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Journal #2428
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Acta biomaterialia
36
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Acta biomaterialia
117992
Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment
Karimi A
Acta biomaterialia
2024; 180: 206-229
116795
Fibrous finite element modeling of the optic nerve head region
Islam MR
Acta biomaterialia
2024; 175: 123-137
117992
Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment
Karimi A
Acta biomaterialia
2024; 180: 206-229
116834
Microenvironment-regulated dual-hydrophilic coatings for glaucoma valve surface engineering
Zhang S
Acta biomaterialia
2024; 180: 358-371
118037
Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states
Karimi A
Acta biomaterialia
2024; 175: 138-156
116795
Fibrous finite element modeling of the optic nerve head region
Islam MR
Acta biomaterialia
2024; 175: 123-137
118037
Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states
Karimi A
Acta biomaterialia
2024; 175: 138-156
116795
Fibrous finite element modeling of the optic nerve head region
Islam MR; Ji F
Acta biomaterialia
2024; 175: 123-137
118037
Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states
Aga M
Acta biomaterialia
2024; 175: 138-156
117992
Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment
Aga M
Acta biomaterialia
2024; 180: 206-229
116834
Microenvironment-regulated dual-hydrophilic coatings for glaucoma valve surface engineering
Liu Y
Acta biomaterialia
2024; 180: 358-371
118037
Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states
Khan T
Acta biomaterialia
2024; 175: 138-156
116834
Microenvironment-regulated dual-hydrophilic coatings for glaucoma valve surface engineering
Li L
Acta biomaterialia
2024; 180: 358-371
117992
Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment
Khan T
Acta biomaterialia
2024; 180: 206-229
116795
Fibrous finite element modeling of the optic nerve head region
Bansal M
Acta biomaterialia
2024; 175: 123-137
117992
Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment
D'costa SD
Acta biomaterialia
2024; 180: 206-229
116834
Microenvironment-regulated dual-hydrophilic coatings for glaucoma valve surface engineering
Wang B
Acta biomaterialia
2024; 180: 358-371
118037
Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states
D'costa SD
Acta biomaterialia
2024; 175: 138-156
116795
Fibrous finite element modeling of the optic nerve head region
Hua Y
Acta biomaterialia
2024; 175: 123-137
117992
Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment
D'costa SD
Acta biomaterialia
2024; 180: 206-229
118037
Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states
D'costa SD
Acta biomaterialia
2024; 175: 138-156
117992
Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment
Thaware O
Acta biomaterialia
2024; 180: 206-229
116834
Microenvironment-regulated dual-hydrophilic coatings for glaucoma valve surface engineering
Zhang Z
Acta biomaterialia
2024; 180: 358-371
116795
Fibrous finite element modeling of the optic nerve head region
Sigal IA
Acta biomaterialia
2024; 175: 123-137
118037
Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states
Cardenas-Riumallo S
Acta biomaterialia
2024; 175: 138-156
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