Thin porous polyester microchannel walls align regenerating axons and reduce inflammation in nerve repair scaffolds.
Fatty acid grafting creates self-assembled hyaluronic acid microspheres that ease injection while supporting persistence without BDDE.
A receiving device controls UHMWPE moulding temperature before, during, and after gamma or X-ray irradiation for reproducible crosslinking.
Physically and chemically cross-linked networks deliver cartilage-like strength, poroelastic response, and reduced friction.
Laser-responsive composite regions let implanted IOLs refine refractive power after surgery without further surgical intervention.
Polymerizable glycosaminoglycans form a silicone lens network that improves wettability, hydration, and oxygen permeability.
This case combines polymer, carbohydrate, and ceramic phases to control degradation, preserve support, and improve tissue integration.
Phosphatidylcholine liposomes stay in a gel phase to sustain low friction at pressures up to 120 atmospheres.
Supercritical CO2 removes cells while preserving dermal matrix strength and elasticity.
A controlled drying process makes amniotic membrane easier to store while supporting auricular skin-graft healing.
A potassium phosphate slurry combines structural support with faster resorption through rapidly absorbed spherical polymers.