Patents by Inventor Mohammad HONARVAR

Mohammad HONARVAR 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: 11672503
    Abstract: Example embodiments of the described technology provide systems and methods for ultrasound imaging. An example method may detect the presence of shear waves within a tissue region of a patient. The method may comprise exciting the tissue region of the patient with one or more exciters to induce propagation of shear waves within the tissue. A plurality of ultrasound images of the tissue may be acquired. A first image mask indicating which pixels of the acquired images represent a desired tissue type using a first trained machine learning model may be generated. The method may also comprise generating a second image mask indicating which pixels of the acquired images represent shear waves using a second trained machine learning model.
    Type: Grant
    Filed: August 18, 2022
    Date of Patent: June 13, 2023
    Assignee: Sonic Incytes Medical Corp.
    Inventors: Mohammad Honarvar, Caitlin Marie Schneider, Julio Raul Lobo, Brian Peter Stachniak
  • Publication number: 20230054588
    Abstract: Example embodiments of the described technology provide systems and methods for ultrasound imaging. An example method may detect the presence of shear waves within a tissue region of a patient. The method may comprise exciting the tissue region of the patient with one or more exciters to induce propagation of shear waves within the tissue. A plurality of ultrasound images of the tissue may be acquired. A first image mask indicating which pixels of the acquired images represent a desired tissue type using a first trained machine learning model may be generated. The method may also comprise generating a second image mask indicating which pixels of the acquired images represent shear waves using a second trained machine learning model.
    Type: Application
    Filed: August 18, 2022
    Publication date: February 23, 2023
    Inventors: Mohammad HONARVAR, Caitlin Marie SCHNEIDER, Julio Raul LOBO, Brian Peter STACHNIAK
  • Patent number: 11510652
    Abstract: A system useful for performing ultrasound elastography of organs such as the liver allows efficient and robust data acquisition. The system may be applied to perform real-time, noninvasive ultrasound imaging of the liver in humans. Steady-state, shear wave absolute elastography is used to measure the Young's modulus of the liver tissue. This method involves the use of an external exciter or vibrator to shake the tissue and generate a shear wave. Accurate placement of an ultrasound transducer facilitates measurement of the tissue motion due to the shear wave. The stiffness of tissues in the region being imaged may be computed from the measured tissue motions. The following innovations address both vibrator and transducer placement, as well as some specific methods to ensure adequate wave propagation, in order to obtain accurate and consistent measurements.
    Type: Grant
    Filed: December 19, 2018
    Date of Patent: November 29, 2022
    Assignee: The University of British Columbia
    Inventors: Septimiu Salcudean, Robert Rohling, Mohammad Honarvar, Julio Raul Lobo, Caitlin Marie Schneider
  • Publication number: 20220151588
    Abstract: Example embodiments of the described technology provide an apparatus for pivoting an ultrasound transducer. The apparatus may comprise a body which defines a cavity. The cavity may be shaped to receive an end of the ultrasound transducer. The apparatus may also comprise first and second protrusions. The first and second protrusions may each extend longitudinally outwards from respective first and second opposing ends of the body. The first and second protrusions may be configured to depress tissue surrounding a region of a patient to be imaged by the ultrasound transducer.
    Type: Application
    Filed: March 13, 2020
    Publication date: May 19, 2022
    Inventors: Mohammad HONARVAR, Caitlin Marie SCHNEIDER, Julio Raul LOBO
  • Publication number: 20190192119
    Abstract: A system useful for performing ultrasound elastography of organs such as the liver allows efficient and robust data acquisition. The system may be applied to perform real-time, non-invasive ultrasound imaging of the liver in humans. Steady-state, shear wave absolute elastography is used to measure the Young's modulus of the liver tissue. This method involves the use of an external exciter or vibrator to shake the tissue and generate a shear wave. Accurate placement of an ultrasound transducer facilitates measurement of the tissue motion due to the shear wave. The stiffness of tissues in the region being imaged may be computed from the measured tissue motions. The following innovations address both vibrator and transducer placement, as well as some specific methods to ensure adequate wave propagation, in order to obtain accurate and consistent measurements.
    Type: Application
    Filed: December 19, 2018
    Publication date: June 27, 2019
    Inventors: Septimiu SALCUDEAN, Robert ROHLING, Mohammad HONARVAR, Julio Raul LOBO, Caitlin Marie SCHNEIDER
  • Patent number: 10117640
    Abstract: A method is described for acquiring 3D quantitative ultrasound elastography volumes. A 2D ultrasound transducer scans a volume of tissue through which shear waves are created using an external vibration source, the synchronized measurement of tissue motion within the plane of the ultrasound transducer with the measurement of the transducer location in space, the reconstruction of tissue displacements and/or tissue velocities in time and space over a volume from this synchronized measurement, and the computation of one or several mechanical properties of tissue from this volumetric measurement of displacements. The tissue motion in the plane of the transducer may be measured at a high effective frame rate in the axial direction of the transducer, or in the axial and lateral directions of the transducer. The tissue displacements and/or tissue velocities over the measured volume may be interpolated over a regular grid in order to facilitate computation of mechanical properties.
    Type: Grant
    Filed: October 30, 2017
    Date of Patent: November 6, 2018
    Assignee: The University of British Columbia
    Inventors: Septimiu Edmund Salcudean, Caitlin Marie Schneider, Robert N. Rohling, Ali Baghani, Mohammad Honarvar
  • Publication number: 20180125455
    Abstract: A method is described for acquiring 3D quantitative ultrasound elastography volumes. A 2D ultrasound transducer scans a volume of tissue through which shear waves are created using an external vibration source, the synchronized measurement of tissue motion within the plane of the ultrasound transducer with the measurement of the transducer location in space, the reconstruction of tissue displacements and/or tissue velocities in time and space over a volume from this synchronized measurement, and the computation of one or several mechanical properties of tissue from this volumetric measurement of displacements. The tissue motion in the plane of the transducer may be measured at a high effective frame rate in the axial direction of the transducer, or in the axial and lateral directions of the transducer. The tissue displacements and/or tissue velocities over the measured volume may be interpolated over a regular grid in order to facilitate computation of mechanical properties.
    Type: Application
    Filed: October 30, 2017
    Publication date: May 10, 2018
    Inventors: Septimiu Edmund SALCUDEAN, Caitlin Marie SCHNEIDER, Robert N. ROHLING, Ali BAGHANI, Mohammad HONARVAR