IP Library › Granted Patent US 11,166,788
Granted Patent B2
US 11,166,788 · App. 15/845,144 · Granted Nov 9, 2021

Aligners with enhanced gable bends

Inventor: Peter Webber (Redwood City, CA)
Assignee: Align Technology, Inc.
A61C7/08A61C7/002A61C7/12
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Quick Facts
Patent No.
US 11,166,788
App. No.
15/845,144
Granted
Nov 9, 2021
Kind
B2
Abstract

Systems, methods, and devices for improved orthodontic treatment of a patient's teeth are provided herein. In some aspects, a method for fabricating an orthodontic appliance for treating a patient's teeth is disclosed. The method may comprise determining a movement path to move a tooth from an initial arrangement towards a target arrangement; determining a force system to move the tooth along the movement path; determining a variable gable bend to produce the force system; determining a geometry for a tooth receiving cavity of the appliance based on the variable gable bend; and generating instructions for fabricating the appliance having a tooth receiving cavity formed according to the geometry for the tooth receiving cavity.

Claims (41)

1. A dental appliance for repositioning a patient's teeth, the dental appliance comprising:

a polymeric shell including a plurality of tooth receiving cavities shaped to receive and resiliently reposition the patient's teeth from a first position towards a second position, wherein:

the plurality of tooth receiving cavities comprises a variable gable bend incorporated into a first tooth receiving cavity of the plurality of tooth receiving cavities,

the variable gable bend has a first shape corresponding to a shape of a first tooth of the patient's teeth modified by a variable rotation about a reference location of the first tooth,

an amount of the variable rotation increases as a function either of radial distance from the reference location or of distance along an axis extending from a root of the first tooth toward an occlusal surface of the first tooth receiving cavity,

the first shape imparts to the first tooth one or more translational forces to provide a movement to the first tooth toward the second position and further imparts to the first tooth one or more rotational forces to counteract the movement imparted by the translational forces, and

the one or more translational forces or the one or more rotational forces vary as a function of a distance between the variable gable bend and the reference location.

2. The dental appliance of claim 1 , wherein the amount of the variable rotation increases from one degree at the reference location to three degrees at a portion of the first tooth receiving cavity furthest from the reference location.

3. The dental appliance of claim 1 , wherein the amount of the variable rotation increases at a constant rate as a function of radial distance from the reference location.

4. The dental appliance of claim 2 , wherein the amount of the variable rotation increases at a constant rate as a function of distance along the axis extending from the root of the first tooth toward the occlusal surface of the first tooth receiving cavity.

5. The dental appliance of claim 1 , wherein the reference location corresponds to a center of rotation of the first tooth.

6. The dental appliance of claim 1 , wherein the variable rotation produces a translation of the shape of the first tooth receiving cavity relative to the shape of the first tooth that varies along the axis extending from a root of the first tooth toward the occlusal surface of the tooth receiving cavity, and wherein the translation increases in magnitude at an increasing rate when approaching the occlusal surface of the first tooth receiving cavity.

7. The dental appliance of claim 1 , wherein the cavity further includes a nonrotated portion adjacent to the variable gable bend, and wherein the nonrotated portion conforms to the shape of the first tooth.

8. The dental appliance of claim 1 , wherein the reference location is at a gingival portion of the first tooth receiving cavity.

9. The dental appliance of claim 1 , wherein the reference location is outside the first tooth receiving cavity.

10. The dental appliance of claim 1 , wherein the variable gable bend is configured to mitigate unwanted rotation or tipping of the first tooth.

