Patents by Inventor Bradley Rice

Bradley Rice 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: 10231020
    Abstract: A method includes receiving a request for sports programming recommendation, responsive to the receiving step, determining an upcoming program vector and a weighted historical vector, performing a similarity calculation comparing the upcoming program vector and the weighted historical vector to derive a recommendation score, and generating a recommendation based on the recommendation score.
    Type: Grant
    Filed: May 16, 2017
    Date of Patent: March 12, 2019
    Assignee: The DirecTV Group, Inc
    Inventors: Ashok Sahu, Raymond Hsu, Charles Bradley Rice
  • Publication number: 20180338180
    Abstract: A method includes receiving a request for sports programming recommendation, responsive to the receiving step, determining an upcoming program vector and a weighted historical vector, performing a similarity calculation comparing the upcoming program vector and the weighted historical vector to derive a recommendation score, and generating a recommendation based on the recommendation score.
    Type: Application
    Filed: May 16, 2017
    Publication date: November 22, 2018
    Inventors: Ashok Sahu, Raymond Hsu, Charles Bradley Rice
  • Publication number: 20150159585
    Abstract: A method for repairing a cast component having a damaged area is provided. The method includes scanning an area adjacent to the damaged area to create a scan. The method includes forming a dam with a void. The void has a profile corresponding to the scan. The method includes positioning the dam adjacent to the damaged area. The method includes heating the cast component. The method includes introducing a repair material into the dam. The method also includes cooling the cast component. The method further includes removing an excess material from the cast component.
    Type: Application
    Filed: December 6, 2013
    Publication date: June 11, 2015
    Applicant: Caterpillar Inc.
    Inventors: Christopher A. Kinney, Benjamin J. Rasmussen, Kegan J. Luick, Trent A. Simpson, Bradley Rice, Thomas Parnell, Curtis J. Graham
  • Patent number: 7663664
    Abstract: The invention describes systems and methods to obtain and present imaging data in absolute units. The systems and methods convert relative image data produced by a camera to absolute light intensity data using a compensation factor. The compensation factor accommodates for hardware and specific imaging conditions in the imaging system that variably affect camera output. The present invention determines the compensation factor based on assessing the output of the camera against a known light source for a specific set of imaging conditions in the imaging system. The compensation factor is then stored in memory corresponding to the specific set of imaging conditions. Upon subsequent imaging with the set of imaging conditions, the corresponding compensation factor is called from memory and applied to the camera output. A compensation factor may be determined and stored for each hardware state and imaging condition available to the imaging system.
    Type: Grant
    Filed: September 18, 2006
    Date of Patent: February 16, 2010
    Assignee: Xenogen Corporation
    Inventors: Bradley Rice, Michael D. Cable
  • Publication number: 20080103390
    Abstract: Disclosed are apparatus and methods for quantifying fluorescent distribution within a surgery site of a patient in an operating room, wherein the surgery site has been exposed for a surgery procedure. Excitation light is provided at each of a plurality of positions at the surgery site in a method embodiment. The excitation light is significantly more intense than any other light sources that are present in the operating room. Fluorescent emission is detected from the surgery site in response to each of the excitation light positions so as to obtain a fluorescent emission image for each excitation light position. The fluorescent light distribution that is internal to a surface of the surgery site is quantified based on the obtained fluorescent emission images.
    Type: Application
    Filed: October 23, 2007
    Publication date: May 1, 2008
    Applicant: XENOGEN CORPORATION
    Inventors: Pamela Contag, Bradley Rice
  • Publication number: 20080079802
    Abstract: The present invention integrates a structured light source into an imaging system for reconstructing surface topography of an object being imaged. The structured light source includes a mechanism for transmitting a set of lines onto the object from an angle. The lines are displaced, or phase shifted relative to a stage, when they encounter an object with finite height, such as a mouse. This phase shift provides structured light information for the object. A camera captures the structured light information. Using software that employs a structured light analysis, surface topography data for the object is determined from the phase shift of the lines.
    Type: Application
    Filed: October 11, 2007
    Publication date: April 3, 2008
    Applicant: XENOGEN CORPORATION
    Inventors: David Nilson, Michael Cable, Bradley Rice, Kevin Kearney
  • Publication number: 20080052052
    Abstract: Disclosed are apparatus and methods for determining accurate optical property values of turbid media. In one embodiment, the method includes (a) providing a light source, having a first wavelength and a known illumination power, sequentially at a plurality of specific illumination positions on a first surface of the specimen; (b) for each specific position of the light source, obtaining light emission measurements from a second surface of the specimen that is opposite the first surface, wherein the light emission measurements are obtained for a plurality of surface positions of the second surface; and (c) for each specific illumination position of the light source at the first surface of the specimen, determining one or more optical properties for the specimen based on the specific illumination position of the light source, the first wavelength of the light source, the known illumination power of the light source, and the obtained light emission measurements for such each specific illumination position.
