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Coronary lesions quantification with dual-axis rotational coronary angiography
Leire Unzué Vallejo1, Juan Luis Delcán Domínguez, Ana Alegría Barrero
1Hospital Universitario Madrid Montepríncipe, Avda. de Montepríncipe 25, 28660 Boadilla del Monte, Madrid, España. leireunzue@yahoo.es
Insights
Rotational angiography (RA) XperSwing offers improved coronary artery visualization and lesion characterization compared to standard methods. This technique provides more accurate measurements of lesion length and vessel diameter, particularly in complex coronary segments.
Area of Science:
- Cardiology
- Medical Imaging
- Interventional Cardiology
Background:
- Coronary angiography (CA) is the standard for coronary artery disease assessment but uses limited projections.
- Bidimensional projections in CA may not optimally define coronary segments.
- Rotational angiography (RA) XperSwing offers multi-view visualization with a single contrast injection.
Purpose of the Study:
- To evaluate the accuracy of coronary lesion quantification using RA XperSwing.
- To compare lesion measurements obtained with RA XperSwing against standard projections.
Main Methods:
- Quantitative coronary analysis of significant stenosis (>50%) was performed.
- Lesions were measured in optimal (DARCA-derived) and standard projections.
- Intra- and inter-observer correlation was assessed using Kappa index.
Main Results:
- 205 lesions in 147 patients were analyzed.
- RA XperSwing yielded significantly greater lesion length and vessel diameter measurements.
- Improved characterization was noted, especially in segments with greater angulation.
Conclusions:
- RA XperSwing enhances coronary artery visualization and lesion characterization.
- The technique provides more accurate quantitative measurements of coronary lesions.
- RA XperSwing is particularly beneficial for assessing lesions in tortuous coronary segments.
Background:
Coronary angiography (CA) has been the gold standard technique for studying coronary artery disease. It is based on the analysis of bidimensional orthogonal projections that may not be optimal to estimate determinate coronary segments. Rotational angiography "Xperswing" (DARCA) is a new technique that allows the visualization of the coronary arteries from multiple views, with a single contrast injection. The aim of this study is to evaluate the coronary lesions quantification with DARCA.
Methods:
Quantitative coronary analysis of significant coronary stenosis (>50%) was performed. Every lesion was measured in two different projections: the "optimal projection", obtained by DARCA and defined by the operator as the one with a better lesion qualification, and the "standard projection", corresponding to the usual projection closer to the optimal one in obliquity and angulation. Measures were performed twice and by two independent operators. Intra- and inter-observer correlation was estimated by Kappa index and variables were compared with t Student test (SPSS 14.0).
Results:
205 lesions in 147 patients were analyzed. Kappa coefficient intra-observer was 0.80 and 0.86 respectively with an inter-observer correlation index of 0.72. Lesion length and maximal diameter of the vessel were significantly greater in the group of RA. In the segments analysis, calculated length was longer for the first diagonal branch, first marginal obtuse artery, middle circumflex, middle and distal RCA and posterior descending artery, with greater reference diameters for proximal LAD and distal RCA. There were no significant differences for coronary stenosis grade.
Conclusions:
RA XperSwing provides a better visualization of coronary arteries improving lesions characterization, with longer measured lesions length and greater vessel diameters, especially in coronary segments with more angulation.
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