Abstract:
The present invention relates to a computer program and to a method for controlling the computer program, wherein a control signal is sent to the computer program when an optical marker, in particular a two-dimensional barcode (2a, 2b, 2c), is detected by an intraoral scanner (1), which signal switches the computer program to a predefined state. A device for controlling the computer program comprises a support (3) on which at least one optical marker is arranged. The optical marker has an inscription (21a, 21b, 21c) which indicates a state of the computer program to which the computer program can be switched by detection of the optical marker by the intraoral scanner (1).
Abstract:
The method for optical three-dimensional surveying using an intraoral camera (2), wherein the intraoral camera (2) provides that a 3D image is created from at least one of the 2D recorded images or from at least one of the sequences, and wherein a plurality of all the 2D recorded images and/or sequences created in a first operating mode (M1) are used to create at least one overall 3D image. In addition, the method provides that a selection is made between the first operating mode (M1) and a second operating mode (M2), wherein a plurality of all 2D recorded images and/or sequences created during an interval of time (T) are used in the second operating mode (M2) to create at least one 3D image immediately before and/or after a triggering command (A).
Abstract:
A dentists' preparation instrument (1) comprises a turbine (4) for driving a tool (3) using compressed air, and a rotor (6) that is arranged in a turbine compartment (5), rotates about a longitudinal axis (7), and has blades (11) extending to a face (13) of the rotor (6). The turbine compartment (5) has a discharge port (12) for the compressed air towards a returning air duct (8). Said discharge port (12) is disposed in such a way that both the face (13) of the rotor (6) and parts of the blades (11) sweep past the discharge port (12) as the rotor rotates about the longitudinal axis (7). For deceleration purposes, the rotor (6) has a deceleration contour (9) on the face (13), said deceleration contour being formed by projections (14), and the turbine compartment (5) has a deceleration contour chamber (15) inside which the deceleration contour (9) is accommodated. The discharge port (12) in part also extends across the deceleration contour chamber (15).
Abstract:
The method for the production of a dental prosthesis part comprises the provision (11) of a dataset (2) for a dental prosthesis part (6) for use in a CAD/CAM technique, the provision (12) of reference data (3) for optical properties of different dentin materials and translucent enamel materials for the dental prosthesis part (6) and a relationship (4) between said optical properties, the desired optical properties and the dimensions of the dental prosthesis part (6), the definition (13) of a first setpoint (S1) for the optical properties of a dentin region, the definition (14) of a second setpoint (S2) for the optical properties of an enamel region, the definition (15) of a third setpoint (S3) for a thickness of the enamel region of the dental prosthesis part (6), the selection and provision (16) of a dental prosthesis mold block (5) having a dentin region made from a material.
Abstract:
The invention relates to an image for creating digital images. In the image detector there are present means for receiving and storing administrative data.
Abstract:
A method and a system for operating a dental operating chair connected to a computer, comprising operating elements and/or state indicators arranged on the dental operating chair, an interface via which the information is transmitted from the dental operating chair to the computer, in the form of function codes, by the operating elements and/or state indicators, and a memory region on the computer, in which at least one action associated with a function code is stored. To adapt the operating elements or the operating surface, software for managing the function codes is provided on the computer, by which the action associated with the function codes and stored in a configuration file is initiated. The allocation of the function codes of the operating elements and/or the state indicators of the dental operating chair to the PC actions can be configured by changing the configuration file.