Patents by Inventor Travis Young

Travis Young 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: 10501546
    Abstract: Disclosed herein are immunoglobulin fusion proteins comprising an insulin therapeutic peptide and an immunoglobulin region that targets the insulin therapeutic peptide to the liver of an individual in need thereof. Further disclosed herein are compositions comprising the immunoglobulin fusion proteins and methods for using the immunoglobulin fusion proteins for the treatment or prevention of a disease or condition in a subject, for example, diabetes and diabetes related conditions.
    Type: Grant
    Filed: September 2, 2016
    Date of Patent: December 10, 2019
    Assignee: THE CALIFORNIA INSTITUTE FOR BIOMEDICAL RESEARCH
    Inventors: Feng Wang, Matthew S. Tremblay, Travis Young, Nicole Alvarez, Yan Liu, Juanjuan Du, Peter G. Schultz
  • Publication number: 20190371054
    Abstract: Systems, methods and instructions for creating building models of physical structures is disclosed. The building model may be a collection of floors defined by outlines containing regions that may be offset relative to a main region, and a collection of connectors. Connectors may have connection points for tracking, routing and sizing. Connectors may indicate elevation changes through georeferenced structural features. Signal elements may also be features that provide corrections when tracking. Feature descriptors are data that describes the structural configuration and signal elements enabling them to be matched to previously collected data in a database. User interface elements assist a user of a tracking device in collecting floor information, structural features and signal features and validating certain collected information based on previously known information. The height of floors may also be inferred based on sensor data from the tracking device.
    Type: Application
    Filed: May 31, 2019
    Publication date: December 5, 2019
    Inventors: Travis Young, Daniel Hakim, Daniel Franchy, Jared Napora, John Karvounis, Jon Fetter Degges, Tim Wang, Benjamin Funk, Carole Teolis, Carol Politi, Stuart Woodbury
  • Publication number: 20190271547
    Abstract: A location and mapping service is described that creates a global database of indoor navigation maps through crowd-sourcing and data fusion technologies. The navigation maps consist of a database of geo-referenced, uniquely described features in the multi-dimensional sensor space (e.g., including structural, RF, magnetic, image, acoustic, or other data) that are collected automatically as a tracked mobile device is moved through a building (e.g. a person with a mobile phone or a robot). The feature information can be used to create building models as one or more tracked devices traverse a building.
    Type: Application
    Filed: April 17, 2019
    Publication date: September 5, 2019
    Inventors: Travis YOUNG, Kamiar KORDARI, Benjamin FUNK, Carole TEOLIS
  • Patent number: 10393543
    Abstract: Methods for calibrating a body-worn magnetic sensor by spinning the magnetic sensor 360 degrees to capture magnetic data; if the spin failed to produce a circle contained in an x-y plane fit a sphere to the captured data; determining offsets based on the center of the sphere; and removing the offsets that are in the z-direction. Computing a magnetic heading reliability of a magnetic sensor by determining an orientation of the sensor at one location; transforming the orientation between two reference frames; measuring a first vector associated with the magnetic field of Earth at the location; processing the first vector to generate a virtual vector when a second location is detected; measuring a second vector associated with the magnetic field of Earth at the second location; and calculating the magnetic heading reliability at the second location based on a comparison of the virtual vector and the second vector.
    Type: Grant
    Filed: July 13, 2017
    Date of Patent: August 27, 2019
    Assignee: TRX SYSTEMS, INC.
    Inventors: Benjamin E. Funk, Dan Hakim, John Karvounis, Travis Young, Carole Teolis
  • Patent number: 10391155
    Abstract: Disclosed herein are chimeric antigen receptor effector cells (CAR-ECs) and CAR-EC switches. The switchable CAR-ECs are generally T cells. The one or more chimeric antigen receptors may recognize a peptidic antigen on the CAR-EC switch. The CAR-ECs and switches may be used for the treatment of a condition in a subject in need thereof.
    Type: Grant
    Filed: March 2, 2017
    Date of Patent: August 27, 2019
    Assignee: THE SCRIPPS RESEARCH INSTITUTE
    Inventors: Travis Young, Chanhyuk Kim, Peter G. Schultz
  • Patent number: 10393542
    Abstract: Methods for calibrating a body-worn magnetic sensor by spinning the magnetic sensor 360 degrees to capture magnetic data; if the spin failed to produce a circle contained in an x-y plane fit a sphere to the captured data; determining offsets based on the center of the sphere; and removing the offsets that are in the z-direction. Computing a magnetic heading reliability of a magnetic sensor by determining an orientation of the sensor at one location; transforming the orientation between two reference frames; measuring a first vector associated with the magnetic field of Earth at the location; processing the first vector to generate a virtual vector when a second location is detected; measuring a second vector associated with the magnetic field of Earth at the second location; and calculating the magnetic heading reliability at the second location based on a comparison of the virtual vector and the second vector.
    Type: Grant
    Filed: July 11, 2017
    Date of Patent: August 27, 2019
    Assignee: TRX SYSTEMS, INC.
