Publication Beamlines Strategic Pillar
Belev, George; Wysokinski, Tomasz W.; Chapman, Dean; Mullin, Curtis; McKibben, Mike et al. (2011). Set of measurements for alignment of beamline components. Nuclear Instruments and Methods in Physics Research. Section A: Accelerators. Spectrometers. Detectors and Associated Equipment 649(1) , 225-227. 10.1016/j.nima.2010.11.084. BMIT-BM Materials
Okada, Go; Ueda, Jumpei; Tanabe, Setsuhisa; Belev, George; Wysokinski, Tomasz et al. (2014). Samarium-Doped Oxyfluoride Glass-Ceramic as a New Fast Erasable Dosimetric Detector Material for Microbeam Radiation Cancer Therapy Applications at the Canadian Synchrotron. Journal of the American Ceramic Society 97(7) , 2147-2153. 10.1111/jace.12938. BMIT-BM Materials
Vahedi, Shahrzad; Okada, Go; Morrell, Brian; Muzar, Edward; Koughia, Cyril et al. (2012). X-ray induced Sm3+ to Sm2+ conversion in fluorophosphate and fluoroaluminate glasses for the monitoring of high-doses in microbeam radiation therapy. Journal of Applied Physics 112(7) , 073108. 10.1063/1.4754564. BMIT-BM Materials
Martinson, Mercedes; Samadi, Nazanin; Belev, George; Bassey, Bassey; Lewis, Rob et al. (2014). Development of a bent Laue beam-expanding double-crystal monochromator for biomedical X-ray imaging. Journal of Synchrotron Radiation 21(3) , 479-483. 10.1107/s1600577514003014. BMIT-BM Materials
Landheer, Karl; Johns, Paul C. (2012). Synchrotron-based coherent scatter x-ray projection imaging using an array of monoenergetic pencil beams. Review of Scientific Instruments 83(9) , 095114. 10.1063/1.4754124. BMIT-BM Materials
Wysokinski, Tomasz W.; Chapman, Dean; Adams, Gregg; Renier, Michel; Suortti, Pekka et al. (2015). Beamlines of the biomedical imaging and therapy facility at the Canadian light source – part 3. Nuclear Instruments and Methods in Physics Research. Section A: Accelerators. Spectrometers. Detectors and Associated Equipment 775, 1-4. 10.1016/j.nima.2014.11.088. BMIT-BM, BMIT-ID Health
Wysokinski, Tomasz W.; Chapman, Dean; Adams, Gregg; Renier, Michel; Suortti, Pekka et al. (2007). Beamlines of the biomedical imaging and therapy facility at the Canadian light source—Part 1. Nuclear Instruments and Methods in Physics Research. Section A: Accelerators. Spectrometers. Detectors and Associated Equipment 582(1) , 73-76. 10.1016/j.nima.2007.08.087. BMIT-BM, BMIT-ID Health
Wiebe, Sheldon; Wysokinski, Tomasz W.; Belev, George; Miller, Denise; Webb, Adam et al. (2015). Biomedical Imaging Using Synchrotron Radiation: Experience at the Biomedical Imaging and Therapy (BMIT) Facility at the Canadian Light Source. Synchrotron Radiation News 28(5) , 16-23. 10.1080/08940886.2015.1080065. BMIT-BM, BMIT-ID Materials
Asai, J.; Hirayama, H. (2011). Dose estimates for an insertion device beamline with a tapered absorber at the Canadian Light Source. Radiation Measurements 46(4) , 418-424. 10.1016/j.radmeas.2011.02.021. BMIT-ID Materials
Asai, Juhachi; Wysokinski, Tomasz W.; Chapman, Dean; Mullin, Curtis (2011). Radiation shielding study against gas bremsstrahlung for the BMIT POE3 at the Canadian light source. Radiation Physics and Chemistry 80(6) , 716-722. 10.1016/j.radphyschem.2011.02.026. BMIT-ID Materials
Asai, Juhachi; Wysokinski, Tomasz W.; Smith, Sheldon; Chapman, Dean (2008). Radiological considerations for POE-1 photon shutters, collimators and beam stops of the Biomedical Imaging and Therapy beamline at the Canadian Light Source. Nuclear Instruments and Methods in Physics Research. Section A: Accelerators. Spectrometers. Detectors and Associated Equipment 585(1-2) , 1-11. 10.1016/j.nima.2007.10.049. BMIT-BM, BMIT-ID Materials
Bassey, Bassey; Abueidda, Abdallah; Cubbon, Grant; Street, Darin; Sabbir Ahmed, Asm et al. (2014). Supplemental shielding of BMIT SOE-1 at the Canadian Light Source. Radiation Physics and Chemistry 100, 8-12. 10.1016/j.radphyschem.2014.02.023. BMIT-ID Materials
Dogan Paktunc, Michael C. Moncur, S. Jean Birks, John J. Gibson, Yi Yi (2015). Predicting the mobilization of dissolved metals, organics and gas Predicting the mobilization of dissolved metals, organics and gas Predicting the mobilization of dissolved metals, organics and gas Predicting the mobilization of dissolved metals, organics. Canada: Integrated Water Management, Alberta Innovates – Technology Futures, CANMET Mining and Mineral Scie . http://www.geoconvention.com/archives/2015/258_GC2015_Predicting_the_mobilization_of_dissolved_metals.pdf. CLS-APS
Muehe, E. Marie; Obst, Martin; Hitchcock, Adam; Tyliszczak, Tolek; Behrens, Sebastian et al. (2013). Fate of Cd during Microbial Fe(III) Mineral Reduction by a Novel and Cd-TolerantGeobacterSpecies. Environmental Science and Technology 47(24) , 14099-14109. 10.1021/es403365w. CLS-APS, SM
Marbella, Lauren E.; Chevrier, Daniel M.; Tancini, Peter D.; Shobayo, Olabobola; Smith, Ashley M. et al. (2015). Description and Role of Bimetallic Prenucleation Species in the Formation of Small Nanoparticle Alloys. Journal of the American Chemical Society 137(50) , 15852-15858. 10.1021/jacs.5b10124. CLS-APS