight phase, so analysis should examine events across the cycle rather than one screenshot. Timing reveals the sequence.
| Event/phase | What happens | What video may show | What video cannot directly show |
|---|---|---|---|
| Initial contact | Foot first meets ground | Strike location, limb position | Actual force without a force system |
| Loading | Body accepts and redirects force | Joint motion, trunk strategy | Internal tissue stress |
| Midstance | Body passes over support | Pelvis, knee, foot progression | Cause of visible motion |
| Propulsion/toe-off | Support ends and swing begins | Hip extension, trailing limb, timing | Muscle force without modeling |
| Swing | Leg recovers for next contact | Knee recovery, foot path | Whether a change is harmful |
| Flight | Neither foot contacts ground | Relative timing | Performance value in isolation |
A camera frame can look dramatic because it freezes normal movement at its extreme. I review several consecutive cycles from both sides before labeling a pattern. A one-step anomaly may reflect belt position, a glance at the screen, or a marker error rather than the runner’s usual gait.
How to Interpret Common Running Gait Findings
Interpret each finding as a task-specific observation, then test whether it relates to symptoms, load, performance, or a modifiable constraint. Labels alone are weak prescriptions.
| Finding | What it may describe | What it does not prove | Reasonable next question |
|---|---|---|---|
| Rearfoot strike | Heel contacts first | Injury, inefficiency, or wrong shoe | Does it change with speed or slope? |
| Low cadence | Fewer steps per minute at that speed | Overstriding by itself | What are step length and braking variables? |
| Foot ahead of hips | Forward contact in camera view | Excessive braking without force/context | Where are tibia angle and center of mass? |
| Pronation | Normal multi-joint accommodation | Need for stability shoes | Is motion symptomatic and does footwear feel better? |
| Pelvic drop/hip adduction | Frontal-plane motion | Cause of knee pain | Is 2D view standardized and clinically relevant? |
| Crossover/narrow step width | Feet approach the line of progression | Pathology | Does widening cue improve symptoms or control? |
| Asymmetry | Sides differ on a selected metric | Injury or weakness | Is difference repeatable and beyond device error? |
The strongest caution comes from a 2023 meta-analysis of 82 studies: minimal evidence supported simple associations between altered running biomechanics and running-related injury, and findings were limited by heterogeneous methods. A gait feature is not a verdict. See the biomechanics and injury meta-analysis.
In my own reviews, I write the condition beside every finding: speed, shoe, surface, symptom state, and point in the run. That habit prevents a temporary observation from turning into a permanent label.
Pronation deserves particular restraint. A retail label may help organize shoe trials, but it should not become a diagnosis. The stability versus neutral shoe guide explains how comfort, fit, and response during running belong beside observed motion.
What Gait Analysis Cannot Diagnose or Predict
No single gait variable can identify the cause of every injury, predict who will be injured, or prescribe one correct shoe. Evidence does not support that certainty.
Running gait analysis cannot guarantee injury prevention. It can narrow a question, document a response, and expose a pattern worth testing; it cannot replace training history or clinical reasoning.
- [‘A foot strike does not reveal tissue capacity, recent mileage changes, sleep, recovery, or prior injury.’, ‘A pressure map measures plantar pressure, not hip or knee joint loading.’, ‘A 3D model estimates joint variables from a model; it does not directly see internal tissue strain.’, ‘A static arch scan does not show the complete dynamic behavior of the foot and leg.’, ‘A painless asymmetry is not automatically a defect, and a symmetric runner can still have pain.’, ‘A normal-looking gait does not rule out bone stress injury, tendon disorder, or other pathology.’]
This is why I distrust reports that list every departure from a software ‘normal’ as a correction target. Normal ranges depend on speed, population, method, and variability. A good analyst prioritizes findings that are repeatable, relevant to the stated problem, and changeable without creating a worse tradeoff elsewhere.
For broader load and recovery decisions, use the running injury prevention guide. It covers the training variables a camera cannot capture.
Treadmill vs Outdoor Running Gait Analysis
Treadmill and overground running are broadly comparable for many variables, but meaningful differences remain and should be stated in the report. Test specificity matters.
A systematic review and meta-analysis of 33 crossover studies found most biomechanical outcomes were comparable, while several foot-strike, knee, contact-time, center-of-mass, force, and ankle-moment measures differed. The evidence quality for many differences was low or very low. Read the treadmill versus overground meta-analysis.
| Use treadmill when | Add overground or field testing when |
|---|---|
| You need fixed speed and repeated camera views | Symptoms occur only outdoors |
| The runner is comfortable on the belt | Terrain, curves, hills, or acceleration matter |
| The goal is controlled before/after comparison | The treadmill visibly changes the runner’s behavior |
| Force-instrumented treadmill data are needed | Race-specific surface or shoe behavior is the question |
I give runners enough warm-up time to stop drifting forward and backward on the belt. Then I record the belt speed and incline. The treadmill versus outdoor running guide explains the training differences that sit outside a short lab recording.
