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January 7, 2003Circulation156 citations

Pulmonary Vein Ostium Geometry

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FWFred H.M. WittkampfEVEvert‐Jan VonkenRDRichard Derksen

Structured PICO

Does 3-dimensional MRA reveal different pulmonary vein ostium dimensions compared to projected fluoroscopic angiography in patients with idiopathic atrial fibrillation?

P
Population
42 patients with idiopathic atrial fibrillation scheduled for selective electrical isolation of pulmonary vein ostia
I
Intervention
3-dimensional magnetic resonance angiographic (MRA) imaging
C
Comparator
Projected diameter on fluoroscopic angiograms (simulated by orienting MRA images in 45 degrees right or left anterior oblique direction)
O
Outcome
Minimal and maximal cross-sectional diameter of pulmonary vein ostia in relation to projected diametersurrogate

3D MRA reveals that pulmonary vein ostia, especially on the left, are highly oval, meaning fluoroscopic angiography may overestimate their minimal diameter during catheter ablation.

Abstract

BACKGROUND: During a catheter ablation procedure for selective electrical isolation of pulmonary vein (PV) ostia, the size of these ostia is usually estimated using fluoroscopic angiography. This measurement may be misleading, however, because only the projected supero/inferior ostium diameters can be measured. In this study, we analyzed 3-dimensional magnetic resonance angiographic (MRA) images to measure the minimal and maximal cross-sectional diameter of PV ostia in relation to the diameter that would have been projected on fluoroscopic angiograms during a catheter ablation procedure. METHODS AND RESULTS: In 42 patients with idiopathic atrial fibrillation who were scheduled for selective electrical isolation of PV ostia, the minimal and maximal diameters of these ostia were measured from 3-dimensional MRA images. Thereafter, these images were oriented in a 45 degrees right or left anterior oblique direction and the projected diameter of the PV ostia were measured again. The average ratio between maximal and minimal diameter was 1.5+/-0.4 for the left and 1.2+/-0.1 for the right pulmonary vein ostia. Because of the orientation and oval shape of especially the left pulmonary vein ostia, their minimal diameters were significantly smaller than the projected diameters. CONCLUSION: Pulmonary vein ostia, especially those at the left, are oval with the short axis oriented approximately in the antero/posterior direction. Consequently, PV ostia may sometimes be very narrow despite a rather normal appearance on angiographic images obtained during a catheter ablation procedure.

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Wittkampf et al. (2003) studied this question.

synapsesocial.com/papers/6a21288a6c77c338bfc3bccbhttps://doi.org/10.1161/01.cir.0000047065.49852.8f
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