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Non-invasive diagnostic imaging techniques as a window into the diabetic heart: a review of experimental and clinical
1Russell H. Morgan Department of Radiology and Radiological Science, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.
Insights
Diabetic cardiomyopathy, characterized by specific heart muscle changes, significantly increases cardiovascular risk in diabetes patients. Early detection using advanced imaging techniques is vital for managing heart failure risk.
Area of Science:
- Cardiology
- Endocrinology
- Medical Imaging
Background:
- Diabetes mellitus is strongly associated with congestive heart failure and cardiovascular events.
- Diabetic cardiomyopathy is defined by distinct myocellular and interstitial alterations in the heart muscle.
- Histological findings include hypertrophy, thickened capillary basement membranes, fibrosis, and mitochondrial changes.
Purpose of the Study:
- To review the diagnostic applications of non-invasive imaging techniques for diabetic heart disease.
- To highlight the importance of early detection of diabetic cardiomyopathy for cardiovascular risk identification.
Main Methods:
- Review of recent advancements in cardiac magnetic resonance imaging (MRI), echocardiography, and nuclear scintigraphy.
- Focus on non-invasive imaging modalities for assessing myocardial structure and function in diabetic patients.
Main Results:
- Echocardiography is widely used for detecting left ventricular dysfunction due to its availability and low cost.
- Cardiac MRI offers higher spatial resolution for assessing myocardial structure and objective ventricular function.
- Nuclear scintigraphy evaluates cardiac autonomic integrity, identifying autonomic dysfunction as a risk factor.
Conclusions:
- Non-invasive imaging techniques are crucial for the early detection and management of diabetic cardiomyopathy.
- MRI and echocardiography are valuable for assessing structural and functional cardiac changes in diabetes.
- Nuclear scintigraphy aids in identifying autonomic dysfunction, a key cardiovascular risk factor in diabetic patients.
Abstract:
Epidemiological and clinical studies show a clear association of diabetes mellitus with congestive heart failure and cardiovascular events independent of blood pressure and ischemic heart disease. The definition of 'diabetic cardiomyopathy' as a clinical entity, however, relies on distinct myocellular and interstitial alterations found in the myocardium of patients with diabetes. The histological findings comprise myocellular hypertrophy, thickening of capillary basement membranes, interstitial fibrosis and rarification of mitochondria on the ultrastructural level. For clinical routine, early detection of diabetic cardiomyopathy seems crucial for identification of patients at cardiovascular risk since the prevalence of heart failure in individuals with diabetes is markedly increased. Recent technical developments in cardiac magnetic resonance imaging (MRI), echocardiography as well as nuclear scintigraphy have advanced the diagnostic applications for the detection of diabetic heart disease. This review aims to present distinct aspects of diabetic cardiomyopathy that were identified using non- invasive imaging techniques. Due to the wide availability and the low costs of echocardiography, it is the most frequently used imaging technique to detect left ventricular dysfunction in patients with diabetes. MRI on the other hand can provide assessment of myocardial structure with higher spatial resolution and allows objective assessment of left ventricular function. This makes MRI an attractive alternative for the detection of discrete alterations, particularly in patients with poor echogenic windows. Finally, nuclear scintigraphy can provide information on cardiac autonomic integrity and accurately detect defects in autonomic control, which are considered a major cardiovascular risk factor in patients with diabetes.
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