An archform configured to move a patient's teeth using non-sliding mechanics. The archform can include a loop between two bracket connectors that spans a blocked-out tooth between two teeth. One or more of the bracket connectors can include a reinforced shoulder to provides increased structural integrity to the connection between the bracket connector and the loop. The archform can include a second loop between the two connectors that is gingivally or occlusally positioned relative to other loop.
An orthodontic appliance placement guide with instructions to position an orthodontic appliance, such as an orthodontic bracket, on a tooth of a patient at a position corresponding to a digital position of a digital appliance on a digital tooth in a virtual model of teeth of the patient. The orthodontic appliance placement guide can include representations of the tooth and the orthodontic appliance positioned thereon. The orthodontic appliance placement guide can indicate measurements between reference features of the orthodontic appliance and tooth. A clinician can take measurements when placing the orthodontic appliance on the tooth to guide placement of the orthodontic appliance as instructed by the orthodontic appliance placement guide.
A61C 7/14 - BracketsFixation des brackets aux dents
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
4.
METHOD OF ADMINISTERING ADHESIVE TO BOND ORTHODONTIC BRACKETS
Methods of administering a quantity of adhesive to bond orthodontic brackets is disclosed herein. The quantity of adhesive to bond a selected bracket to a tooth at a specific location thereon can be calculated based on a known geometry of the selected bracket and a digital model of the patient's teeth. An instruction guide can visually indicate with a graphic the amount of adhesive to dispense from a syringe or other device to bond the selected bracket to the surface of the tooth at a specific location planned in the digital model.
A61C 7/02 - Outils pour la manipulation d'un dispositif orthodontique ou pour travailler avec celui-ci
A61B 5/00 - Mesure servant à établir un diagnostic Identification des individus
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
A61C 7/14 - BracketsFixation des brackets aux dents
A61C 7/16 - BracketsFixation des brackets aux dents spécialement conçus pour être scellés aux dents
Systems and methods for fabricating indirect bonding trays are disclosed. Digital models of a patient's teeth can be created with digital brackets positioned on the digital model of a patient's teeth. Digital models of indirect bonding trays can be created to retain and transfer the brackets. The indirect bonding trays can be 3-D printed with wells that the functional brackets can be placed into and thereafter transferred to the patient. The 3-D printed indirect bonding tray can comprise two resins, with one resin forming the tray and another resin forming a functional feature.
An orthodontic bracket and archform system that uses friction-free mechanics are disclosed. The archform can have a male fastener that can be retained within an orthodontic bracket. The orthodontic bracket can have varying locking mechanism, such as deflectable tabs, springs, locking pins, and others, that can cooperate with features of the male fastener to prevent sliding between the archform and the bracket.
Hybrid orthodontic archwire designs are disclosed. Hybrid archwires may have bracket-archwire sections and interproximal archwire sections in which each section can vary in cross-section shape, size, and/or material properties. Bracket-archwire sections may be configured to promote torque control and may have rectangular cross-sections. Interproximal archwire sections may be configured to be bent into force-promoting loops and may have round cross sections. Each archwire section may be straight or bent into any shape. Hybrid archwires may have sliding sections and non-sliding sections. Non-sliding sections may have male connectors configured to prevent the archwire from sliding relative to the orthodontic brackets and/or may have cross-sectional shapes, sizes, or coatings that resist sliding relative to sliding sections. Sliding sections may have linear archwire segments. Hybrid archwires may have distal or posterior non-sliding sections and an intermediate anterior or medial sliding section.
Systems and methods for fabricating indirect bonding trays are disclosed. Physical models of a patient's teeth can be created with non-functional placeholder brackets, impressions of which can be transferred to indirect bonding trays. This can create wells in which functional brackets can be placed into, reducing errors created from transferring functional brackets from the physical model onto the indirect bonding trays.
