Am J Physiol Heart Circ Physiol. 2026 Jul 30. doi: 10.1152/ajpheart.00397.2026. Online ahead of print.
ABSTRACT
Background: Left ventricular (LV) mass and left atrial (LA) strain are physiologically coupled and individually predict adverse cardiovascular outcomes. Their imbalance may reflect early atrioventricular uncoupling and atrial myopathy before overt structural disease. Aims: We evaluated whether a cardiac magnetic resonance (CMR)-derived LV mass-to-LA strain ratio identifies early atrioventricular mechanical uncoupling and predicts cardiovascular events. Methods: Participants from the Multi-Ethnic Study of Atherosclerosis (MESA) underwent CMR at Exams 1 (2000-2002) and 5 (2010-2012). The LV mass-to-LA strain ratio was calculated as indexed end-diastolic LV mass divided by peak LA strain. Classification and regression tree analysis identified cut points for baseline ratio and longitudinal change, defining low (<1.04), reference (1.04-3.26), and high (>3.26) groups, and lesser-(≤130%) versus greater-change (>130%) groups. Multivariable Cox models assessed associations with heart failure (HF), atrial fibrillation (AF), myocardial infarction (MI), and all-cause mortality. Results: Among 4,232 participants (mean age 61.5±10.1 years; 52.8% female), the mean ratio was 1.95±0.72. Over a median 18-year follow-up, 6.0% developed HF, 5.2% MI, 18.7% AF, and 25.6% died. A high LV mass-to-LA strain ratio independently predicted HF (HR 2.85), AF (HR 2.00), MI (HR 1.96), and death (HR 1.70; all P≤.003). With repeat CMR, an increasing ratio also predicted cardiovascular events, including among individuals with normal LV mass and LA strain. Higher baseline ratios were associated with progression toward abnormal volumetric atrioventricular coupling over time. Conclusion: A higher LV mass-to-LA strain ratio and its increase independently predict cardiovascular events before overt chamber abnormalities, supporting impaired atrial adaptation as an early stage of atrial myopathy.
PMID:42531548 | DOI:10.1152/ajpheart.00397.2026