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Synthetic hematocrit-based extracellular volume quantification from photon-counting CT: Validation against MRI and
Muhammad Taha Hagar1, W Garrison Moore2, Milán Vecsey-Nagy3
1Department of Radiology and Radiological Science, Medical University of South Carolina, Charleston, USA; Department of Diagnostic and Interventional Radiology, Medical Center, University of Freiburg, Faculty of Medicine, Freiburg, Germany.
Purpose:
To assess the feasibility and accuracy of synthetic hematocrit (Hct)-based myocardial extracellular volume (ECV) quantification using photon-counting detector (PCD)-CT late enhancement (LE) imaging, with cardiac MRI as the reference standard.
Methods:
In this post-hoc analysis of a prospective study, patients underwent same-day cardiac MRI and PCD-CT LE imaging. MRI-based ECV (ECVMRI) was computed using T1 mapping sequences before and after contrast administration. PCD-CT-based ECV (ECVPCD-CT) was calculated using synthetic Hct derived from blood pool attenuation in virtual non-contrast (VNC) images of LE scans. Agreement between ECVMRI and ECVPCD-CT was evaluated using Bland-Altman analysis, Pearson correlation, and intraclass correlation coefficient (ICC) with absolute agreement. A linear regression model was applied to correct for systematic bias in ECVPCD-CT, generating bias-adjusted ECV values (ECVPCD-CT_adjusted).
Results:
A total of 27 patients (mean age 52.9 ± 17.2 years, 52 % female) were included. ECVPCD-CT systematically overestimated ECVMRI (42.1 ± 8.7 % vs. 33.8 ± 8.1 %, p < 0.001), with a mean bias of -8.3 percentage points and wide limits of agreement (-7.3 to 23.9). Correlation between ECVMRI and ECVPCD-CT was moderate (r = 0.56, p = 0.002), and ICC indicated poor reliability (ICC = 0.38). Bias correction using linear regression eliminated systematic error (ECVPCD-CT_adjusted: 35.0 ± 4.8 %, p = 0.373), with a reduced mean bias of -1.2 percentage points, but wide limits of agreement remained (-14.4 to 12.1). ICC improved slightly to 0.51, indicating moderate reliability.
Conclusion:
While synthetic Hct-based ECV estimation using PCD-CT is technically feasible, it systematically overestimates MRI-derived ECV and demonstrates considerable inter-individual variability. Bias correction effectively eliminates systematic error, but the improvement in variability remains limited.
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