11. The dental appliance of claim 1 , wherein the variable gable bend is integral to the appliance.

12. A series of incremental appliances for repositioning at least one tooth of a patient, the series of incremental appliances comprising:

a first appliance including a first plurality of tooth receiving cavities and being configured to move the at least one tooth from a first position towards a second position;

a second appliance including a second plurality of tooth receiving cavities and being configured to move the at least one tooth from a second position towards a third position; and

a first cavity of the first plurality of tooth receiving cavities having a geometry to impart a force system on the at least one tooth to move the at least one tooth towards the second position, wherein the geometry for the first cavity of the first appliance includes a first variable gable bend, wherein:

the first variable gable bend has a first shape corresponding to a shape of the at least one tooth modified by a variable rotation about a reference location of the at least one tooth;

an amount of the variable rotation increases as a function either of radial distance from the reference location or of distance along an axis extending from a root of the tooth toward an occlusal surface of the first cavity;

the first shape imparts to the at least one tooth one or more translational forces to provide a movement to the at least one tooth toward the second position and further imparts to the at least one tooth one or more rotational forces to counteract the movement imparted by the translational forces; and

the one or more translational forces or the one or more rotational forces vary as a function of a distance between the first variable gable bend and the reference location.

13. The series of incremental appliances of claim 12 , further comprising:

a first cavity of the second plurality of tooth receiving cavities having a geometry to impart a force system on the at least one tooth to move the at least one tooth towards the third position, wherein the geometry for the first cavity of the second appliance includes a second variable gable bend.

14. The series of incremental appliances of claim 13 , wherein the first variable gable bend is different from the second variable gable bend.

15. The series of incremental appliances of claim 13 , further comprising:

a third appliance including a third plurality of tooth receiving cavities and being configured to move the at least one tooth from the third position towards a fourth position, and

a first cavity of the third plurality of tooth receiving cavities having a geometry to impart a force system on the at least one tooth to move the at least one tooth towards the fourth position, wherein the geometry for the first cavity of the third appliance includes a third variable gable bend.

16. The series of incremental appliances of claim 15 , wherein the first variable gable bend, the second variable gable bend, and the third variable gable bend each comprise different variable rotations of the respective first cavities of the first, second, and third appliances relative to the shape of the at least one tooth.

17. The series of incremental appliances of claim 12 , wherein the first variable gable bend is configured to mitigate unwanted rotation or tipping of the tooth.

18. The series of incremental appliances of claim 12 , wherein the first variable gable bend is integral to the first appliance.

19. An appliance for repositioning a patient's teeth, the appliance comprising:

a polymeric shell comprising a plurality of tooth receiving cavities shaped to receive and resiliently reposition the patient's teeth from a first position towards a second position, wherein the plurality of tooth receiving cavities comprises a first tooth receiving cavity configured to receive and resiliently reposition a tooth of the patient's teeth towards the second position, wherein the first tooth receiving cavity comprises:

means for imparting to the tooth one or more translational forces to provide a movement to the tooth toward the second position, and one or more rotational forces to counter act the movement imparted by the translational forces,

wherein the one or more translational forces or the one or more rotational forces vary as a function of a distance between a surface defining the first tooth receiving cavity and a reference location of the tooth, and

wherein the means for imparting the one or more translational forces and one or more rotational forces comprises a shape of the first tooth receiving cavity corresponding to a shape of the tooth modified by a variable rotation about the reference location, and

wherein an amount of the variable rotation increases as a function either of radial distance from the reference location or of distance along an axis extending from a root of the tooth toward an occlusal surface of the first tooth receiving cavity.

20. The appliance of claim 19 , wherein the shape of the first tooth receiving cavity comprises the variable rotation about the reference location, wherein the variable rotation displaces an occlusal end of the first tooth receiving cavity in a first direction relative to a gingival end of the first tooth receiving cavity, and wherein a position of the first tooth receiving cavity is displaced relative to a position of the tooth in a second direction opposite the first direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2018
From: WEBBER, PETER
To: ALIGN TECHNOLOGY, INC.
Reel/Frame 044898/0765 →
Continuity (2)
Provisional Application 62436042 · Dec 19, 2016
Related Publication 20180168776A1 · Jun 21, 2018
Cited By (36)
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