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Cardiac Magnetic Resonance for the Evaluation of Suspected Cardiac Thrombus: Conventional and Emerging Techniques
Published on: June 11, 2019
Preferential patterns of myocardial iron overload by multislice multiecho T*2 CMR in thalassemia major patients
Antonella Meloni1, Vincenzo Positano, Alessia Pepe
1G. Monasterio Foundation and Institute of Clinical Physiology, CNR, Pisa, Italy. antonella.meloni@ifc.cnr.it
Insights
Thalassemia major patients show specific patterns of heart iron buildup, with anterior and inferior regions affected most. Cardiac MRI can detect these early iron deposits, aiding treatment and preventing heart problems.
Area of Science:
- Cardiovascular Imaging
- Hematology
- Medical Physics
Background:
- Thalassemia major causes iron overload, leading to potential cardiac complications.
- Accurate assessment of myocardial iron distribution is crucial for managing iron overload.
Purpose of the Study:
- To investigate preferential patterns of myocardial iron overload in patients with thalassemia major.
- To evaluate the utility of T*(2) multislice multiecho cardiac MRI in identifying segmental iron distribution.
Main Methods:
- Cardiac MRI (T*(2) multislice multiecho) was performed on 523 thalassemia major patients.
- Left ventricular myocardium was analyzed using a 16-segment model to calculate T*(2) values.
- Segmental iron distribution was assessed in anterior, septal, inferior, and lateral regions.
Main Results:
- Significant segmental variability in myocardial iron overload was observed in 229 patients.
- A preferential pattern of iron deposition in anterior and inferior regions was identified in both severe and mild-to-moderate iron overload groups.
- Higher T*(2) values in the basal slice were noted in patients with severe iron overload.
Conclusions:
- Segmental T*(2) cardiac MRI effectively identifies preferential myocardial iron distribution in thalassemia major.
- This imaging approach can detect early iron deposits, guiding tailored chelation therapy.
- Early detection aids in preventing myocardial dysfunction and improving patient outcomes.
Abstract:
T*(2) multislice multiecho cardiac MR allows quantification of the segmental distribution of myocardial iron overload. This study aimed to determine if there were preferential patterns of myocardial iron overload in thalassemia major. Five hundred twenty-three thalassemia major patients underwent cardiac MR. Three short-axis views of the left ventricle were acquired and analyzed using a 16-segment standardized model. The T*(2) value on each segment was calculated, as well as the global value. Four main circumferential regions (anterior, septal, inferior, and lateral) were defined. Significant segmental variability was found in the 229 patients with significant myocardial iron overload (global T*(2) <26 ms), subsequently divided into two groups: severe (global T*(2) <10 ms) and mild to moderate (global T*(2) between 10 and 26 ms) myocardial iron overload. A preferential pattern of iron store in anterior and inferior regions was detected in both groups. This pattern was preserved among the slices. The pattern could not be explained by additive susceptibility artifacts, negligible in heavily iron-loaded patients. A significantly higher T*(2) value in the basal slice was found in patients with severe iron overload. In conclusion, a segmental T*(2) cardiac MR approach could identify early iron deposit, useful for tailoring chelation therapy and preventing myocardial dysfunction in the clinical setting.
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