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Antoine Ramier

Showing results (1-10 of 12) with videos related to

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Optics Express|June 30, 2019
Measuring mechanical wave speed, dispersion, and viscoelastic modulus of the cornea using optical coherence elastographyAntoine Ramier, Behrouz Tavakol, Seok-Hyun Yun
Journal of the Mechanics and Physics of Solids|October 13, 2023
Supershear surface waves reveal prestress and anisotropy of soft materialsGuo-Yang Li, Xu Feng, Antoine Ramier, et al.
Hearing Research|August 25, 2020
Optical coherence tomographic measurements of the sound-induced motion of the ossicular chain in chinchillas: Additional modes of ossicular motion enhance the mechanical response of the chinchilla middle ear at higher frequenciesJohn J Rosowski, Antoine Ramier, Jeffrey Tao Cheng, et al.
Environmental Science & Technology|May 15, 2026
Joint Estimation of the Global Facility-Scale Oil-Gas Methane Emission Rate Distribution and Survey-Mode Detection Probabilities from Multiple Satellite SystemsDylan Jervis, Jean-Philippe W MacLean, Jason McKeever, et al.
Acta Biomaterialia|April 26, 2022
In vivo stiffness measurement of epidermis, dermis, and hypodermis using broadband Rayleigh-wave optical coherence elastographyXu Feng, Guo-Yang Li, Antoine Ramier, et al.
Biomedical Optics Express|November 22, 2018
Mapping the phase and amplitude of ossicular chain motion using sound-synchronous optical coherence vibrographyAntoine Ramier, Jeffrey Tao Cheng, Michael E Ravicz, et al.
Scientific Reports|October 16, 2020
In vivo measurement of shear modulus of the human cornea using optical coherence elastographyAntoine Ramier, Amira M Eltony, YiTong Chen, et al.
Optics Express|February 3, 2016
Shear Brillouin light scattering microscopeMoonseok Kim, Sebastien Besner, Antoine Ramier, et al.
Biomedical Optics Express|September 30, 2015
Observation of sound-induced corneal vibrational modes by optical coherence tomographyB Imran Akca, Ernest W Chang, Sabine Kling, et al.
Biomedical Optics Express|May 6, 2022
Ultrahigh resolution spectral-domain optical coherence tomography using the 1000-1600 nm spectral bandLiane Bernstein, Antoine Ramier, Jiamin Wu, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Optics Express|June 30, 2019
Measuring mechanical wave speed, dispersion, and viscoelastic modulus of the cornea using optical coherence elastographyAntoine Ramier, Behrouz Tavakol, Seok-Hyun Yun
Journal of the Mechanics and Physics of Solids|October 13, 2023
Supershear surface waves reveal prestress and anisotropy of soft materialsGuo-Yang Li, Xu Feng, Antoine Ramier, et al.
Hearing Research|August 25, 2020
Optical coherence tomographic measurements of the sound-induced motion of the ossicular chain in chinchillas: Additional modes of ossicular motion enhance the mechanical response of the chinchilla middle ear at higher frequenciesJohn J Rosowski, Antoine Ramier, Jeffrey Tao Cheng, et al.
Environmental Science & Technology|May 15, 2026
Joint Estimation of the Global Facility-Scale Oil-Gas Methane Emission Rate Distribution and Survey-Mode Detection Probabilities from Multiple Satellite SystemsDylan Jervis, Jean-Philippe W MacLean, Jason McKeever, et al.
Acta Biomaterialia|April 26, 2022
In vivo stiffness measurement of epidermis, dermis, and hypodermis using broadband Rayleigh-wave optical coherence elastographyXu Feng, Guo-Yang Li, Antoine Ramier, et al.
Biomedical Optics Express|November 22, 2018
Mapping the phase and amplitude of ossicular chain motion using sound-synchronous optical coherence vibrographyAntoine Ramier, Jeffrey Tao Cheng, Michael E Ravicz, et al.
Scientific Reports|October 16, 2020
In vivo measurement of shear modulus of the human cornea using optical coherence elastographyAntoine Ramier, Amira M Eltony, YiTong Chen, et al.
Optics Express|February 3, 2016
Shear Brillouin light scattering microscopeMoonseok Kim, Sebastien Besner, Antoine Ramier, et al.
Biomedical Optics Express|September 30, 2015
Observation of sound-induced corneal vibrational modes by optical coherence tomographyB Imran Akca, Ernest W Chang, Sabine Kling, et al.
Biomedical Optics Express|May 6, 2022
Ultrahigh resolution spectral-domain optical coherence tomography using the 1000-1600 nm spectral bandLiane Bernstein, Antoine Ramier, Jiamin Wu, et al.
Pageof 2