(NVKP-16-1-2016-0017 National Heart Program) Támogató: NKFIH
(2020-4.1.1.-TKP2020)
(Therapeutic Development and Bioimaging thematic programmes of the Semmelweis University)
(RRF-2.3.1-21-2022-00003)
Szakterületek:
Intervenciós kardiológia
Contemporary reconstruction algorithms yield the potential of reducing radiation exposure
by denoising coronary computed tomography angiography (CCTA) datasets. We aimed to
assess the reliability of coronary artery calcium score (CACS) measurements with an
advanced adaptive statistical iterative reconstruction (ASIR-CV) and model-based adaptive
filter (MBAF2) designed for a dedicated cardiac CT scanner by comparing them to the
gold-standard filtered back projection (FBP) calculations. We analyzed non-contrast
coronary CT images of 404 consecutive patients undergoing clinically indicated CCTA.
CACS and total calcium volume were quantified and compared on three reconstructions
(FBP, ASIR-CV, and MBAF2+ASIR-CV). Patients were classified into risk categories based
on CACS and the rate of reclassification was assessed. Patients were categorized into
the following groups based on FBP reconstructions: 172 zero CACS, 38 minimal (1–10),
87 mild (11–100), 57 moderate (101–400), and 50 severe (400<). Overall, 19/404 (4.7%)
patients were reclassified into a lower-risk group with MBAF2+ASIR-CV, while 8 additional
patients (27/404, 6.7%) shifted downward when applying stand-alone ASIR-CV. The total
calcium volume with FBP was 7.0 (0.0–133.25) mm3, 4.0 (0.0–103.5) mm3 using ASIR-CV,
and 5.0 (0.0–118.5) mm3 with MBAF2+ASIR-CV (all comparisons p < 0.001). The concomitant
use of ASIR-CV and MBAF2 may allow the reduction of noise levels while maintaining
similar CACS values as FBP measurements.