Propagation-based phase-contrast imaging of the breast: image quality and the effect of X-ray energy and radiation dose

Author:

Gunaseelan Indusaa1ORCID,Amin Zadeh Alaleh23,Arhatari Benedicta4,Maksimenko Anton4,Hall Christopher4,Hausermann Daniel4,Kumar Beena5,Fox Jane6,Quiney Harry7,Lockie Darren8,Lewis Sarah1,Brennan Patrick1,Gureyev Timur7,Tavakoli Taba Seyedamir1

Affiliation:

1. Discipline of Medical Imaging Sciences, Faculty of Medicine and Health, The University of Sydney, NSW, Camperdown, Australia

2. School of Physics, Australian National University, ACT, Canberra, Australia

3. The University of Sydney, Camperdown, New South Wales, Australia

4. Australian Synchrotron, Australian National Science and Technology Organisation, Clayton, VIC, Australia

5. Monash Health Pathology Monash Health, Clayton, VIC, Australia

6. Faculty of Medicine, Nursing and Health Sciences, Monash University, Clayton, VIC, Australia

7. School of Physics, The University of Melbourne, Parkville, VIC, Australia

8. Maroondah BreastScreen, Eastern Health, Ringwood, VIC, Australia

Abstract

Objectives: Propagation-based phase-contrast computed tomography (PB-CT) is a new imaging technique that exploits refractive and absorption properties of X-rays to enhance soft tissue contrast and improve image quality. This study compares image quality of PB-CT and absorption-based CT (AB-CT) for breast imaging while exploring X-ray energy and radiation dose. Methods: Thirty-nine mastectomy samples were scanned at energy levels of 28-34keV using a flat panel detector at radiation dose levels of 4mGy and 2mGy. Image quality was assessed using signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR), spatial resolution (res) and visibility (vis). Statistical analysis was performed to compare PB-CT images against their corresponding AB-CT images scanned at 32keV and 4mGy. Results: The PB-CT images at 4mGy, across nearly all energy levels, demonstrated superior image quality than AB-CT images at the same dose. At some energy levels, the 2mGy PB-CT images also showed better image quality in terms of CNR/Res and vis compared to the 4mGy AB-CT images. At both investigated doses, SNR and SNR/res were found to have a statistically significant difference across all energy levels. The difference in vis was statistically significant at some energy levels. Conclusion: This study demonstrates superior image quality of PB-CT over AB-CT, with X-ray energy playing a crucial role in determining image quality parameters. Advances in knowledge: Our findings reveal that standard dose PB-CT outperforms standard dose AB-CT across all image quality metrics. Additionally, we demonstrate that low dose PB-CT can produce superior images compared to standard dose AB-CT in terms of CNR/Res and vis.

Publisher

Oxford University Press (OUP)

Subject

Radiology, Nuclear Medicine and imaging,General Medicine

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