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Magnetic Resonance Derived Myocardial Strain Assessment Using Feature Tracking
Published on: February 12, 2011
Regional Strain Pattern and Correlation with Cardiac Magnetic Resonance Imaging in Fabry Disease
Stephani C Wang1, Daisy Tapia2, Virginia E Kimonis2
1Department of Medicine, Division of Cardiology, University of California, Irvine, CA, USA.
Insights
Echocardiographic strain imaging can detect early cardiomyopathy in Fabry disease patients, even before cardiac MRI findings appear. This method aids in monitoring heart disease progression in Fabry patients.
Area of Science:
- Cardiology
- Medical Imaging
- Genetics
Background:
- Fabry disease significantly increases cardiovascular mortality risk, primarily from heart failure and sudden cardiac death.
- Early detection of Fabry cardiomyopathy is crucial, with echocardiography and cardiac MRI being key imaging tools.
- Limited studies exist on the utility of these imaging modalities in Fabry disease patients.
Purpose of the Study:
- To assess echocardiographic strain patterns in Fabry disease patients.
- To correlate strain imaging findings with cardiac MRI results.
- To evaluate the role of strain imaging in early cardiomyopathy detection.
Main Methods:
- Analysis of global longitudinal strain in 9 Fabry disease patients.
- Correlation of strain imaging with cardiac MRI findings.
- Detailed echocardiographic assessment.
Main Results:
- Strain abnormalities were most prominent in basal and mid inferior segments, despite normal ejection fraction.
- Increased interventricular septal and left ventricular posterior wall thickness correlated with greater strain abnormalities.
- Strain imaging detected early cardiomyopathy in some cases before MRI evidence of fibrosis or infiltration.
Conclusions:
- Cardiac MRI is vital for detecting myocardial infiltration and scarring in Fabry disease.
- MRI findings may not be apparent in the early stages of Fabry cardiomyopathy.
- Utilizing multiple imaging modalities, including echocardiographic strain, is recommended for comprehensive monitoring of Fabry cardiomyopathy.
Background:
Cardiovascular disease is the most common cause of death among Fabry disease patients, who carry significantly increased risk for heart failure and sudden cardiac death. Echocardiographic strain imaging and cardiac MRI are important clinical tools for early detection of cardiomyopathy before onset of systolic or diastolic dysfunction. However, studies on these imaging modalities are limited among Fabry patients.
Aim And Objective:
To evaluate echocardiographic strain pattern and correlation with cardiac MRI in Fabry disease.
Materials And Methods:
We performed a detailed analysis of global longitudinal strain and correlation with cardiac MRI finding in 9 patients diagnosed with Fabry disease.
Results:
Despite normal left ventricular ejection fraction, basal and mid inferior segments are more likely to demonstrate strain abnormalities compared to other regions. Additionally, increased interventricular septal and left ventricular posterior wall thickness are correlated with greater strain abnormalities. Finally, MRI evidence of fibrosis and infiltration are detected among most patients with strain abnormalities, but in some cases, strain imaging were able to detect early evidence of cardiomyopathy even before MRI was fully able to detect the change. Basal and mid inferoseptal segment strain abnormalities are early signs of developing cardiomyopathy among patients with Fabry disease.
Conclusion:
Though cardiac MRIs are critical tools for detection of myocardial infiltration and scarring, these findings may not always be detectable in early phases of the disease. Multiple imaging modalities maybe considered in monitoring and evaluation of cardiomyopathy in Fabry disease.
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