Journal of the American Heart Association· 2026Q1
Glycemic Status, Cardiac Structure, and Function by Magnetic Resonance Imaging: The Jackson Heart Study
- 1citations
- Q1SCImago
- 2026year
Short summary
In Black adults (n=1609), diabetes was linked to increased left ventricular (LV) mass (4.94 g), higher LV remodeling index (0.05), impaired global circumferential systolic strain (0.44%), and greater odds of abnormal strain (1.43) compared to normoglycemia, as assessed by cardiac MRI.
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Key points
- Diabetes was associated with higher LV mass (adjusted β, 4.94), LV remodeling index (β, 0.05), and impaired global circumferential systolic strain (β, 0.44) in Black adults compared to normoglycemic individuals.
- Participants with diabetes had 1.43 times higher odds of abnormal strain.
- Each SD increase in hemoglobin A1C was linked to higher LV mass (β, 2.48), LV remodeling index (β, 0.02), and impaired global circumferential systolic strain (β, 0.21).
- Cardiac MRI measures of LV structure and myocardial strain revealed differences associated with diabetes in this community-based cohort.
AI-generated from the title and abstract; the full text is not read.
Abstract
Background Type 2 diabetes is associated with a high risk of heart failure. Hence, precise cardiac imaging can help early detection of subclinical myocardial dysfunction. We investigated the associations of glycemic status and markers with left ventricular (LV) remodeling assessed by cardiac magnetic resonance imaging among Black adults. Methods Peak systolic circumferential strain (Eulerian circumferential systolic strain), LV mass, end‐diastolic volume, end‐systolic volume, LV ejection fraction, and LV remodeling index were measured by cardiac magnetic resonance imaging in JHS (Jackson Heart Study) participants between 2008 and 2012. We evaluated the associations of glycemic markers (fasting plasma glucose and hemoglobin A 1C ) and glycemic status (diabetes, prediabetes, and normoglycemia) with cardiac magnetic resonance imaging measures of LV structure and function. Results A total of 1609 Black participants (mean age, 59 years; 63% women; 27.4% with diabetes and 46.8% with prediabetes) were included. Participants with diabetes had higher LV mass (adjusted β, 4.94 [95% CI, 0.51–9.37]), higher LV remodeling index (β, 0.05 [95% CI: 0.01– 0.09]), impaired global circumferential systolic strain (β, 0.44 [95% CI, 0.04–0.84]), and a higher odds of abnormal strain compared with those with normoglycemia (adjusted odds ratio, 1.43 [95% CI, 1.01–2.04]). Each SD increase in hemoglobin A 1C was associated with higher LV mass (β, 2.48 [95% CI, 0.76–4.21]), LV remodeling index (β, 0.02 [95% CI, 0.01–0.04]), and impaired global circumferential systolic strain (β, 0.21 [95% CI, 0.06–0.37]). Conclusions In a large community‐based cohort of Black individuals, diabetes was associated with differences in LV structure and myocardial strain measured by cardiac magnetic resonance imaging.
The authors' abstract, as published at the source. Journal of the American Heart Association, 2026 · DOI ↗
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Field: Radiology, Nuclear Medicine and Imaging
Radiology, Nuclear Medicine and ImagingMedicine