Myocardial T2 Star (T2*) in a Large Healthy Population: Correction Factors for a Segmental Approach Using

Amalia Lupi1, Sebastiano Gambato1, Ambra Checchetto2

  • 1Institute of Radiology, Department of Medicine-DIMED, Padua University, 35128 Padua, Italy.

Tomography (Ann Arbor, Mich.)
|May 26, 2026
PubMed

Insights

This study establishes new normative T2* values for myocardial iron overload assessment in healthy adults. It introduces segmental correction factors for improved accuracy in clinical settings, aiding in earlier detection of iron overload.

Area of Science:

  • Cardiovascular Imaging
  • Magnetic Resonance Imaging
  • Biomedical Engineering

Background:

  • Myocardial iron overload distribution is heterogeneous.
  • Segmental T2* cardiac magnetic resonance (CMR) approaches improve cardiac outcomes by accounting for this heterogeneity.
  • Commercially available software currently lacks a segmental T2* technique.

Purpose of the Study:

  • To prospectively determine normative myocardial T2* values in healthy volunteers using Black Blood MEGE T2* mapping.
  • To assess the relationship between T2* values and physiological variables.
  • To develop correction factors for a segmental T2* approach using commercially available software.

Main Methods:

  • Fifty healthy subjects (M:F = 1:1, 20-69 years) underwent CMR without contrast.
  • Segmental T2* values were acquired using cvi42 software.
  • Reproducibility, association with physiological characteristics, and regional differences were analyzed.

Main Results:

  • Average native T2* was 34.03 ± 6.65 ms.
  • Good reproducibility was confirmed (ICC > 0.80).
  • A weak negative correlation between age and T2* was observed (p=0.04). Segmental correction factors were developed.

Conclusions:

  • Age-specific normative values and higher cut-off values (>20 ms) are recommended to prevent bias.
  • Developed correction factors using reproducible Black Blood MEGE sequences and current software represent a step toward a more sensitive segmental T2* approach.