A61C 13/00 - Prothèses dentairesLeurs procédés de fabrication
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
A61C 7/14 - BracketsFixation des brackets aux dents
A61C 13/34 - Fabrication ou façonnage des modèles, p. ex. coulées préliminaires, maquettes de prothèses adjointesChevilles
B29C 41/02 - Façonnage par revêtement d'un moule, noyau ou autre support, c.-à-d. par dépôt de la matière à mouler et démoulage de l'objet forméAppareils à cet effet pour la fabrication d'objets de longueur définie, c.-à-d. d'objets séparés
An indirect bonding (IDB) tray that can be positioned over a single tooth of a patient. The IDB tray can include a well to receive an orthodontic bracket therein. The IDB tray can be 3D printed with a rigid photopolymer material and a soft photopolymer material. The soft photopolymer material may be disposed on a gingival portion of the IDB tray such that the soft photopolymer material can be positioned proximate the gums of the patient to improve patient comfort and/or accommodate gum remodeling due to tooth movement. The soft photopolymer material may be disposed around an inner periphery of the well to facilitate bracket insertion and/or release from the well. The IDB tray can include separation indicia indicating where the IDB tray can be sectioned. The IDB tray can include long axis lines to indicate proper orientation of the IDB tray on a patient's one or more teeth.
An archform configured to move a patient's teeth using non-sliding mechanics. The archform can include a double loop between two bracket connectors. The archform can include one or more hooks extending from bracket connectors to couple with elastics. The archform can include narrowed-width bracket connectors for overcrowded teeth. The archform can include interproximal segments between adjacent bracket connectors that include multiple interproximal members.
Non-sliding orthodontic appliances may include an archwire having male fasteners for locking in place with brackets in a non-sliding manner and interproximal loops for exerting forces on the brackets. Appropriate forces may be calculated according to vectors between initial and ideal tooth positions. The brackets may be transferred to a patient's teeth using indirect bonding trays which contain slots for holding and aligning each bracket. The trays may include integrated handles for facilitating handling, may be sectioned into smaller pieces for easier application, and/or may be labeled for facilitating proper registration. Superposition of a digital placement plan and clinical model after bonding may illustrate the accuracy of bracket placement. The archwire may comprise atraumatic ends to avoid patient discomfort. A color registration system can be used to facilitate the attachment of the archwire to the brackets. The archwire may be locked into place with the brackets using crimpable stops.
A61C 7/14 - BracketsFixation des brackets aux dents
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
A61C 7/02 - Outils pour la manipulation d'un dispositif orthodontique ou pour travailler avec celui-ci
Systems and methods for fabricating indirect bonding trays are disclosed. Physical models of a patient's teeth can be created with non-functional placeholder brackets, impressions of which can be transferred to indirect bonding trays. This can create wells in which functional brackets can be placed into, reducing errors created from transferring functional brackets from the physical model onto the indirect bonding trays.
B29C 41/02 - Façonnage par revêtement d'un moule, noyau ou autre support, c.-à-d. par dépôt de la matière à mouler et démoulage de l'objet forméAppareils à cet effet pour la fabrication d'objets de longueur définie, c.-à-d. d'objets séparés
B33Y 50/00 - Acquisition ou traitement de données pour la fabrication additive
B33Y 50/02 - Acquisition ou traitement de données pour la fabrication additive pour la commande ou la régulation de procédés de fabrication additive
B33Y 30/00 - Appareils pour la fabrication additiveLeurs parties constitutives ou accessoires à cet effet
B33Y 80/00 - Produits obtenus par fabrication additive
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
14.
Method of tongue preconditioning in preparation for lingual orthodontic treatment
Disclosed herein are devices, systems, and method for preconditioning lingual tissue for lingual orthodontic treatment, including the application of lingual braces. Protuberances may be affixed to the lingual surfaces of one or more of a patient's teeth prior to the introduction of an orthodontic appliance to allow time for the tongue to adapt to the presence of foreign structures. The protuberances may promote keratinization of the lingual tissue. The protuberances may be removed prior to the application of the orthopedic appliance. The protuberances can be pre-fabricated or fabricated in situ on the surfaces of the teeth. The protuberances may be any suitable material, including metal, polymer, or ceramic.
An orthodontic bracket and archform system that uses friction-free mechanics are disclosed. The archform can have a male fastener that can be retained within an orthodontic bracket. The orthodontic bracket can have varying locking mechanism, such as deflectable tabs, springs, locking pins, and others, that can cooperate with features of the male fastener to prevent sliding between the archform and the bracket.
