Left ventricular and atrial strain imaging with cardiac computed tomography: Validation against echocardiography

Data on left ventricular (LV) deformation imaging using CT angiography (CTA) are scarce and the feasibility of atrial deformation analysis by CT has not been addressed. We aimed to compare 2D echocardiographic and CT derived LV and left atrial (LA) global longitudinal strain (GLS) obtained by using...

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Veröffentlicht in:Journal of cardiovascular computed tomography 2020-07, Vol.14 (4), p.363-369
Hauptverfasser: Szilveszter, Bálint, Nagy, Anikó I., Vattay, Borbála, Apor, Astrid, Kolossváry, Márton, Bartykowszki, Andrea, Simon, Judit, Drobni, Zsófia D., Tóth, Attila, Suhai, Ferenc I., Merkely, Béla, Maurovich-Horvat, Pál
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Sprache:eng
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Zusammenfassung:Data on left ventricular (LV) deformation imaging using CT angiography (CTA) are scarce and the feasibility of atrial deformation analysis by CT has not been addressed. We aimed to compare 2D echocardiographic and CT derived LV and left atrial (LA) global longitudinal strain (GLS) obtained by using a novel feature tracking algorithm in patients following transcatheter aortic valve implantation. Twenty-eight patients were included who underwent retrospectively-gated 256-slice CTA and speckle-tracking echocardiography (STE) on the same day. CT datasets in 10% increments were reconstructed throughout the cardiac cycle. LV GLS and LA global peak reservoir strain (LA GS) was measured. Median absolute values for LV GLS were 19.9 [14.8–22.4] vs. 19.9 [16.8–24.7], as measured by CT vs STE, respectively (p = 0.017). We found good inter-modality correlation for LV GLS (ρ = 0.78, p 
ISSN:1934-5925
1876-861X
DOI:10.1016/j.jcct.2019.12.004