Patents by Inventor Ross Berbeco

Ross Berbeco 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).

  • Patent number: 12569560
    Abstract: Provided herein are nanoparticle compositions (e.g., nanoparticle compositions comprising high atomic number ions) that are useful for imaging diseases in a subject as well as radiosensitizing a disease in a subject (e.g., radiosensitizing a cancer in the subject). Methods of imaging a subject, methods of treating cancer, and processes of preparing the nanoparticle compositions are also provided.
    Type: Grant
    Filed: January 24, 2023
    Date of Patent: March 10, 2026
    Assignees: The Brigham and Women's Hospital, Inc., Université Claude Bernard Lyon 1, NH TherAguix, Centre National de la Recherche and Scientifique
    Inventors: Ross Berbeco, Eloise Thomas, Francois Lux, Olivier Tillement, Alexandre Detappe, Geraldine Le Duc
  • Publication number: 20240269484
    Abstract: A method is provided for delivering radiation therapy to a patient. The method can include receiving a radiation treatment plan for the patient, receiving first imaging data, the first imaging data can be a dual-energy imaging acquisition, delivering a radiation therapy beam to a patient, receiving, from a portal imaging system, second imaging data, the portal imaging system can sense the radiation therapy beam to acquire the second imaging data, and compensating for movement of the patient, based on the first imaging data and the second imaging data.
    Type: Application
    Filed: May 26, 2022
    Publication date: August 15, 2024
    Inventors: Ross Berbeco, Matthew Jacobson, Thomas Harris
  • Patent number: 11998762
    Abstract: Some aspects of the disclosure provide a radiation therapy system. The system can include a radiation source configured to emit a radiation therapy beam, a collimator positioned to attenuate at least a periphery of the radiation therapy beam, a radiation fiducial marker configured to be coupled to a patient, and a first radiation detector and a second radiation detector configured to receive the radiation therapy beam after passing through a patient. The system also includes a computer configured to determine a position of the radiation fiducial marker using information from the first detector and the second detector.
    Type: Grant
    Filed: December 7, 2020
    Date of Patent: June 4, 2024
    Assignee: The Brigham and Women's Hospital, Inc.
    Inventors: Ross Berbeco, Yue-Houng Hu
  • Publication number: 20230390394
    Abstract: Provided herein are nanoparticle compositions (e.g., nanoparticle compositions comprising high atomic number ions) that are useful for imaging diseases in a subject as well as radiosensitizing a disease in a subject (e.g., radiosensitizing a cancer in the subject). Methods of imaging a subject, methods of treating cancer, and processes of preparing the nanoparticle compositions are also provided.
    Type: Application
    Filed: January 24, 2023
    Publication date: December 7, 2023
    Inventors: Ross Berbeco, Eloise Thomas, Francois Lux, Olivier Tillement, Alexandre Detappe, Geraldine Le Duc
  • Publication number: 20230330229
    Abstract: The disclosure relates to methods for treating tumors. In particular, the disclosure relates to a method of treating a tumor by magnetic resonance image-guided radiation therapy in a subject in need thereof, said method comprising the steps of: (i) administering an efficient amount of high-Z element containing nanoparticles having, contrast enhancement for magnetic resonance imaging and/or radiosensitizing properties for radiation therapy, in a subject in need thereof, and, (ii) exposing said subject to magnetic resonance image-guided radiation therapy by means of a Magnetic Resonance Imaging Guided Linear Accelerator (MR-Linac), wherein said high-Z element containing nanoparticles are nanoparticles containing an element with an atomic Z number higher than 40, preferably higher than 50, and said nanoparticles have a mean hydrodynamic diameter below 20 nm, for example between 1 and 10 nm, preferably between 2 and 8 nm.
    Type: Application
    Filed: May 11, 2021
    Publication date: October 19, 2023
    Inventors: François LUX, Olivier TILLEMENT, Géraldine LE DUC, Aurélien MEYZAUD, Magali ROUFFIAC, Céline MIRJOLET, Daniel CAGNEY, Ross BERBECO, Needa Virani
  • Patent number: 11666293
    Abstract: Extended field-of-view imaging is enabled by combined imaging with a kilovolt (“kV”) x-ray source and a megavolt (“MV”) x-ray source, in which at least one of the corresponding x-ray detectors is laterally offset from the target isocenter by an amount such that the x-ray detector does not have a view of the target isocenter. This scan geometry enables the reconstruction of non-truncated images without resorting to the more expensive solution of outfitting the imaging or radiotherapy system with enlarged x-ray detectors.
