Publication Beamlines Strategic Pillar
Danielle Anderson (2015). Dosimetry and Biological Studies for Microbeam Radiation Therapy at the Canadian Light Source. Supervisor: Warkentin, Brad; Siegbahn, Albert; Fallone, B. Gino. Alberta, Canada: University of Alberta. https://era.library.ualberta.ca/items/0cd81ac3-c9c2-4dbb-a3b4-69d61138ef47. BMIT-BM Materials
Izadifar; Mohammad (2016). DEVELOPMENT OF NANOPARTICLE RATE-MODULATING AND SYNCHROTRON PHASE CONTRAST-BASED ASSESSMENT TECHNIQUES FOR CARDIAC TISSUE ENGINEERING. Supervisor: Chen, Daniel; Kelly, Michael E.. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/7485. BMIT-BM Materials
Izadifar; Zahra (2017). VISUALIZATION OF ULTRASOUND INDUCED CAVITATION BUBBLES USING SYNCHROTRON ANALYZER BASED IMAGING. Supervisor: Chapman, Dean; Babyn, Paul. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/7667. BMIT-BM Materials
Izadifar; Zohreh (2016). DEVELOPMENT OF HYBRID-CONSTRUCT BIOPRINTING AND SYNCHROTRON-BASED NON-INVASIVE ASSESSMENT TECHNIQUES FOR CARTILAGE TISSUE ENGINEERING. Supervisor: Chen, Daniel; Chapman, Dean. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/ETD-2015-12-2355. BMIT-BM Materials
James T. Hinebaugh (2015). Pore Network Modeling and Synchrotron Imaging of Liquid Water in the Gas Diffusion Layer of Polymer Electrolyte Membrane Fuel Cells. Supervisor: Bazylak, Aimy. Ontario, Canada: University of Toronto. http://hdl.handle.net/1807/69274. BMIT-BM Materials
Lee; Jongmin (2017). X-ray Investigations of Liquid Water Transport in Polymer Electrolyte Membrane Fuel Cell Gas Diffusion Layers. Supervisor: Bazylak, Aimy. Ontario, Canada: University of Toronto. http://hdl.handle.net/1807/80981. BMIT-BM Materials
Martinson; Mercedes (2017). Bent Laue X-ray Beam Expander. Supervisor: Chapman, Dean; Babyn, Paul. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/7739. BMIT-BM Materials
Nahshon Bawolin (2016). MODELLING AND IN VIVO MONITORING OF THE TIME DEPENDENT MECHANICAL PROPERTIES OF TISSUE ENGINEERING SCAFFOLDS. Supervisor: Chen, Daniel; Zhang, Chris. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/ETD-2015-11-2488. BMIT-BM Materials
Okada; Go (2015). Development of a Large-Dose, High-Resolution Dosimetry Technique for Microbeam RadiationTherapy using Samarium-Doped Glasses and Glass-Ceramics. Supervisor: Kasap, Safa. Saskatchewan, Canada: University of Saskatchewan. https://harvest.usask.ca/handle/10388/ETD-2014-09-1686. BMIT-BM Materials
Vahedi; Shahrzad (2015). Optical and thermal properties of samarium-doped fluorophosphate and fluoroaluminate glasses for high-dose, high-resolution dosimetry applications. Supervisor: Kasap, Safa; Chapman, Dean. Saskatchewan, Canada: University of Saskatchewan. https://harvest.usask.ca/handle/10388/ETD-2014-10-1780. BMIT-BM Materials
Zhu; Ning (2012). Development and in vitro characterization of three dimensional biodegradable scaffolds for peripheral nerve tissue engineering. Supervisor: Chen, Daniel; Chapman, Dean. Saskatchewan, Canada: University of Saskatchewan. https://ecommons.usask.ca/handle/10388/ETD-2012-05-465. BMIT-BM Materials
Zhu; Ying (2012). Bent laue crystals in biomedical x-ray imaging application. Supervisor: Chapman, Dean L.; Nichol, Helen. Saskatchewan, Canada: University of Saskatchewan. https://ecommons.usask.ca/handle/10388/ETD-2012-11-768. BMIT-BM, HXMA Materials
Lisa L. Van Loon; Chithra Karunakaran; Shanshan Huo; Jeffrey N. Cutler; Simon Potter et al. (2013). Developing a Micro- and Nanoscale Understanding of Natural Fiber Biocomposite Products. In International SAMPE technical conference series. SAMPE. 9781934551158. BMIT-BM, CMCF-BM, MID-IR, SGM, SM, VESPERS Agriculture
Aulakh, Gurpreet K.; Kuebler, Wolfgang M.; Singh, Baljit; Chapman, Dean (2017). Visualization of Rib and Diaphragm Motion in an Anaesthetized Mouse by Live Animal Synchrotron Imaging. IEEE. 10.1109/nssmic.2017.8533101. BMIT-BM Health
Bairagi, S.; Belev, G.; Chapman, D.; Cooper, D.; Dust, W. et al. (2015). Is phase-contrast computed tomography more sensitive than magnetic resonance imaging in quantifying cartilage damage in osteoarthritis?. Osteoarthritis and Cartilage 23, A258. 10.1016/j.joca.2015.02.469. BMIT-BM Health