    Type: Application
    Filed: August 24, 2007
    Publication date: February 28, 2008
    Applicant: XENOGEN CORPORATION
    Inventors: Daniel Stearns, Bradley Rice
  • Publication number: 20080051219
    Abstract: A wood-type golf club head (40) having a major body (50), a striking plate insert (55) and a minor body (60) is disclosed herein. The major body (50) is composed of a metal material and has a front wall section (72), a return section (74), a sole section (76), a ribbon section (78) and a ledge portion (80). The minor body (50) is preferably composed of a low density material and has a crown section (62) and a ribbon section (64). The striking plate insert (55) is composed of a metal material. An epoxy-based composition (200) is placed at a face-sole junction (205) to lower the amplitude of the sound of the golf club head (40) during impact with a golf ball.
    Type: Application
    Filed: October 30, 2007
    Publication date: February 28, 2008
    Applicant: CALLAWAY GOLF COMPANY
    Inventors: MATTHEW ERICKSON, BRADLEY RICE, D. EVANS, EVAN GIBBS
  • Publication number: 20080051665
    Abstract: Described herein are systems and methods for spectral unmixing of in vivo light data. The spectral unmixing separates image data according to spectra from multiple internal light sources in an effort to isolate one or more spectrum of interest. The spectral unmixing obtains images with a combination of different and known excitation and emission limits. The spectral unmixing then uses an iterative solution process to separate spectra for the multiple fluorescent light sources, and provides a spectrum and/or a spatial distribution map for at least one of the internal light sources.
    Type: Application
    Filed: August 24, 2007
    Publication date: February 28, 2008
    Applicant: XENOGEN CORPORATION
    Inventors: Heng Xu, Bradley Rice
  • Publication number: 20080031494
    Abstract: Described herein are systems and methods for obtaining a three-dimensional (3D) representation of the distribution of fluorescent probes inside a sample, such as a mammal. Using a) fluorescent light emission data from one or more images, b) a surface representation of the mammal, and c) computer-implemented photon propagation models, the systems and methods produce a 3D representation of the fluorescent probe distribution in the mammal. The distribution may indicate—in 3D—the location, size, and/or brightness or concentration of one or more fluorescent probes in the mammal.
    Type: Application
    Filed: July 29, 2007
    Publication date: February 7, 2008
    Applicant: XENOGEN CORPORATION
    Inventors: Bradley RICE, Chaincy KUO, Daniel STEARNS, Heng XU
  • Publication number: 20080018899
    Abstract: The present invention provides systems and methods for obtaining a three-dimensional (3D) representation of one or more light sources inside a sample, such as a mammal. Mammalian tissue is a turbid medium, meaning that photons are both absorbed and scattered as they propagate through tissue. In the case where scattering is large compared with absorption, such as red to near-infrared light passing through tissue, the transport of light within the sample is described by diffusion theory. Using imaging data and computer-implemented photon diffusion models, embodiments of the present invention produce a 3D representation of the light sources inside a sample, such as a 3D location, size, and brightness of such light sources.
    Type: Application
    Filed: July 29, 2007
    Publication date: January 24, 2008
    Applicant: XENOGEN CORPORATION
    Inventors: Daniel STEARNS, Bradley RICE, Michael CABLE
  • Publication number: 20070281798
    Abstract: A wood-type golf club head (40) having a major body (50), a striking plate insert (55) and a minor body (60) is disclosed herein. The major body (50) is composed of a metal material and has a front wall section (72), a return section (74), a sole section (76), a ribbon section (78) and a ledge portion (80). The minor body (50) is preferably composed of a low density material and has a crown section (62) and a ribbon section (64). The striking plate insert (55) is composed of a metal material. An epoxy-based composition (200) is placed at a face-sole junction (205) to lower the amplitude of the sound of the golf club head (40) during impact with a golf ball.
    Type: Application
    Filed: August 20, 2007
    Publication date: December 6, 2007
    Applicant: CALLAWAY GOLF COMPANY
    Inventors: MATTHEW ERICKSON, BRADLEY RICE, D. EVANS, EVAN GIBBS
  • Publication number: 20070270697
    Abstract: A method of investigating the location and size of a light-emitting source in a subject is disclosed. In practicing the method, one first obtains a light intensity profile by measuring, from a first perspective with a photodetector device, photons which (i) originate from the light-emitting source, (ii) travel through turbid biological tissue of the subject, and (iii) are emitted from a first surface region of interest of the subject. The light-intensity profile is matched against with a parameter-based biophotonic function, to estimate function parameters such as depth and size. The parameters so determined are refined using data other than the first measured light intensity profile, to obtain an approximate depth and size of the source in the subject. Also disclosed is an apparatus for carrying out the method.
