Combining centric and orientation jaw recording in one guided setup improves condyle positioning accuracy and avoids multiple patient visits.
Pins, protrusions, and optional magnetic fixing let dental models be mounted, removed, and remounted across articulators without losing alignment.
An openable gum lid exposes realistic model tooth roots for secure attachment, easy removal, and nerve extraction practice.
A clamped occlusion and support fixture holds artificial teeth steady in gingiva during curing, enabling accurate alignment and pre-cure correction.
Real patient jaw trajectories are edited in 3D to simulate corrective TMJ interventions faster and improve rehabilitation planning.
Oblique and support profiles compensate 3D print variation to keep dental models accurately positioned in articulators without plaster.
Pressure from an occlusion and clamping assembly keeps artificial teeth aligned while adhesive hardens, reducing rework.
A dental model uses segmented insertion zones and an opening lid to attach realistic tooth roots for nerve extraction practice.
A swallowing simulation apparatus uses a particle method to model head-and-neck organs and orally-ingested products in three-dimensional space.
Variable horizontal axis and magnetic plates enable accurate mandible movement reproduction while reducing material consumption.
A disposable dental model articulator uses an elastic bias unit to press the arm member forward for stable engagement of maxillary casts.
A digital facebow uses fiducial markers to align intraoral scans with reference features for virtual articulation.
Laser scanner measures reference elements on universal adaptors to eliminate mechanical wear errors and enable precise articulator synchronization.
Segmenting the typodont into a permanent base and a separable information cover allows replacing printed sheets without damaging the expensive model structure.
A denture base separates a pre-formed reference member from a curable adjusting member to adapt the mucosal surface.
Articulator projects condylar head outlines and fossae patterns to visualize adjustment impacts on joint positions.
Segmented probes matching molar and canine shapes interlock with jaw joint motion to measure food hardness and viscosity accurately.
A modular supporting device uses interchangeable bases to align dental arches and replicate occlusal planes.
A virtual articulator generates individualized chewing movement models using statistical analysis of patient data.