Contrast-enhanced CT accurately detects hemorrhage in torso trauma: direct comparison with angiography
Katherine E Maturen1, Saroja Adusumilli, Caroline E Blane
1Department of Radiology, Stanford University Hospital and Clinics, Stanford, CA 94305-5105, USA. katematuren@yahoo.com
Insights
Contrast enhanced computed tomography (CECT) effectively detects active hemorrhage and vascular injuries in trauma patients. While sensitive, CECT results, especially with hemodynamic instability, help guide the need for emergent angiography.
Area of Science:
- Radiology
- Trauma Surgery
- Emergency Medicine
Background:
- Trauma patients often require rapid assessment for active hemorrhage and vascular injuries.
- Contrast enhanced computed tomography (CECT) is a key imaging modality in trauma evaluation.
- Angiography is the gold standard for detecting active bleeding and guiding intervention.
Purpose of the Study:
- To evaluate the diagnostic accuracy of CECT in identifying active hemorrhage and vascular injuries in trauma patients.
- To compare CECT findings with angiographic results and the need for intervention.
- To determine the utility of CECT in guiding decisions for emergent angiography.
Main Methods:
- Retrospective review of trauma patients who underwent CECT and angiography within 24 hours.
- Standard trauma CECT protocol was used, not specialized CT angiography.
- Fisher's exact test was employed for statistical analysis of findings.
Main Results:
- CECT showed statistically significant associations with angiographic evidence of hemorrhage and need for intervention (p < 0.0001).
- CECT demonstrated 94.1% sensitivity and 97.6% negative predictive value (NPV) for detecting active hemorrhage.
- CECT had 92.6% sensitivity and 91.2% NPV for predicting the need for intervention.
Conclusions:
- CECT findings strongly correlate with angiographic results in trauma patients.
- While sensitivity is high, CECT is not perfect for detecting all active hemorrhages.
- CECT, combined with clinical assessment (e.g., hemodynamic instability), can help select patients for emergent angiography, potentially reserving it for those requiring intervention.
Objective:
To assess the ability of contrast enhanced computed tomography (CECT) to detect active hemorrhage and other vascular injuries in chest, abdominal, and pelvic trauma patients, using angiographic findings and need for intervention as paired gold standards.
Methods:
We obtained approval from the Institutional review board for a retrospective search of the radiology information system: seeking trauma patients undergoing angiography within 24 hours of CECT for chest, abdominal, or pelvic injuries. CECT protocol was standard trauma CT, not specialized for CT angiography. Angiographic techniques varied with indication. Clinical and imaging reports and selected radiologic studies were reviewed, but the original dictated report was the interpretive standard. We used Fisher's exact test for statistical analysis.
Results:
During the 30-month study period, 466 patients underwent emergent interventional radiologic procedures. Of those, 418 were excluded for nontrauma indications or neuroangiographic procedures. Fourty-eight patients (33 male, 15 female, average age 43.4) thus constituted the study population in whom we evaluated 63 traumatic injuries. CT findings had statistically significant associations (p < 0.0001) with both angiographic evidence of active hemorrhage and the need for intervention, which were tabulated separately. CT had 94.1% sensitivity and 97.6% negative predictive value (NPV) for detection of active hemorrhage, and 92.6% sensitivity and 91.2% NPV for predicting need for surgical or endovascular intervention.
Conclusions:
CECT findings correlate strongly with angiographic findings, though sensitivity remains imperfect. However, when CT is used in the context of other clinical features, particularly hemodynamic instability, it may enable clinicians to reserve emergent angiography for those patients in whom emergent intervention is planned.
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