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April 24, 2026Current Cardiology Reports0 citationsOpen Access

Cardiac Magnetic Resonance to Define Myocardial Structure in Obesity-Associated Heart Failure

JCJamey CuttsFEFrederick H. EpsteinAPAmit R. Patel

Key Result

Cardiac magnetic resonance imaging serves as a pivotal non-invasive modality for diagnosing, phenotyping, and risk stratifying obesity-related heart failure with preserved ejection fraction.

Key Points

  • To explore the role of cardiac magnetic resonance imaging in understanding the structural and functional abnormalities in obesity-associated heart failure.
  • Review of existing literature on obesity and heart failure phenotypes.
  • Discussion of cardiac magnetic resonance imaging techniques and their applications in heart failure.
  • Evaluation of the impact of obesity on myocardial structure and function.
  • Cardiac magnetic resonance accurately characterizes myocardial inflammation and fibrosis in obese patients.
  • Obesity leads to significant ventricular remodeling and diastolic dysfunction, contributing to heart failure.
  • CMR offers vital insights for diagnosing and differentiating obesity-related heart failure from other conditions.

Structured PICO

P
Population
Patients with obesity-related heart failure with preserved ejection fraction (HFpEF)
I
Intervention
Cardiac magnetic resonance imaging (CMR)

CMR is a pivotal modality for the diagnosis, phenotyping, and risk stratification of obesity-related HFpEF, enabling precise assessment of structural, functional, and tissue-level abnormalities.

Limitations

  • Limited availability of advanced CMR sequences in some areas
  • Need for standardization of protocol acquisition and analysis
  • Patient-related factors such as body habitus, inability to lie flat, and difficulty performing breath holds
  • High cost
  • Limited availability in some areas
  • Lack of standardization of protocol acquisition and analysis
  • Long scan times
  • Patient-related factors such as body habitus, ability to lie flat, breath holds, and cost

Abstract

The global prevalence of both obesity and heart failure continues to rise, and accumulating evidence suggests that their association is likely causal, giving rise to a distinct heart failure phenotype with unique pathophysiologic features compared to non-obese individuals. This review highlights the evolving role of cardiac magnetic resonance imaging (CMR) in the assessment and management of obesity-related heart failure, emphasizing it’s ability to characterize the structural, functional, and tissue-level cardiovascular abnormalities that define this increasingly prevalent condition. Obesity plays a central role in the development of heart failure with preserved ejection fraction (HFpEF), contributing to a unique pathophysiologic cardiovascular phenotype through mechanisms such as myocardial inflammation, diffuse fibrosis, abnormal ventricular loading, and pathologic expansion of adjacent epicardial adipose tissue. These structural and physiologic changes in turn lead to disproportionate atrial and ventricular remodeling, pronounced diastolic dysfunction, cardiac microvascular dysfunction, impaired interventricular mechanics, and elevated cardiac filling pressures. Together, these alterations contribute to the heightened symptom burden, exercise intolerance, and adverse outcomes observed in obese patients with HFpEF. Cardiac magnetic resonance imaging (CMR) provides a non-invasive, comprehensive platform to assess these hemodynamic, structural, and tissue-level abnormalities through an ever-expanding suite of quantitative imaging tools. CMR, with its high spatial resolution, advanced tissue characterization, and comprehensive evaluation of cardiac structure and function, has emerged as a pivotal modality for the diagnosis, phenotyping, and risk stratification of obesity related HFpEF, while also enabling differentiation from important phenocopies and alternative causes of heart failure.

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Cite This Study

Cutts et al. (2026) conducted a review in Obesity-Associated Heart Failure with Preserved Ejection Fraction (HFpEF). Cardiac Magnetic Resonance (CMR) was evaluated. Cardiac magnetic resonance imaging serves as a pivotal non-invasive modality for diagnosing, phenotyping, and risk stratifying obesity-related heart failure with preserved ejection fraction.

synapsesocial.com/papers/69eb0a2e553a5433e34b466ahttps://doi.org/10.1007/s11886-026-02372-6
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Extracellular Volume Fraction for Characterization of Patients With Heart Failure and Preserved Ejection Fraction2016 · 209 citations
  2. 2The emerging role of atrial strain assessed by cardiac MRI in different cardiovascular settings: an up-to-date review2022 · 108 citations
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  4. 4Association between epicardial adipose tissue and incident heart failure mediating by alteration of natriuretic peptide and myocardial strain2023 · 39 citations
  5. 5Near-universal prevalence of central adiposity in heart failure with preserved ejection fraction: the PARAGON-HF trial2025 · 111 citations