|
10:00 |
ST 5.1 |
Simulation of grating-based X-ray phase contrast tomography — •Klaus Achterhold, Julia Herzen, and Franz Pfeiffer
|
|
|
|
10:15 |
ST 5.2 |
Development of a compact gantry for quantitative phase-contrast CT applications — •Arne Tapfer, Martin Bech, Bart Pauwels, Peter Bruyndonckx, Xuan Liu, Alexander Sasov, Johannes Kenntner, Marco Walter, Joachim Schulz, and Franz Pfeiffer
|
|
|
|
10:30 |
ST 5.3 |
Direct signal-to-noise comparison of radiographic attenuation- and differential phase-contrast X-ray images — •Dieter Hahn, Pierre Thibault, Martin Bech, and Franz Pfeiffer
|
|
|
|
10:45 |
ST 5.4 |
High-resolution x-ray differential phase-contrast imaging with 2D grating structures — •Marco Stockmar, Martin Bech, Guillaume Potdevin, Simone Schleede, Michael Chabior, Irene Zanette, and Franz Pfeiffer
|
|
|
|
11:00 |
ST 5.5 |
Performance optimization of an X-ray grating interferometer for biomedical imaging — •Marian Willner, Dieter Hahn, Johannes Kenntner, Arne Tapfer, Martin Bech, Martin Dierolf, Pierre Thibault, Julia Herzen, Klaus Achterhold, Jürgen Mohr, and Franz Pfeiffer
|
|
|
|
11:15 |
ST 5.6 |
Tumour visualisation in human soft tissue using grating-based X-ray phase contrast imaging — •Julia Herzen, Marian Willner, Simone Schleede, Martin Bech, Arne Tapfer, Marco Stockmar, Klaus Achterhold, and Franz Pfeiffer
|
|
|
|
11:30 |
ST 5.7 |
Phase-contrast imaging with Compact Light Source based on inverse Compton X-rays — •Simone Schleede, Martin Bech, Klaus Achterhold, Guillaume Potdevin, Ronald Ruth, Jeff Rifkin, Rod Loewen, Marco Walter, and Franz Pfeiffer
|
|
|