Publication Beamlines Strategic Pillar
Olubamiji, Adeola D.; Izadifar, Zohreh; Zhu, Ning; Chang, Tuanjie; Chen, Xiongbiao et al. (2016). Using synchrotron radiation inline phase-contrast imaging computed tomography to visualize three-dimensional printed hybrid constructs for cartilage tissue engineering. Journal of Synchrotron Radiation 23(3) , 802-812. 10.1107/s1600577516002344. BMIT-ID Materials
Olubamiji; Adeola Deborah (2017). Development of 3D-Printed Cartilage Constructs and Their Non-Invasive Assessment by Synchrotron-Based Inline-Phase Contrast Imaging Computed Tomography. Supervisor: Chen, Daniel; Eames, Brian. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/7670. BMIT-ID Materials
Ning, Liqun; Zhu, Ning; Mohabatpour, Fatemeh; Sarker, M. D.; Schreyer, David J. et al. (2019). Bioprinting Schwann cell-laden scaffolds from low-viscosity hydrogel compositions. Journal of Materials Chemistry B 7(29) , 4538-4551. 10.1039/c9tb00669a. BMIT-ID Materials
Ning, Liqun; Sun, Haoying; Lelong, Tiphanie; Guilloteau, Romain; Zhu, Ning et al. (2018). 3D bioprinting of scaffolds with living Schwann cells for potential nerve tissue engineering applications. Biofabrication 10(3) , 035014. 10.1088/1758-5090/aacd30. BMIT-ID Materials
Naitao Li (2023). DEVELOPMENT OF MECHANICAL CHARACTERIZATION METHOD OF HYDROGEL SCAFFOLDS USING SYNCHROTRON PROPAGATIONBASED IMAGING. Supervisor: Chen, Daniel; Zhu, Ning. Saskatchewan, Canada: University of Saskatchewan. https://harvest.usask.ca/handle/10388/15178. BMIT-ID Materials
Mostafijur Rahman, K.M.; Mohtadi-Bonab, M.A.; Ouellet, Ryan; Szpunar, Jerzy; Zhu, Ning et al. (2019). Effect of electrochemical hydrogen charging on an API X70 pipeline steel with focus on characterization of inclusions. International Journal of Pressure Vessels and Piping 173, 147-155. 10.1016/j.ijpvp.2019.05.006. BMIT-ID Materials
Mollahosseini, Arash; Min Lee, Kyu; Abdelrasoul, Amira; Doan, Huu; Zhu, Ning et al. (2021). Innovative in situ investigations using synchrotron‐based micro tomography and molecular dynamics simulation for fouling assessment in ceramic membranes for dairy and food industry. International Journal of Applied Ceramic Technology 18(6) . 10.1111/ijac.13824. BMIT, BMIT-ID Materials
Miller, C Denise; Wysokinski, Tomasz W; Belev, George; Chapman, L Dean (2013). Human factors design for the BMIT biomedical beamlines. Journal of Physics: Conference Series 425(2) , 022005. 10.1088/1742-6596/425/2/022005. BMIT-BM, BMIT-ID Materials
Michael Ryan MacIver (2022). Composition and Structure in Flocculated Mineral Systems. Supervisor: Pawlik, Marek. British Columbia, Canada: The University of British Columbia. https://open.library.ubc.ca/soa/cIRcle/collections/ubctheses/24/items/1.0422474. BMIT-ID Materials
MacIver, Michael R.; Pawlik, Marek (2022). A floc structure perspective on sediment consolidation in thickened tailings. Chemical Engineering Science 263, 118095. 10.1016/j.ces.2022.118095. BMIT-ID Materials
MacIver, Michael R.; Hamza, Hassan; Pawlik, Marek (2021). Effect of suspension conductivity and fines concentration on coarse particle settling in oil sands tailings. Canadian Journal of Chemical Engineering 99(9) , 2024-2034. 10.1002/cjce.23935. BMIT-ID Materials
MacIver, Michael R.; Alizadeh, Hamid; Kuppusamy, Vinoth Kumar; Hamza, Hassan; Pawlik, Marek et al. (2022). The macro-structure of quartz flocs. Powder Technology 395, 255-266. 10.1016/j.powtec.2021.09.052. BMIT-ID Materials
Luo; Peng; Li; Sheng; Knorr et al. (2018). Underlying Mechanisms of Tight Reservoir Wettability and Its Alteration. In Proceedings - SPE Symposium on Improved Oil Recovery. . , 1-15 10.2118/190214-ms. BMIT-ID Materials
Lo, Calvin; Sano, Tomoko; Hogan, James D. (2020). Deformation mechanisms and evolution of mechanical properties in damaged advanced ceramics. Journal of the European Ceramic Society 40(8) , 3129-3139. 10.1016/j.jeurceramsoc.2020.02.058. BMIT-ID Materials
Li, Xiaoling; Zhang, Ke; Chang, Liping; Wang, Hui (2021). Review of researches on H2S splitting cycle for hydrogen production via low-temperature route. Chemical Engineering Science: X 11, 100107. 10.1016/j.cesx.2021.100107. BMIT-ID Materials