    Inventors: Benjamin E. Funk, Dan Hakim, John Karvounis, Travis Young, Carole Teolis
  • Publication number: 20190249993
    Abstract: A location and mapping service is described that creates a global database of indoor navigation maps through crowd-sourcing and data fusion technologies. The navigation maps consist of a database of geo-referenced, uniquely described features in the multi-dimensional sensor space (e.g., including structural, RF, magnetic, image, acoustic, or other data) that are collected automatically as a tracked mobile device is moved through a building (e.g. a person with a mobile phone or a robot). The feature information can be used to create building models as one or more tracked devices traverse a building.
    Type: Application
    Filed: April 17, 2019
    Publication date: August 15, 2019
    Inventors: Travis YOUNG, Kamiar KORDARI, Benjamin FUNK, Carole TEOLIS
  • Publication number: 20190169289
    Abstract: Disclosed herein are chimeric antigen receptor effector cells (CAR-ECs) and CAR-EC switches. The switchable CAR-ECs are generally T cells. The one or more chimeric antigen receptors may recognize a peptidic antigen on the CAR-EC switch. The CAR-ECs and switches may be used for the treatment of a condition in a subject in need thereof.
    Type: Application
    Filed: April 15, 2016
    Publication date: June 6, 2019
    Inventors: Travis YOUNG, David T. RODGERS, Ian HARDY, Chanhyuk KIM, Peter G. SCHULTZ, Eric HAMPTON, Eduardo LABORDA, Leonard PRESTA
  • Patent number: 10215587
    Abstract: A method for detecting a human's steps and estimating the horizontal translation direction and scaling of the resulting motion relative to an inertial sensor is described. When a pedestrian takes a sequence of steps the displacement can be decomposed into a sequence of rotations and translations over each step. A translation is the change in the location of pedestrian's center of mass and a rotation is the change along z-axis of the pedestrian's orientation. A translation can be described by a vector and a rotation by an angle.
    Type: Grant
    Filed: March 8, 2013
    Date of Patent: February 26, 2019
    Assignee: TRX SYSTEMS, INC.
    Inventors: Kamiar Kordari, Benjamin Funk, Jared Napora, Ruchika Verma, Carole Teolis, Travis Young
  • Publication number: 20190023794
    Abstract: Disclosed herein are immunoglobulin fusion proteins comprising an insulin therapeutic peptide and an immunoglobulin region that targets the insulin therapeutic peptide to the liver of an individual in need thereof. Further disclosed herein are compositions comprising the immunoglobulin fusion proteins and methods for using the immunoglobulin fusion proteins for the treatment or prevention of a disease or condition in a subject, for example, diabetes and diabetes related conditions.
    Type: Application
    Filed: September 2, 2016
    Publication date: January 24, 2019
    Inventors: Feng WANG, Matthew S. TREMBLAY, Travis YOUNG, Nicole ALVAREZ, Yan LIU, Juanjuan DU, Peter G. SCHULTZ
  • Publication number: 20190025062
    Abstract: A location and mapping service is described that creates a global database of indoor navigation maps through crowd-sourcing and data fusion technologies. The navigation maps consist of a database of geo-referenced, uniquely described features in the multi-dimensional sensor space (e.g., including structural, RF, magnetic, image, acoustic, or other data) that are collected automatically as a tracked mobile device is moved through a building (e.g. a person with a mobile phone or a robot). The feature information can be used to create building models as one or more tracked devices traverse a building, to indicate signal strength throughout different parts of the building mode, and to illustrate a path of each tracked device associated with signal strength and other annotations.
    Type: Application
    Filed: September 11, 2018
    Publication date: January 24, 2019
    Inventors: Travis Young, Kamiar Kordari, Benjamin Funk, Carole Teolis
  • Patent number: 10088313
    Abstract: A method for computing a correction to a compass heading for a portable device worn or carried by a user is described. The method involves determining a heading for the device based on a compass reading, collecting data from one or more sensors, determining if the device is indoors or outdoors based on the collected data, and correcting the heading based on the determination of whether the device is indoors or outdoors.
    Type: Grant
    Filed: August 15, 2017
    Date of Patent: October 2, 2018
    Assignee: TRX SYSTEMS, INC.
    Inventors: Travis Young, John Riley Miller, John Karvounis, Dan Hakim, Jared Napora, Benjamin Funk, Carole Teolis
  • Publication number: 20180274932
    Abstract: A location and mapping service is described that creates a global database of indoor navigation maps through crowd-sourcing and data fusion technologies. The navigation maps consist of a database of geo-referenced, uniquely described features in the multi-dimensional sensor space (e.g., including structural, RF, magnetic, image, acoustic, or other data) that are collected automatically as a tracked mobile device is moved through a building (e.g. a person with a mobile phone or a robot). The feature information can be used to create building models as one or more tracked devices traverse a building.
