Publication Beamlines Strategic Pillar
Bree; Michael; Miller; Denise; Kerr et al. (2016). Alignment and position visualization methods for the biomedical imaging and therapy (BMIT) MRT lift. In AIP Conference Proceeding. . , 030023-1 – 030023-4 10.1063/1.4952846. BMIT-ID Materials
Chen, Haoxiu; Patel, Sagar; Vlasea, Mihaela; Zou, Yu (2022). Enhanced tensile ductility of an additively manufactured AlSi10Mg alloy by reducing the density of melt pool boundaries. Scripta Materialia 221, 114954. 10.1016/j.scriptamat.2022.114954. BMIT-ID Materials
Chicilo, F; Hanson, A L; Geisler, F H; Belev, G; Edgar, A et al. (2020). Dose profiles and x-ray energy optimization for microbeam radiation therapy by high-dose, high resolution dosimetry using Sm-doped fluoroaluminate glass plates and Monte Carlo transport simulation. Physics in Medicine and Biology 65(7) , 075010. 10.1088/1361-6560/ab7361. BMIT-ID Materials
Chicilo, F; Okada, G; Belev, G; Chapman, D; Edgar, A et al. (2019). Instrumentation for high-dose, high-resolution dosimetry for microbeam radiation therapy using samarium-doped fluoroaluminate and fluorophosphate glass plates. Measurement Science and Technology 31(1) , 015201-1 - 015201-13. 10.1088/1361-6501/ab404e. BMIT-ID Materials
Christopher Dydula (2021). Development of x-ray coherent scatter projection imaging systems. Supervisor: Johns, Paul C.. Ontario, Canada: Carleton University. https://doi.org/10.22215/etd/2021-14418. BMIT-ID Materials
Dydula, Christopher; Belev, George; Johns, Paul C. (2019). Development and assessment of a multi-beam continuous-phantom-motion x-ray scatter projection imaging system. Review of Scientific Instruments 90(3) , 035104-1 - 035104-13. 10.1063/1.5043393. BMIT-ID Materials
Dydula; Christopher; Belev; George; Johns et al. (2017). Accelerated x-ray scatter projection imaging using multiple continuously moving pencil beams. In Progress in Biomedical Optics and Imaging - Proceedings of SPIE. . , 101324J 10.1117/12.2253720. BMIT-ID Materials
Dydula, Christopher; Johns, Paul C. (2021). Development and assessment of an x-ray tube-based multi-beam x-ray scatter projection imaging system. Review of Scientific Instruments 92(11) , 115106. 10.1063/5.0055900. BMIT-ID Materials
Eifert, László; Bevilacqua, Nico; Köble, Kerstin; Fahy, Kieran; Xiao, Liusheng et al. (2020). Synchrotron X‐ray Radiography and Tomography of Vanadium Redox Flow Batteries—Cell Design, Electrolyte Flow Geometry, and Gas Bubble Formation. ChemSusChem 13(12) , 3154 –3165. 10.1002/cssc.202000541. BMIT-ID Materials
Faragó, Tomáš; Gasilov, Sergey; Emslie, Iain; Zuber, Marcus; Helfen, Lukas et al. (2022). Tofu: a fast, versatile and user-friendly image processing toolkit for computed tomography. Journal of Synchrotron Radiation 29(3) , 916-927. 10.1107/s160057752200282x. BMIT-BM, BMIT-ID Materials
Gauthier, Roby; Luscombe, Aidan; Bond, Toby; Bauer, Michael; Johnson, Michel et al. (2022). How do Depth of Discharge, C-rate and Calendar Age Affect Capacity Retention, Impedance Growth, the Electrodes, and the Electrolyte in Li-Ion Cells?. Journal of the Electrochemical Society 169(2) , 020518. 10.1149/1945-7111/ac4b82. BMIT-ID Materials
Keith; Jay D. (2017). Realization of a Canine Positioning Device for in Situ Prostate Phase Contrast - Computed Tomography Imaging. Supervisor: Pettitt, Murray; Snead, Elisabeth. Saskatchewan, Canada: University of Saskatchewan. https://ecommons.usask.ca/handle/10388/7846. BMIT-BM, BMIT-ID Materials
Keonhag Lee (2020). Investigating Oxygen and Liquid Water Transport in Porous Transport Layers of Polymer Electrolyte Membrane Electrolyzers. Supervisor: Bazylak, Aimy. Ontario, Canada: University of Toronto. https://tspace.library.utoronto.ca/handle/1807/103292. BMIT-ID Materials
Kevin Krause (2021). Characterizing Unstable Operation in Flow Cells for CO2 Electroreduction. Supervisor: Bazylak, Aimy. Ontario, Canada: University of Toronto. https://tspace.library.utoronto.ca/handle/1807/104877. BMIT-ID Materials
Köble, Kerstin; Eifert, László; Bevilacqua, Nico; Fahy, Kieran F.; Bazylak, Aimy et al. (2021). Synchrotron X-Ray radiography of vanadium redox flow batteries – Time and spatial resolved electrolyte flow in porous carbon electrodes. Journal of Power Sources 492, 229660. 10.1016/j.jpowsour.2021.229660. BMIT-ID Materials