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December 1, 2023The International Journal of Cardiovascular Imaging11 citationsOpen Access

COPD: pulmonary vascular volume associated with cardiac structure and function

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LDLisa Steen DuusCardiac ImagingDVDitte VesterlevUniversity of Copenhagen
Anne Bjerg Nielsen
Anne Bjerg NielsenCardiac Imaging

Structured PICO

Is pulmonary vascular volume assessed by CT associated with echocardiographic measures of cardiac structure and function in patients with COPD?

P
Population
Patients with chronic obstructive pulmonary disease (COPD)
I
Intervention
Quantitative assessment of subsegmental and segmental vessel volume by Computed Tomographic (CT) imaging
O
Outcome
Correlation between lung segmental- and subsegmental vessel volume and echocardiographic measures of cardiac structure and functionsurrogate

AI-identified pulmonary vascular remodeling on CT correlates with echocardiographic signs of cardiac impairment in COPD patients, potentially aiding early risk stratification.

Abstract

BACKGROUND: Early recognition of cardiac dysfunction in patients with chronic obstructive pulmonary disease (COPD) may prevent future cardiac impairment and improve prognosis. Quantitative assessment of subsegmental and segmental vessel volume by Computed Tomographic (CT) imaging can provide a surrogate of pulmonary vascular remodeling. We aimed to examine the relationship between lung segmental- and subsegmental vessel volume, and echocardiographic measures of cardiac structure and function in patients with COPD. METHODS: in cross-sectional area, indexed to total intrapulmonary vessel volume. Linear regressions were conducted, and standardized ß-coefficients were calculated. Scatterplots were created to visualize the continuous correlations between the vessel fractions and echocardiographic parameters. RESULTS: We found that lower subsegmental vessel fraction and higher segmental vessel volume were correlated with higher left ventricular (LV) mass, LV diastolic dysfunction, and inferior vena cava (IVC) dilatation. Subsegmental vessel fraction was correlated with right ventricular (RV) remodeling, while segmental vessel fraction was correlated with higher pulmonary pressure. Measures of LV mass and right atrial pressure displayed the strongest correlations with pulmonary vasculature measures. CONCLUSION: Pulmonary vascular remodeling in patients with COPD, may negatively affect cardiac structure and function. AI-identified remodeling in pulmonary vasculature may provide a tool for early identification of COPD patients at higher risk for cardiac impairment.

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Cite This Study

Duus et al. (2023) studied this question.

synapsesocial.com/papers/6a19b86b3f3ec013f0def91fhttps://doi.org/10.1007/s10554-023-03027-1
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