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Kelly M Schultz

Showing results (1-10 of 35) with videos related to

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Rheologica Acta|August 11, 2020
Characterizing the dynamic rheology in the pericellular region by human mesenchymal stem cell re-engineering in PEG-peptide hydrogel scaffoldsMaryam Daviran, Kelly M Schultz
Soft Matter|June 6, 2020
Microrheological characterization of covalent adaptable hydrogel degradation in response to temporal pH changes that mimic the gastrointestinal tractNan Wu, Kelly M Schultz
Soft Matter|July 9, 2019
Microrheological characterization of covalent adaptable hydrogels for applications in oral deliveryNan Wu, Kelly M Schultz
Biomacromolecules|September 13, 2021
Correlation of Bulk Degradation and Molecular Release from Enzymatically Degradable Polymeric HydrogelsNan Wu, Kelly M Schultz
Soft Matter|August 15, 2022
Measuring human mesenchymal stem cell remodeling in hydrogels with a step-change in elastic modulusJohn A McGlynn, Kelly M Schultz
Lab on a Chip|September 29, 2011
High-throughput rheology in a microfluidic deviceKelly M Schultz, Eric M Furst
Biomacromolecules|June 20, 2020
Determining How Human Mesenchymal Stem Cells Change Their Degradation Strategy in Response to Microenvironmental StiffnessMaryam Daviran, Jenna Catalano, Kelly M Schultz
ACS Biomaterials Science & Engineering|June 5, 2018
Role of Cell-Mediated Enzymatic Degradation and Cytoskeletal Tension on Dynamic Changes in the Rheology of the Pericellular Region Prior to Human Mesenchymal Stem Cell MotilityMaryam Daviran, Hugo S Caram, Kelly M Schultz
Soft Matter|July 12, 2016
Quantifying the dynamic transition of hydrogenated castor oil gels measured via multiple particle tracking microrheologyMatthew D Wehrman, Seth Lindberg, Kelly M Schultz
Frontiers in Chemistry|May 29, 2019
Structural Changes in Polymeric Gel Scaffolds Around the Overlap ConcentrationHan Zhang, Matthew D Wehrman, Kelly M Schultz
Pageof 4

Showing results (1-10 of 35) with videos related to

Sort By:
Pageof 4
Rheologica Acta|August 11, 2020
Characterizing the dynamic rheology in the pericellular region by human mesenchymal stem cell re-engineering in PEG-peptide hydrogel scaffoldsMaryam Daviran, Kelly M Schultz
Soft Matter|June 6, 2020
Microrheological characterization of covalent adaptable hydrogel degradation in response to temporal pH changes that mimic the gastrointestinal tractNan Wu, Kelly M Schultz
Soft Matter|July 9, 2019
Microrheological characterization of covalent adaptable hydrogels for applications in oral deliveryNan Wu, Kelly M Schultz
Biomacromolecules|September 13, 2021
Correlation of Bulk Degradation and Molecular Release from Enzymatically Degradable Polymeric HydrogelsNan Wu, Kelly M Schultz
Soft Matter|August 15, 2022
Measuring human mesenchymal stem cell remodeling in hydrogels with a step-change in elastic modulusJohn A McGlynn, Kelly M Schultz
Lab on a Chip|September 29, 2011
High-throughput rheology in a microfluidic deviceKelly M Schultz, Eric M Furst
Biomacromolecules|June 20, 2020
Determining How Human Mesenchymal Stem Cells Change Their Degradation Strategy in Response to Microenvironmental StiffnessMaryam Daviran, Jenna Catalano, Kelly M Schultz
ACS Biomaterials Science & Engineering|June 5, 2018
Role of Cell-Mediated Enzymatic Degradation and Cytoskeletal Tension on Dynamic Changes in the Rheology of the Pericellular Region Prior to Human Mesenchymal Stem Cell MotilityMaryam Daviran, Hugo S Caram, Kelly M Schultz
Soft Matter|July 12, 2016
Quantifying the dynamic transition of hydrogenated castor oil gels measured via multiple particle tracking microrheologyMatthew D Wehrman, Seth Lindberg, Kelly M Schultz
Frontiers in Chemistry|May 29, 2019
Structural Changes in Polymeric Gel Scaffolds Around the Overlap ConcentrationHan Zhang, Matthew D Wehrman, Kelly M Schultz
Pageof 4