Search research articles
Contact Us
Filters
Showing results (1-10 of 9) with videos related to
Page
of 1
Sort By:
Matrix Biology Plus
|
January 27, 2025
Dynamically changing extracellular matrix stiffness drives Schwann cell phenotype
Alyssa Montgomery, Jennifer Westphal, Andrew E Bryan, et al.
ACS Biomaterials Science & Engineering
|
October 1, 2025
3D-Printed Stent-Like Polymeric Structures with Tunable Mechanical Properties and Ionic Conductivity for Reinforced Nerve Guidance Conduits
Isteaque Ahmed, Andrew E Bryan, Shihab M Bhuiyan, et al.
European Journal of Cell Biology
|
October 20, 2022
The impact of physical, biochemical, and electrical signaling on Schwann cell plasticity
Corinne S Smith, Jacob A Orkwis, Andrew E Bryan, et al.
Military Medicine
|
November 10, 2023
Ultrasound-Activated Piezoelectric Polyvinylidene Fluoride-Trifluoroethylene Scaffolds for Tissue Engineering Applications
Andrew E Bryan, Maksym Krutko, Jennifer Westphal, et al.
Biomimetics (Basel, Switzerland)
|
January 26, 2024
Innervation of an Ultrasound-Mediated PVDF-TrFE Scaffold for Skin-Tissue Engineering
Jennifer A Westphal, Andrew E Bryan, Maksym Krutko, et al.
Biomaterials Science
|
September 2, 2025
Development of a bioactive, piezoelectric PVDF-TrFE scaffold with evaluation of tissue reaction for potential in nerve repair
Andrew E Bryan, Maksym Krutko, Sandra Rebholz, et al.
Biomaterials Advances
|
August 22, 2022
Mechanical stimulation of a bioactive, functionalized PVDF-TrFE scaffold provides electrical signaling for nerve repair applications
Jacob A Orkwis, Ann K Wolf, Zachary J Mularczyk, et al.
Biorxiv : the Preprint Server for Biology
|
September 4, 2024
Enhanced Piezoelectric Performance of PVDF-TrFE Nanofibers through Annealing for Tissue Engineering Applications
Maksym Krutko, Holly M Poling, Andrew E Bryan, et al.
Advanced Materials Technologies
|
August 29, 2025
Thermal Annealing Enhances Piezoelectricity and Regenerative Potential of PVDF-TrFE Nanofiber Scaffolds
Maksym Krutko, Holly M Poling, Maulee Sheth, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 9) with videos related to
Sort By:
Page
of 1
Matrix Biology Plus
|
January 27, 2025
Dynamically changing extracellular matrix stiffness drives Schwann cell phenotype
Alyssa Montgomery, Jennifer Westphal, Andrew E Bryan, et al.
ACS Biomaterials Science & Engineering
|
October 1, 2025
3D-Printed Stent-Like Polymeric Structures with Tunable Mechanical Properties and Ionic Conductivity for Reinforced Nerve Guidance Conduits
Isteaque Ahmed, Andrew E Bryan, Shihab M Bhuiyan, et al.
European Journal of Cell Biology
|
October 20, 2022
The impact of physical, biochemical, and electrical signaling on Schwann cell plasticity
Corinne S Smith, Jacob A Orkwis, Andrew E Bryan, et al.
Military Medicine
|
November 10, 2023
Ultrasound-Activated Piezoelectric Polyvinylidene Fluoride-Trifluoroethylene Scaffolds for Tissue Engineering Applications
Andrew E Bryan, Maksym Krutko, Jennifer Westphal, et al.
Biomimetics (Basel, Switzerland)
|
January 26, 2024
Innervation of an Ultrasound-Mediated PVDF-TrFE Scaffold for Skin-Tissue Engineering
Jennifer A Westphal, Andrew E Bryan, Maksym Krutko, et al.
Biomaterials Science
|
September 2, 2025
Development of a bioactive, piezoelectric PVDF-TrFE scaffold with evaluation of tissue reaction for potential in nerve repair
Andrew E Bryan, Maksym Krutko, Sandra Rebholz, et al.
Biomaterials Advances
|
August 22, 2022
Mechanical stimulation of a bioactive, functionalized PVDF-TrFE scaffold provides electrical signaling for nerve repair applications
Jacob A Orkwis, Ann K Wolf, Zachary J Mularczyk, et al.
Biorxiv : the Preprint Server for Biology
|
September 4, 2024
Enhanced Piezoelectric Performance of PVDF-TrFE Nanofibers through Annealing for Tissue Engineering Applications
Maksym Krutko, Holly M Poling, Andrew E Bryan, et al.
Advanced Materials Technologies
|
August 29, 2025
Thermal Annealing Enhances Piezoelectricity and Regenerative Potential of PVDF-TrFE Nanofiber Scaffolds
Maksym Krutko, Holly M Poling, Maulee Sheth, et al.
Page
of 1