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Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
German cardiac CT registry: indications, procedural data and clinical consequences in 7061 patients undergoing
Mohamed Marwan1, Stephan Achenbach2, Grigorios Korosoglou3
1Cardiology Department, University Hospital Erlangen, Erlangen, Germany. mohamed.marwan@uk-erlangen.de.
Insights
Cardiac computed tomography (CT) effectively evaluates coronary arteries, often guiding medication changes and avoiding invasive procedures. Experienced centers achieve relatively low radiation exposure during these cardiac CT scans.
Area of Science:
- Cardiovascular Imaging
- Radiology
- Medical Diagnostics
Background:
- Cardiac CT provides detailed imaging of coronary arteries and cardiac structures.
- Limited data exist on the indications, parameters, and outcomes of cardiac CT in experienced centers using modern systems.
Purpose of the Study:
- To analyze the spectrum of indications, acquisition parameters, results, and clinical consequences of cardiac CT.
- To assess the role of cardiac CT in experienced centers within the German Cardiac CT Registry.
Main Methods:
- Prospective enrollment of 7061 patients across twelve experienced cardiology centers from 2009-2014.
- Documentation of patient parameters, procedural data, indications, and clinical consequences for all cardiac CT examinations.
- Analysis of both coronary and non-coronary cardiac CT examinations, including acquisition techniques and radiation dose.
Main Results:
- Cardiac CT was primarily used for non-invasive coronary artery evaluation (83.3% of cases).
- Invasive coronary angiography was avoided in 46.8% of patients; medication changes occurred in 21.6%.
- Radiation doses were relatively low, with median effective doses of 0.6 mSv for coronary artery calcification and 3.6 mSv for coronary CT angiography.
Conclusions:
- Cardiac CT is a valuable tool for non-invasive assessment of coronary arteries, frequently leading to medication adjustments and avoidance of further invasive testing.
- Experienced centers utilize state-of-the-art CT systems with acceptable radiation exposure.
- The findings support the routine use of cardiac CT in clinical practice for cardiovascular evaluation.
Abstract:
Cardiac computed tomography permits quantification of coronary calcification as well as detection of coronary artery stenoses after contrast enhancement. Moreover, cardiac CT offers high-resolution morphologic and functional imaging of cardiac structures which is valuable for various structural heart disease interventions and electrophysiology procedures. So far, only limited data exist regarding the spectrum of indications, image acquisition parameters as well as results and clinical consequences of cardiac CT examinations using state-of-the-art CT systems in experienced centers. Twelve cardiology centers with profound expertise in cardiovascular imaging participated in the German Cardiac CT Registry. Criteria for participation included adequate experience in cardiac CT as well of the availability of a 64-slice or newer CT system. Between 2009 and 2014, 7061 patients were prospectively enrolled. For all cardiac CT examinations, patient parameters, procedural data, indication and clinical consequences of the examination were documented. Mean patient age was 61 ± 12 years, 63% were males. The majority (63%) of all cardiac CT examinations were performed in an outpatient setting, 37% were performed during an inpatient stay. 91% were elective and 9% were scheduled in an acute setting. In most examinations (48%), reporting was performed by cardiologists, in 4% by radiologists and in 47% of the cases as a consensus reading. Cardiac CT was limited to native acquisitions for assessment of coronary artery calcification in 9% of patients, only contrast-enhanced coronary CT angiography was performed in 16.6% and combined native and contrast-enhanced coronary CT angiography was performed in 57.7% of patients. Non-coronary cardiac CT examinations constituted 16.6% of all cases. Coronary artery calcification assessment was performed using prospectively ECG-triggered acquisition in 76.9% of all cases. The median dose length product (DLP) was 42 mGy cm (estimated effective radiation dose of 0.6 mSv). Coronary CT angiography was performed using prospectively ECG-triggered acquisition in 77.3% of all cases. Tube voltage was 120 kV in 67.8% of patients and 100 kV in 30.7% of patients, with a resultant median DLP of 256 mGy cm (estimated effective dose of 3.6 mSv). Clinical consequences of cardiac CT were as follows: in 46.8% of the cases, invasive coronary angiography could be avoided; ischemia testing was recommended in 4.7% of the cases, invasive coronary angiography was recommended in 16.4% of the cases and change in medication in 21.6% of the examinations. Cardiac CT is performed in the majority of patients for non-invasive evaluation of the coronary arteries. CT frequently resulted in medication change, and otherwise planned downstream testing including invasive angiography could be avoided in a high percentage of patients. Radiation exposure in experienced centers is relatively low.
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