RETENTIVE STRUCTURE FOR ORTHODONTIC APPLIANCE
An orthodontic appliance includes a body portion for effecting an orthodontic treatment and a base portion affixed to the body portion. The base portion includes a surface defining a plurality of trenches. At least one trench is formed at an acute angle to a gingival surface of the base portion.
1 . An orthodontic appliance comprising:
a body portion for effecting an orthodontic treatment;
a base portion affixed to the body portion, the base portion including a surface defining a plurality of trenches, at least one trench formed at an acute angle to a gingival surface of the base portion.
2 . The orthodontic appliance of claim 1 wherein each trench is formed substantially parallel to a mesial-distal axis of the base portion, the trench having parallel side walls.
3 . The orthodontic appliance of claim 1 wherein the base portion includes a perimeter wall defining a cavity so that at least one of the plurality of trenches has an opening that is arranged below a plane defined by a surface of the perimeter wall adapted to contact the tooth surface.
4 . The orthodontic appliance of claim 2 wherein the base portion includes a perimeter wall defining a cavity so that at least one of the plurality of trenches has an opening that is arranged below a plane defined by a surface of the perimeter wall adapted to contact the tooth surface.
5 . A method of manufacturing customized ceramic labial/lingual orthodontic brackets by additive manufacturing, said method comprising:
based on dentition data of a profile of teeth of a patient, generating a three-dimensional (3D) model of the patient's teeth;
generating a virtual 3D bracket structure model for a single labial or lingual bracket structure based upon said 3D model of the patient's teeth, wherein generating the 3D bracket structure model comprises:
generating a first 3D bracket model having a body portion for effecting an orthodontic treatment and a base portion affixed to the body portion, the base portion including a surface defining a plurality of trenches, the surface contoured to the shape of a tooth of the patient based on the 3D model of the patient's teeth, the plurality of trenches facilitating indirect bonding of each bracket to the tooth;
importing data related to the 3D bracket structure model into an additive manufacturing machine;
directly producing the bracket, with the plurality of trenches, with the additive manufacturing machine by layer manufacturing from an inorganic material including at least one of a ceramic, a polymer-derived ceramic, and a polymer-derived metal.
6 . The method of claim 5 wherein one or more of the trenches is formed at an acute angle to a gingival surface of the base portion.
7 . The method of claim 5 wherein one or more of the trenches is formed as a chevron, pointing to either an occlusal surface or a gingival surface, along a mesial-distal axis of the base portion.
8 . The method of claim 5 wherein the base portion includes a perimeter wall defining a cavity so that at least one of the plurality of trenches has an opening that is arranged below a plane defined by a surface of the perimeter wall adapted to contact the tooth surface.
9 . The method of claim 5 wherein the virtual 3D bracket structure model includes data representing a) the base portion, b) the plurality of trenches, c) material forming the appliance, and d) a profile of the tooth.
10 . The method of claim 8 wherein the virtual 3D bracket structure model includes data representing a) the base portion, b) the plurality of trenches, (c) material forming the appliance, and d) a profile of the tooth.