Clinical Medicine V. (Poster discussion will take place in the Aula during the Coffee Break)
Dr. Zsarnóczay, Emese
Medical Imaging Centre
06307138659
emese.zsarnoczay@gmail.com
Left Atrial Appendage Morphology and Function Play an Important Role in the Prevalence of Stroke and Transient Ischemic Attack in Patients with Atrial Fibrillation
Emese Zsarnóczay1,2, Judit Simon1,2, Jeff M. Smit3, Mohammed El Mahdiui3, Lili Száraz1, Alexander R. van Rosendael3, Anikó Ilona Nagy4, Márton Kolossvary1, Bálint Szilveszter1, Lászlo Gellér4, Rob J. van der Geest5, Jeroen J. Bax3,6, Pál Maurovich Horvat1,2, Béla Merkely1
1 MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University, Budapest
2 Medical Imaging Centre, Semmelweis University, Budapest
3 Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands
4 Heart and Vascular Center, Semmelweis University, Budapest
5 Division of Image Processing, Leiden University Medical Center, Leiden, The Netherlands
6 Heart Center, Turku University Hospital and University of Turku, Turku, Finland
Poszter
Clinical Medicine V. (Poster discussion will take place in the Aula during the Coffee Break)
Hungarian
Clinical Medicine
Aim
We aimed to correlate LAA structure and function with the history of stroke/TIA in patients with AF.
Method
We analyzed demographic and clinical data of 649 patients with AF who were scheduled for catheter ablation. Patients underwent preablational cardiac computed tomography (CT) and transesophageal echocardiography. LAA morphologies depicted by cardiac CT were categorized into four groups: cauliflower, chicken wing, swan and windsock shapes. Uni- and multivariate logistic regression analyses were performed to examine the significant associates of stroke/TIA.
Results
Mean age was 61.3±10.5 years, 33.9% were female. Prevalence of stroke/TIA was 7.1%. The prevalence of cauliflower, windsock, chicken wing and swan morphologies were 50.2%, 32.5%, 12.4% and 4.8% in patients without prior stroke/TIA versus 63.0%. 13.0%, 8.7% and 15.2% in those with prior stroke/TIA, respectively (p=0.002). After adjustment for the main risk factors, LAA flow velocity ≤35.3 cm/sec (OR=2.18; 95%CI=1.09-4.61; p=0.033) and swan LAA shape (OR=2.69; 95%CI=0.96-6.86; p=0.047) independently associated with higher risk of stroke/TIA, while windsock LAA morphology proved to be protective (OR=0.32; 95%CI=0.12-0.77; p=0.017). When comparing the differences between LAA morphology groups, we measured significantly smaller LAA orifice area (389.3±137.7 mm2 in windsock type vs 428.3±158.9 ml in cauliflower type, p=0.021) and LAA volume (7.4±3.0 mm2 in windsock type vs 8.5±4.8 mm2 in cauliflower type, p=0.012) in patients with windsock LAA morphology, while LAA flow velocity did not differ significantly between the LAA shape groups.
Conclusion
In this retrospective study of 649 AF patients, reduced LAA function and swan LAA morphology independently associated with higher risk of stroke/TIA and windsock LAA shape proved to be protective. When comparing the differences between the various LAA morphology types, significantly lower LAA volume and LAA orifice area were measured in windsock LAA shape as compared to cauliflower.
Funding
Project no. NVKP_16-1–2016-0017 (’National Heart Program’); National Research, Development and Innovation Fund of Hungary; NVKP_16 funding scheme
Thematic Excellence Programme (2020-4.1.1.-TKP2020); Ministry for Innovation and Technology in Hungary; Therapeutic Development and Bioimaging thematic programmes; Semmelweis University.
Semmelweis University, Doctoral School of Theoretical and Translational Medicine
Pál Maurovich Horvat MD, PhD, MPH, DSc
I give consent to the publication of my abstract on the website of the congress.
Szabad
elfogadva
poszter
nem rendelkezett róla
5723
11:20
11:25
Emese Zsarnóczay1,2, Judit Simon1,2, Jeff M. Smit3, Mohammed El Mahdiui3, Lili Száraz1, Alexander R. van Rosendael3, Anikó Ilona Nagy4, Márton Kolossvary1, Bálint Szilveszter1, Lászlo Gellér4, Rob J. van der Geest5, Jeroen J. Bax3,6, Pál Maurovich Horvat1,2, Béla Merkely1
1 MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center, Semmelweis University, Budapest
2 Medical Imaging Centre, Semmelweis University, Budapest
3 Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands
4 Heart and Vascular Center, Semmelweis University, Budapest
5 Division of Image Processing, Leiden University Medical Center, Leiden, The Netherlands
6 Heart Center, Turku University Hospital and University of Turku, Turku, Finland