Cooper, David M.L.; Bewer, Brian; Wiebe, Sheldon; Wysokinski, Tomasz W.; Chapman, Dean et al. (2011). Diffraction Enhanced X-ray Imaging of the Distal Radius: A Novel Approach for Visualization of Trabecular Bone Architecture. Canadian Association of Radiologists Journal 62(4) , 251-255. 10.1016/j.carj.2010.04.015. |
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Cooper, David M. L.; Bewer, Brian; Wiebe, Sheldon; Belev, George; Wysokinski, Tomasz et al. (2011). Preliminary Bone Imaging on 05B1-1 Beamline at the Canadian Light Source: Exploration of Diffraction Enhanced Imaging. Synchrotron Radiation News 24(2) , 13-18. 10.1080/08940886.2011.567163. |
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Britz, Hayley M.; Carter, Yasmin; Jokihaara, Jarkko; Leppänen, Olli V.; Järvinen, Teppo L.N. et al. (2012). Prolonged unloading in growing rats reduces cortical osteocyte lacunar density and volume in the distal tibia. Bone 51(5) , 913-919. 10.1016/j.bone.2012.08.112. |
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Basnayaka, Upekha; Chapman, Dean; Adams, Gregg; Wysokinski, Tomasz; Belev, George et al. (2014). Diffraction-enhanced Synchrotron Imaging of Bovine Ovaries Ex Vivo. Journal of Medical Imaging and Radiation Sciences 45(3) , 307-315. 10.1016/j.jmir.2014.01.004. |
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Zhu, Zangen; Wahid, Khan; Babyn, Paul; Cooper, David; Pratt, Isaac et al. (2013). Improved Compressed Sensing-Based Algorithm for Sparse-View CT Image Reconstruction. Computational and Mathematical Methods in Medicine (discontinued) 2013, 1-15. 10.1155/2013/185750. |
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Zhu, Y; Samadi, N; Martinson, M; Bassey, B; Wei, Z et al. (2014). SpectralK-edge subtraction imaging. Physics in Medicine and Biology 59(10) , 2485-2503. 10.1088/0031-9155/59/10/2485. |
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Zhu, Ning; Chapman, Dean; Cooper, David; Schreyer, David J.; Chen, Xiongbiao et al. (2011). X-Ray Diffraction Enhanced Imaging as a Novel Method to Visualize Low-Density Scaffolds in Soft Tissue Engineering. Tissue Engineering - Part C: Methods 17(11) , 1071-1080. 10.1089/ten.tec.2011.0102. |
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Wiebe, S; Rhoades, G; Wei, Z; Rosenberg, A; Belev, G et al. (2013). Understanding refraction contrast using a comparison of absorption and refraction computed tomographic techniques. Journal of Instrumentation 8(05) , C05004-C05004. 10.1088/1748-0221/8/05/c05004. |
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Wei, Zhouping; Wiebe, Sheldon; Chapman, Dean (2013). Ring artifacts removal from synchrotron CT image slices. Journal of Instrumentation 8(06) , C06006-1 - C06006-12. 10.1088/1748-0221/8/06/c06006. |
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Webb, M A; Belev, G; Wysokinski, T W; Chapman, D (2013). Diffraction enhanced imaging computed tomography (DEI-CT) at the BMIT facility at the Canadian Light Source. Journal of Instrumentation 8(08) , C08002-1 - C08002-5. 10.1088/1748-0221/8/08/c08002. |
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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. |
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Tonchev, D.; Kostova, I.; Okada, G.; Pashova, T.; Belev, G. et al. (2014). Samarium Doped Borophosphate Glasses and Glass-Ceramics for X-ray Radiation Sensing. NATO Science for Peace and Security Series A: Chemistry and Biology , 347-358. 10.1007/978-94-017-9697-2_36. |
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P. Gopi, Varun; Palanisamy, P.; A. Wahid, Khan; Babyn, Paul; Cooper, David et al. (2013). Micro-CT image reconstruction based on alternating direction augmented Lagrangian method and total variation. Computerized Medical Imaging and Graphics 37(7-8) , 419-429. 10.1016/j.compmedimag.2013.08.006. |
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Okada, Go; Vahedi, Shahrzad; Morrell, Brian; Koughia, Cyril; Belev, George et al. (2013). Examination of the dynamic range of Sm-doped glasses for high-dose and high-resolution dosimetric applications in microbeam radiation therapy at the Canadian synchrotron. Optical Materials 35(11) , 1976-1980. 10.1016/j.optmat.2012.10.049. |
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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. |
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