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June 1, 2005Radiology66 citations

Attenuation of Acute and Chronic Pulmonary Emboli

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CWConrad WittramMMMichael M. MaherEHElkan F. Halpern

Key Result

Chronic pulmonary embolism demonstrated significantly higher mean thrombus attenuation (87 HU) compared to acute pulmonary embolism (33 HU) on computed tomographic imaging (P<0.001).

Study Design

Type

Observational (n=39)

Structured PICO

Does the CT attenuation coefficient differ between acute and chronic pulmonary embolism?

P
Population
39 patients (14 with chronic PE and 25 with acute PE) evaluated retrospectively to compare computed tomographic attenuation coefficients of thrombi.
E
Exposure
Computed tomographic (CT) attenuation measurement of chronic pulmonary embolism
C
Comparator
Computed tomographic (CT) attenuation measurement of acute pulmonary embolism
O
Outcome
Mean attenuation coefficient of the largest thrombus measured in Hounsfield Units (HU)surrogate

CT attenuation measurements can reliably differentiate between acute and chronic pulmonary embolism, with chronic PE demonstrating significantly higher attenuation.

Main Result

Absolute Event Rate: 87% vs 33%

p-value: p=<0.001

Abstract

PURPOSE: To compare retrospectively the attenuation coefficients of acute and chronic pulmonary embolism (PE). MATERIALS AND METHODS: Institutional review board approval was obtained, and informed consent was waived. The study was compliant with requirements of the Health Insurance Portability and Accountability Act. All patients with chronic PE, from July 2001 to January 2004, were identified via a radiology report search system; of the 39 identified, 25 were excluded because the thrombi were too small to measure or were obscured by streak artifacts or because there was no corroborative evidence of chronic PE. Of 27 consecutive patients with acute PE who were also identified, two were excluded because of streak artifacts. The final study group included six women and eight men with chronic PE (mean age, 50 years; range, 26-76 years) and 11 women and 14 men with acute PE (mean age, 61 years; range, 33-83 years) (P = .01 for age). Images were acquired with a four-detector row computed tomographic scanner and 1.25-mm collimation. Two readers made independent attenuation measurements of the largest thrombus in each patient at a workstation. Statistical analysis included calculation of means and standard deviations, the t test, and the Bland-Altman test. RESULTS: Reader 1 found mean attenuation of 90 HU +/- 30 (range, 54-155 HU) for chronic PE and 33 HU +/- 15 (range, 6-63 HU) for acute PE (P < .001). Reader 2 found mean attenuation measurements of 83 HU +/- 32 (range, 32-135 HU) for chronic PE and 33 HU +/- 14 (range, 13-65 HU) for acute PE (P < .001). The mean attenuation for both readers was 33 HU for acute PE (95% confidence interval: 26, 41 HU) and 87 HU for chronic PE (95% confidence interval: 66, 107 HU). The Bland-Altman test demonstrated agreement between readers. CONCLUSION: The mean attenuation measurement in chronic PE is significantly higher than in acute PE.

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Cite This Study

Wittram et al. (2005) conducted an observational in Acute and chronic pulmonary embolism (n=39). Chronic pulmonary embolism vs. Acute pulmonary embolism was evaluated on Mean attenuation of the largest thrombus (p=<0.001). Chronic pulmonary embolism demonstrated significantly higher mean thrombus attenuation (87 HU) compared to acute pulmonary embolism (33 HU) on computed tomographic imaging (P<0.001).

synapsesocial.com/papers/6a770e2833def31403ae06fehttps://doi.org/10.1148/radiol.2353040387
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