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April 26, 2005JAMA319 citations

Clinical Validity of a Negative Computed Tomography Scan in Patients With Suspected Pulmonary Embolism

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RQRene QuirozBoston UniversityNKNils KucherVascular MedicineKZKelly H. ZouTris Pharma (United States)

Key Result

A negative contrast-enhanced chest CT scan to rule out pulmonary embolism yielded an overall negative likelihood ratio of 0.07 (95% CI 0.05-0.11) and a negative predictive value of 99.1%.

Study Design

Type

Meta-Analysis (n=3,500)

Structured PICO

Does a negative contrast-enhanced chest CT scan safely rule out venous thromboembolic events in patients with suspected pulmonary embolism?

P
Population
15 studies pooling 3,500 patients with suspected pulmonary embolism
I
Intervention
Contrast-enhanced chest CT (single-slice, multidetector-row, or electron-beam) to rule out acute pulmonary embolism
O
Outcome
Venous thromboembolic events (VTEs) objectively confirmed by an additional imaging test despite a negative or inconclusive CT scan, or objectively confirmed VTEs occurring during clinical follow-up of at least 3 monthshard clinical

A negative contrast-enhanced chest CT scan has a high negative predictive value (99.1%) for ruling out pulmonary embolism, demonstrating clinical validity similar to conventional pulmonary angiography.

Main Result

Effect estimate: NLR 0.07 (95% CI 0.05-0.11)

Abstract

CONTEXT: The clinical validity of using computed tomography (CT) to diagnose peripheral pulmonary embolism is uncertain. Insufficient sensitivity for peripheral pulmonary embolism is considered the principal limitation of CT. OBJECTIVE: To review studies that used a CT-based approach to rule out a diagnosis of pulmonary embolism. DATA SOURCES: The medical literature databases of PubMed, MEDLINE, EMBASE, CRISP, metaRegister of Controlled Trials, and Cochrane were searched for articles published in the English language from January 1990 to May 2004. STUDY SELECTION: We included studies that used contrast-enhanced chest CT to rule out the diagnosis of acute pulmonary embolism, had a minimum follow-up of 3 months, and had study populations of more than 30 patients. DATA EXTRACTION: Two reviewers independently abstracted patient demographics, frequency of venous thromboembolic events (VTEs), CT modality (single-slice CT, multidetector-row CT, or electron-beam CT), false-negative results, and deaths attributable to pulmonary embolism. To calculate the overall negative likelihood ratio (NLR) of a VTE after a negative or inconclusive chest CT scan for pulmonary embolism, we included VTEs that were objectively confirmed by an additional imaging test despite a negative or inconclusive CT scan and objectively confirmed VTEs that occurred during clinical follow-up of at least 3 months. DATA SYNTHESIS: Fifteen studies met the inclusion criteria and contained a total of 3500 patients who were evaluated from October 1994 through April 2002. The overall NLR of a VTE after a negative chest CT scan for pulmonary embolism was 0.07 (95% confidence interval CI, 0.05-0.11); and the negative predictive value (NPV) was 99.1% (95% CI, 98.7%-99.5%). The NLR of a VTE after a negative single-slice spiral CT scan for pulmonary embolism was 0.08 (95% CI, 0.05-0.13); and after a negative multidetector-row CT scan, 0.15 (95% CI, 0.05-0.43). There was no difference in risk of VTEs based on CT modality used (relative risk, 1.66; 95% CI, 0.47-5.94; P = .50). The overall NLR of mortality attributable to pulmonary embolism was 0.01 (95% CI, 0.01-0.02) and the overall NPV was 99.4% (95% CI, 98.7%-99.9%). CONCLUSION: The clinical validity of using a CT scan to rule out pulmonary embolism is similar to that reported for conventional pulmonary angiography.

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Cite This Study

Quiroz et al. (2005) conducted a meta-analysis in Suspected pulmonary embolism (n=3,500). Contrast-enhanced chest CT was evaluated on Venous thromboembolic events (VTEs) after a negative chest CT scan (NLR 0.07, 95% CI 0.05-0.11). A negative contrast-enhanced chest CT scan to rule out pulmonary embolism yielded an overall negative likelihood ratio of 0.07 (95% CI 0.05-0.11) and a negative predictive value of 99.1%.

synapsesocial.com/papers/6a10bc4b497e609eda6448d1https://doi.org/10.1001/jama.293.16.2012
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Acute pulmonary embolism: role of helical CT in 164 patients with intermediate probability at ventilation-perfusion scintigraphy and normal results at duplex US of the legs.1997 · 213 citations
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  3. 3Single-Detector Helical Computed Tomography as the Primary Diagnostic Test in Suspected Pulmonary Embolism: A Multicenter Clinical Management Study of 510 Patients2003 · 240 citations
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