A porous bioresorbable scaffolding construct stabilizes medical implants within the body.
A form stable expandable stent uses a composite foam core and integrated drainage tubing to facilitate insertion.
Segmented multilayer tissue constructs overcome nutrient perfusion limits in thick implants, maintaining cellular viability across clinically relevant defects.
An acellular dermal matrix interface on a breast implant reduces capsular contracture formation, minimizing re-operation rates.
Adhesive secures reshaped breast tissue to the chest wall, eliminating palpable sutures and reducing ptosis recurrence.
An inflatable implant with a non-elastic bladder wall delivers precise occlusion.
Merging nipple structure into single implant eliminates separate procedures while ensuring seamless tissue integration.
A radiopaque identifier laminated onto a breast implant shell enables direct visual identification via standard X-ray imaging.
Tensioning a barbed suture in the subdermal layer lifts tissue to define breast contours, reducing recovery time by avoiding skin dissection.
A sinusoidal breast implant uses smooth interfaces between projections and troughs to create a continuous surface transition.
A soft prosthesis shell features discrete fixation regions with textured surfaces to promote tissue ingrowth and adhesion.
A bioabsorbable implant creates a reproducible 3D target within the tumor resection cavity for accurate radiation delivery.
Foldable teeth on a collagen mesh secure the covering to a breast prosthesis, reducing capsular contracture risk.