Endothermic materials in a multi-core lithium-ion battery absorb heat and vent gases to limit cascading thermal runaway.
A pressurized polymer vessel releases subzero cooling agent from 30°C to suppress fires early in compact equipment and limit damage.
A custom stent guides an ablation probe to early third molar tooth buds, avoiding invasive extraction pain, nerve damage, and added cost.
A temporary third-reference switch path speeds DAC voltage transitions while easing drive demands on the reference voltage circuit.
A unified locking arm and toothed engagement hold forceps position during extraction, reducing dentist strain and improving control.
A flexible Nitinol blade severs the periodontal ligament to reduce extraction force, pain, and damage to bone and adjacent teeth.
Arcuate jaws and a linear screw secure slippery dental crowns for safer trimming, better control, and more accurate fit.
An integrated matrix band and guide structure improves filling containment, reduces placement steps, and supports anatomically correct restorations.
Magnetic attraction gradually repositions an impacted tooth before extraction, reducing nerve damage and limiting bone cavity size.
Arcuate jaws and a linear screw secure small dental crowns for safer, more precise shaping and trimming with less slippage and hand fatigue.
A curved hook guides wire through an impacted tooth perforation faster, reducing procedure time, discomfort, and nerve damage risk.
Inorganic silicate gel foam combines adhesion, cooling, and electrical resistance to prevent collapse and fire reignition.
Squared-off double blades and a U-shaped end help resist bending and maintain tip position during tooth extraction.
A fiducial marker, calibration element, and robotic arm preserve surgical access while improving oral and maxillofacial accuracy.
A dental tooth grasper employs a screw-driven segmented plate to stabilize extracted teeth, preventing water spray mess during high-speed handpiece training.
A prying dental covering removal tool uses parallel plates to lift restorations without compression forces.
An elastic connecting rod transmits pneumatic impact forces to a threaded pin, resolving oral clearance constraints and injury risks during root extraction.
Automated tension control reduces manual effort and extraction inefficiencies by regulating motor power output during root removal.