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Sébastien G Ricoult

Showing results (1-10 of 8) with videos related to

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Frontiers in Bioengineering and Biotechnology|April 15, 2015
Substrate-bound protein gradients to study haptotaxisSébastien G Ricoult, Timothy E Kennedy, David Juncker
Lab on a Chip|October 9, 2012
Microfluidic probes for use in life sciences and medicineMohammad A Qasaimeh, Sébastien G Ricoult, David Juncker
Plos One|September 6, 2014
Ordered, random, monotonic and non-monotonic digital nanodot gradientsGrant Ongo, Sébastien G Ricoult, Timothy E Kennedy, et al.
The Analyst|April 22, 2017
Microcontact printing with aminosilanes: creating biomolecule micro- and nanoarrays for multiplexed microfluidic bioassaysShivani Sathish, Sébastien G Ricoult, Kazumi Toda-Peters, et al.
Journal of Neuroscience Methods|May 8, 2012
Generation of microisland cultures using microcontact printing to pattern protein substratesSébastien G Ricoult, Jennifer S Goldman, David Stellwagen, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|September 16, 2014
Humidified microcontact printing of proteins: universal patterning of proteins on both low and high energy surfacesSébastien G Ricoult, Amir Sanati Nezhad, Michaela Knapp-Mohammady, et al.
Biomaterials|October 23, 2013
Tuning cell-surface affinity to direct cell specific responses to patterned proteinsSébastien G Ricoult, Greta Thompson-Steckel, James P Correia, et al.
Small (Weinheim an Der Bergstrasse, Germany)|April 23, 2013
Large dynamic range digital nanodot gradients of biomolecules made by low-cost nanocontact printing for cell haptotaxisSébastien G Ricoult, Mateu Pla-Roca, Roozbeh Safavieh, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Frontiers in Bioengineering and Biotechnology|April 15, 2015
Substrate-bound protein gradients to study haptotaxisSébastien G Ricoult, Timothy E Kennedy, David Juncker
Lab on a Chip|October 9, 2012
Microfluidic probes for use in life sciences and medicineMohammad A Qasaimeh, Sébastien G Ricoult, David Juncker
Plos One|September 6, 2014
Ordered, random, monotonic and non-monotonic digital nanodot gradientsGrant Ongo, Sébastien G Ricoult, Timothy E Kennedy, et al.
The Analyst|April 22, 2017
Microcontact printing with aminosilanes: creating biomolecule micro- and nanoarrays for multiplexed microfluidic bioassaysShivani Sathish, Sébastien G Ricoult, Kazumi Toda-Peters, et al.
Journal of Neuroscience Methods|May 8, 2012
Generation of microisland cultures using microcontact printing to pattern protein substratesSébastien G Ricoult, Jennifer S Goldman, David Stellwagen, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|September 16, 2014
Humidified microcontact printing of proteins: universal patterning of proteins on both low and high energy surfacesSébastien G Ricoult, Amir Sanati Nezhad, Michaela Knapp-Mohammady, et al.
Biomaterials|October 23, 2013
Tuning cell-surface affinity to direct cell specific responses to patterned proteinsSébastien G Ricoult, Greta Thompson-Steckel, James P Correia, et al.
Small (Weinheim an Der Bergstrasse, Germany)|April 23, 2013
Large dynamic range digital nanodot gradients of biomolecules made by low-cost nanocontact printing for cell haptotaxisSébastien G Ricoult, Mateu Pla-Roca, Roozbeh Safavieh, et al.
Pageof 1