معرفی
Michelle Croughan is a Research Fellow at the School of Physics and Astronomy, Monash University, where she conducts advanced research in x-ray imaging and biomedical physics. Her work integrates physics and physiology to study lung development and structural changes in disease models.
Her research focuses on developing and applying novel x-ray imaging techniques such as directional dark-field and phase-contrast imaging to study microstructural changes in biological tissues. She applies these methods to preclinical models of cystic fibrosis and neonatal lung conditions, particularly in understanding lung aeration and vascular development in newborns with diaphragmatic hernia.
Recent publications demonstrate a strong trend in combining computational image processing with synchrotron-based x-ray techniques to achieve high-resolution, quantitative insights into lung physiology and bone microstructure. Her work bridges physics, engineering, and medicine.
- Effect of prenatal diaphragmatic hernia on pulmonary arterial morphology (2025)
- Directional dark-field retrieval with single-grid x-ray imaging (2023)
- Fast implicit diffusive dark-field retrieval (2023)
- Sustained inflation improves lung aeration (2023)
- Accurate measures of regional lung air volumes (2022)
Michelle Croughan leads research projects funded by the Australian Institute of Nuclear Science and Engineering (AINSE), including an active grant on directional dark-field imaging of small animal bones and teeth in cystic fibrosis models. She previously led an International Synchrotron Access Grant. There is no public information on student supervision or formal advising roles.
She is part of a collaborative research network involving experts in medical physics and neonatal physiology, including Dr. Marcus Kitchen and other researchers at Monash University. Her work is conducted using advanced imaging facilities, likely including synchrotron sources, and focuses on translational preclinical applications.




