Blake R. Klyen
PhD Candidate at Univ of Western Australia
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Blake R. Klyen is a PhD candidate Optical+Biomedical Engineering Laboratory (OBEL) at The University of Western Australia. Blake received his Bachelor of Science (Physiology/Neuroscience) in 2003 and his Bachelor of Engineering (Electrical & Electronic) in 2005 from The University of Western Australia. His research project involves the investigation of optical coherence tomography (OCT) for the assessment of muscle pathology. This work is a collaborative effort with researchers from the School of Anatomy and Human Biology at UWA, to develop new tools for small-animal imaging, specifically to deepen basic research into the human disease Duchenne muscular dystrophy and its treatment. Blake's work has involved the engineering design of a diagnostic imaging system, animal handling, small-animal imaging studies, and development of analysis methods to validating this new technique.
Publications (4)

Proceedings Article | 26 April 2016 Presentation
Proceedings Volume 9703, 97030M (2016) https://doi.org/10.1117/12.2218719
KEYWORDS: Tissues, Optical coherence tomography, Tissue optics, Birefringence, Tumors, In vivo imaging, Signal attenuation, Cancer, Microscopy, Medical imaging

SPIE Journal Paper | 1 July 2011 Open Access
Blake Klyen, David Sampson, Thea Shavlakadze, Hannah Radley-Crabb, Miranda Grounds
JBO, Vol. 16, Issue 07, 076013, (July 2011) https://doi.org/10.1117/12.10.1117/1.3598842
KEYWORDS: Optical coherence tomography, Tissue optics, Tissues, Mouse models, Connective tissue, 3D modeling, In vivo imaging, Optical fibers, Luminescence, Imaging systems

Proceedings Article | 30 December 2008 Paper
R. McLaughlin, L. Scolaro, B. Klyen, S. Hamza, P. Robbins, C. Saunders, D. Sampson
Proceedings Volume 7139, 71390K (2008) https://doi.org/10.1117/12.815182
KEYWORDS: Lymphatic system, Optical coherence tomography, Tissues, Blood vessels, Cancer, Breast cancer, Gold, Breast, Biopsy, 3D image processing

SPIE Journal Paper | 1 January 2008 Open Access
Blake Klyen, Julian Armstrong, Steven Adie, Hannah Radley, Miranda Grounds, David Sampson
JBO, Vol. 13, Issue 01, 011003, (January 2008) https://doi.org/10.1117/12.10.1117/1.2870170
KEYWORDS: Optical coherence tomography, Tissues, Inflammation, Tissue optics, In vivo imaging, Pathology, 3D image processing, Optical fibers, 3D modeling, Computer engineering

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