Abstract:
Clinical data file embodiments and methods for creating the same are provided. One embodiment includes treatment professional information in at least one of a number of treatment professional information data fields in a treatment professional section of the file, patient personal information in at least one of a number of patient personal information data fields in a patient profile section of the file, a number of patient medical information items, and an indicator associated with at least one of the treatment professional information data fields, at least one of the patient personal information data fields, and at least one of the patient medical information items, where the treatment professional information, patient personal information, and patient medical information items associated with an enabled indicator are hidden.
Abstract:
An apparatus for monitoring orthodontic treatment compliance includes an appliance adapted to be worn over one or more teeth; and a compliance indicator mounted on the appliance to indicate compliance.
Abstract:
Embodiments are provided for accurately characterizing a tooth's movement. One method embodiment includes associating an abnormal tooth shape with a model tooth shape from a reference library of model tooth shapes, mapping a predefined dental reference from the model tooth shape onto at least a portion of the abnormal tooth shape, and adding a location of the predefined dental reference to the abnormal tooth shape based on the mapped predefined dental reference from the model tooth shape.
Abstract:
Methods, devices, systems, and series of appliances are provided for dental implant positioning. One method for positioning an implant with dental treatment includes determining an implant location based on a virtual model of an optimized dental occlusion, moving one or more teeth using a first number of a series of dental appliances, from a first orientation to a second orientation, the second orientation exposing the implant location, placing an implant at the exposed implant location using a landmark included in at least one of the series of dental appliances, repositioning one or more teeth using a second number of the series of dental appliances, from the second orientation to a successive orientation.
Abstract:
Embodiments are provided for utilizing metallic portions in dental positioning appliances. One embodiment includes a removable dental positioning appliance having a shell having one or more cavities shaped to receive and reposition one or more teeth from a first orientation to a successive orientation and where at least a portion of the shell is formed from a metallic mesh material.
Abstract:
Embodiments are provided for utilizing metallic portions in dental positioning appliances. One embodiment includes a removable dental positioning appliance having a shell having one or more cavities shaped to receive and reposition one or more teeth from a first orientation to a successive orientation and where at least a portion of the shell is formed from a metallic mesh material.
Abstract:
A dental template to position an object on a patient's tooth includes digitizing the patient's tooth; adding virtual objects to predetermined locations on the digitized tooth; and fabricating the dental template to locate the object on the patient's tooth. The template can be used for etching or for positioning brackets on teeth.
Abstract:
Virtual cephalometric imaging includes creating a first 3D virtual model and a second 3D virtual model of a patient's dentition. The first 3D virtual model is based on a first impression taken of the patient's dentition at a first time. The second 3D virtual model is based on a second impression taken of the patient's dentition at a second time. The first and the second 3D virtual models are correlated. A 2D image is generated including a first outline representing a position of at least one tooth of the patient's dentition according to the first 3D virtual model and a second outline representing a position of the at least one tooth according to the second 3D virtual model. Generating the 2D image includes positioning the first outline relative to the second outline according to the correlation of the first and the second 3D virtual models.