Suspected stress or insufficiency fracture
ACR AC Stress (Fatigue/Insufficiency) Fracture (2024 rev)Radiographs first — cheap, quick and occasionally diagnostic — then MRI of the symptomatic region when they are normal and the clinical suspicion persists. The site does more work than the modality: high-risk locations change management even when the fracture is barely visible.
Activity-related bone pain in a runner, military recruit or dancer, or an insufficiency fracture in an older patient with osteoporosis, previous pelvic radiotherapy or long-term corticosteroids.
Referenced decision support — confirm against your local protocol.
Decision support, not a directive. Protocols and timings shown are typical published ones — your local protocol takes precedence, and the vetting radiologist decides.
- Radiography is the baseline study: when it shows a periosteal reaction, a cortical lucency or the dense sclerotic band of a healing insufficiency fracture, the pathway ends there. It also detects the alternative diagnoses that matter most — an aggressive bone lesion presenting as activity-related pain is uncommon but must not be assumed away.
Nothing needs resolving before this goes ahead. Routine checks below are owned downstream.
How was this decided?
- pathwayany — All patients
- rulerule-paeds-dose — Child-sized technique and contrast dose; checked by Radiographer at the scanner
Decision support only. Local protocol takes precedence.
Handled at the scanner(1)nothing for you to do
Settled and owned downstream. Each returns to a radiologist only on the stated trigger.
- Child-sized technique and contrast doseConfirm that a size- or weight-based protocol is selected — child-sized kV and mAs against size-based diagnostic reference ranges — and that contrast volume is calculated by weight rather than taken from an adult default. Weight-based iodinated contrast volumes of roughly 1.5–2.0 mL/kg are widely used in paediatric CT.Radiographer at the scannerAt the scannerFlags back if: No paediatric or size-based protocol exists on the scanner for the requested examination, or the requested coverage or number of phases exceeds what the clinical question needs — for example a multiphase study where a single phase answers it, or whole-body coverage for a focal question.
Worth asking the referrer (1)
None of these hold the request up. They sharpen the protocol or the plan that follows.
- Exactly where is the pain, and what activity brought it on?The site determines both which region is imaged and whether the fracture is high-risk; a limb-wide request produces a study that images the wrong bone.
Pathways
Big forks are separate pathways; the first whose conditions match is the one used.
All patients
Matches your inputsDefault| Role | Study & protocol | Why this answers the question |
|---|---|---|
| First line | Limb radiograph Limb radiograph — two orthogonal views usually appropriate | Radiography is the baseline study: when it shows a periosteal reaction, a cortical lucency or the dense sclerotic band of a healing insufficiency fracture, the pathway ends there. It also detects the alternative diagnoses that matter most — an aggressive bone lesion presenting as activity-related pain is uncommon but must not be assumed away. |
| Second line | MRI Hip MRI Hip — routine | For pain in the hip, groin, pelvis or sacrum with normal radiographs, a large field-of-view MRI covering both hips, the rami and the sacrum is the next study: it grades the injury from marrow oedema through to a true fracture line, and it distinguishes a compression-side femoral neck stress fracture that can be managed conservatively from a tension-side one that needs fixation. Intravenous contrast adds nothing to this question. |
| Second line | MRI Ankle and Hindfoot MRI Ankle and Hindfoot — routine | The equivalent study for the lower leg, ankle and foot, which is where most fatigue fractures occur. It separates a stress reaction from a fracture line, and it identifies the navicular and anterior tibial cortex injuries whose management differs sharply from a routine metatarsal stress fracture. |
| Reasonable alternative | Bone scintigraphy Bone scintigraphy — whole body (± three phase) | Highly sensitive and useful when the site is genuinely unlocalised or MRI is contraindicated, but it is non-specific: degenerative change, infection and tumour all take up tracer, and the anatomical detail that decides management is absent. |
Pitfalls
- Reading a normal early radiograph as excluding a stress fracture, and returning the athlete to training.
- Requesting a whole-limb MRI when the symptoms are focal, which dilutes the resolution over the area that mattered.
- Not distinguishing tension-side from compression-side femoral neck injury; only one of them is safe to mobilise.
- Interpreting sacral insufficiency fracture oedema as metastatic disease in an older patient, or the reverse — an insufficiency fracture through a metastasis is a real and easily missed combination.
- Ignoring an atypical subtrochanteric or diaphyseal femoral lucency in a patient on long-term bisphosphonates.
Priors — what to pull first
- Previous imaging of the same site distinguishes a healing old injury from a new one — a sclerotic band with no oedema is old.
- A history of previous stress fractures, or of pelvic radiotherapy, reframes the whole study.
What makes a good request
- High-risk sites — the tension side of the femoral neck, the anterior tibial cortex, the tarsal navicular, the base of the second metatarsal and the sacrum — behave differently from low-risk ones and often mean non-weight-bearing or surgery, so naming the site on the request changes what is done with the result.
- Radiographs are frequently normal for the first weeks; a normal film early is expected, not reassuring.
- In a young athlete with recurrent stress fractures, the underlying question is often nutritional and hormonal rather than radiological, and the report is a good place to say so.
How these studies are acquired
Contrast, phases and timing for every study on the pathways above.
Confirm locally
- Timings, contrast volumes and rates above are typical published values. Your department's protocol, scanner and patient population decide the actual numbers.
- Safety thresholds and premedication policy follow local policy where it differs from the cited guidance.
References
- ACR Appropriateness Criteria — Stress (Fatigue/Insufficiency) Fracture, Including Sacrum, Excluding Other Vertebrae (2024 update) · ACR Appropriateness Criteria
- ACR Appropriateness Criteria — Stress fracture narrative · ACR Appropriateness Criteria
- Image Gently — child-sizing the CT dose; size-based protocols and accreditation of paediatric CT dose indices · Image Gently
- Strauss KJ et al. Image Gently: Ten Steps You Can Take to Optimize Image Quality and Lower CT Dose for Pediatric Patients (AJR) · Image Gently
- AAPM Pediatric Routine Abdomen and Pelvis CT Protocol — size-based technique parameters · Other
Implemented from the cited published sources. Educational and workflow support only; confirm against current guidelines and local policy before clinical use.