Patents by Inventor Xavier Guillaume

Xavier Guillaume 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: 20240115324
    Abstract: The disclosure herein relates to systems, methods, and devices for developing patient-specific spinal implants, treatments, operations, and/or procedures. In some embodiments, systems, methods, and devices described herein can comprise using artificial intelligence, machine learning, and/or predictive modeling to predict the outcome of a spinal surgery, one or more parameters of a spine of a patient after spinal surgery, for example after implantation of a spinal rod which can be patient-specific, and/or one or more parameters of one or more recommended patient-specific spinal rods. Furthermore, in some embodiments, systems, methods, and devices described herein can comprise intraoperative tracking for tracking and/or suggesting improvements during spinal surgery based on a pre-operatively determined surgical plan, for example in real-time or substantially real-time. In addition, in some embodiments, systems, methods, and devices described herein can comprise screw planning prior to spinal surgery.
    Type: Application
    Filed: December 19, 2023
    Publication date: April 11, 2024
    Applicant: Medicrea International
    Inventors: Thomas Mosnier, Agathe Senac, Céline Augagneur, Christophe Xavier Guillaume Javelot, Denys Sournac
  • Patent number: 11877801
    Abstract: The disclosure herein relates to systems, methods, and devices for developing patient-specific spinal implants, treatments, operations, and/or procedures. In some embodiments, systems, methods, and devices described herein can comprise using artificial intelligence, machine learning, and/or predictive modeling to predict the outcome of a spinal surgery, one or more parameters of a spine of a patient after spinal surgery, for example after implantation of a spinal rod which can be patient-specific, and/or one or more parameters of one or more recommended patient-specific spinal rods. Furthermore, in some embodiments, systems, methods, and devices described herein can comprise intraoperative tracking for tracking and/or suggesting improvements during spinal surgery based on a pre-operatively determined surgical plan, for example in real-time or substantially real-time. In addition, in some embodiments, systems, methods, and devices described herein can comprise screw planning prior to spinal surgery.
    Type: Grant
    Filed: April 1, 2020
    Date of Patent: January 23, 2024
    Inventors: Thomas Mosnier, Agathe Senac, Céline Augagneur, Christophe Xavier Guillaume Javelot, Denys Sournac
  • Patent number: 11687394
    Abstract: A method for testing, in situ and in operation, a reset device for resetting a computer, including an execution sequence and a verification sequence, the execution sequence being executed during the running of the piece of software and including the following steps: incrementing a test counter, storing the test counter in a non-volatile memory, triggering a reset of the computer, the verification sequence being executed when starting the piece of software and including the following steps: reading the test counter from the non-volatile memory, comparing the test counter: if it is equal to its initial value increased by 1, resetting the test counter, and the test result is positive; and if it is greater than its initial value increased by 1, the test result is negative.
    Type: Grant
    Filed: June 19, 2020
    Date of Patent: June 27, 2023
    Inventors: Jean-Luc Boyer, Xavier Guillaume
  • Publication number: 20220358004
    Abstract: A method for testing, in situ and in operation, a reset device for resetting a computer, including an execution sequence and a verification sequence, the execution sequence being executed during the running of the piece of software and including the following steps: incrementing a test counter, storing the test counter in a non-volatile memory, triggering a reset of the computer, the verification sequence being executed when starting the piece of software and including the following steps: reading the test counter from the non-volatile memory, comparing the test counter: if it is equal to its initial value increased by 1, resetting the test counter, and the test result is positive; and if it is greater than its initial value increased by 1, the test result is negative.
    Type: Application
    Filed: June 19, 2020
    Publication date: November 10, 2022
    Inventors: Jean-Luc Boyer, Xavier Guillaume
  • Publication number: 20220197219
    Abstract: Disclosed is a tourbillon for a horology movement including a cage rotatably mounted on the horology movement, the cage bearing a regulating organ including a balance including a balance pivot pivotally mounted in balance bearings about a balance axis with an anchor including an anchor pivot pivotally mounted in anchor bearings about an anchor axis and arranged to cooperate both with the regulating organ and also with an escapement wheel including an escapement pivot pivotally mounted in escapement bearings about an escapement axis. The anchor and the escapement wheel are positioned relative to the balance so the distance between the anchor axis and the balance axis and the distance between the escapement axis and the balance axis are greater than the outer radius of the balance. Also disclosed is a movement including such a tourbillon as well as to a timepiece including such a movement.
