In asymptomatic NYHA-I HCM patients, LV GCS worse than -15.5% and RV GLS worse than -18.9% independently predicted a 3.52 and 2.59-fold higher risk of MACE, respectively.
Do CMR-based LV and RV strain phenotypes predict cardiovascular outcomes in asymptomatic (NYHA-I) hypertrophic cardiomyopathy patients?
CMR-derived LV global circumferential strain and RV global longitudinal strain independently predict major adverse cardiovascular events in asymptomatic patients with hypertrophic cardiomyopathy.
Absolute Event Rate: 0% vs 0%
Abstract Background Cardiac myosin inhibition therapy reduces symptoms in patients with obstructive hypertrophic cardiomyopathy (HCM) 1 and is being explored for non-obstructive phenotypes. The identification of asymptomatic (NYHA-I) patients at risk of future major adverse cardiovascular events (MACE) represents a future sub-cohort of interest for targeted HCM therapeutics. Cardiac magnetic resonance (CMR) is routinely used in the assessment of HCM to quantify left ventricular (LV) wall thickness and myocardial fibrosis, both shown to be of value for the prediction of MACE 2. Expanding interest in additional tools, particularly deformation (strain) analysis, has emerged. LV strain has demonstrated capacity to identify higher risk HCM populations 3, however, little is known regarding the prognostic value of LV and right ventricular (RV) strain phenotyping in asymptomatic HCM patients. Purpose This study explored the prognostic value of CMR-based LV and RV strain phenotyping for the prediction of MACE in NYHA-I HCM patients. Methods 293 NYHA-I HCM patients undergoing CMR were identified from the CIROC registry. LV global longitudinal (GLS), circumferential (GCS), and radial strain (GRS) amplitude, as well as RV GLS amplitude, were quantified from cine images using feature tracking (cvi42). Patients were followed for a composite outcome of all-cause mortality, heart failure hospitalization, new onset of atrial fibrillation/flutter, ventricular tachycardia, or survival of sudden cardiac arrest. Cox models were used to study associations of strain with future outcomes. Results A total of 293 NYHA-I HCM patients were studied (mean age 55.6±14.4 years; 70% males; 26% obstructive). Baseline characteristics are shown in Figure 1. Over a median follow-up of 3.1 years, 29 patients (9.9%) experienced the primary composite outcome. On univariable analysis, LV GCS (HR 1.25 per 1%, 95% CI 1.10–1.42, p0.001), LV GRS (HR 0.91 per 1%, 95% CI 0.86–0.97, p=0.002), and RV GLS amplitude (HR 1.09 per 1%, 95% CI 1.01–1.17, p = 0.03) were significantly associated with the outcome, but not LV GLS. Using a survival-based approach, optimal cut points for LV GCS, LV GRS, and RV GLS were calculated as -15.5%, 24.3%, and -18.9%, respectively. Kaplan-Meier curves are shown in Figure 2. Adjusting for age, LV mass, and LVOT obstruction, LV GCS and RV GLS worse than the optimal cut points remained independently associated with the primary outcome (respective adjusted HR 3.52, 95% CI 1.55-8.01, p = 0.003 and 2.59, 95% CI 1.04-6.47, p= 0.04; Figure 2). LV GRS was not included in the model due to collinearity with LV GCS. Conclusion To our knowledge, this is the first study exploring the combined prognostic value of LV and RV strain in patients with NYHA-I HCM. LV and RV strain profiles identify NYHA-I HCM patients at elevated risk of incident cardiovascular outcomes, offering a unique population for the future consideration of targeted therapeutics.Figure 1 Figure 2
Sajjad et al. (Sat,) reported a other. In asymptomatic NYHA-I HCM patients, LV GCS worse than -15.5% and RV GLS worse than -18.9% independently predicted a 3.52 and 2.59-fold higher risk of MACE, respectively.
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