    Type: Application
    Filed: May 23, 2018
    Publication date: September 27, 2018
    Inventors: Travis YOUNG, Kamiar KORDARI, Benjamin FUNK, Carole TEOLIS
  • Patent number: 9983012
    Abstract: A location and mapping service is described that creates a global database of indoor navigation maps through crowd-sourcing and data fusion technologies. The navigation maps consist of a database of geo-referenced, uniquely described features in the multi-dimensional sensor space (e.g., including structural, RF, magnetic, image, acoustic, or other data) that are collected automatically as a tracked mobile device is moved through a building (e.g. a person with a mobile phone or a robot). The feature information can be used to create building models as one or more tracked devices traverse a building.
    Type: Grant
    Filed: April 14, 2016
    Date of Patent: May 29, 2018
    Assignee: TRX SYSTEMS, INC.
    Inventors: Travis Young, Kamiar Kordari, Benjamin Funk, Carole Teolis
  • Publication number: 20180118808
    Abstract: Disclosed herein are switchable chimeric receptors, switchable chimeric receptor effector cells and chimeric receptor effector cell switches. The switchable chimeric receptor-ECs are generally T cells. The chimeric receptors have non-antibody extracellular domains that recognize a chimeric receptor binding partner on the chimeric receptor-EC switch or target cell. The chimeric receptor-ECs and switches may be used for the treatment of a disease or condition in a subject in need thereof.
    Type: Application
    Filed: March 28, 2016
    Publication date: May 3, 2018
    Applicant: The California Institute for Biomedical Research
    Inventors: Travis YOUNG, Chanhyuk KIM, Peter G. SCHULTZ
  • Publication number: 20180104354
    Abstract: Disclosed herein are switches for regulating the activity of a chimeric antigen receptor effector cells (CAR-ECs). The switches generally comprise a chimeric antigen receptor-interacting domain (CAR-ID) and a target interacting domain (TID). The switch may further comprise a linker. Further disclosed herein are methods of using the switches for the treatment of one or more conditions or diseases in a subject in need thereof.
    Type: Application
    Filed: July 7, 2017
    Publication date: April 19, 2018
    Inventors: Chanhyuk Kim, Travis Young, Yu Cao, Jennifer Ma, Minsoo Kim, Stephanie A. Pinkerton, Peter G. Schultz
  • Publication number: 20180100026
    Abstract: Disclosed herein are switches for regulating the activity of a chimeric antigen receptor effector cells (CAR-ECs). The switches generally comprise a chimeric antigen receptor-interacting domain (CAR-ID) and a target interacting domain (TID). The switch may further comprise a linker. Further disclosed herein are methods of using the switches for the treatment of one or more conditions or diseases in a subject in need thereof.
    Type: Application
    Filed: April 15, 2016
    Publication date: April 12, 2018
    Inventors: Chanhyuk KIM, Travis YOUNG, Jennifer MA, Ji Young KIM, Xinxin WANG, Eduardo LABORDA, Peter G. SCHULTZ
  • Publication number: 20170370722
    Abstract: A method for computing a correction to a compass heading for a portable device worn or carried by a user is described. The method involves determining a heading for the device based on a compass reading, collecting data from one or more sensors, determining if the device is indoors or outdoors based on the collected data, and correcting the heading based on the determination of whether the device is indoors or outdoors.
    Type: Application
    Filed: August 15, 2017
    Publication date: December 28, 2017
    Inventors: Travis YOUNG, John Riley MILLER, John KARVOUNIS, Dan HAKIM, Jared NAPORA, Benjamin FUNK, Carole TEOLIS
  • Publication number: 20170307403
    Abstract: Methods for calibrating a body-worn magnetic sensor by spinning the magnetic sensor 360 degrees to capture magnetic data; if the spin failed to produce a circle contained in an x-y plane fit a sphere to the captured data; determining offsets based on the center of the sphere; and removing the offsets that are in the z-direction. Computing a magnetic heading reliability of a magnetic sensor by determining an orientation of the sensor at one location; transforming the orientation between two reference frames; measuring a first vector associated with the magnetic field of Earth at the location; processing the first vector to generate a virtual vector when a second location is detected; measuring a second vector associated with the magnetic field of Earth at the second location; and calculating the magnetic heading reliability at the second location based on a comparison of the virtual vector and the second vector.
    Type: Application
    Filed: July 11, 2017
    Publication date: October 26, 2017
    Inventors: Benjamin E. Funk, Dan Hakim, John Karvounis, Travis Young, Carole Teolis
  • Publication number: 20170307404
    Abstract: Methods for calibrating a body-worn magnetic sensor by spinning the magnetic sensor 360 degrees to capture magnetic data; if the spin failed to produce a circle contained in an x-y plane fit a sphere to the captured data; determining offsets based on the center of the sphere; and removing the offsets that are in the z-direction. Computing a magnetic heading reliability of a magnetic sensor by determining an orientation of the sensor at one location; transforming the orientation between two reference frames; measuring a first vector associated with the magnetic field of Earth at the location; processing the first vector to generate a virtual vector when a second location is detected; measuring a second vector associated with the magnetic field of Earth at the second location; and calculating the magnetic heading reliability at the second location based on a comparison of the virtual vector and the second vector.
    Type: Application
    Filed: July 13, 2017
    Publication date: October 26, 2017
    Inventors: Benjamin E. Funk, Dan Hakim, John Karvounis, Travis Young, Carole Teolis