    Type: Application
    Filed: December 15, 2021
    Publication date: June 23, 2022
    Inventor: Xavier GUILLAUME
  • Patent number: 11185369
    Abstract: The disclosure herein relate to systems, methods, and devices for developing patient-specific spinal treatments, operations, and procedures. In some embodiments, systems, methods, and devices described herein for developing patient-specific spinal treatments, operations, and procedures can comprise an iterative virtuous cycle. The iterative virtuous cycle can further comprise pre-operative, intra-operative, and post-operative techniques or processes. For example, the iterative virtuous cycle can comprise imaging analysis, case simulation, implant production, case support, data collection, machine learning, and/or predictive modeling. One or more techniques or processes of the iterative virtuous cycle can be repeated.
    Type: Grant
    Filed: April 20, 2018
    Date of Patent: November 30, 2021
    Assignee: MEDICREA NTERNATIONAL
    Inventors: David Nicholas Ryan, Denys Sournac, Thomas Mosnier, Christophe Xavier Guillaume Javelot, Agathe Senac, Céline Augagneur
  • Publication number: 20200315708
    Abstract: The disclosure herein relates to systems, methods, and devices for developing patient-specific spinal implants, treatments, operations, and/or procedures. In some embodiments, systems, methods, and devices described herein can comprise using artificial intelligence, machine learning, and/or predictive modeling to predict the outcome of a spinal surgery, one or more parameters of a spine of a patient after spinal surgery, for example after implantation of a spinal rod which can be patient-specific, and/or one or more parameters of one or more recommended patient-specific spinal rods. Furthermore, in some embodiments, systems, methods, and devices described herein can comprise intraoperative tracking for tracking and/or suggesting improvements during spinal surgery based on a pre-operatively determined surgical plan, for example in real-time or substantially real-time. In addition, in some embodiments, systems, methods, and devices described herein can comprise screw planning prior to spinal surgery.
    Type: Application
    Filed: April 1, 2020
    Publication date: October 8, 2020
    Inventors: THOMAS MOSNIER, AGATHE SENAC, CÉLINE AUGAGNEUR, CHRISTOPHE XAVIER GUILLAUME JAVELOT, DENYS SOURNAC
  • Patent number: 10292770
    Abstract: The disclosure herein relate to systems, methods, and devices for developing patient-specific spinal treatments, operations, and procedures. In some embodiments, systems, methods, and devices described herein for developing patient-specific spinal treatments, operations, and procedures can comprise an iterative virtuous cycle. The iterative virtuous cycle can further comprise pre-operative, intra-operative, and post-operative techniques or processes. For example, the iterative virtuous cycle can comprise imaging analysis, case simulation, implant production, case support, data collection, machine learning, and/or predictive modeling. One or more techniques or processes of the iterative virtuous cycle can be repeated.
    Type: Grant
    Filed: November 6, 2018
    Date of Patent: May 21, 2019
    Assignee: Medicrea International
    Inventors: David Nicholas Ryan, Denys Sournac, Thomas Mosnier, Christophe Xavier Guillaume Javelot, Agathe Senac, Céline Augagneur
  • Publication number: 20190069956
    Abstract: The disclosure herein relate to systems, methods, and devices for developing patient-specific spinal treatments, operations, and procedures. In some embodiments, systems, methods, and devices described herein for developing patient-specific spinal treatments, operations, and procedures can comprise an iterative virtuous cycle. The iterative virtuous cycle can further comprise pre-operative, intra-operative, and post-operative techniques or processes. For example, the iterative virtuous cycle can comprise imaging analysis, case simulation, implant production, case support, data collection, machine learning, and/or predictive modeling. One or more techniques or processes of the iterative virtuous cycle can be repeated.
    Type: Application
    Filed: November 6, 2018
    Publication date: March 7, 2019
    Inventors: David Nicholas Ryan, Denys Sournac, Thomas Mosnier, Christophe Xavier Guillaume Javelot, Agathe Senac, Céline Augagneur
  • Publication number: 20180303552
    Abstract: The disclosure herein relate to systems, methods, and devices for developing patient-specific spinal treatments, operations, and procedures. In some embodiments, systems, methods, and devices described herein for developing patient-specific spinal treatments, operations, and procedures can comprise an iterative virtuous cycle. The iterative virtuous cycle can further comprise pre-operative, intra-operative, and post-operative techniques or processes. For example, the iterative virtuous cycle can comprise imaging analysis, case simulation, implant production, case support, data collection, machine learning, and/or predictive modeling. One or more techniques or processes of the iterative virtuous cycle can be repeated.
    Type: Application
    Filed: April 20, 2018
    Publication date: October 25, 2018
    Inventors: David Nicholas Ryan, Denys Sournac, Thomas Mosnier, Christophe Xavier Guillaume Javelot, Agathe Senac, Céline Augagneur
  • Patent number: D758210
    Type: Grant
    Filed: January 5, 2015
    Date of Patent: June 7, 2016
    Assignee: Sowind SA
    Inventor: Xavier Guillaume