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公开(公告)号:US11974897B2
公开(公告)日:2024-05-07
申请号:US17679858
申请日:2022-02-24
Applicant: Align Technology, Inc.
Inventor: Yaser Shanjani , Jeremy Riley , Ryan Kimura , Jun Sato , Norman Su , Jihua Cheng , Fuming Wu
IPC: A61C7/10 , A61C7/00 , A61C7/02 , A61C7/08 , A61C9/00 , B29C64/393 , B33Y10/00 , B33Y50/02 , B33Y80/00
CPC classification number: A61C7/10 , A61C7/002 , A61C7/023 , A61C7/08 , A61C9/00 , B29C64/393 , B33Y10/00 , B33Y50/02 , B33Y80/00
Abstract: Palatal expander apparatuses for expanding a patient's palate (“palatal expanders”) and methods of making them. The apparatuses may include a pair of tooth engagement regions connected by a palatal region. A detachment region on at least one of the tooth engagement regions may be defined by one or more first vertical cut-out regions extending from a bottom of a buccal side toward an occlusal side of the tooth engagement region. The buccal side may be more flexible than the occlusal side so that the detachment region flexes when a removal force to release the palatal expander apparatus from the patient's palate is applied to the detachment region.
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公开(公告)号:US20240131795A1
公开(公告)日:2024-04-25
申请号:US18490649
申请日:2023-10-18
Applicant: Align Technology, Inc.
Inventor: Chunhua Li , Bastien Pesenti , Roman A. Roschin , Jun Sato , Yuxiang Wang
CPC classification number: B29C64/386 , A61C7/002 , A61C7/08 , B33Y10/00 , B33Y30/00 , B33Y50/02 , B29L2031/7532
Abstract: Systems, methods, and devices for computer-aided design, digital treatment planning, and direct additive manufacturing of dental appliances are provided. In some embodiments, a method includes receiving a treatment plan for a patient's teeth, the treatment plan specifying a target arrangement for the teeth and a plurality of treatment stages to reposition the teeth from an initial arrangement toward the target arrangement. The method can include identifying appliance design parameters for one or more dental appliances to implement at least one treatment stage of the plurality of treatment stages. The appliance design parameters can include one or more manufacturability parameters corresponding to an additive manufacturing process to be used to directly fabricate the one or more dental appliances. The method can further include determining an appliance geometry for the one or more dental appliances using the set of appliance design parameters.
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公开(公告)号:US20230157790A1
公开(公告)日:2023-05-25
申请号:US18159598
申请日:2023-01-25
Applicant: Align Technology, Inc.
Inventor: Viktoria Medvinskaya , Arno Kukk , Andrey Cherkas , Anna Akopova , Yuxiang Wang , Rohit Tanugula , Reza Shirazi Aghjari , Andrew Jang , Chunhua Li , Jun Sato , Luyao Cai
IPC: A61C7/00 , G06F17/18 , G06N20/00 , A61C7/08 , G06F30/23 , G16H50/50 , G01N33/44 , B33Y80/00 , A61C9/00 , A61C13/34 , B29C33/38 , B29C51/30 , G06F30/27 , B29C73/00 , G06F30/20
CPC classification number: A61C7/002 , G06F17/18 , G06N20/00 , A61C7/08 , G06F30/23 , G16H50/50 , G01N33/442 , B33Y80/00 , A61C9/004 , A61C13/34 , B29C33/3835 , B29C51/30 , G06F30/27 , B29C73/00 , G06F30/20 , G06F2119/18
Abstract: Embodiments relate to an aligner breakage solution that tests damage to an aligner using machine learning. A method includes of training a machine learning model to predict damage to an orthodontic aligner includes gathering a training dataset comprising digital designs for a plurality of orthodontic aligners, wherein each digital design is associated with a respective orthodontic aligner of the plurality of orthodontic aligners, and wherein each digital design comprises metadata indicating whether the associated respective orthodontic aligner was damaged during manufacturing of the associated respective orthodontic aligner. The method further includes training the machine learning model using the training dataset, wherein the machine learning model is trained to process data from a digital design for an orthodontic aligner and to output a probability that the orthodontic aligner associated with the digital design will be damaged during manufacturing of the orthodontic aligner.
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公开(公告)号:US11602414B2
公开(公告)日:2023-03-14
申请号:US16899281
申请日:2020-06-11
Applicant: ALIGN TECHNOLOGY, INC.
Inventor: Jun Sato , Bruce Cam , Yaser Shanjani
Abstract: Embedded sensors and onboard or off-board processing in an aligner case can detect aligner material and/or quality. Material detection can be used for counterfeit detection, or to trigger material specific events. Quality detection can include detection of common aligner failures or defects. A case for a dental appliance may include a tray for supporting the dental appliance, a cover coupled to the tray, and at least one sensor to detect a deformation of the dental appliance. A case for a dental appliance may include a tray for housing the dental appliance, a cover coupled to the tray, and at least one sensor configured to detect a change in material of the dental appliance.
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公开(公告)号:US11564777B2
公开(公告)日:2023-01-31
申请号:US16380801
申请日:2019-04-10
Applicant: Align Technology, Inc.
