Integrated accelerometers, pressure sensors, and contact sensors track placement, movement, and tissue interaction for timely intervention.
A harder inner material and softer outer layer let CAD/CAM machining customize one-piece dental implants while avoiding component gaps.
Preformed holes in a biodegradable polymer–bone graft allow implant placement during grafting, reducing the overall procedure period.
Conventional membranes deform under pressure; a cortical-cancellous structure stabilizes bone grafts, supports bone ingrowth, and avoids fixture-removal procedures.
Covering the dental block's side surface directs coloring liquid through its top or bottom to prevent a curved colored surface.
Gelatin bags contain pre-portioned bone graft particles, limiting membrane perforation, graft loss, and difficult handling during sinus elevation.
A sharp tip and spiral protrusion let the implant enter jaw bone without pre-drilling, preserving tissue and improving stability.
BaTiO3 nanoparticles convert chewing forces into electrical charges that repel biofilms and promote mineral deposition on dental restorations.
A 0°–360° rotating element aligns dental abutments and maintains parallelism, reducing undercuts, material stress, and cement-related detachment.
Direct pressure can damage implant replica surfaces; a threaded shaft and sleeve provide controlled oral-model placement.
An installation indicator and vertical screw guide ridge widening to improve alignment and limit alveolar bone trauma.
Protrusion, traction, and retention features help align mandibular with maxillary incisors and remodel jaw bones for facial retrognathism.
Mechanical vibration through a flexible tip stimulates maxillary bone growth and consolidation, helping avoid traumatic bone grafting before implants.
Recognition grooves distinguish incisor, canine, premolar, and molar scan bodies during simultaneous intraoral scanning.
A rigid PEEK retention member delivers 10–75-pound force for a fixed hybrid dental attachment while limiting wear from repeated engagement.
Self-tapping cutting teeth help a tapered, threaded dental implant engage dense bone and seat stably with reduced installation torque.
Printing inaccuracies can create friction and damage during insertion; a threaded shaft and sleeve advance the dental implant replica gradually for precise positioning.
Moving the screw head above the abutment frees inner space for stronger post sizing and elastic crown stabilization.
Combining a gingiva former with a scan body simplifies intraoral scanning and accurately transfers implant position into a patient-specific digital model.
Identical guide sections let one reduction sleeve guide different dental drill diameters while controlling implant depth.
Three threaded implant sections distribute placement forces, reducing crestal bone pressure while preserving fixation strength and bone stability.
Interlocking polymer platforms let a hybrid denture snap onto an implant receiving component, reducing debris trapping and enabling patient removal.
A segmented kit with locking height control immobilizes dental implants during resin curing, reducing mounting inaccuracies and material waste.