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Allen, C. N., Ortner, G., Dion, C., Poole, P. J., Barrios, P., Lapointe, J., Pakulski, G., Render, W., Fafard, S., & Raymond, S. (2006). External-Cavity Quantum-Dot Laser Tunable Through 1.55 μm. Applied Physics Letters, 88(11). Lien externe
Harhira, A., Lapointe, J., & Kashyap, R. (juin 2011). A Simple Bend Sensor based on multimode interference and a Twin Core Fiber Mach-Zehnder Interferometer [Communication écrite]. Conference on Optical Sensors, Toronto, Ontario. Lien externe
Harhira, A., Lapointe, J., & Kashyap, R. (septembre 2010). High sensitivity inline fiber Mach-Zehnder interferometer bend sensor using a twin core fiber [Communication écrite]. 4th European Workshop on Optical Fibre Sensors, Porto, Portugal. Lien externe
Lapointe, J., Harhira, A., Durette, J.-F., Beaulieu, S., Shaat, A., Boulos, P. R., & Kashyap, R. (janvier 2011). An ocular prosthesis which reacts to light [Communication écrite]. Ophthalmic Technologies XXI, San Francisco, CA, United states. Lien externe
Lapointe, J., Durette, J. F., Harhira, A., Shaat, A., Boulos, P. R., & Kashyap, R. (2010). A 'living' prosthetic iris. Eye, 24(11), 1716-1723. Lien externe
Lapointe, J., & Martel, S. (août 2010). Poly(N-isopropylacrylamide) beads synthesis with nanoparticles embedded for the implementation of shrinkable medical microrobots for biomedical applications [Communication écrite]. 32nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC 2010), Buenos Aires, Argentina. Lien externe
Lapointe, J., & Martel, S. (septembre 2009). Thermoresponsive hydrogel with embedded magnetic nanoparticles for the implementation of shrinkable medical microrobots and for targeting and drug delivery applications [Communication écrite]. 31st Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC 2009), Minneapolis, Minnesota. Lien externe
Ortner, G., Allen, C. N., Dion, C., Barrios, P., Poitras, D., Dalacu, D., Pakulski, G., Lapointe, J., Poole, P. J., Render, W., & Raymond, S. (2006). External Cavity InAs/InP Quantum Dot Laser With a Tuning Range of 166 Nm. Applied Physics Letters, 88(12). Lien externe