Angulated retractor plates and integrated suction tubes create negative pressure to evacuate fluids, preventing implant shell damage from uneven manual force.
A breast implant introducer uses a detachable hollow tube to enable efficient insertion of various implant sizes.
Rounded salt crystals form open pores in silicone shells, preventing capsular contracture while avoiding stress concentrations from angular textures.
An inflatable flexible shell containing adjustable liquid volume mimics the size, shape, and weight of actual breast implants for home use.
Radiolucent particles reduce mammography obscuration while increased crosslinking density prevents gel bleed.
A removable implant with a radiation-absorbing core shields cardiac structures during breast cancer therapy.
An internal scaffold maintains implant shape and reduces wrinkling without adding weight or altering tactile properties.
Lubricious material reduces friction between deformable members in a tissue expander, preventing sudden pressure spikes that cause tissue ischemia.
A mastectomy prosthesis combines a high-density lower portion with a low-density upper portion to create a stable, natural breast silhouette.
Displaceable internal elements within a flexible casing allow manual shape adjustment, eliminating the need for invasive surgical intervention to change size.
Segmented bearing surface nubs create air channels that reduce skin contact area, preventing overheating and irritation while managing thermal energy.
Accordion-fold base plate sets width before implantation, preventing unwanted expansion during surgery.
Shortening the coupler applies uniform tension to the patch body, preventing tissue damage from excessive force and eliminating extra surgical steps.
A single-opening implant delivery device uses a friction-reducing coating to facilitate precise handling and insertion of medical implants.