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PMID: 31413845 Published · epublish English Journal Article

Inconsistency in aortic stenosis severity between CT and echocardiography: prevalence and insights into mechanistic differences using computational fluid dynamics.

Open heart ·Vol. 6 ·No. 2 ·2019-00-00 ·页码 e001044

Mittal TK, Reichmuth L, Bhattacharyya S, Jain M, Baltabaeva A, Rahman Haley S, Mirsadraee S, Panoulas V, Kabir T, Nicol ED, Dalby M, Long Q

Abstract

The aims of this study were to evaluate the inconsistency of aortic stenosis (AS) severity between CT aortic valve area (CT-AVA) and echocardiographic Doppler parameters, and to investigate potential underlying mechanisms using computational fluid dynamics (CFD). A total of 450 consecutive eligible patients undergoing transcatheter AV implantation assessment underwent CT cardiac angiography (CTCA) following echocardiography. CT-AVA derived by direct planimetry and echocardiographic parameters were used to assess severity. CFD simulation was performed in 46 CTCA cases to evaluate velocity profiles. A CT-AVA>1 cm2 was present in 23% of patients with echocardiographic peak velocity≥4 m/s (r=-0.33) and in 15% patients with mean Doppler gradient≥40 mm Hg (r=-0.39). Patients with inconsistent severity grading between CT and echocardiography had higher stroke volume index (43 vs 38 mL/m2, p<0.003) and left ventricular outflow tract (LVOT) flow rate (235 vs 192 cm3/s, p<0.001). CFD simulation revealed high flow, either in isolation (p=0.01), or when associated with a skewed velocity profile (p=0.007), as the main cause for inconsistency between CT and echocardiography. Severe AS by Doppler criteria may be associated with a CT-AVA>1 cm2 in up to a quarter of patients. CFD demonstrates that haemodynamic severity may be exaggerated on Doppler analysis due to high LVOT flow rates, with or without skewed velocity profiles, across the valve orifice. These factors should be considered before making a firm diagnosis of severe AS and evaluation with CT can be helpful.

Keywords
CT aortic valve computational fluid dynamics echocardiography valve stenosis
作者与单位
共 12 位作者,点击展开单位 / ORCID
Mittal Tarun Kumar ORCID
Heart Assessment, Royal Brompton and Harefield NHS Foundation Trust, London, Middlesex, UK. | Faculty of Medicine, NHLI, Imperial College London, London, United Kingdom.
Reichmuth Luise
Heart Assessment, Royal Brompton and Harefield NHS Foundation Trust, London, Middlesex, UK.
Bhattacharyya Sanjeev ORCID
Heart Assessment, Royal Brompton and Harefield NHS Foundation Trust, London, Middlesex, UK.
Jain Manish
Heart Assessment, Royal Brompton and Harefield NHS Foundation Trust, London, Middlesex, UK.
Baltabaeva Aigul
Cardiology, Royal Brompton and Harefield NHS Foundation Trust, London, United Kingdom.
Rahman Haley Shelley
Heart Assessment, Royal Brompton and Harefield NHS Foundation Trust, London, Middlesex, UK.
Mirsadraee Saeed
Heart Assessment, Royal Brompton and Harefield NHS Foundation Trust, London, Middlesex, UK. | Faculty of Medicine, NHLI, Imperial College London, London, United Kingdom.
Panoulas Vasileios
Faculty of Medicine, NHLI, Imperial College London, London, United Kingdom. | Cardiology, Royal Brompton and Harefield NHS Foundation Trust, London, United Kingdom.
Kabir Tito
Cardiology, Royal Brompton and Harefield NHS Foundation Trust, London, United Kingdom.
Nicol Edward David
Heart Assessment, Royal Brompton and Harefield NHS Foundation Trust, London, Middlesex, UK. | Faculty of Medicine, NHLI, Imperial College London, London, United Kingdom.
Dalby Miles
Faculty of Medicine, NHLI, Imperial College London, London, United Kingdom. | Cardiology, Royal Brompton and Harefield NHS Foundation Trust, London, United Kingdom.
Long Quan
Institute of Bioengineering, Brunel University, Uxbridge, Middlesex, UK.
Article Info
Journal
Open heart
Abbr.
Open Heart
ISSN
2053-3624
Published
2019-00-00
电子出版
2019-00-29
页码
e001044
Language
English
Country/Region
England
NLM ID
101631219
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