Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severity

Background: Cardiovascular magnetic resonance (CMR) imaging is an important tool for evaluating the severity of aortic stenosis (AS), co-existing aortic disease, and concurrent myocardial abnormalities. Acquiring this additional information requires protocol adaptations and additional scanner time,...

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Published in:Journal of Cardiovascular Magnetic Resonance
Main Authors: Kavitha Vimalesvaran, Sameer Zaman, James P. Howard, Nikoo Aziminia, Marilena Giannoudi, Henry Procter, Marta Varela, Fatmatulzehra Uslu, Ben Ariff, Nick Linton, Eylem Levelt, Anil A. Bharath, Graham D. Cole
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Language:English
Published: Elsevier 2024-01-01
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Online Access:http://www.sciencedirect.com/science/article/pii/S1097664723001709
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author Kavitha Vimalesvaran
Sameer Zaman
James P. Howard
Nikoo Aziminia
Marilena Giannoudi
Henry Procter
Marta Varela
Fatmatulzehra Uslu
Ben Ariff
Nick Linton
Eylem Levelt
Anil A. Bharath
Graham D. Cole
author_facet Kavitha Vimalesvaran
Sameer Zaman
James P. Howard
Nikoo Aziminia
Marilena Giannoudi
Henry Procter
Marta Varela
Fatmatulzehra Uslu
Ben Ariff
Nick Linton
Eylem Levelt
Anil A. Bharath
Graham D. Cole
author_sort Kavitha Vimalesvaran
collection DOAJ
container_title Journal of Cardiovascular Magnetic Resonance
description Background: Cardiovascular magnetic resonance (CMR) imaging is an important tool for evaluating the severity of aortic stenosis (AS), co-existing aortic disease, and concurrent myocardial abnormalities. Acquiring this additional information requires protocol adaptations and additional scanner time, but is not necessary for the majority of patients who do not have AS. We observed that the relative signal intensity of blood in the ascending aorta on a balanced steady state free precession (bSSFP) 3-chamber cine was often reduced in those with significant aortic stenosis. We investigated whether this effect could be quantified and used to predict AS severity in comparison to existing gold-standard measurements. Methods: Multi-centre, multi-vendor retrospective analysis of patients with AS undergoing CMR and transthoracic echocardiography (TTE). Blood signal intensity was measured in a ∼1 cm2 region of interest (ROI) in the aorta and left ventricle (LV) in the 3-chamber bSSFP cine. Because signal intensity varied across patients and scanner vendors, a ratio of the mean signal intensity in the aorta ROI to the LV ROI (Ao:LV) was used. This ratio was compared using Pearson correlations against TTE parameters of AS severity: aortic valve peak velocity, mean pressure gradient and the dimensionless index. The study also assessed whether field strength (1.5 T vs. 3 T) and patient characteristics (presence of bicuspid aortic valves (BAV), dilated aortic root and low flow states) altered this signal relationship. Results: 314 patients (median age 69 [IQR 57–77], 64% male) who had undergone both CMR and TTE were studied; 84 had severe AS, 78 had moderate AS, 66 had mild AS and 86 without AS were studied as a comparator group. The median time between CMR and TTE was 12 weeks (IQR 4–26). The Ao:LV ratio at 1.5 T strongly correlated with peak velocity (r = −0.796, p = 0.001), peak gradient (r = −0.772, p = 0.001) and dimensionless index (r = 0.743, p = 0.001). An Ao:LV ratio of < 0.86 was 84% sensitive and 82% specific for detecting AS of any severity and a ratio of 0.58 was 83% sensitive and 92% specific for severe AS. The ability of Ao:LV ratio to predict AS severity remained for patients with bicuspid aortic valves, dilated aortic root or low indexed stroke volume. The relationship between Ao:LV ratio and AS severity was weaker at 3 T. Conclusions: The Ao:LV ratio, derived from bSSFP 3-chamber cine images, shows a good correlation with existing measures of AS severity. It demonstrates utility at 1.5 T and offers an easily calculable metric that can be used at the time of scanning or automated to identify on an adaptive basis which patients benefit from dedicated imaging to assess which patients should have additional sequences to assess AS.