Why Pace, Fatigue, Hills, and Shoes Change the Result
A gait result belongs to the tested condition because speed, fatigue, slope, surface, and footwear can change the measured pattern. One clip is not a permanent identity.
| Variable | Why it matters | Better protocol |
|---|---|---|
| Pace | Cadence, step length, strike and joint motion may change | Record exact speed; test easy and relevant faster pace |
| Fatigue | Timing and coordination may shift late | Compare fresh and fatigued trials with speed documented |
| Slope | Uphill/downhill redistributes demand | Test race-specific grade only when relevant |
| Shoes | Geometry, stiffness, fit and traction affect movement | Use habitual shoe first; compare one change |
| Surface | Compliance and traction alter strategy | Match the real problem when possible |
A 2025 meta-analysis reported strong evidence that overground running fatigue increases ground-contact time at a consistent speed and moderate evidence for shorter step length when speed changed, while many joint angles and moments did not change. That is a useful reminder to preserve or report speed in fatigue comparisons. See the fatigue meta-analysis.
Shoe geometry also changes the experiment. The heel-drop guide explains how heel-to-toe offset can redistribute demand, but a gait test should compare actual response rather than infer it from millimeters alone.
What a Shoe-Store Gait Analysis Can—and Cannot—Do
A retail gait screen can improve fitting and shoe comparison, but it should not diagnose injury or promise prevention. Its legitimate scope is narrower.
| Useful retail outcome | Red flag in a retail explanation |
|---|---|
| Accurate foot length, width, volume, and fit discussion | A scan proves the cause of pain |
| Running in several shoes at the intended pace | One pronation label dictates one category forever |
| Comfort, lockdown, pressure and stability feedback | Visible motion guarantees future injury |
| Clear return policy and no-pressure comparison | Orthotics or expensive shoes are presented as mandatory |
| Referral when symptoms exceed fitter scope | A salesperson provides a medical diagnosis |
When a store labels you an overpronator, use that as a starting hypothesis for shoe trials. Compare comfort and control in neutral and supportive options. Relevant next reads are the overpronation shoe guide, stability shoe guide, and supination shoe guide. None replaces a clinical evaluation for persistent pain. For the distinction between normal pronation, overpronation, and supination, see my overpronation versus supination guide.
I treat the store treadmill as a comparison station, not a courtroom. If two shoes both fit, the short run can reveal which feels stable and natural; it cannot prove which pair prevents an injury months later.
A focused review of footwear paradigms concluded that evidence supporting any single shoe-prescription model is generally limited. That supports individual comparison rather than rigid classification. See the running footwear assessment review.
When Is a Clinical Running Gait Analysis Worth It?
Clinical analysis is most useful when a specific, persistent problem requires examination, measurement, an intervention, and a planned re-test. Curiosity alone rarely needs a laboratory.
| More likely worth it | Probably unnecessary as a first step |
|---|---|
| Recurring or one-sided symptoms despite sensible load changes | Pain-free running with no specific decision |
| Return from injury with a movement-related clinical question | Wanting a universal ‘perfect form’ score |
| Symptoms appear only at a certain pace or late duration | Buying ordinary shoes when fit and comfort are clear |
| Complex history or failed generic advice | Expecting one session to prevent all injuries |
| Performance question needing quantified comparison | Collecting metrics without an action plan |
For anterior knee symptoms, gait may be one piece of a broader assessment; the runner’s-knee symptoms and return-to-running guide covers symptom behavior and return-to-run decisions. For tibial pain, use the shin-splint symptoms and return-to-running guide. For lateral knee symptoms, the IT band guide explains why a stretch-only diagnosis is incomplete.
I would spend on clinical analysis when the result could change rehabilitation or return-to-run decisions. I would not spend simply to receive a ranking against a generic model runner.
How to Choose a Running Gait Analysis Provider
Choose the interpreter before the technology: credentials, clinical scope, protocol transparency, and follow-up matter more than a polished motion graphic. Ask questions before paying.
| Ask | Strong answer | Weak answer |
|---|---|---|
| Who performs and interprets the test? | Named credentials and running-specific experience | Our software does it |
| What question will the test answer? | Defined from your history and goal | We find everything wrong |
| Which speeds and conditions are tested? | Habitual plus symptom/goal-specific | One default speed for everyone |
| What can your equipment measure? | Clear distinction among video, force and pressure | The camera measures joint forces |
| What will I receive? | Video/data, prioritized findings, plan and follow-up | A score and shoe list |
| What happens if pain appears? | Stop/modify criteria and clinical process | Push through for better data |
I also ask whether the provider will say ‘no change needed.’ An assessment designed to sell a product or intervention has a built-in incentive. That does not make the service useless, but the commercial relationship should be transparent.
