Royal College of Surgeons in Ireland
Browse

A comparative analysis of preclinical computed tomography radiomics using cone-beam and micro-computed tomography scanners

Download (3.08 MB)
journal contribution
posted on 2024-10-15, 11:17 authored by Kathryn H. Brown, Brianna N. Kerr, Mihaela Pettigrew, Kate Connor, Ian S. Miller, Liam ShielsLiam Shiels, Colum ConnollyColum Connolly, Conor K. McGarry, Annette ByrneAnnette Byrne, Karl T. Butterworth

Background and purpose: Radiomics analysis extracts quantitative data (features) from medical images. These features could potentially reflect biological characteristics and act as imaging biomarkers within precision medicine. However, there is a lack of cross-comparison and validation of radiomics outputs which is paramount for clinical implementation. In this study, we compared radiomics outputs across two computed tomography (CT)-based preclinical scanners. 

Materials and methods: Cone beam CT (CBCT) and µCT scans were acquired using different preclinical CT imaging platforms. The reproducibility of radiomics features on each scanner was assessed using a phantom across imaging energies (40 & 60 kVp) and segmentation volumes (44–238 mm3). Retrospective mouse scans were used to compare feature reliability across varying tissue densities (lung, heart, bone), scanners and after voxel size harmonisation. Reliable features had an intraclass correlation coefficient (ICC) > 0.8. 

Results: First order and GLCM features were the most reliable on both scanners across different volumes. There was an inverse relationship between tissue density and feature reliability, with the highest number of features in lung (CBCT=580, µCT=734) and lowest in bone (CBCT=110, µCT=560). Comparable features for lung and heart tissues increased when voxel sizes were harmonised. We have identified tissue-specific preclinical radiomics signatures in mice for the lung (133), heart (35), and bone (15). 

Conclusions: Preclinical CBCT and µCT scans can be used for radiomics analysis to support the development of meaningful radiomics signatures. This study demonstrates the importance of standardisation and emphasises the need for multi-centre studies.

Funding

Training Fellowship from the National Centre for the Replacement Reduction and Refinement of Animal in Research (NC3Rs,NC/V002295/1)

Higher Education Authority North-South Research Programme 2021 RadCOL

Science Foundation Ireland (SFI) and the European Regional Development Fund (ERDF) (18/RI/5759 & 13/RC/2073)

History

Comments

The original article is available at https://www.phiro.science/

Published Citation

Brown KH, et al. A comparative analysis of preclinical computed tomography radiomics using cone-beam and micro-computed tomography scanners. Physics and Imaging in Radiation Oncology. 2024;31:100615.

Publication Date

23 July 2024

PubMed ID

39157293

Department/Unit

  • Centre for Systems Medicine
  • Physiology and Medical Physics

Research Area

  • Cancer

Publisher

Elsevier BV

Version

  • Published Version (Version of Record)