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spelling doaj-art-e9fa345f152e4e25b40e39f1fb7dd9cb2025-08-20T01:20:34ZengElsevierJournal of Cardiovascular Magnetic Resonance1097-66472024-01-0126110000510.1016/j.jocmr.2023.100005Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severityKavitha Vimalesvaran0Sameer Zaman1James P. Howard2Nikoo Aziminia3Marilena Giannoudi4Henry Procter5Marta Varela6Fatmatulzehra Uslu7Ben Ariff8Nick Linton9Eylem Levelt10Anil A. Bharath11Graham D. Cole12A1 for Healthcare Centre for Doctoral Training, Imperial College London, SW7 2AZ, United Kingdom; National Heart and Lung Institute, Imperial College London, SW7 2AZ, United Kingdom; Imperial College Healthcare NHS Trust, London W12 0HS, United Kingdom; Correspondence to: Imperial College London, Exhibition Road, South Kensington, London SW7 2AZ, United Kingdom.National Heart and Lung Institute, Imperial College London, SW7 2AZ, United Kingdom; Imperial College Healthcare NHS Trust, London W12 0HS, United KingdomNational Heart and Lung Institute, Imperial College London, SW7 2AZ, United Kingdom; Imperial College Healthcare NHS Trust, London W12 0HS, United KingdomBarts Heart Centre, Barts Health NHS Trust, West Smithfield, London EC1A 7BE, United KingdomMultidisciplinary Cardiovascular Research Centre &amp; Department of Biomedical Imaging Science, Leeds Institute of Cardiovascular and Metabolic Medicine, University of Leeds, Leeds LS2 9JT, United KingdomMultidisciplinary Cardiovascular Research Centre &amp; Department of Biomedical Imaging Science, Leeds Institute of Cardiovascular and Metabolic Medicine, University of Leeds, Leeds LS2 9JT, United KingdomNational Heart and Lung Institute, Imperial College London, SW7 2AZ, United KingdomDepartment of Electric-Electronic Engineering, Bursa Technical University, Bursa, TurkiyeImperial College Healthcare NHS Trust, London W12 0HS, United KingdomImperial College Healthcare NHS Trust, London W12 0HS, United Kingdom; Department of Bioengineering, Imperial College London, SW7 2AZ, United KingdomMultidisciplinary Cardiovascular Research Centre &amp; Department of Biomedical Imaging Science, Leeds Institute of Cardiovascular and Metabolic Medicine, University of Leeds, Leeds LS2 9JT, United KingdomImperial College Healthcare NHS Trust, London W12 0HS, United Kingdom; Department of Bioengineering, Imperial College London, SW7 2AZ, United KingdomNational Heart and Lung Institute, Imperial College London, SW7 2AZ, United Kingdom; Imperial College Healthcare NHS Trust, London W12 0HS, United KingdomBackground: Cardiovascular magnetic resonance (CMR) imaging is an important tool for evaluating the severity of aortic stenosis (AS), co-existing aortic disease, and concurrent myocardial abnormalities. Acquiring this additional information requires protocol adaptations and additional scanner time, but is not necessary for the majority of patients who do not have AS. We observed that the relative signal intensity of blood in the ascending aorta on a balanced steady state free precession (bSSFP) 3-chamber cine was often reduced in those with significant aortic stenosis. We investigated whether this effect could be quantified and used to predict AS severity in comparison to existing gold-standard measurements. Methods: Multi-centre, multi-vendor retrospective analysis of patients with AS undergoing CMR and transthoracic echocardiography (TTE). Blood signal intensity was measured in a ∼1 cm2 region of interest (ROI) in the aorta and left ventricle (LV) in the 3-chamber bSSFP cine. Because signal intensity varied across patients and scanner vendors, a ratio of the mean signal intensity in the aorta ROI to the LV ROI (Ao:LV) was used. This ratio was compared using Pearson correlations against TTE parameters of AS severity: aortic valve peak velocity, mean pressure gradient and the dimensionless index. The study also assessed whether field strength (1.5 T vs. 3 T) and patient characteristics (presence of bicuspid aortic valves (BAV), dilated aortic root and low flow states) altered this signal relationship. Results: 314 patients (median age 69 [IQR 57–77], 64% male) who had undergone both CMR and TTE were studied; 84 had severe AS, 78 had moderate AS, 66 had mild AS and 86 without AS were studied as a comparator group. The median time between CMR and TTE was 12 weeks (IQR 4–26). The Ao:LV ratio at 1.5 T strongly correlated with peak velocity (r = −0.796, p = 0.001), peak gradient (r = −0.772, p = 0.001) and dimensionless index (r = 0.743, p = 0.001). An Ao:LV ratio of < 0.86 was 84% sensitive and 82% specific for detecting AS of any severity and a ratio of 0.58 was 83% sensitive and 92% specific for severe AS. The ability of Ao:LV ratio to predict AS severity remained for patients with bicuspid aortic valves, dilated aortic root or low indexed stroke volume. The relationship between Ao:LV ratio and AS severity was weaker at 3 T. Conclusions: The Ao:LV ratio, derived from bSSFP 3-chamber cine images, shows a good correlation with existing measures of AS severity. It demonstrates utility at 1.5 T and offers an easily calculable metric that can be used at the time of scanning or automated to identify on an adaptive basis which patients benefit from dedicated imaging to assess which patients should have additional sequences to assess AS.http://www.sciencedirect.com/science/article/pii/S1097664723001709Aortic ValveAortic StenosisLeft VentricleBalanced Steady-State Free PrecessionMagnetic Field StrengthValvular heart disease
spellingShingle Kavitha Vimalesvaran
Sameer Zaman
James P. Howard
Nikoo Aziminia
Marilena Giannoudi
Henry Procter
Marta Varela
Fatmatulzehra Uslu
Ben Ariff
Nick Linton
Eylem Levelt
Anil A. Bharath
Graham D. Cole
Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severity
Aortic Valve
Aortic Stenosis
Left Ventricle
Balanced Steady-State Free Precession
Magnetic Field Strength
Valvular heart disease
title Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severity
title_full Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severity
title_fullStr Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severity
title_full_unstemmed Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severity
title_short Aortic stenosis assessment from the 3-chamber cine: Ratio of balanced steady-state-free-precession (bSSFP) blood signal between the aorta and left ventricle predicts severity
title_sort aortic stenosis assessment from the 3 chamber cine ratio of balanced steady state free precession bssfp blood signal between the aorta and left ventricle predicts severity
topic Aortic Valve
Aortic Stenosis
Left Ventricle
Balanced Steady-State Free Precession
Magnetic Field Strength
Valvular heart disease
url http://www.sciencedirect.com/science/article/pii/S1097664723001709
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