Patents by Inventor Reza Shirazi AGHJARI

Reza Shirazi AGHJARI has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20200100866
    Abstract: Embodiments relate to an aligner breakage solution that tests damage to an aligner using machine learning. A method includes processing data from a digital design for an orthodontic aligner by a trained machine learning model and outputting, by the trained machine learning model, a probability that the orthodontic aligner associated with the digital design will be damaged during manufacturing of the orthodontic aligner. The method further includes making a comparison of the probability that the orthodontic aligner associated with the digital design will be damaged during manufacturing of the orthodontic aligner to a probability threshold and determining whether the orthodontic aligner is a high risk orthodontic aligner based on a result of the comparison. Responsive to determining that the orthodontic aligner is a high risk orthodontic aligner, the method includes performing at least one of a) a corrective action or b) selecting a manufacturing flow for high risk orthodontic aligners.
    Type: Application
    Filed: September 26, 2019
    Publication date: April 2, 2020
    Inventors: Viktoria Medvinskaya, Arno Kukk, Andrey Cherkas, Anna Akopova, Yuxiang Wang, Rohit Tanugula, Reza Shirazi Aghjari, Andrew Jang, Chunhua Li, Jun Sato, Luyao Cai
  • Publication number: 20200100871
    Abstract: Embodiments relate to an aligner breakage solution. A method includes obtaining a digital design of a polymeric aligner for a dental arch of a patient. The polymeric aligner is shaped to apply forces to teeth of the dental arch. The method also includes performing an analysis on the digital design of the polymeric aligner using at least one of a) a trained machine learning model, b) a numerical simulation, c) a geometry evaluator or d) a rules engine. The method may also include determining, based on the analysis, whether the digital design of the polymeric aligner includes probable points of damage, wherein for a probable point of damage there is a threshold probability that breakage, deformation, or warpage will occur. The method may also include, responsive to determining that the digital design of the polymeric aligner comprises probable points of damage, performing corrective actions based on the probable points of damage.
    Type: Application
    Filed: September 26, 2019
    Publication date: April 2, 2020
    Inventors: Yuxiang Wang, Rohit Tanugula, Reza Shirazi Aghjari, Andrew Jang, Chunhua Li, Jun Sato, Luyao Cai, Viktoria Medvinskaya, Arno Kukk, Andrey Cherkas, Anna Akopova, Kangning Su
  • Publication number: 20200100864
    Abstract: Embodiments relate to an aligner breakage solution that tests probability of aligner breakage at weak points. A method includes gathering a digital model representing an aligner for a dental arch of a patient, receiving material property information for a material to be used to manufacture the aligner, and analyzing one or more regions of the aligner. Analyzing a region of the aligner comprises simulating application of a load around the region, determining at least one of a stress, a strain or a strain energy density at the region, evaluating a strength of the aligner at the region, and determining whether the region satisfies a damage criterion based on the strength of the aligner at the region.
    Type: Application
    Filed: September 26, 2019
    Publication date: April 2, 2020
    Inventors: Yuxiang Wang, Rohit Tanugula, Reza Shirazi Aghjari, Chunhua Li, Jun Sato, Luyao Cai, Kangning Su
  • Publication number: 20200100865
    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.
    Type: Application
    Filed: September 26, 2019
    Publication date: April 2, 2020
    Inventors: Yuxiang Wang, Rohit Tanugula, Reza Shirazi Aghjari, Chunhua Li, Jun Sato, Luyao Cai, Kangning Su
  • Publication number: 20200077896
    Abstract: Methods and apparatuses for 3D 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.
    Type: Application
    Filed: November 13, 2019
    Publication date: March 12, 2020
    Inventors: Jun SATO, Allen BORONKAY, Yaser SHANJANI, Reza SHIRAZI AGHJARI, Avi KOPELMAN, Andrew JANG, Jihua CHENG, Eric KUO, Vladimir SHELBAKH, Bastien PESENTI
  • Patent number: 10517482
    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.
    Type: Grant
    Filed: July 27, 2018
    Date of Patent: December 31, 2019
    Assignee: Align Technology, Inc.
    Inventors: Jun Sato, Allen Boronkay, Yaser Shanjani, Reza Shirazi Aghjari, Avi Kopelman, Andrew Jang, Jihua Cheng, Eric Kuo, Vladimir Shelbakh, Bastien Pesenti
  • Publication number: 20190314119
    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.
    Type: Application
    Filed: April 10, 2019
    Publication date: October 17, 2019
    Inventors: Avi KOPELMAN, Ryan KIMURA, Yaser SHANJANI, Jeremy RILEY, Jun SATO, Bob GROVE, Reza SHIRAZI AGHJARI
  • Publication number: 20190029522
    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.
    Type: Application
    Filed: July 27, 2018
    Publication date: January 31, 2019
    Inventors: Jun SATO, Allen BORONKAY, Yaser SHANJANI, Reza Shirazi AGHJARI, Avi KOPELMAN, Andrew JANG, Jihua CHENG, Eric KUO, Vladimir SHELBAKH, Bastien PESENTI