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Published on: August 28, 2018
Noninvasive coronary angiography with 16-detector row CT: effect of heart rate
Martin H K Hoffmann1, Heshui Shi, Robert Manzke
1Department of Diagnostic Radiology, University Hospital of Ulm, Steinhoevelstrasse 9, D-89070 Ulm, Germany. martin.hoffmann@medizin.uni-ulm.de
Insights
High heart rates negatively impact coronary CT angiography image quality. Achieving motion-free coronary angiograms with 16-detector row CT is consistently possible in patients with heart rates below 80 beats per minute.
Area of Science:
- Cardiovascular Imaging
- Radiology
- Medical Imaging Technology
Background:
- Coronary CT angiography (CTCA) quality is often limited by cardiac motion artifacts.
- Optimizing CTCA protocols is crucial for accurate diagnosis of coronary artery disease.
- Heart rate significantly influences image acquisition and diagnostic yield in CTCA.
Purpose of the Study:
- To assess the impact of heart rate on coronary angiogram quality using 16-detector row CT.
- To evaluate the effectiveness of temporally enhanced three-dimensional (3D) reconstruction techniques.
- To determine optimal heart rate thresholds for high-quality CTCA acquisition.
Main Methods:
- Fifty patients underwent CTCA with retrospective electrocardiography (ECG) gating.
- Images were reconstructed at 50% and 80% of the cardiac cycle using a 3D voxel-based approach.
- Image quality was correlated with heart rate and assessed for motion artifacts compared to conventional angiography.
Main Results:
- A strong negative correlation (r = 0.80) was found between heart rate and image quality.
- 88% of patients achieved motion artifact-free images at heart rates ≤80 bpm.
- 97% of assessable arterial segments were visualized with good quality at heart rates ≤80 bpm.
Conclusions:
- 16-detector row CT with adaptive reconstruction algorithms can consistently yield motion-free coronary angiograms.
- A heart rate of less than 80 beats per minute is recommended for optimal CTCA quality.
- These findings support the use of beta-blockers to achieve target heart rates for improved CTCA diagnostics.
Purpose:
To evaluate the effect of heart rate on the quality of coronary angiograms obtained with 16-detector row computed tomography (CT) by using temporally enhanced three-dimensional (3D) approaches.
Materials And Methods:
The local ethics committee approved the study, and informed consent was obtained from all patients. Fifty patients underwent coronary CT angiography (heart rate range, 45-103 beats per minute). Raw data from helical CT and electrocardiography (ECG) were saved in a combined data set. Retrospectively ECG-gated images were reconstructed at preselected phases (50% and 80%) of the cardiac cycle. A 3D voxel-based approach with cardiac phase weighting was used for reconstruction. Testing for correlation between heart rate, cardiac phase reconstruction window, and image quality was performed with Kruskal-Wallis analysis. Image quality (freedom from cardiac motion-related artifacts) was referenced against findings at conventional angiography in a secondary evaluation step. Regression analysis was performed to calculate heart rate thresholds for future beta-blocker application.
Results:
A significant negative correlation was observed between heart rate and image quality (r = 0.80, P < .001). Motion artifact-free images were available for 44 (88%) patients and were achieved consistently at a heart rate of 80 or fewer beats per minute (n = 39). Best image quality was achieved at 75 or fewer beats per minute. Segmental analysis revealed that 97% of arterial segments (diameter > or = 1.5 mm according to conventional angiography) were assessable at 80 or fewer beats per minute. Premature ventricular contractions and rate-contained arrhythmia did not impede diagnostic assessment of the coronary arteries in 10 (83%) of the 12 patients affected.
Conclusion:
Motion-free coronary angiograms can be obtained consistently with 16-detector row CT scanners and adaptive multicyclic reconstruction algorithms in patients with heart rates of less than 80 beats per minute.
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