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Magnetic Resonance Derived Myocardial Strain Assessment Using Feature Tracking
Published on: February 12, 2011
Characterization of Fabry Disease cardiac involvement according to longitudinal strain, cardiometabolic exercise
Patricia Réant1,2,3,4,5,6, Emilie Testet7,8, Amélie Reynaud7,9
1Bordeaux University Hospital, 33000, Bordeaux, France. patricia.reant@chu-bordeaux.fr.
Insights
Anderson-Fabry disease (FD) patients show altered left ventricular (LV) strain and T1 mapping. These factors, along with exercise parameters, predict cardiovascular events like atrial fibrillation or stroke.
Area of Science:
- Cardiology
- Medical Imaging
- Genetics
Background:
- Anderson-Fabry disease (FD) is a rare genetic disorder affecting multiple organs, including the heart.
- Left ventricular (LV) hypertrophy and impaired myocardial function are common cardiac manifestations in FD.
- Early detection and risk stratification are crucial for managing cardiovascular outcomes in FD patients.
Purpose of the Study:
- To investigate the relationship between LV hypertrophy, longitudinal strain (LS), myocardial T1 mapping, and cardiopulmonary exercise parameters in FD patients.
- To assess the prognostic value of these parameters for predicting cardiovascular events.
Main Methods:
- Prospective, observational, monocentric study (FABRY-Image) including 35 adult FD patients and 20 controls.
- Evaluations included echocardiography, cardiac magnetic resonance (CMR) with T1 mapping, and cardiopulmonary exercise testing (CPET).
- Analysis of regional LS, correlations between cardiac parameters and exercise capacity (VO2 peak, VE/VCO2 slope), and prediction of cardiovascular events during follow-up.
Main Results:
- FD patients exhibited significantly altered global and basal LV LS, and elevated mean T1 values compared to controls, with relative apical LS sparing.
- LV wall thickness correlated with basal LS, T1 values, and VE/VCO2 slope.
- Basal LS, T1 values, LV wall thickness, and VE/VCO2 slope were significant predictors of de novo atrial fibrillation or stroke during a median follow-up of 2.4 years.
Conclusions:
- A close relationship exists between LV hypertrophy, LS, T1 mapping, and exercise parameters in FD.
- These parameters, including apical LS sparing, are associated with an increased risk of cardiovascular events (atrial fibrillation, TIA/stroke).
- Findings highlight the potential of integrated imaging and exercise testing for risk stratification in FD, warranting multicenter validation.
Abstract:
In Anderson-Fabry disease (FD), we sought to evaluate relation between left ventricular (LV) hypertrophy, longitudinal strain (LS), myocardial T1 mapping and cardiopulmonary exercise parameters, and their prognostic value in term of cardiovascular outcomes. In this prospective, observational, monocentric study called "FABRY-Image", we evaluated consecutive adult FD patients by echocardiography, cardiac magnetic resonance, and cardiopulmonary exercise testing. We investigated regional LS, the relations between LV hypertrophy, LS, T1 mapping, and VO2 peak and VE/VCO2, and the prediction of cardiovascular events during follow-up. From 2016 to 2019, we included 35 FD patients (44 ± 17 years, 40% male), that were compared with 20 controls. In FD patients, global, basal and mid-LV LS, as well as mean T1 were significantly altered compared to controls (p < 0.05) with relative apical LS sparing. LV wall thickness was particularly related to mean of basal LS (r = - 0.73), to T1 (r = - 0.48), and to VE/VCO2 (r = 0.45). Mean of basal LS was well related to myocardial T1 (r = 0.59). A good relation was observed between VO2 peak and global LS (r = 0.39) while VE/VCO2 slope was more related to maximal LV wall thickness (r = 0.45), and T1 (r = - 0.61). During a median follow-up of 2.4 years, 6/31 patients presented de novo atrial fibrillation or stroke. In Cox univariate analyses, LV wall thickness, basal LS, T1 value, and VE/VCO2 were significantly predictive of occurrence of de novo atrial fibrillation or stroke (p < 0.05). Our study shows an apical LS sparing in FD patients as observed in amyloidosis, and a close relation between LV hypertrophy, LS, T1 mapping, and VE/VCO2 which are all associated to the occurrence of de novo atrial fibrillation or TIA/stroke during follow-up. These results need to be confirmed by future multicentric studies.
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