What to Expect at a Running Gait Appointment
A quality appointment starts with history and baseline testing, records standardized running trials, reviews findings, and ends with prioritized next steps. The camera is one part.
| Stage | What should happen | What to bring |
|---|---|---|
| History | Goals, training, pain, injury, surfaces, shoes | Training log and symptom timeline |
| Physical examination | Relevant strength, mobility, function, tenderness | Shorts or fitted running clothes |
| Warm-up | Enough time to settle into normal running | Usual socks and primary shoes |
| Recording | Side/rear views; speed and condition documented | Alternate shoe only if comparison is planned |
| Interpretation | Few prioritized findings tied to the question | Questions and note-taking method |
| Plan | Cue/exercise/load/shoe trial with dose and re-test | Calendar for follow-up |
Do not deliberately ‘run well’ for the camera. Run normally, report discomfort promptly, and tell the analyst if treadmill running feels unfamiliar. I bring the shoes in which the problem occurs and one familiar alternative—not a bag of unrelated models.
A short dynamic preparation can make the first recorded minute more representative. Use the pre-run warm-up guide rather than aggressive stretching immediately before testing.
How Much Does Running Gait Analysis Cost?
Cost ranges from a free retail screen to several hundred dollars for clinical video or instrumented 3D testing. Scope and deliverables matter more than the label.
| Service | Typical U.S. pricing pattern | Confirm before booking |
|---|---|---|
| Retail fitting/screen | Often free or included with fitting/purchase | Purchase expectation and staff scope |
| Clinical 2D video | Commonly self-pay or part of a PT evaluation | Evaluation, report and follow-up included? |
| 3D/force/pressure lab | Usually several hundred dollars; complex packages can cost more | Exact variables and why they change management |
| Insurance-based clinical visit | Coverage varies by plan and medical necessity | Referral, codes, deductible and prior authorization |
Published prices age quickly and differ by city, so I do not choose by a national average. Get the total price in writing. Ask whether the fee includes the examination, video files, written report, exercise or retraining plan, shoe comparison, and repeat assessment.
A free screen is not automatically poor, and an expensive lab is not automatically useful. Value is the quality of the answer divided by the full cost—including time and any products the service pressures you to buy.
A Practical At-Home Running Gait Video Protocol
Home video can document cadence, strike pattern, posture, and gross changes when camera position, speed, shoes, and timing remain consistent. It cannot measure forces.
| Step | Protocol |
|---|---|
| 1. Define one question | Example: Does step position change late in an easy run? |
| 2. Choose a safe setup | Level, unobstructed path or familiar treadmill; another person films |
| 3. Standardize the camera | Stable support around hip/knee height; no handheld panning |
| 4. Record views | Side and rear; capture several complete strides on each side |
| 5. Record conditions | Speed, grade, shoe, surface, warm-up, symptoms and run duration |
| 6. Repeat one condition | Compare like with like before testing a cue |
| 7. Respect scope | Do not diagnose pain or infer forces from pixels |
For cadence, count contacts over a known interval or use audio/video timestamps. For step position, examine the relationship among foot, lower leg, and body—not only whether the heel appears ahead of the hip in one frame. Camera perspective can create or erase apparent alignment.
If body size changes the mechanics or filming assumptions, the running form adjustments for heavier runners provides practical context without treating weight as a defect.
How to Turn Gait Data Into a Safe Action Plan
Change one variable, use the smallest effective cue, limit early exposure, track symptoms and performance, then re-test the original condition. Data become useful through feedback.
| Plan element | Example |
|---|---|
| Baseline | Cadence 164 spm at 9:30/mile; pain 3/10 after 20 minutes |
| Hypothesis | A modest step-rate cue may reduce the aggravating load |
| Intervention | Metronome at +5% during short easy intervals |
| Dose | Six 1-minute bouts, twice weekly, normal form between bouts |
| Monitor | Pain during, next morning response, perceived effort, calf load |
| Progress/stop rule | Add time only if response is stable; stop for worsening or new pain |
| Re-test | Same shoe, speed, warm-up, camera and symptom point |
Ken’s one-change rule: Do not change cadence, foot strike, shoes, strength load, and weekly mileage together. If symptoms improve or worsen, you need to know which variable earned the credit. For how rearfoot, midfoot, and forefoot landings redistribute load, read my heel, midfoot, and forefoot strike comparison.
