Accounting for reconstruction kernel-induced variability in CT radiomic features using noise power spectra

Muhammad Shafiq-Ul-Hassan, Geoffrey G. Zhang, Dylan C. Hunt, Kujtim Latifi, Ghanim Ullah, Robert J. Gillies, Eduardo G. Moros

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Large variability in computed tomography (CT) radiomics feature values due to CT imaging parameters can have subsequent implications on the prognostic or predictive significance of these features. Here, we investigated the impact of pitch, dose, and reconstruction kernel on CT radiomic features. Moreover, we introduced correction factors to reduce feature variability introduced by reconstruction kernels. The credence cartridge radiomics and American College of Radiology (ACR) phantoms were scanned on five different scanners. ACR phantom was used for 3-D noise power spectrum (NPS) measurements to quantify correlated noise. The coefficient of variation (COV) was used as the variability assessment metric. The variability in texture features due to different kernels was reduced by applying the NPS peak frequency and region of interest (ROI) maximum intensity as correction factors. Most texture features were dose independent but were strongly kernel dependent, which is demonstrated by a significant shift in NPS peak frequency among kernels. Percentage improvement in robustness was calculated for each feature from original and corrected %COV values. Percentage improvements in robustness of 19 features were in the range of 30% to 78% after corrections. We show that NPS peak frequency and ROI maximum intensity can be used as correction factors to reduce variability in CT texture feature values due to reconstruction kernels.

Original languageEnglish (US)
Article number011013
JournalJournal of Medical Imaging
Volume5
Issue number1
DOIs
StatePublished - Jan 1 2018
Externally publishedYes

Keywords

  • computed tomography
  • noise power spectrum
  • peak frequency
  • pitch
  • radiation dose
  • radiomics
  • reconstruction kernel

ASJC Scopus subject areas

  • Radiology Nuclear Medicine and imaging

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