Background/Objectives: A novel CT dynamic angiographic imaging (CT-DAI) analytic algorithm was evaluated against the clinical gold standard for fractional flow reserve (FFR) measurement in patients with coronary artery disease (CAD) characterized by diffuse dense calcification and previous stent implantation. Methods: This retrospective feasibility study included 24 coronary arteries in 16 patients (age 69.9 ± 8.9 years, 11 males) with CAD who underwent dynamic CT myocardial perfusion scanning using a dual-source CT scanner after intravenous infusion of adenosine triphosphate. The included patients had analyzable proximal and distal coronary artery segments adjacent to the stenosis in the myocardial perfusion images and had corresponding invasive catheter-based FFR measurements for that stenosis. An in-house software based on the CT-DAI algorithm was used to compute FFR using the coronary time-enhancement curves sampled across the stenosis from stress myocardial CT perfusion images. The CT-DAI derived FFR values were then compared to the corresponding catheter-based FFR values. A coronary stenosis was considered functionally significant for FFR values below 0.8. Results: The mean axial length and calcium score of the coronary stenoses were 47.9 mm and 1911.63 Agatston Units, respectively. Eight coronary arteries received stents from previous treatments. The CT-DAI derived FFR values (0.822 ± 0.143) showed an excellent linear correlation (R = 0.974) with and were indifferent from the invasive FFR values (0.826 ± 0.147, p = 0.537), resulting in 100% per-vessel and per-patient sensitivity and specificity for the detection of functionally significant coronary stenosis. Bland–Altman analysis revealed a minimal mean difference in FFR measurements (0.004) between the two modalities with the lower and upper limits of agreement at −0.061 and 0.069, respectively. Conclusions: The findings suggest that CT-DAI can derive FFR for the coronary arteries with heavy calcification and stents from dynamic myocardial CT perfusion images.
Aaron So, S. Nakamura, M. Takafuji et al.· Diagnostics· 0 citations
PURPOSE
To compare coronary artery calcium (CAC) scores from ultra-low-dose true non-contrast (TNC), virtual non-contrast (VNC), and virtual non-iodine (VNI) images with standard TNC on a dual-source photon-counting detector CT (PCD-CT).
METHODS
In this prospective single-center study (January 2025-March 2026), patients underwent standard TNC (sequential, 120 kVp), ultra-low-dose TNC (high-pitch helical, tin-filtered 100 kVp), and coronary CT angiography (CCTA); VNC and VNI images were generated from CCTA. CAC scores and burden categories were evaluated. Correlation and agreement with standard TNC were assessed using Pearson coefficients with Williams' test, Bland-Altman plots, and weighted Cohen's kappa.
RESULTS
Seventy-one patients (median age, 75 years; 52 men) were evaluated. Median dose-length product was 7.98, 71.8, and 428 mGy cm for ultra-low-dose TNC, standard TNC, and CCTA, respectively. Ultra-low-dose TNC showed the strongest correlation with standard TNC (r = 0.996), superior to VNI (r = 0.976, P < 0.001) and VNC (r = 0.900, P < 0.001). Agreement in CAC burden categorization was excellent for ultra-low-dose TNC (κ = 0.932) and good for VNI (κ = 0.827), whereas VNC showed moderate agreement (κ = 0.424). VNI had minimal bias (mean difference, -3.9) but wider limits of agreement than ultra-low-dose TNC (-356.5 to 348.6 vs. -163.2 to 105.9). VNC underestimated CAC scores (mean bias, -442.0).
CONCLUSION
Ultra-low-dose TNC with dual-source PCD-CT showed excellent agreement with standard TNC while reducing radiation by nearly 90%. VNI was acceptable but less robust, whereas VNC substantially underestimated CAC scores. Ultra-low-dose TNC is a reliable, dose-efficient alternative to standard TNC for CAC scoring.
S. Araki, S. Nakamura, M. Deguchi et al.· Journal of cardiovascular co...· 0 citations
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