activity
20242026
collaborators

5 papers

physics.med-ph2026

Low-dose, high-resolution CT of infant-sized lungs via propagation-based phase contrast

James A. Pollock, Kaye Morgan, Linda C. P. Croton +7

Many lung diseases require detailed visualisation for accurate diagnosis and treatment. High-resolution computed tomography (CT) is the gold-standard technique for non-invasive lun…

physics.med-ph2026

3DMPR -- A robust morphological approach for applying phase retrieval in proximity to highly-attenuating objects in CT

J. A. Pollock, L. C. P. Croton, K. S. Morgan +5

X-ray imaging is a fast, precise and non-invasive method of imaging which, when combined with computed tomography, provides detailed 3D rendering of samples. Incorporating propagat…

physics.med-ph2025

High-energy X-ray phase-contrast CT of an adult human chest phantom

Jannis N. Ahlers, Lorenzo D'Amico, Henriette Bast +15

Propagation-based phase-contrast X-ray imaging is a promising technique for in~vivo medical imaging, offering lower radiation doses than traditional attenuation-based imaging. Prev…

physics.optics2024

Single-exposure X-ray dark-field imaging via a dual-energy propagation-based setup

Jannis N. Ahlers, Konstantin M. Pavlov, Marcus J. Kitchen +10

X-ray dark-field imaging visualises scattering from sample microstructure, and has found application in medical and security contexts. While most X-ray dark-field imaging technique…

physics.med-ph2024

In vivo 4D x-ray dark-field lung imaging in mice

Ying Ying How, Nicole Reyne, Michelle K. Croughan +14

X-ray dark-field imaging is well-suited to visualizing the health of the lungs because the alveoli create a strong dark-field signal. However, time-resolved and tomographic (i.e.,…