Inventor: Avi Kopelman , Ryan Kimura , Yaser Shanjani , Jeremy Riley , Jun Sato , Bob Grove , Reza Shirazi Aghjari
Abstract: Releasable and removable palatal expander apparatuses for expanding a patient's palate (“palatal expanders”) and methods of using and making them. These releasable palatal expanders are adapted for ease in removal by the patient or caregiver, and may include a breach region configured to predictably bend or break when a pulling force is applied. The palatal expander apparatuses described herein may include one or more locks for locking the palatal expander onto the patient's teeth. The lock(s) may be unlocked to release the palatal expander from the teeth. A lock may include a control for manually unlocking the lock. Unlocking the locks may allow the palatal expander to automatically disengage from the patient's teeth.
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公开(公告)号:US11523881B2
公开(公告)日:2022-12-13
申请号:US16584791
申请日:2019-09-26
Applicant: Align Technology, Inc.
Inventor: Yuxiang Wang , Rohit Tanugula , Reza Shirazi Aghjari , Chunhua Li , Jun Sato , Luyao Cai , Kangning Su
IPC: A61C7/00 , G06F30/23 , B29C33/38 , B29C73/00 , G06F30/20 , G06F17/18 , G06N20/00 , A61C7/08 , G16H50/50 , G01N33/44 , B33Y80/00 , A61C9/00 , A61C13/34 , B29C51/30 , G06F30/27 , G06F119/18 , G06F113/22 , G06F111/10 , B33Y50/00 , B29L31/00
Abstract: Embodiments relate to an aligner breakage solution that tests progressive damage to an aligner. A method includes gathering a digital model representing an aligner for a dental arch of a patient, and simulating progressive damage to the aligner. Simulating progressive damage for a region of the aligner comprises simulating, using at least the digital model, a sequence of loads on the aligner, determining an amount of damage to the region of the aligner for each load, and after each simulation of a load on the aligner, updating the digital model based on the amount of damage to the region of the aligner. The method further includes determining whether a damage criterion is satisfied for at least one region of the aligner and determining whether to implement one or more corrective actions for the aligner.
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57.
公开(公告)号:US11376101B2
公开(公告)日:2022-07-05
申请号:US15580874
申请日:2017-12-01
Applicant: Align Technology, Inc.
Inventor: Jun Sato , Yaser Shanjani , Ryan Kimura
Abstract: A removable arch adjustment appliance includes a removable shell having a plurality of cavities formed therein, wherein the plurality of cavities are shaped to receive at least one posterior tooth of a patient on each side of a patient's jaw. The shell can include an elastic transpalatal element that spans a palate of the patient and provides force to expand at least one of the spaces between the posterior teeth on each side of a patient's jaw or the palate of the patient. The transpalatal element can include a predetermined force characteristic, a number of force control elements to control the force provided by the transpalatal element, and/or a regulating structure to balance and direct the force provided by the transpalatal element, wherein the transpalatal element has a width specific to a stage of a treatment plan.
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公开(公告)号:US11123156B2
公开(公告)日:2021-09-21
申请号:US16104781
申请日:2018-08-17
Applicant: Align Technology, Inc.
Inventor: Bruce Cam , Yaser Shanjani , Edi Fridman , Sergey Vinnichenko , Jun Sato
Abstract: The present disclosure describes devices, systems, and methods for monitoring use of an oral appliance in an oral cavity using extra-oral sensor(s). One method includes sensing one or more physical properties of an oral appliance using an extra-oral sensor, providing a compliance signal from the extra-oral sensor, the compliance signal including an electronic representation of the one or more physical properties of the oral appliance, identifying one or more patient compliance factors based on the compliance signal, the one or more patient compliance factors providing a basis to identify an extent of compliance of usage of the oral appliance with an orthodontic treatment plan, and providing one or more compliances indicators based on the one or more patient compliance factors, the one or more compliance indicators providing a basis to indicate the extent of compliance.
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公开(公告)号:US20200214801A1
公开(公告)日:2020-07-09
申请号:US16732141
申请日:2019-12-31
Applicant: Align Technology, Inc.
Inventor: Yuxiang Wang , Andrew Jang , Bruce Cam , Rohit Tanugula , Chunhua Li , Jun Sato , Luyao Cai , Pavel Pokotilov , Kangning Su , John Y. Morton
Abstract: Methods and systems for producing orthodontic appliances are provided herein utilizing iterative modeling techniques to increase the efficiency and efficacy of said appliances. Further disclosed herein are the orthodontic appliances fabricated from such methods.
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公开(公告)号:US10517482B2
公开(公告)日:2019-12-31
申请号:US16048054
申请日:2018-07-27
Applicant: ALIGN TECHNOLOGY, INC.
Inventor: Jun Sato , Allen Boronkay , Yaser Shanjani , Reza Shirazi Aghjari , Avi Kopelman , Andrew Jang , Jihua Cheng , Eric Kuo , Vladimir Shelbakh , Bastien Pesenti
IPC: G06T7/73 , A61B5/00 , A61C7/00 , A61C7/08 , A61C7/10 , A61C9/00 , A61C13/00 , G06T7/00 , G06T15/08
Abstract: Methods and apparatuses for 3D imaging (including 3D optical coherence tomography imaging) to measure the shape of orthodontic aligners, teeth, and other oral structures simultaneously, in-vivo or in-vitro. These methods and apparatuses may be used to determine contact locations of aligners with teeth and/or teeth with other teeth with very high precision, including determining the size of gaps where they are not in contact. These measurements may be used design, modify or replace an aligner and/or to verify aligner fit. 3D models of the whole aligner and teeth may be generated.
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