A systematic review of 19 trials found that gait retraining can change selected mechanics—such as step rate and vertical loading rate—but evidence for pain and injury outcomes was limited. Two trials reported lower one-year injury incidence; that is promising, not a universal guarantee. Read the gait-retraining meta-analysis.
Support retraining with capacity work when the assessment identifies a relevant limitation. The strength training plan for runners provides a two-day framework. If a shoe comparison is part of the intervention, start with fit and intended use; the beginner running shoe guide explains the basic decision process.
Pain, Referral, and Red Flags
Persistent pain needs a whole-runner assessment, while acute or systemic warning signs should bypass self-analysis and receive appropriate care. Do not film through danger.
| Situation | Reasonable next step |
|---|---|
| Mild discomfort tied to a recent load spike | Reduce aggravating load and monitor; seek help if it persists |
| Recurring focal pain or gait-changing pain | Sports PT, sports-medicine clinician, or appropriate licensed provider |
| Bone tenderness, night/rest pain, marked swelling | Stop running and obtain timely clinical assessment |
| Trauma, deformity, inability to bear weight | Urgent assessment |
| Chest pain, fainting, severe breathlessness, neurologic symptoms | Emergency evaluation as appropriate |
Shoes may alter comfort and movement, but they are not a diagnosis. Runners with flat feet can use the flat-feet shoe guide; runners with high arches can use the high-arch shoe guide. If an insert is being considered, the running insole guide explains fit and volume constraints. These are product decisions after—not instead of—clinical triage. For a fuller framework covering arch, width, volume, flexibility, and asymmetry, use my running foot types guide.
I stop a gait test when pain changes the runner’s stride or the symptom pattern raises concern. More footage is not useful when continuing the test is the wrong decision.
Frequently Asked Questions
These answers cover accuracy, shoes, pronation, cost, home video, cadence, 3D testing, and what to do after analysis. The tested condition always matters.
What is running gait?
Running gait is the repeating pattern of stance, swing, and flight used to move while running. It includes timing, step geometry, segment and joint motion, and the forces associated with ground contact.
Is running gait analysis accurate?
Accuracy depends on the variable, equipment, protocol, and analyst. Two-dimensional video is useful for visible events such as foot strike and cadence, but many three-plane joint angles require more caution.
Can gait analysis tell me which running shoes to buy?
It can inform shoe trials, but it cannot select one correct shoe from pronation or foot strike alone. Fit, comfort, intended use, symptom response, and running experience remain important.
Does overpronation mean I need stability shoes?
No. Pronation is normal. Some runners prefer or benefit from supportive shoes, but observed pronation alone is not a universal prescription. Compare options and consider symptoms and comfort.
Can gait analysis prevent running injuries?
No test can guarantee injury prevention. Analysis may identify a modifiable feature and guide retraining, but training load, tissue capacity, recovery, previous injury, and other factors also matter.
Can I perform running gait analysis at home?
You can record standardized side and rear video to observe cadence, foot strike, posture, and gross changes. Home video cannot directly measure ground reaction force, joint load, or tissue stress.
Do I need 3D gait analysis?
Most pain-free runners do not. Three-dimensional testing is useful when three-plane kinematics or instrumented data are necessary to answer a clinical or performance question that simpler testing cannot resolve.
Should gait analysis be done barefoot?
Usually test the condition relevant to the question. A runner with symptoms in shoes should first be observed in the habitual shoes; barefoot comparison is optional and should have a defined purpose.
How long does a running gait analysis take?
A retail screen may take minutes, while a clinical assessment commonly includes history, examination, warm-up, multiple recordings, interpretation, and planning. Ask what is included rather than judging by duration alone.
What should I do after a gait analysis?
Leave with one or two prioritized findings, a specific intervention and dose, monitoring rules, and a re-test date. Avoid changing several training, shoe, and technique variables at once.
The Bottom Line
Running gait analysis is valuable when a defined question, valid measurement, qualified interpretation, and testable follow-up plan stay connected. The report should reduce uncertainty.
I use gait data as a before-and-after tool, not a character judgment about how someone runs. Record the condition, identify the smallest relevant change, protect training consistency, and re-test. If the analysis cannot explain what decision a number changes, the number is decoration.
For most healthy runners, comfortable shoes, progressive training, adequate strength, and responsive load management matter more than chasing a perfect-looking stride. When pain is persistent or the question is complex, a clinician who understands running can make the same camera far more useful.

