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Published on: June 20, 2014
Cardiovascular Magnetic Resonance as Pathophysiologic Tool in Diabetes Mellitus
Sophie I Mavrogeni1,2, Flora Bacopoulou2, George Markousis-Mavrogenis1
1Department of Cardiology, Onassis Cardiac Surgery Center, Kallithea, Greece.
Insights
Diabetes mellitus significantly increases cardiovascular disease risk. Cardiovascular magnetic resonance imaging offers comprehensive assessment of cardiac function and fibrosis in diabetic patients, aiding early diagnosis and management.
Area of Science:
- Cardiology
- Radiology
- Diabetology
Background:
- Diabetes mellitus is a major risk factor for premature cardiovascular disease (CVD).
- Type 1 diabetes shows higher mortality, while Type 2 diabetes increases CVD probability.
- Cardiovascular magnetic resonance (CMR) is a non-invasive imaging modality for CVD assessment.
Purpose of the Study:
- To highlight the role of CMR in diagnosing CVD in diabetes mellitus.
- To discuss various CMR sequences for evaluating cardiac structure and function.
- To emphasize CMR's ability to detect myocardial infarction, ischemia, and fibrosis.
Main Methods:
- Balanced steady-state free precession (bSSFP) for cardiac function.
- T2-weighted imaging (T2-W) for myocardial edema.
- T1-weighted imaging (T1-W) for ischemia and late gadolinium enhancement (LGE) for fibrosis.
- T1 mapping (native and post-contrast) for diffuse fibrosis and extracellular volume (ECV) calculation.
Main Results:
- CMR can detect myocardial infarction, edema, ischemia, and replacement fibrosis.
- T1 mapping is crucial for identifying diffuse myocardial fibrosis, not detectable by LGE.
- CMR allows concurrent evaluation of cardiac function, ischemia, and fibrosis in a single examination.
Conclusions:
- Cardiovascular magnetic resonance is an indispensable tool for diagnosing cardiovascular disease in diabetes mellitus.
- Advanced CMR techniques like T1 mapping improve the assessment of myocardial fibrosis.
- CMR offers a comprehensive, non-invasive approach to managing cardiac complications in diabetic patients.
Abstract:
Diabetes mellitus can independently contribute to cardiovascular disease and represents a severe risk factor for premature development of cardiovascular disease. A three-fold higher mortality than the general population has been observed in type 1 diabetes mellitus whereas a two- to four-fold increased probability to develop cardiovascular disease has been observed in type 2 diabetes mellitus. Cardiovascular magnetic resonance, a non-radiative modality, is superior to all other modalities in detecting myocardial infarction. The main cardiovascular magnetic resonance sequences used include a) balanced steady-state free precession (bSSFP) for function evaluation; b) T2-W for oedema detection; c) T1 W for ischemia detection during adenosine stress; and d) late gadolinium enhanced T1-W images (LGE), evaluated 15 min after injection of paramagnetic contrast agent gadolinium, which permit the diagnosis of replacement fibrosis, which appears white in the middle of suppressed, nulled myocardium. Although LGE is the technique of choice for diagnosis of replacement fibrosis, it cannot assess diffuse myocardial fibrosis. The application of T1 mapping (native or pre contrast and post contrast) allows identification of diffuse myocardial fibrosis, which is not detectable my other means. Native T1 and Contrast-enhanced T1 mapping are involved in the extracellular volume fraction (ECV) calculation. Recently, 1H-cardiovascular magnetic resonance spectroscopy has been applied to calculate the amount of myocardial triglycerides, but at the moment it is not part of the routine assessment of diabetes mellitus. The multifaceted nature of cardiovascular magnetic resonance has the great potential of concurrent evaluation of function and myocardial ischemia/fibrosis in the same examination and represents an indispensable tool for accurate diagnosis of cardiovascular disease in diabetes mellitus.
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