    Type: Application
    Filed: July 29, 2007
    Publication date: November 22, 2007
    Applicant: XENOGEN CORPORATION
    Inventors: Bradley Rice, Daniel Stearns, Tamara Troy
  • Publication number: 20070253908
    Abstract: Described herein are systems and methods for obtaining a three-dimensional (3D) representation of the distribution of fluorescent probes inside a sample, such as a mammal. Using a) fluorescent light emission data from one or more images, b) a surface representation of the mammal, and c) computer-implemented photon propagation models, the systems and methods produce a 3D representation of the fluorescent probe distribution in the mammal. The distribution may indicate—in 3D—the location, size, and/or brightness or concentration of one or more fluorescent probes in the mammal.
    Type: Application
    Filed: April 10, 2007
    Publication date: November 1, 2007
    Applicant: XENOGEN CORPORATION
    Inventors: Bradley RICE, Chaincy KUO, Daniel STEARNS, Heng XU
  • Publication number: 20070200058
    Abstract: Described herein is a phantom device that simplifies usage, testing, and development of light imaging systems. The phantom device includes a body and a fluorescent light source internal to the body. The body comprises an optical material designed to at least partially resemble the optical behavior of mammalian tissue. The phantom device has many uses. One use of the phantom device permits testing of tomography software in the imaging system, such as software configured for 3D reconstruction of the fluorescent light source. Another use tests spectral unmixing software in the imaging system. The phantom device also allows a user to compare trans- and epi-fluorescent illumination imaging results.
    Type: Application
    Filed: March 6, 2007
    Publication date: August 30, 2007
    Applicant: CALIPER LIFE SCIENCES, INC.
    Inventors: Bradley Rice, David Nilson, Tamara Troy
  • Publication number: 20070013780
    Abstract: The invention describes systems and methods to obtain and present imaging data in absolute units. The systems and methods convert relative image data produced by a camera to absolute light intensity data using a compensation factor. The compensation factor accommodates for hardware and specific imaging conditions in the imaging system that variably affect camera output. The present invention determines the compensation factor based on assessing the output of the camera against a known light source for a specific set of imaging conditions in the imaging system. The compensation factor is then stored in memory corresponding to the specific set of imaging conditions. Upon subsequent imaging with the set of imaging conditions, the corresponding compensation factor is called from memory and applied to the camera output. A compensation factor may be determined and stored for each hardware state and imaging condition available to the imaging system.
    Type: Application
    Filed: September 18, 2006
    Publication date: January 18, 2007
    Inventors: Bradley Rice, Michael Cable
  • Publication number: 20060268153
    Abstract: The invention relates to topographic construction that combines photographic and structured light information. The dual modality construction acquires structured light information for an object and photographic images from multiple views about the object. Topographic construction then processes the structured light information and photographic data in the multiple images to generate a surface representation of the object in each modality. The photographic and structured light surface representations are then combined to output a dual modality surface topography.
    Type: Application
    Filed: May 4, 2006
    Publication date: November 30, 2006
    Inventors: Bradley Rice, Heng Xu, Chaincy Kuo
  • Publication number: 20060258941
    Abstract: The invention described herein provides systems and methods for multi-modal imaging with light and a second form of imaging. Light imaging involves the capture of low intensity light from a light-emitting object. A camera obtains a two-dimensional spatial distribution of the light emitted from the surface of the subject. Software operated by a computer in communication with the camera may then convert two-dimensional spatial distribution data from one or more images into a three-dimensional spatial representation. The second imaging mode may include any imaging technique that compliments light imaging. Examples include magnetic resonance imaging (MRI) and computer topography (CT). An object handling system moves the object to be imaged between the light imaging system and the second imaging system, and is configured to interface with each system.
    Type: Application
    Filed: July 12, 2006
    Publication date: November 16, 2006
    Inventors: Michael Cable, Bradley Rice, David Nilson
  • Publication number: 20060250517
    Abstract: Systems and methods are provided for taking images of a sample. The sample is placed in an imaging box comprising a moveable stage that allows images of the sample to be taken from various positions and angles within the imaging box. The images are taken by a camera and sent to a processor. Structured light images obtained from one or more views within the imaging box may be used to build a structured light representations of the sample.
    Type: Application
    Filed: July 12, 2006
    Publication date: November 9, 2006
    Inventors: David Nilson, Michael Cable, Bradley Rice
  • Publication number: 20060250518
    Abstract: Systems and methods are provided for taking images of a sample. The sample is placed in an imaging box comprising a moveable stage that allows images of the sample to be taken from various positions and angles within the imaging box. The images are taken by a camera and sent to a processor. Structured light images obtained from one or more views within the imaging box may be used to build a structured light representations of the sample.
    Type: Application
    Filed: July 12, 2006
    Publication date: November 9, 2006
    Inventors: David Nilson, Michael Cable, Bradley Rice