Optimization of spectral photon-counting CT reconstruction parameters for improved detection of peritoneal metastases compared with energy-integrating detector dual-energy CT: a phantom study

Abstract Objective To determine the best combination of reconstruction parameters on a spectral photon-counting CT (SPCCT) system to improve detection of peritoneal metastases (PMs) on virtual monoenergetic images (VMIs) at 40 keV. Materials and methods A spectral phantom was scanned using SPCCT and dual-energy CT (EID-DECT) at 8.5 mGy (CTDI vol ). 40 keV VMIs were reconstructed on EID-DECT using a level 4 Spectral algorithm and kernel B. For SPCCT, two reconstruction kernels (STD-B and HRB) and four iDose 4 levels (i5/i7/i9/i11) were used. Noise power spectrum (NPS) and task-based transfer function (TTF) were analyzed. Detectability indices ( d ’) for non-mucinous and mucinous peritoneal metastases (nmPMs and mPMs) were calculated. Results Noise magnitude (-22.4 ± 0.8%) and noise texture ( f av ) values were lower (-21.3 ± 4.4%), but spatial resolution ( f 50 ) was higher (5.8 ± 3.4%) with STD-B than with HRB at all iDose 4 levels. For both simulated PMs, d ’ values were higher with STD-B than with HRB (22.3 ± 0.3%). Compared to EID-DECT, noise magnitude and d ’ values were similar or better with STD-B at i7/i9/i11 and i9/i11 for HRB. At all iDose 4 levels and with both kernels, f av or f 50 values were higher with SPCCT, except for f 50 at i11 with HRB. Conclusion Optimized reconstruction settings on SPCCT offer better image quality and lesion detectability on 40 keV VMIs than EID-DECT. Combining the STD-B kernel with level i9 achieved the best compromise between noise texture, spatial resolution, and detectability for simulated PMs. Key Points Question Can the performance of a spectral photon-counting CT (SPCCT) improve detection of peritoneal metastases (PM on 40 keV images compared with a conventional dual-energy CT (EID-DECT) system? Findings SPCCT with optimized reconstruction settings improved image noise, spatial resolution, and lesion detectability compared with EID-DECT at 40 keV. Relevance Statement SPCCT may enhance the preoperative assessment of colorectal cancer patients by better visualizing small or low-contrast peritoneal lesions. Validation in larger clinical cohorts is required to confirm these findings and define standardized reconstruction protocols.

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Journal
European Radiology Experimental
Published
2026-09-30
DOI
https://doi.org/10.1186/s41747-026-00816-w
Primary Topic
Advanced X-ray and CT Imaging
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article
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article

Optimization of spectral photon-counting CT reconstruction parameters for improved detection of peritoneal metastases compared with energy-integrating detector dual-energy CT: a phantom study

Maria Nicole Antonuccio, Pascal Rousset, Djamel Dabli, Joël Greffier et al.
European Radiology Experimental
Advanced X-ray and CT Imaging
article

Optimization of spectral photon-counting CT reconstruction parameters for improved detection of peritoneal metastases compared with energy-integrating detector dual-energy CT: a phantom study

Maria Nicole Antonuccio, Pascal Rousset, Djamel Dabli, Joël Greffier, Angèle Houmeau, Salim Si-Mohamed, Rémi Grange
article en

Abstract

Abstract Objective To determine the best combination of reconstruction parameters on a spectral photon-counting CT (SPCCT) system to improve detection of peritoneal metastases (PMs) on virtual monoenergetic images (VMIs) at 40 keV. Materials and methods A spectral phantom was scanned using SPCCT and dual-energy CT (EID-DECT) at 8.5 mGy (CTDI vol ). 40 keV VMIs were reconstructed on EID-DECT using a level 4 Spectral algorithm and kernel B. For SPCCT, two reconstruction kernels (STD-B and HRB) and four iDose 4 levels (i5/i7/i9/i11) were used. Noise power spectrum (NPS) and task-based transfer function (TTF) were analyzed. Detectability indices ( d ’) for non-mucinous and mucinous peritoneal metastases (nmPMs and mPMs) were calculated. Results Noise magnitude (-22.4 ± 0.8%) and noise texture ( f av ) values were lower (-21.3 ± 4.4%), but spatial resolution ( f 50 ) was higher (5.8 ± 3.4%) with STD-B than with HRB at all iDose 4 levels. For both simulated PMs, d ’ values were higher with STD-B than with HRB (22.3 ± 0.3%). Compared to EID-DECT, noise magnitude and d ’ values were similar or better with STD-B at i7/i9/i11 and i9/i11 for HRB. At all iDose 4 levels and with both kernels, f av or f 50 values were higher with SPCCT, except for f 50 at i11 with HRB. Conclusion Optimized reconstruction settings on SPCCT offer better image quality and lesion detectability on 40 keV VMIs than EID-DECT. Combining the STD-B kernel with level i9 achieved the best compromise between noise texture, spatial resolution, and detectability for simulated PMs. Key Points Question Can the performance of a spectral photon-counting CT (SPCCT) improve detection of peritoneal metastases (PM on 40 keV images compared with a conventional dual-energy CT (EID-DECT) system? Findings SPCCT with optimized reconstruction settings improved image noise, spatial resolution, and lesion detectability compared with EID-DECT at 40 keV. Relevance Statement SPCCT may enhance the preoperative assessment of colorectal cancer patients by better visualizing small or low-contrast peritoneal lesions. Validation in larger clinical cohorts is required to confirm these findings and define standardized reconstruction protocols.

European Radiology ExperimentalVol. 10(1)
Université Claude Bernard Lyon 1 (FR), Centre National de la Recherche Scientifique (FR), Inserm (FR), Hospices Civils de Lyon (FR), Hôpital Lyon Sud (FR), Hôpital Louis Pradel (FR), Centre Hospitalier Universitaire de Saint-Étienne (FR), Philips (France) (FR), Initial MAnagement and prevention of acute orGan failures IN critically ill patiEnts, Centre pour l'innovation en cancérologie de Lyon (FR), Institut National des Sciences Appliquées de Lyon (FR), Université de Nîmes (FR)
Affordable and clean energy
Openalex Percentile: Top 22%
Advanced X-ray and CT Imaging
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