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
A61C 7/02 - Outils pour la manipulation d'un dispositif orthodontique ou pour travailler avec celui-ci
A61C 7/30 - Fixation de l'arc vestibulaire ou du fil d'arcade au bracket par des moyens élastiques
C22F 1/00 - Modification de la structure physique des métaux ou alliages non ferreux par traitement thermique ou par travail à chaud ou à froid
A61C 5/20 - Réparation d'altérations liées à l'attrition, p. ex. facettes
A61C 7/04 - Outils pour la manipulation d'un dispositif orthodontique ou pour travailler avec celui-ci du type pince
16.
Method of administering adhesive to bond orthodontic brackets
Methods of administering a quantity of adhesive to bond orthodontic brackets is disclosed herein. The quantity of adhesive to bond a selected bracket to a tooth at a specific location thereon can be calculated based on a known geometry of the selected bracket and a digital model of the patient's teeth. A instruction guide can visually indicate with a graphic the amount of adhesive to dispense from a syringe or other device to bond the selected bracket to the surface of the tooth at a specific location planned in the digital model.
A61C 7/02 - Outils pour la manipulation d'un dispositif orthodontique ou pour travailler avec celui-ci
A61B 5/00 - Mesure servant à établir un diagnostic Identification des individus
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
A61C 7/14 - BracketsFixation des brackets aux dents
A61C 7/16 - BracketsFixation des brackets aux dents spécialement conçus pour être scellés aux dents
An indirect orthodontic bonding (IDB) tray preloaded with one or more orthodontic brackets with uncured pre-pasted adhesive. The loaded IDB tray can be produced by an IDB tray manufacturer and distributed to an orthodontist in a container that prevents the adhesive from curing. The loaded IDB tray can be removed from the container when the patient is ready for treatment. The loaded IDB tray can be placed over the dental arch of the patient such that the one or more orthodontic brackets can bond, via curing of the adhesive, to the teeth of the patient.
An orthodontic indirect bonding tray that may transfer orthodontic brackets, bite turbo, and/or orthodontic auxiliaries is disclosed. The indirect bonding tray may be digitally designed and 3D printed or fabricated based on a bonding model. The indirect bonding tray may transfer the orthodontic brackets, bite turbos, and orthodontic auxiliaries to any tooth surface. The indirect bonding tray may be designed to transfer bite turbos that vary in size, shape, and the amount of bite opening or functional correction.
An orthodontic bracket and archform system that uses friction-free mechanics are disclosed. The archform can have a male fastener that can be retained within an orthodontic bracket. The orthodontic bracket can have varying locking mechanism, such as deflectable tabs, springs, locking pins, and others, that can cooperate with features of the male fastener to prevent sliding between the archform and the bracket.
An orthodontic bracket and archform system that uses frictionfree mechanics are disclosed. The archform can have a male fastener that can be retained within an orthodontic bracket. The orthodontic bracket can have varying locking mechanism, such as deflectable tabs, springs, locking pins, and others, that can cooperate with features of the male fastener to prevent sliding between the archform and the bracket.
An orthodontic appliance can include an archwire, ties, and multiple orthodontic brackets. The archwire can include multiple male fasteners and interproximal loops. Each male fastener may be inserted into an orthodontic bracket and tied into place. The male fastener may not be able to slide relative to the orthodontic bracket after it is tied to the orthodontic bracket.
Hybrid orthodontic archwire designs are disclosed. Hybrid archwires may have bracket-archwire sections and interproximal archwire sections in which each section can vary in cross-section shape, size, and/or material properties. Bracket-archwire sections may be configured to promote torque control and may have rectangular cross-sections. Interproximal archwire sections may be configured to be bent into force-promoting loops and may have round cross sections. Each archwire section may be straight or bent into any shape. Hybrid archwires may have sliding sections and non-sliding sections. Non-sliding sections may have male connectors configured to prevent the archwire from sliding relative to the orthodontic brackets and/or may have cross-sectional shapes, sizes, or coatings that resist sliding relative to sliding sections. Sliding sections may have linear archwire segments. Hybrid archwires may have distal or posterior non-sliding sections and an intermediate anterior or medial sliding section.
Systems and methods for fabricating indirect bonding trays are disclosed. Digital models of a patient's teeth can be created with digital brackets positioned on the digital model of a patient's teeth. Digital models of indirect bonding trays can be created to retain and transfer the brackets. The indirect bonding trays can be 3-D printed with wells that the functional brackets can be placed into and thereafter transferred to the patient. The 3-D printed indirect bonding tray can comprise two resins, with one resin forming the tray and another resin forming a functional feature.
