Feasibility study of propagation-based phase-contrast X-ray lung imaging on the Imaging and Medical beamline at the Australian Synchrotron

J Synchrotron Radiat. 2014 Mar;21(Pt 2):430-45. doi: 10.1107/S1600577513034681. Epub 2014 Jan 30.

Abstract

Propagation-based phase-contrast X-ray imaging (PB-PCXI) using synchrotron radiation has achieved high-resolution imaging of the lungs of small animals both in real time and in vivo. Current studies are applying such imaging techniques to lung disease models to aid in diagnosis and treatment development. At the Australian Synchrotron, the Imaging and Medical beamline (IMBL) is well equipped for PB-PCXI, combining high flux and coherence with a beam size sufficient to image large animals, such as sheep, due to a wiggler source and source-to-sample distances of over 137 m. This study aimed to measure the capabilities of PB-PCXI on IMBL for imaging small animal lungs to study lung disease. The feasibility of combining this technique with computed tomography for three-dimensional imaging and X-ray velocimetry for studies of airflow and non-invasive lung function testing was also investigated. Detailed analysis of the role of the effective source size and sample-to-detector distance on lung image contrast was undertaken as well as phase retrieval for sample volume analysis. Results showed that PB-PCXI of lung phantoms and mouse lungs produced high-contrast images, with successful computed tomography and velocimetry also being carried out, suggesting that live animal lung imaging will also be feasible at the IMBL.

Keywords: Australian Synchrotron; X-ray; computed tomography; lung; medical imaging; phase contrast; propagation-based; velocimetry.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Air
  • Algorithms
  • Animals
  • Feasibility Studies
  • Glass
  • Image Processing, Computer-Assisted
  • Imaging, Three-Dimensional
  • Lung / diagnostic imaging*
  • Mice
  • Microspheres
  • Phantoms, Imaging
  • Rheology / methods
  • Sepharose
  • Synchrotrons*
  • Tomography, X-Ray Computed / methods

Substances

  • Sepharose