Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Émile Rioux"'
Publikováno v:
Frontiers in Physics, Vol 7 (2019)
Although cell volume is a critical cell parameter and acute changes of its regulation mechanisms can reveal pathophysiological states, its accurate measurement remains difficult. On the other hand, custom-made devices are now possible through the app
Externí odkaz:
https://doaj.org/article/990474f596c541c2b4e1090a7c6082ef
Autor:
Erik Bélanger, Gabrielle Jess, Mohamed Haouat, Céline Larivière-Loiselle, Émile Rioux-Péllerin, Marie-Ève Crochetière, Jean-Xavier Giroux, Pierre Marquet
Publikováno v:
Label-free Biomedical Imaging and Sensing (LBIS) 2022.
Autor:
Carine Ben Adiba, Frédéric Becq, Pierre Marquet, Erik Bélanger, Émile Rioux-Pellerin, Pascal Jourdain
Publikováno v:
Optics express. 30(1)
We present a low-cost, 3D-printed, and biocompatible fluidic device, engineered to produce laminar and homogeneous flow over a large field-of-view. Such a fluidic device allows us to perform multiplexed temporal monitoring of cell cultures compatible
Autor:
Marie-Ève Crochetière, Jean-Xavier Giroux, Pierre Marquet, Émile Rioux, Corentin Soubeiran, Erik Bélanger
Publikováno v:
Microfluidics, BioMEMS, and Medical Microsystems XIX.
Publikováno v:
Quantitative Phase Imaging VII.
Quantitative Phase Signal (QPS) stems from the difference between the refractive indices of the observed specimen and that of its surrounding environment (ne). Therefore, any change in ne will drastically affect the QPS. We have developed an original
Publikováno v:
2020 Photonics North (PN).
Absolute cell volume and mean cellular refractive index are measured with a two-liquid decoupling procedure using digital holographic microscopy and characterized fluidic devices
Autor:
Marie-Ève Crochetière, Émile Rioux-Pellerin, Sara Mattar, Pierre Marquet, Chloé Martel, Jean-Xavier Giroux, Céline Larivière-Loiselle, Erik Bélanger
Publikováno v:
Biophotonics Congress: Biomedical Optics 2020 (Translational, Microscopy, OCT, OTS, BRAIN).
We demonstrate the measurement of whole-cell biophysical parameters with quantitative-phase digital holographic microscopy and flow assays. For different cell types, whole-cell mechanical properties and refractive index, mean cell thickness and absol
Autor:
Jean-Xavier Giroux, Marie-Ève Crochetière, Chloé Martel, Sara Mattar, Céline Larivière-Loiselle, Erik Bélanger, Pierre Marquet, Pierre Beausoleil, Émile Rioux-Pellerin
Publikováno v:
Imaging and Applied Optics Congress.
We demonstrate label-free cell phenotyping by measuring various biophysical parameters with a multimodal imaging system based on quantitative-phase digital holographic microscopy. Different developments allowing the monitoring, in various paradigms,
Autor:
Émile Rioux-Pélerin, Bertrand de-Dorlodot, Pierre Marquet, Sébastien A. Lévesque, Erik Bélanger
Publikováno v:
Optical Methods for Inspection, Characterization, and Imaging of Biomaterials IV.
Quantitative Phase Imaging (QPI) has recently emerged as a powerful new imaging modality to non-invasively visualize transparent specimens, including living cells in culture. Among different QPI techniques, Quantitative Phase Digital Holographic Micr
Autor:
Pauline Lavergne, Sébastien A. Lévesque, Erik Bélanger, Pierre Marquet, Philippe Bilodeau, Bertrand de Dorlodot, Émile Rioux-Pellerin
Publikováno v:
Digital Holography and Three-Dimensional Imaging 2019.
We demonstrate the measurement of whole-cell biophysical parameters with quantitative-phase digital holographic microscopy. For different cell types, whole-cell mechanical properties and refractive index, mean cell thickness and absolute cell volume