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Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
Incidental cardiac findings on computed tomography imaging of the thorax
Paul Wx Foley1, Ali Hamaad, Hossam El-Gendi
1Centre for Cardiovascular Sciences, Queen Elizabeth Hospital, University of Birmingham, UK. cardiologists@hotmail.com.
Insights
Computed tomography pulmonary angiograms (CTPA) reveal numerous cardiac abnormalities, even when ordered to rule out pulmonary embolism (PE). These findings, often missed by radiologists, are crucial for long-term patient care.
Area of Science:
- Cardiology
- Radiology
- Pulmonary Medicine
Background:
- Computed tomography (CT) of the lungs can visualize cardiac structures.
- Clinically relevant cardiac pathology may be identifiable on CT pulmonary angiograms (CTPA) ordered for pulmonary embolism (PE) exclusion.
Purpose of the Study:
- To determine the prevalence of clinically relevant cardiac pathology on CTPAs requested for PE exclusion.
Main Methods:
- Retrospective analysis of 100 contrast-enhanced CTPAs performed for PE exclusion.
- Two cardiologists independently assessed scans for cardiac abnormalities.
Main Results:
- Pulmonary embolism (PE) was present in 5% of scans.
- Common incidental cardiac findings included aortic wall calcification (54%), coronary calcification (46%), and cardiomegaly (41%).
- Radiologists' reports frequently omitted these cardiac findings, except for cardiomegaly.
Conclusions:
- CTPAs for PE exclusion yield a high rate of cardiac abnormalities.
- These findings, though often incidental, are important for long-term patient management.
Background:
Investigation of pulmonary pathology with computed tomography also allows visualisation of the heart and major vessels. We sought to explore whether clinically relevant cardiac pathology could be identified on computed tomography pulmonary angiograms (CTPA) requested for the exclusion of pulmonary embolism (PE). 100 consecutive CT contrast-enhanced pulmonary angiograms carried out for exclusion of PE at a single centre were assessed retrospectively by two cardiologists.
Findings:
Evidence of PE was reported in 5% of scans. Incidental cardiac findings included: aortic wall calcification (54%), coronary calcification (46%), cardiomegaly (41%), atrial dilatation (18%), mitral annulus calcification (15%), right ventricular dilatation (11%), aortic dilatation (8%) and right ventricular thrombus (1%). Apart from 3 (3%) reports describing cardiomegaly, no other cardiac findings were described in radiologists' reports. Other reported pulmonary abnormalities included: lung nodules (14%), lobar collapse/consolidation (8%), pleural effusion (2%), lobar collapse/consolidation (8%), emphysema (6%) and pleural calcification (4%).
Conclusions:
CTPAs requested for the exclusion of PE have a high yield of cardiac abnormalities. Although these abnormalities may not have implications for acute clinical management, they may, nevertheless, be important in long-term care.
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