Faculty profile
Michael CANVA
Back to facultyThis profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a Université de Sherbrooke directory, so their courses may be missing. Find their university profile.
Latest papers
Plasmonic Film with Diluted Nanostructures for Light Energy Harvesting and Sensing.
ACS applied optical materials · 2025 · senior author
Electrohydrodynamic Vortex Imaging: A New Tool for Understanding Mass Transfer in Surface-Based Biosensors.
Electrophoresis · 2025
Effects of Surface Topography and Cellular Biomechanics on Nanopillar-Induced Bactericidal Activity.
ACS applied materials & interfaces · 2024
Latest funding
- $25,000
Étude de faisabilité d'isolateur en optique intégrée
NSERC · 2017 · Principal investigator
- $324,000
QTPlasmonics - Next generation of plasmonic integrated label free biosensing including optical, electrical and thermal active controls and readouts
NSERC · 2016 · Principal investigator
14 publications.
Plasmonic Film with Diluted Nanostructures for Light Energy Harvesting and Sensing.
Vega M, Bryche JF, Moreau J, Canva M
Electrohydrodynamic Vortex Imaging: A New Tool for Understanding Mass Transfer in Surface-Based Biosensors.
Zimmer P, Andreiev O, Costella M, Laurenceau E, Bryche JF, Cloarec JP, Canva M, Frénéa-Robin M, Marchalot J
Effects of Surface Topography and Cellular Biomechanics on Nanopillar-Induced Bactericidal Activity.
Valiei A, Bryche JF, Canva M, Charette PG, Moraes C, Hill RJ, Tufenkji N
Surface micropatterning for the formation of an in vitro functional endothelial model for cell-based biosensors.
Khadir Z, Schmidt V, Chabot K, Bryche JF, Froehlich U, Moreau J, Canva M, Charette P, Grandbois M
Spatially-Localized Functionalization on Nanostructured Surfaces for Enhanced Plasmonic Sensing Efficacy.
Bryche JF, Vega M, Tempez A, Brulé T, Carlier T, Moreau J, Chaigneau M, Charette PG, Canva M
Hydrophilic Mechano-Bactericidal Nanopillars Require External Forces to Rapidly Kill Bacteria.
Valiei A, Lin N, Bryche JF, McKay G, Canva M, Charette PG, Nguyen D, Moraes C, Tufenkji N
Nanoplasmonics-enhanced label-free imaging of endothelial cell monolayer integrity.
Banville FA, Moreau J, Chabot K, Cattoni A, Fröhlich U, Bryche JF, Collin S, Charette PG, Grandbois M, Canva M
Early detection of bacteria using SPR imaging and event counting: experiments with Listeria monocytogenes and Listeria innocua.
Boulade M, Morlay A, Piat F, Roupioz Y, Livache T, Charette PG, Canva M, Leroy L
Dielectrophoretic cell trapping for improved surface plasmon resonance imaging sensing.
Costella M, Avenas Q, Frénéa-Robin M, Marchalot J, Bevilacqua P, Charette PG, Canva M
Performance improvement of plasmonic sensors using a combination of AC electrokinetic effects for (bio)target capture.
Avenas Q, Moreau J, Costella M, Maalaoui A, Souifi A, Charette P, Marchalot J, Frénéa-Robin M, Canva M
Étude de faisabilité d'isolateur en optique intégrée
Principal investigators: Canva, Michael
QTPlasmonics - Next generation of plasmonic integrated label free biosensing including optical, electrical and thermal active controls and readouts
Principal investigators: CANVA, Michael
Keywords: plasmonics; integration; nanostructuration; biosensing; instrumentation; numerical modeling; electro-optics; thermo-optics; molecular interaction characterization; diagnostic
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Christopher Moraes and Nathalie Tufenkji: 6 shared papers
- Dao Nguyen and Nathalie Tufenkji: 5 shared papers
- Dao Nguyen and Christopher Moraes: 3 shared papers
- Christopher Moraes and Michael CANVA: 2 shared papers
- Nathalie Tufenkji and Michael CANVA: 2 shared papers
- Paul Charette and Michael CANVA: 2 shared papers
- Dao Nguyen and Michael CANVA: 1 shared paper
- Génie électrique et génie informatique
- Chemical Engineering
- Chemical Engineering - McGill University
- Medicine
Co-authors at Université de Sherbrooke, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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