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Christina M Tringides

Showing results (1-10 of 22) with videos related to

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Advanced Materials (Deerfield Beach, Fla.)|October 30, 2021
Materials for Implantable Surface Electrode Arrays: Current Status and Future DirectionsChristina M Tringides, David J Mooney
Macromolecular Bioscience|April 5, 2023
Conductive Hydrogel Scaffolds for the 3D Localization and Orientation of FibroblastsChristina M Tringides, David J Mooney
Oxford Open Materials Science|January 22, 2024
Metal-based porous hydrogels for highly conductive biomaterial scaffoldsChristina M Tringides, Marjolaine Boulingre, David J Mooney
Advanced Healthcare Materials|December 10, 2022
Tunable Conductive Hydrogel Scaffolds for Neural Cell DifferentiationChristina M Tringides, Marjolaine Boulingre, Andrew Khalil, et al.
Biosensors & Bioelectronics|April 11, 2025
An in vitro platform for characterizing axonal electrophysiology of individual human iPSC-derived nociceptorsBlandine F Clément, Lorenzo Petrella, Lea Wallimann, et al.
Advanced Materials (Deerfield Beach, Fla.)|December 23, 2024
PEDOTs-Based Conductive Hydrogels: Design, Fabrications, and ApplicationsHai Li, Jie Cao, Rongtai Wan, et al.
Journal of Materials Chemistry. B|September 19, 2024
Photopatterning of conductive hydrogels which exhibit tissue-like propertiesLéo Sifringer, Lina De Windt, Stéphane Bernhard, et al.
Lab on a Chip|April 19, 2022
Actuated 3D microgels for single cell mechanobiologyBerna Özkale, Junzhe Lou, Ece Özelçi, et al.
Lab on a Chip|August 17, 2022
Correction: Actuated 3D microgels for single cell mechanobiologyBerna Özkale, Junzhe Lou, Ece Özelçi, et al.
Nature Biotechnology|January 20, 2015
Multifunctional fibers for simultaneous optical, electrical and chemical interrogation of neural circuits in vivoAndres Canales, Xiaoting Jia, Ulrich P Froriep, et al.
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Advanced Materials (Deerfield Beach, Fla.)|October 30, 2021
Materials for Implantable Surface Electrode Arrays: Current Status and Future DirectionsChristina M Tringides, David J Mooney
Macromolecular Bioscience|April 5, 2023
Conductive Hydrogel Scaffolds for the 3D Localization and Orientation of FibroblastsChristina M Tringides, David J Mooney
Oxford Open Materials Science|January 22, 2024
Metal-based porous hydrogels for highly conductive biomaterial scaffoldsChristina M Tringides, Marjolaine Boulingre, David J Mooney
Advanced Healthcare Materials|December 10, 2022
Tunable Conductive Hydrogel Scaffolds for Neural Cell DifferentiationChristina M Tringides, Marjolaine Boulingre, Andrew Khalil, et al.
Biosensors & Bioelectronics|April 11, 2025
An in vitro platform for characterizing axonal electrophysiology of individual human iPSC-derived nociceptorsBlandine F Clément, Lorenzo Petrella, Lea Wallimann, et al.
Advanced Materials (Deerfield Beach, Fla.)|December 23, 2024
PEDOTs-Based Conductive Hydrogels: Design, Fabrications, and ApplicationsHai Li, Jie Cao, Rongtai Wan, et al.
Journal of Materials Chemistry. B|September 19, 2024
Photopatterning of conductive hydrogels which exhibit tissue-like propertiesLéo Sifringer, Lina De Windt, Stéphane Bernhard, et al.
Lab on a Chip|April 19, 2022
Actuated 3D microgels for single cell mechanobiologyBerna Özkale, Junzhe Lou, Ece Özelçi, et al.
Lab on a Chip|August 17, 2022
Correction: Actuated 3D microgels for single cell mechanobiologyBerna Özkale, Junzhe Lou, Ece Özelçi, et al.
Nature Biotechnology|January 20, 2015
Multifunctional fibers for simultaneous optical, electrical and chemical interrogation of neural circuits in vivoAndres Canales, Xiaoting Jia, Ulrich P Froriep, et al.
Pageof 3