Acrylate edges and silicone gel centers balance secure sealing, permeability, and atraumatic removal in wound therapy.
Subcritical water hydrolysis creates a biocompatible collagen-alginate matrix that absorbs exudate, maintains moisture, and limits adhesion.
This case uses segmented lightguides and negative pressure to treat more wound surfaces while supporting disinfection and healing.
A hydrophobic first coating and patterned adhesive layer help wound dressings limit exudate reflux and reduce dressing changes.
Dynamic NPWT shifts wound surfaces for more uniform phototherapy.
A divided plaster combines adhesive traction strips with silicone gel to reduce tension in healing skin and help prevent scars.
Porous film, absorbent fibers, and polysaccharides maintain moisture and reduce secondary dressing needs.
Traction strips pull divided film sections together while silicone gel treats scars, reducing tension around high-tension wounds.
A pressure sensor and controller distinguish seal leaks from pressure changes, adjusting negative pressure to sustain wound therapy.
A fluid-tight skin pouch protects medical ports with removable adhesive sealing.