Noninvasive evaluation of pericardial effusion composition by computed tomography

Robert D Rifkin1, David B Mernoff

  • 1Division of Cardiology, Department of Medicine, Barnes-Jewish Hospital, Washington University School of Medicine, St Louis, MO 63110, USA.

Insights

Computed tomography (CT) Hounsfield density noninvasively estimates pericardial fluid hematocrit. This rapid CT method aids in managing pericardial effusion (PE) and diagnosing its cause.

Area of Science:

  • Cardiology
  • Radiology
  • Medical Diagnostics

Background:

  • Pericardial effusion (PE) management often requires invasive hematocrit (HCT) and total protein (TP) measurements via pericardiocentesis.
  • Noninvasive evaluation of PE composition using computed tomography (CT) Hounsfield density (HD) has not been systematically studied.

Purpose of the Study:

  • To investigate the utility of CT Hounsfield density (HD) for noninvasively assessing pericardial fluid (PE) hematocrit (HCT) and total protein (TP).
  • To establish the correlation between PE HD and PE HCT, and to explore PE HD's potential in diagnosing underlying causes of PE.

Main Methods:

  • CT-guided pericardiocentesis was performed in 53 patients to simultaneously measure PE HD, HCT, and TP.
  • The relationship between PE HCT and various CT HD measurements (average, maximum, and differential HD) was analyzed.
  • PE HD was correlated with PE HCT and TP to assess their contribution to CT HD.

Main Results:

  • The average PE HD was the strongest predictor of PE HCT (r=0.84), outperforming other HD metrics.
  • PE HD was not significantly correlated with PE TP.
  • A CT HD >30 HU showed 100% sensitivity and 70% specificity for identifying visceral or vascular rupture as the cause of PE in specific patient groups.

Conclusions:

  • Computed tomography (CT) provides a rapid and accurate noninvasive method for estimating pericardial fluid (PE) hematocrit (HCT).
  • CT HD measurement can assist in guiding the acute management and differential diagnosis of pericardial effusion (PE).
Abstract

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