Pulsed laser heating with closed-loop fluid cooling reshapes septal cartilage precisely while limiting thermal damage and surgical trauma.
A septum support with reduced side contact keeps the airway open while stabilizing the septum and avoiding turbinate compression.
Transillumination through nasal tissue gives real-time visual guidance for precise implant placement while reducing tool complexity and placement risk.
A needle-and-push-rod delivery tool places biodegradable nasal implants with precise orientation, reducing trauma, pain, and scarring.
This case uses a perforated, curved triangular implant to fit one nostril’s inner surface and reduce cavities during healing.
This case shows how implants engage septal and upper lateral cartilage to expand the airway with minimally invasive placement.
An inner-and-outer-handle tool guides nasal implants through a needle for precise, minimally invasive deployment.
Integrating an X-ray developable identifying element with an embedded pattern enables medical personnel to retrieve implant details without external records.
An injectable shape-memory implant strengthens collapsed nasal valves through minimally invasive delivery.
Biodegradable mesh implants strengthen collapsing nasal valves via fibrotic tissue integration, reducing surgical invasiveness and recovery time.
Barbed implant exerts tension on upper lateral cartilage to prevent collapse without complex tissue grafting.
Customizable bioabsorbable nasal implants eliminate donor site morbidity and infection risks associated with autologous cartilage harvesting.
Bioabsorbable nasal spreader grafts replace permanent implants with degradable polymers to eliminate donor site morbidity and infection risks.
A biodegradable nasal implant uses a hydrophobic coating to control degradation and elute therapeutic agents.
Dual-body magnetic nasal dilators use repelling forces to separate lateral nasal walls, reducing airway resistance while preventing dislodgment during sleep.
Tissue-engaging surface features on the implant prevent dislodgment from breathing movements, eliminating the need for sutures that cause surgical trauma.
Radial fixation arms distribute load across thin maxillary bone to stabilize the prosthesis against pivoting.
Bioabsorbable nasal implants provide structural support to the lateral wall using compressible planar designs.
A roof-shaped implant uses a flat dorsal section to rest closely against triangular cartilage.
A septal perforation measuring device uses a segmented head with multiple protrusions to determine precise perforation dimensions.
Elongate body implants with specialized anchors stabilize the nasal valve, resolving placement precision challenges.
A modified polystyrene material achieves surgical flexibility through butadiene rubber integration and cross-linking.
Autologous chondrocyte expansion eliminates donor site morbidity while ensuring consistent graft quality.
Segmented porous polyethylene implants deliver fluids through ports to resolve empty nose syndrome symptoms.
Telescoping implants with self-deploying anchors eliminate complex stitching and reduce surgical time during middle turbinate medialization.
A rhinological implant uses a rigid central back section and angled side sections to stabilize the nasal septum.