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Documents publiés en "2015"

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Nombre de documents: 6

Article de revue

Goyette, A., Pichette, J., Tremblay, M.-A., Laurence, A., Jermyn, M., Mok, K., Paulsen, K. D., Roberts, D. W., Petrecca, K., Wilson, B. C., & Leblond, F. (2015). Sub-diffuse interstitial optical tomography to improve the safety of brain needle biopsies: a proof-of-concept study. Optics Letters, 40(2), 170-173. Lien externe

Jermyn, M., Gosselin, Y., Valdes, P. A., Sibai, M., Kolste, K., Mercier, J., Angulo, L., Roberts, D. W., Paulsen, K. D., Petrecca, K., Daigle, O., Wilson, B. C., & Leblond, F. (2015). Improved sensitivity to fluorescence for cancer detection in wide-field image-guided neurosurgery. Biomedical Optics Express, 6(12), 5063-5074. Lien externe

Jermyn, M., Kolste, K., Pichette, J., Sheehy, G., Angulo-Rodriguez, L., Paulsen, K. D., Roberts, D. W., Wilson, B. C., Petrecca, K., & Leblond, F. (2015). Macroscopic-imaging technique for subsurface quantification of near-infrared markers during surgery. Journal of Biomedical Optics, 20(3). Lien externe

Kolste, K. K., Kanick, S. C., Valdés, P. A., Jermyn, M., Wilson, B. C., Roberts, D. W., Paulsen, K. D., & Leblond, F. (2015). Macroscopic optical imaging technique for wide-field estimation of fluorescence depth in optically turbid media for application in brain tumor surgical guidance. Journal of Biomedical Optics, 20(2), 026002 (8 pages). Lien externe

Valdés, P. A., Jacobs, V., Harris, B. T., Wilson, B. C., Leblond, F., Paulsen, K. D., & Roberts, D. W. (2015). Quantitative fluorescence using 5-aminolevulinic acid-induced protoporphyrin IX biomarker as a surgical adjunct in low-grade glioma surgery. Journal of Neurosurgery, 123(3), 771-780. Lien externe

Communication écrite

Sibai, M., Veilleux, I., Elliott, J. T., Leblond, F., Roberts, D. W., & Wilson, B. C. (février 2015). Quantitative fluorescence imaging enabled by spatial frequency domain optical-property mapping in the sub-diffusive regime for surgical guidance [Communication écrite]. SPIE Conference on Molecular-Guided Surgery: Molecules, Devices, and Applications, San Francisco, California. Lien externe

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