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Updated: Jan 1, 2026

Histological Quantification of Chronic Myocardial Infarct in Rats
Published on: December 11, 2016
R2 prime (R2') magnetic resonance imaging for post-myocardial infarction intramyocardial haemorrhage quantification
Xavier Rossello1,2, Pedro Lopez-Ayala1, Rodrigo Fernández-Jiménez1,2,3
1Translational Laboratory for Cardiovascular Imaging and Therapy, Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid, Spain.
Aims:
To assess whether R2* is more accurate than T2* for the detection of intramyocardial haemorrhage (IMH) and to evaluate whether T2' (or R2') is less affected by oedema than T2* (R2*), and thus more suitable for the accurate identification of post-myocardial infarction (MI) IMH.
Methods And Results:
Reperfused anterior MI was performed in 20 pigs, which were sacrificed at 120 min, 24 h, 4 days, and 7 days. At each time point, cardiac magnetic resonance (CMR) T2- and T2*-mapping scans were recorded, and myocardial tissue samples were collected to quantify IMH and myocardial water content. After normalization by the number of red blood cells in remote tissue, histological IMH increased 5.2-fold, 10.7-fold, and 4.1-fold at Days 1, 4, and 7, respectively. The presence of IMH was correlated more strongly with R2* (r = 0.69; P = 0.013) than with T2* (r = -0.50; P = 0.085). The correlation with IMH was even stronger for R2' (r = 0.72; P = 0.008). For myocardial oedema, the correlation was stronger for R2* (r = -0.63; P = 0.029) than for R2' (r = -0.50; P = 0.100). Multivariate linear regressions confirmed that R2* values were significantly explained by both IMH and oedema, whereas R2' values were mostly explained by histological IMH (P = 0.024) and were little influenced by myocardial oedema (P = 0.262).
Conclusion:
Using CMR mapping with histological validation in a pig model of reperfused MI, R2'more accurately detected IMH and was less influenced by oedema than R2* (and T2*). Further studies are needed to elucidate whether R2' is also better suited for the characterization of post-MI IMH in the clinical setting.
Insights
R2' mapping is more accurate than R2* for detecting intramyocardial hemorrhage (IMH) after myocardial infarction (MI). R2' is also less affected by edema, making it a superior tool for IMH assessment in research settings.
Area of Science:
- Cardiovascular Imaging
- Biomedical Engineering
- Radiology
Background:
- Intramyocardial hemorrhage (IMH) is a complication following myocardial infarction (MI).
- Accurate detection of IMH is crucial for understanding post-MI outcomes.
- Current imaging techniques like T2* mapping have limitations in differentiating IMH from edema.
Purpose of the Study:
- To compare the accuracy of R2* and T2* (R2*) mapping for IMH detection.
- To evaluate the influence of myocardial edema on R2* and T2' measurements.
- To determine the suitability of R2' for identifying post-MI IMH.
Main Methods:
- A pig model of reperfused anterior myocardial infarction (MI) was used.
- Cardiac magnetic resonance (CMR) T2- and T2*-mapping scans were performed at multiple time points post-MI.
- Myocardial tissue samples were collected for histological quantification of IMH and water content.
Main Results:
- Histological IMH significantly increased at 1, 4, and 7 days post-MI.
- R2' showed a stronger correlation with IMH (r=0.72) than R2* (r=0.69).
- R2' was less influenced by myocardial edema compared to R2*.
Conclusions:
- R2' mapping accurately detects IMH and is less affected by edema than R2* in a preclinical model.
- R2' shows promise as a superior imaging biomarker for post-MI IMH.
- Further clinical studies are warranted to validate R2' for patient care.
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