    Type: Grant
    Filed: July 6, 2021
    Date of Patent: June 6, 2023
    Assignees: THE BRIGHAM AND WOMEN'S HOSPITAL, INC., DANA-FARBER CANCER INSTITUTE, INC.
    Inventors: Matthew Jacobson, Ross Berbeco
  • Patent number: 11590225
    Abstract: Provided herein are nanoparticle compositions (e.g., nanoparticle compositions comprising high atomic number ions) that are useful for imaging diseases in a subject as well as radiosensitizing a disease in a subject (e.g., radiosensitizing a cancer in the subject). Methods of imaging a subject, methods of treating cancer, and processes of preparing the nanoparticle compositions are also provided.
    Type: Grant
    Filed: December 8, 2017
    Date of Patent: February 28, 2023
    Assignees: The Brigham and Women's Hospital, Inc., NH TherAguix, Université Claude Bernard Lyon 1, Centre National de la Recherche Scientifique
    Inventors: Ross Berbeco, Eloise Thomas, Francois Lux, Olivier Tillement, Alexandre Detappe, Geraldine Le Duc
  • Publication number: 20220000436
    Abstract: Extended field-of-view imaging is enabled by combined imaging with a kilovolt (“kV”) x-ray source and a megavolt (“MV”) x-ray source, in which at least one of the corresponding x-ray detectors is laterally offset from the target isocenter by an amount such that the x-ray detector does not have a view of the target isocenter. This scan geometry enables the reconstruction of non-truncated images without resorting to the more expensive solution of outfitting the imaging or radiotherapy system with enlarged x-ray detectors.
    Type: Application
    Filed: July 6, 2021
    Publication date: January 6, 2022
    Inventors: Matthew Jacobson, Ross Berbeco
  • Publication number: 20210170201
    Abstract: Some aspects of the disclosure provide a radiation therapy system. The system can include a radiation source configured to emit a radiation therapy beam, a collimator positioned to attenuate at least a periphery of the radiation therapy beam, a radiation fiducial marker configured to be coupled to a patient, and a first radiation detector and a second radiation detector configured to receive the radiation therapy beam after passing through a patient. The system also includes a computer configured to determine a position of the radiation fiducial marker using information from the first detector and the second detector.
    Type: Application
    Filed: December 7, 2020
    Publication date: June 10, 2021
    Inventors: Ross Berbeco, Yue-Houng Hu
  • Patent number: 10625100
    Abstract: Systems and methods directed to real-time treatment margin adaptation based on in-treatment imaging are provided. The system and method may utilize the potential of motion mitigation techniques such as couch tracking, DMLC, beam tracking, and the like to freeze tumor motion within the treatment aperture. A standard internal target volume (ITV) based margin plan and a minimum margin plan is created for the patient. The minimum margin plan assumes frozen intrafractional tumor motion. Depending on tumor location confidence in the motion mitigation technique, MLC leaf positions can be interpolated between the two plans to adjust margins during treatment delivery. If motion mitigation fails, the plan can be disabled resulting in the delivery of the current clinical standard of care. Dynamic aperture tracking may be employed with an electronic portal imaging device as the in-treatment imaging modality.
    Type: Grant
    Filed: April 27, 2015
    Date of Patent: April 21, 2020
    Assignee: BRIGHAM AND WOMEN'S HOSPITAL, INC.
    Inventors: Ross Berbeco, Joerg Rottmann
  • Publication number: 20200000915
    Abstract: Provided herein are nanoparticle compositions (e.g., nanoparticle compositions comprising high atomic number ions) that are useful for imaging diseases in a subject as well as radiosensitizing a disease in a subject (e.g., radiosensitizing a cancer in the subject). Methods of imaging a subject, methods of treating cancer, and processes of preparing the nanoparticle compositions are also provided.
    Type: Application
    Filed: December 8, 2017
    Publication date: January 2, 2020
    Inventors: Ross Berbeco, Eloise Thomas, Francois Lux, Olivier Tillement, Alexandre Detappe, Geraldine Le Duc