Systems and methods for fabricating indirect bonding trays are disclosed. Physical models of a patient's teeth can be created with non-functional placeholder brackets, impressions of which can be transferred to indirect bonding trays. This can create wells in which functional brackets can be placed into, reducing errors created from transferring functional brackets from the physical model onto the indirect bonding trays.
B29C 41/02 - Façonnage par revêtement d'un moule, noyau ou autre support, c.-à-d. par dépôt de la matière à mouler et démoulage de l'objet forméAppareils à cet effet pour la fabrication d'objets de longueur définie, c.-à-d. d'objets séparés
B33Y 50/00 - Acquisition ou traitement de données pour la fabrication additive
B33Y 50/02 - Acquisition ou traitement de données pour la fabrication additive pour la commande ou la régulation de procédés de fabrication additive
B33Y 30/00 - Appareils pour la fabrication additiveLeurs parties constitutives ou accessoires à cet effet
B33Y 80/00 - Produits obtenus par fabrication additive
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
25.
Indirect bonding trays, non-sliding orthodontic appliances, and registration systems for use thereof
Non-sliding orthodontic appliances may include an archwire having male fasteners for locking in place with brackets in a non-sliding manner and interproximal loops for exerting forces on the brackets. Appropriate forces may be calculated according to vectors between initial and ideal tooth positions. The brackets may be transferred to a patient's teeth using indirect bonding trays which contain slots for holding and aligning each bracket. The trays may include integrated handles for facilitating handling, may be sectioned into smaller pieces for easier application, and/or may be labeled for facilitating proper registration. Superposition of a digital placement plan and clinical model after bonding may illustrate the accuracy of bracket placement. The archwire may comprise atraumatic ends to avoid patient discomfort. A color registration system can be used to facilitate the attachment of the archwire to the brackets. The archwire may be locked into place with the brackets using crimpable stops.
A61C 7/14 - BracketsFixation des brackets aux dents
A61C 7/02 - Outils pour la manipulation d'un dispositif orthodontique ou pour travailler avec celui-ci
A61C 9/00 - Méthodes de prise d'empreintes spécialement conçues pour les prothèses dentairesPorte-empreintes à cet effet
A61C 7/28 - Fixation de l'arc vestibulaire ou du fil d'arcade au bracket
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions
Hybrid orthodontic archwire designs are disclosed. Hybrid archwires may have bracket-archwire sections and interproximal archwire sections in which each section can vary in cross-section shape, size, and/or material properties. Bracket-archwire sections may be configured to promote torque control and may have rectangular cross-sections. Interproximal archwire sections may be configured to be bent into force-promoting loops and may have round cross sections. Each archwire section may be straight or bent into any shape. Hybrid archwires may have sliding sections and non-sliding sections. Non-sliding sections may have male connectors configured to prevent the archwire from sliding relative to the orthodontic brackets and/or may have cross-sectional shapes, sizes, or coatings that resist sliding relative to sliding sections. Sliding sections may have linear archwire segments. Hybrid archwires may have distal or posterior non-sliding sections and an intermediate anterior or medial sliding section.
Systems and methods for fabricating indirect bonding trays are disclosed. Physical models of a patient's teeth can be created with non-functional placeholder brackets, impressions of which can be transferred to indirect bonding trays. This can create wells in which functional brackets can be placed into, reducing errors created from transferring functional brackets from the physical model onto the indirect bonding trays.
B29C 41/02 - Façonnage par revêtement d'un moule, noyau ou autre support, c.-à-d. par dépôt de la matière à mouler et démoulage de l'objet forméAppareils à cet effet pour la fabrication d'objets de longueur définie, c.-à-d. d'objets séparés
B33Y 30/00 - Appareils pour la fabrication additiveLeurs parties constitutives ou accessoires à cet effet
B33Y 80/00 - Produits obtenus par fabrication additive
A61C 7/00 - Orthodontie, c.-à-d. obtention ou maintien de la position désirée des dents, p. ex. par redressage, nivellement, ajustement, séparation, ou par correction des malocclusions