Publication | Open Access
Bridging structure and mechanics of three-dimensional porous hydrogel with X-ray ultramicroscopy and atomic force microscopy
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Citations
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References
2015
Year
Tissue EngineeringAtomic Force MicroscopyEngineeringPorous PolymerBiomedical EngineeringSoft MatterSol-gel SynthesisBridging StructureHydrogelsRheologyCarbon AerogelsThree-dimensional Porous HydrogelBiophysicsCollective PerformanceMaterials ScienceIndividual Hydrogel PoresBiopolymer GelPolymer ScienceBiomaterials
By combining phase contrast X-ray ultramicroscopy and nanoindentation with atomic force microscopy, the mechanics of individual hydrogel pores as well as their collective performance as a scaffold can be modelled and simulated.
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