L.E. Masson, et al, “Dual Excitation Wavelength System for Combined Fingerprint and high wavenumber Raman spectroscopy,” Analyst, 143, 6049 (2018).
M. Pinto, et al., “Integration of a Raman spectroscopy system to a robotic-assisted surgical system for real-time tissue characterization during radical prostatectomy procedures,” Journal of Biomedical Optics 24(2), 025001 (2019).
J. Desroches, et al. “Development and first in‐human use of a Raman spectroscopy guidance system integrated with a brain biopsy needle.” Journal of biophotonics 12.3, e201800396 (2019).
J. Kiefer, “Dual-wavelength Raman fusion spectroscopy.” Analyticalchemistry 91, 1764 (2019).
W. He, et al., “High-frequency Raman analysis in biological tissuesusing dual wavelength excitation Raman spectroscopy,” Applied Spectroscopy,74(2), 241 (2020).
W. He, et al., “Water Probing in Dental Tissues Using Raman Spectroscopy.” Optical Tomography and Spectroscopy. OpticalSociety of America, (2020).
W. He, et al. “A pilot study on high wavenumber Raman analysis of human dental tissues.” Journal of Raman Spectroscopy 51, 630 (2020).
L.E. Masson, et al. “Combined fingerprint and high wavenumber spatially offset Raman spectroscopy for depth-resolved hydration and biochemical assessment.” European Conference on Biomedical Optics. Optical Society of America, (2021).
J. Haskell, et al. “High wavenumber Raman spectroscopy for intraoperative assessment of breast tumour margins.” Analyst148.18 4373-4385. (2023)