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Catheter Ablation in Combination With Left Atrial Appendage Closure for Atrial Fibrillation
Published on: February 26, 2013
[CT coronary angiography in patients with atrial fibrillation]
1Universitätsklinikum Bonn, Radiologische Klinik. attila.kovacs@ukb.uni-bonn.de
Insights
This study found that a 40% cardiac cycle window provides superior visualization of coronary arteries in patients with atrial fibrillation (AF) using multislice spiral CT angiography (MSCTA). This new method improves image quality by compensating for heart rate variability during scans.
Area of Science:
- Cardiovascular Imaging
- Radiology
- Medical Algorithms
Background:
- Multislice spiral CT angiography (MSCTA) visualization of coronary arteries in patients with atrial fibrillation (AF) is challenging due to heart rate variability.
- A novel algorithm, HeartBeat-RT, automatically compensates for dynamic heart rate changes during MSCTA scans, aiming to reduce motion artifacts and misregistration.
- This algorithm utilizes both fixed-percent and fixed offset delays based on R waves in the ECG cycle.
Purpose of the Study:
- To determine the optimal reconstruction window during the cardiac cycle for MSCTA of the three major coronary arteries in patients with AF.
- To evaluate the effectiveness of the HeartBeat-RT algorithm in improving image quality for coronary artery visualization in AF patients.
Main Methods:
- Twenty patients with permanent AF underwent MSCTA on a 16-slice scanner without prior heart rate-regulating medication.
- Coronary segments were reconstructed at 10% intervals from 0% to 90% of the cardiac cycle.
- Two blinded readers assessed image quality (visibility, artifacts) and degree of stenosis using a five-point rating scale.
Main Results:
- The average heart rate during the examination was 78 +/- 23 bpm, with a range of 42-156 bpm.
- Superior visualization of coronary artery segments was achieved at the 40% cardiac cycle window (mean image quality score 2.79) compared to the standard 80% window (2.33).
- The 0% cardiac cycle window yielded the second-best image quality (2.57).
Conclusions:
- Utilizing a frequency-adapted delay algorithm combined with an end-systolic reconstruction window (specifically 40%) provides diagnostically valuable MSCTA images in patients with AF.
- The HeartBeat-RT algorithm and optimized window settings significantly improve the visualization of coronary arteries in this challenging patient population.
Purpose:
Reliable visualization of the coronary arteries with multislice spiral CT angiography (MSCTA) in patients with atrial fibrillation (AF) remains a challenge despite retrospective ECG gating. A recently developed new algorithm automatically compensates dynamic changes in the heart rate during the scan, thus reducing misregistration and motion artifacts. The HeartBeat-RT algorithm combines a fixed-percent delay determined from the first R wave and the fixed offset delay based on the second R wave in the ECG cycle. The purpose of this study was to find out the optimal reconstruction window in MSCTA in patients with AF for each of the three major coronary arteries during the cardiac cycle.
Materials And Methods:
20 patients with permanent AF were imaged on a 16-slice scanner (slice collimation: 16 x 0.75 mm; rotation time 0.42 s; 140 kV; 380 mAs; 120 ml Ultravist 370 (R) i.v.). The patients had not received any previous drugs for heart frequency regulation. Acquisition was started after bolus tracking of a biphasic bolus of 120 ml Ultravist 370 injected intravenously. Each coronary segment was reconstructed at 0 % - 90 % of the cardiac cycle in increments of 10 %. For image analysis we used coronary segments as defined by the American Heart Association. Two blinded independent readers assessed the image quality in terms of visibility and artifacts (five-point rating scale 1 = very poor, 2 = poor, 3 = fair, 4 = good and 5 = excellent) and the degree of stenosis (five-point rating scale 1 = 0 %, 2 = 1 % - 49 %, 3 = 50 % - 74 %, 4 = 75 % - 99 %, 5 = 100 %) on axial slices, multiplanar reconstructions and three-dimensional volume-rendered images.
Results:
The heart rate during examination ranged between 42 and 156 beats per minute, the average heart rate was 78 +/- 23. Each of the two readers evaluated 300 segments in 20 patients. Visualization of all coronary artery segments was superior at 40 % (mean score of the image quality 2.79) as compared to the standard diastolic reconstruction window at 80 % (image quality 2.33). The second best image quality (2.57) was acquired at 0 % of the cardiac cycle.
Conclusion:
The use of a frequency adapted delay algorithm with the choice of an end-systolic reconstruction window provided diagnostically valuable images in patients with AF.
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