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Updated: Apr 24, 2026

Post-Myocardial Infarction Heart Failure in Closed-chest Coronary Occlusion/Reperfusion Model in Göttingen Minipigs and Landrace Pigs
Published on: April 17, 2021
Adverse left ventricular remodeling in community-dwelling older adults predicts incident heart failure and mortality
Michael R Zile1, William H Gaasch2, Kanan Patel3
1Medical University of South Carolina, Charleston, South Carolina; Ralph H. Johnson Department of Veterans Affairs Medical Center, Charleston, South Carolina.
Insights
Specific patterns of left ventricular (LV) remodeling, assessed by volume, mass, and geometry, predict cardiovascular outcomes. Combinatorial analysis offers incremental prognostic information for heart failure and mortality risk.
Area of Science:
- Cardiology
- Cardiovascular Imaging
- Clinical Research
Background:
- The prognostic value of combined left ventricular (LV) volume, mass, and geometry patterns is not fully understood.
- Assessing LV remodeling patterns may offer incremental prognostic information for cardiovascular outcomes.
Purpose of the Study:
- To investigate if specific adverse left ventricular (LV) structural remodeling patterns are linked to different rates of cardiovascular (CV) outcomes.
- To determine if a stepwise combinatorial assessment of LV volume, mass, and geometry provides added prognostic value.
Main Methods:
- 3,181 Cardiovascular Health Study participants were categorized by LV remodeling patterns.
- A multivariate-adjusted analysis correlated remodeling patterns with CV outcomes over 13 years.
- Outcomes included incident heart failure (HF), all-cause mortality, and a combined HF/mortality endpoint.
Main Results:
- Left ventricular enlargement (LVE) or hypertrophy (LVH) independently increased HF risk compared to normal geometry.
- Combinatorial assessment of LV volume and mass yielded incremental prognostic information.
- Specific patterns of LVH and LVE, with or without normal mass, showed significantly different HF risks (p < 0.001 to p = 0.021).
Conclusions:
- Stepwise combinatorial assessment of LV volume, mass, and geometry provides incremental prognostic information for cardiovascular outcomes.
- This approach enhances risk stratification for patients with adverse LV remodeling.
Objectives:
This study sought to determine whether specific patterns of adverse left ventricular (LV) structural remodeling are associated with differential rates of cardiovascular (CV) outcomes.
Background:
It is not known whether a stepwise combinatorial assessment of LV volume, mass, and geometry done to define specific remodeling patterns provides incremental prognostic information.
Methods:
A total of 3,181 Cardiovascular Health Study participants (mean age, 73 years of age; 60% women, 5% African American) were categorized by LV remodeling patterns and related to a multivariate-adjusted (age, sex, race, ejection fraction, hypertension, myocardial infarction, diabetes mellitus, chronic kidney disease) analysis of CV outcomes (incident heart failure [HF], all-cause mortality, and a combined endpoint of HF and mortality) over a 13-year follow-up period.
Results:
Examined independently, either left ventricular enlargement (LVE) or left ventricular hypertrophy (LVH) was associated with a higher risk of HF (32%, 34%, respectively) than with normal geometry (17%; p < 0.001). When LV volume and mass were used in combination, important incremental prognostic information was achieved. In the absence of LVE, HF was more common in those with LVH than in those with normal mass (32% vs. 16%, respectively; p < 0.001). In the presence of LVE, HF was more common in those with LVH than in those with normal mass (37% vs. 29%, respectively; p = 0.021). The subgroup with normal volume and mass but relative wall thickness (RWT) >0.42 carried a higher risk of HF (21%) than those with normal geometry (15%; p = 0.011). Once LVH or LVE was present, the addition of RWT to this analysis did not affect HF rate. Similar results were obtained for the other CV outcomes.
Conclusions:
Stepwise combinatorial assessment of LV volume, mass, and geometry provides incremental prognostic information regarding CV outcomes.
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