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Important longitudinal and circumferential pulsatile changes in zone 0 of the aorta during the cardiac cycle
Viony M Belvroy1,2, M Mujeeb Zubair1, Joost A van Herwaarden2
1Methodist DeBakey Heart & Vascular Center, Houston Methodist Hospital, Houston, TX, USA.
Insights
Accurate thoracic endovascular repair sizing requires considering aortic area changes during the cardiac cycle, not just diameter. Measuring aortic area provides more precise morphometric data for planning zone 0 procedures.
Area of Science:
- Cardiovascular imaging
- Thoracic aortic anatomy
- Endovascular repair planning
Background:
- Stent-graft sizing is critical for thoracic endovascular repair (TEVAR) in zone 0.
- Aortic dimensions change throughout the cardiac cycle due to pulsatile motion.
Purpose of the Study:
- To quantify circumferential and longitudinal pulsatile changes in the thoracic aorta during the cardiac cycle.
- To evaluate the significance of aortic area, perimeter, and diameter variations.
Main Methods:
- Retrospective analysis of electrocardiogram-gated cardiac CT scans from 92 patients.
- Measurements of aortic area, perimeter, and diameter in zone 0 during systole and diastole.
- Comparison of dimensional changes at the sinotubular junction, mid-ascending aorta, and proximal brachiocephalic artery.
Main Results:
- Ascending aortic diameter changes were larger than area changes during the cardiac cycle.
- These diameter variations were most pronounced in zone 0A.
- Aortic area showed the smallest percentage change at the sinotubular junction (2.6%).
Conclusions:
- Aortic diameter measurements may underestimate pulsatile changes in zone 0.
- Aortic area measurement offers more accurate morphometric data for TEVAR planning.
- Prospective studies are recommended to correlate these measurements with clinical outcomes.
Objectives:
Correct stent-graft sizing is important when planning for thoracic endovascular repair in zone 0. As the movements of the aorta are constantly evolving in longitudinal and circumferential directions during the cardiac cycle, the diameter may not be the only important measurement. The aim of this study is to measure the circumferential and longitudinal pulsatile changes throughout the cardiac cycle.
Methods:
Ninety-two patients, who were evaluated for transcatheter aortic valve replacement, were selected for this retrospective study. Their electrocardiogram-gated cardiac computed tomography was analysed. We identified the area, perimeter and diameter of the thoracic aorta in zone 0 and calculated the differences between these parameters at 3 locations in zone 0. The measurements were made in multiplanar views perpendicular to the semi-automatically created centreline in both systolic and diastolic phases.
Results:
The mean age of our study cohort was 77 ± 11 years. The mean change between systole and diastole of the area (mm2), perimeter (mm) and diameter (mm) were compared at 3 different locations in the ascending aorta: at the sinotubular junction (0.78 mm2 vs 0.89 mm vs 1.41 mm), mid-ascending (0.72 mm2 vs 0.68 vs 0.81 mm) and proximal edge of the brachiocephalic artery (0.76 mm2 vs 0.73 mm vs 0.73 mm). The change in percentage is the smallest in the area at the sinotubular junction compared to the perimeter and diameter (2.6% vs 3.1% vs 4.7%).
Conclusions:
Changes in measurement of ascending aortic diameter with cardiac cycle are larger than measurement change in the area. This is especially more pronounced in zone 0A. For more accurate information on the morphometric changes, it may be necessary to measure the area when planning for thoracic endovascular repair to maximize results. A prospective study comparing these different measurements regarding the outcomes is advised by the authors to understand the clinical implications.
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