Photon-counting CT: image quality evaluation in patients with tibial plateau fracture treated with metallic osteosynthesis material.

Photon-counting CT: image quality evaluation in patients with tibial plateau fracture treated with metallic osteosynthesis material.

Björkman, Ann-Sofi; Malusek, Alexandr; Persson, Anders; Gauffin, Håkan; Koskinen, Seppo K
european radiology experimental 2026 Vol. 10
7
ann-sofi2026photoncounting

Abstract

The aim was to compare the image quality of photon-counting detector CT (PCD-CT) and energy-integrating detector CT (EID-CT) in patients with tibial plateau fractures treated with metallic osteosynthesis material, and to identify optimal reconstruction parameters for PCD-CT. After ethical approval, twelve patients underwent PCD-CT and EID-CT scans. Images were reconstructed using bone and soft-tissue kernels with metal artifact reduction (iMAR). PCD-CT virtual monoenergetic images (VMI) at 70, 110, and 150 keV were generated. Five radiologists assessed metal artifact severity and bone and soft-tissue visualization using a 7-point Likert scale. Visual grading characteristics analysis was performed. Noise levels were quantified and compared using Wilcoxon's signed-rank test. EID-CT was rated superior in reducing metal-artifact streaks (AUC: 0.10-0.21). No significant difference was found between EID-CT iMAR and PCD-CT VMI at 110 keV and 150 keV (AUC: 0.40-0.49) concerning the metal-bone interface. An ultra-high-resolution PCD-CT kernel outperformed its EID-CT counterpart in bone visualization, with AUC values of 0.67-0.92 across all bone criteria, including those incorporating artifact-affected regions. PCD-CT showed lower noise. Metal artifact reduction was superior in EID-CT iMAR images compared to PCD-CT iMAR and VMI 110/150 keV, except at the metal-bone interface, where EID-CT iMAR images and PCD-CT VMI 110/150 keV performed comparably. The ultra-high-resolution PCD-CT kernel provided the best bone visualization, even when artifact-affected areas were included. Noise levels were lower in PCD-CT. This is the first in vivo comparison of photon-counting and energy-integrating CT for postoperative knee imaging with metallic osteosynthesis material. These findings highlight the need for improved metal artifact reduction in PCD‑CT, while demonstrating superior bone visualization, and support a complementary interpretation strategy in postoperative knees using high‑energy VMI and MAR‑corrected reconstructions. Photon-counting CT demonstrated excellent bone visualization. Conventional EID-CT achieved better metal artifact reduction than photon-counting CT. The metal-bone interface was rated similarly for energy-integrating CT and photon-counting CT virtual monoenergetic images. These findings indicate that further improvements in metal artifact reduction algorithms for PCD-CT are warranted.

Citation

ID: 284739
Ref Key: ann-sofi2026photoncounting
Use this key to autocite in SciMatic or Thesis Manager

References

Blockchain Verification

Account:
NFT Contract Address:
0x95644003c57E6F55A65596E3D9Eac6813e3566dA
Article ID:
284739
Unique Identifier:
10.1186/s41747-026-00761-8
Network:
Scimatic Chain (ID: 481)
Loading...
Blockchain Readiness Checklist
Authors
Abstract
Journal Name
Year
Title
5/5
Creates 1,000,000 NFT tokens for this article
Token Features:
  • ERC-1155 Standard NFT
  • 1 Million Supply per Article
  • Transferable via MetaMask
  • Permanent Blockchain Record
Blockchain QR Code
Scan with Saymatik Web3.0 Wallet

Saymatik Web3.0 Wallet