Abbonarsi

Abdominal image quality and dose reduction with energy-integrating or photon-counting detectors dual-source CT: A phantom study - 28/09/24

Doi : 10.1016/j.diii.2024.05.002 
Joël Greffier a, 1, ⁎ , Djamel Dabli a, 1, Sebastian Faby b, Maxime Pastor a, Cédric Croisille b, Fabien de Oliveira a, Julien Erath b, Jean Paul Beregi a
a IMAGINE UR UM 103, Montpellier University, Department of Medical Imaging, Nîmes University Hospital, 30900 Nîmes, France 
b Department of Computed Tomography, Siemens Healthineers AG, 91301 Forchheim, Germany 

⁎Corresponding author.

Benvenuto su EM|consulte, il riferimento dei professionisti della salute.
Articolo gratuito.

Si connetta per beneficiarne

Highlights

•
Photon-counting CT decreases image noise and improves detectability of simulated abdominal lesions of an anthropomorphic phantom by comparison with dual-source CT.
•
Image quality obtained with photon-counting CT indicates greater potential for dose optimization by comparison with dual-source CT.
•
Abdominal images obtained with photon-counting CT are rated satisfactory for clinical use by the radiologists for all dose levels.

Il testo completo di questo articolo è disponibile in PDF.

Abstract

Purpose

The purpose of this study was to assess image-quality and dose reduction potential using a photon-counting computed tomography (PCCT) system by comparison with two different dual-source CT (DSCT) systems using two phantoms.

Materials and methods

Acquisitions on phantoms were performed using two DSCT systems (DSCT1 [Somatom Force] and DSCT2 [Somatom Pro.Pulse]) and one PCCT system (Naeotom Alpha) at four dose levels (13/6/3.4/1.8 mGy). Noise power spectrum (NPS) and task-based transfer function (TTF) were computed to assess noise magnitude and noise texture and spatial resolution (f50), respectively. Detectability indexes (d’) were computed to model the detection of abdominal lesions: one unenhanced high-contrast task, one contrast-enhanced high-contrast task and one unenhanced low-contrast task. Image quality was subjectively assessed on an anthropomorphic phantom by two radiologists.

Results

For all dose levels, noise magnitude values were lower with PCCT than with DSCTs. For all CT systems, similar noise texture values were found at 13 and 6 mGy, but the greatest noise texture values were found for DSCT2 and the lowest for PCCT at 3.4 and 1.8 mGy. For high-contrast inserts, similar or lower f50 values were found with PCCT than with DSCT1 and the opposite pattern was found for the low-contrast insert. For the three simulated lesions, d’ values were greater with PCCT than with DSCTs. Abdominal images were rated satisfactory for clinical use by the radiologists for all dose levels with PCCT and for 13 and 6 mGy with DSCTs.

Conclusion

By comparison with DSCTs, PCCT reduces image-noise and improves detectability of simulated abdominal lesions without altering the spatial resolution and image texture. Image-quality obtained with PCCT seem to indicate greater potential for dose optimization than those obtained with DSCTs.

Il testo completo di questo articolo è disponibile in PDF.

Keywords : Abdomen, Iterative reconstruction, Multidetector computed tomography, Photon counting CT, Task-based image quality assessment

Abbreviations : CT, CTDIvol, d', DSCT, EID, FOV, HU, NPS, PCCT, PCD, ROI, TTF


Mappa


© 2024  Société française de radiologie. Pubblicato da Elsevier Masson SAS. Tutti i diritti riservati.
Aggiungere alla mia biblioteca Togliere dalla mia biblioteca Stampare
Esportazione

    Citazioni Export

  • File

  • Contenuto

Vol 105 - N° 10

P. 379-385 - ottobre 2024 Ritorno al numero
Articolo precedente Articolo precedente
  • Radiation dose reduction and image quality improvement with ultra-high resolution temporal bone CT using deep learning-based reconstruction: An anatomical study
  • Fatma Boubaker, Ulysse Puel, Michael Eliezer, Gabriela Hossu, Bouchra Assabah, Karim Haioun, Alain Blum, Pedro Augusto Gondim-Teixeira, Cécile Parietti-Winkler, Romain Gillet
| Articolo seguente Articolo seguente
  • Apparent diffusion coefficient analysis of solid tissue helps distinguish borderline from invasive malignant adnexal masses rated O-RADS MRI 4
  • Rimeh Bourourou, Stephanie Nougaret, Andrea Rockall, Marc Bazot, Leo Razakamanantsoa, Isabelle Thomassin-Naggara, EURAD Study Group

Benvenuto su EM|consulte, il riferimento dei professionisti della salute.

@@150455@@ Voir plus

Il mio account


Dichiarazione CNIL

EM-CONSULTE.COM è registrato presso la CNIL, dichiarazione n. 1286925.

Ai sensi della legge n. 78-17 del 6 gennaio 1978 sull'informatica, sui file e sulle libertà, Lei puo' esercitare i diritti di opposizione (art.26 della legge), di accesso (art.34 a 38 Legge), e di rettifica (art.36 della legge) per i dati che La riguardano. Lei puo' cosi chiedere che siano rettificati, compeltati, chiariti, aggiornati o cancellati i suoi dati personali inesati, incompleti, equivoci, obsoleti o la cui raccolta o di uso o di conservazione sono vietati.
Le informazioni relative ai visitatori del nostro sito, compresa la loro identità, sono confidenziali.
Il responsabile del sito si impegna sull'onore a rispettare le condizioni legali di confidenzialità applicabili in Francia e a non divulgare tali informazioni a terzi.


Tutto il contenuto di questo sito: Copyright © 2026 Elsevier, i suoi licenziatari e contributori. Tutti i diritti sono riservati. Inclusi diritti per estrazione di testo e di dati, addestramento dell’intelligenza artificiale, e tecnologie simili. Per tutto il contenuto ‘open access’ sono applicati i termini della licenza Creative Commons.