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Documents dont l'auteur est "Sibai, Mira"

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Nombre de documents: 6

Article de revue

Sibai, M., Wirth, D. J., Leblond, F., Roberts, D. W., Paulsen, K. D., & Wilson, B. C. (2019). Quantitative subsurface spatial frequency-domain fluorescence imaging for enhanced glioma resection. Journal of Biophotonics, 12(5), 6 pages. Lien externe

Sibai, M., Fisher, C., Veilleux, I., Elliott, J. T., Leblond, F., Roberts, D. W., & Wilson, B. C. (2017). Preclinical evaluation of spatial frequency domain-enabled wide-field quantitative imaging for enhanced glioma resection. Journal of Biomedical Optics, 22(7), 10 pages. 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

Sibai, M., Veilleux, I., Elliott, J. T., Leblond, F., & Wilson, B. C. (2015). Quantitative spatial frequency fluorescence imaging in the sub-diffusive domain for image-guided glioma resection. Biomedical Optics Express, 6(12), 4923-4933. Lien externe

Communication écrite

Madsen, S. J., Yang, V. X. D., Jansen, E. D., Luo, Q., Mohanty, S. K., Thakor, N. V., Angulo-Rodríguez, L. M., Laurence, A., Jermyn, M., Sheehy, G., Sibai, M., Petrecca, K., Roberts, D. W., Paulsen, K. D., Wilson, B. C., & Leblond, F. (février 2016). An intraoperative spectroscopic imaging system for quantification of protoporphyrin IX during glioma surgery [Communication écrite]. Clinical and Translational Neurophotonics, part of Photonics West 2016, San Francisco, California, United States. Lien externe

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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