Patents by Inventor Christopher SAMSON

Christopher SAMSON 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: 12632525
    Abstract: Techniques are described herein for rotating a credential using a process automation tool. A first process automation tool can use an application programming interface (API) call to request an updated credential from an external credential manager to replace an existing credential stored in an internal credential storage system. The first process automation tool can obtain the updated credential from an output of the API call. The first process automation tool can access the existing credential and replace the existing credential with the updated credential. Subsequently, a second process automation tool can access the internal credential storage system to obtain the updated credential. The second process automation tool can perform an authentication process to provide access to a protected computing resource.
    Type: Grant
    Filed: May 9, 2025
    Date of Patent: May 19, 2026
    Assignee: The Huntington National Bank
    Inventors: David Klueppel, Deepak Jayan, Bradley Minch, Christopher Samson
  • Publication number: 20240329241
    Abstract: Encoded transmit signals are provided to an ultrasound array such diverging ultrasound waves are sequentially transmitted. Each diverging ultrasound wave is generated by a respective set of encoded transmit signals, where each set of encoded transmit signals is encoded by a respective row of an N×N invertible orthogonal matrix. Only a selected subset of M rows, with N<M, is employed to encode the transmit signals. Sets of receive signals detected in response to the transmitted diverging ultrasound waves are decoded via a transposed matrix generated based on the invertible orthogonal matrix, with each set of decoded receive signals being associated with insonification via a subset of the ultrasound array elements in the fixed aperture. Synthetic aperture beamforming is performed on the decoded receive signals to generate an ultrasound image.
    Type: Application
    Filed: January 29, 2024
    Publication date: October 3, 2024
    Inventors: Christopher SAMSON, Jeremy BROWN, Katherine LATHAM, Robert ADAMSON
  • Patent number: 11885877
    Abstract: Encoded transmit signals are provided to an ultrasound array such diverging ultrasound waves are sequentially transmitted. Each diverging ultrasound wave is generated by a respective set of encoded transmit signals, where each set of encoded transmit signals is encoded by a respective row of an N×N invertible orthogonal matrix. Only a selected subset of M rows, with N<M, is employed to encode the transmit signals. Sets of receive signals detected in response to the transmitted diverging ultrasound waves are decoded via a transposed matrix generated based on the invertible orthogonal matrix, with each set of decoded receive signals being associated with insonification via a subset of the ultrasound array elements in the fixed aperture. Synthetic aperture beamforming is performed on the decoded receive signals to generate an ultrasound image.
    Type: Grant
    Filed: April 24, 2019
    Date of Patent: January 30, 2024
    Assignee: DALHOUSIE UNIVERSITY
    Inventors: Christopher Samson, Jeremy Brown, Katherine Latham, Robert Adamson
  • Patent number: 11255965
    Abstract: Fresnel elevation focusing at a selected elevation angle is performed by transmitting a sequential set of Fresnel-focused ultrasound pulses, where a different Fresnel phase pattern is used for each pulse, and where the receive signals are coherently compounded. The different Fresnel patterns cause the secondary lobe energy to be reduced via averaging of variations of the pressure fields in the secondary lobe regions. In some embodiments, the method of coherently compounded Fresnel focusing is combined with coherently compounded defocused wave (e.g. plane wave or diverging wave) imaging in the azimuth direction. Each of the elevation slices are collected by changing the Fresnel patterns respectively employed when the sequence of plane waves or diverging waves are transmitted, such that the coherent compounding can benefit both planes simultaneously. Hadamard receive encoding and subsequent dynamic receive beamforming may be employed to further improve performance in the elevation direction.
    Type: Grant
    Filed: December 15, 2017
    Date of Patent: February 22, 2022
    Assignee: DALHOUSIE UNIVERSITY
    Inventors: Jeremy Brown, Christopher Samson, Katherine Latham
  • Publication number: 20210263151
    Abstract: Encoded transmit signals are provided to an ultrasound array such diverging ultrasound waves are sequentially transmitted. Each diverging ultrasound wave is generated by a respective set of encoded transmit signals, where each set of encoded transmit signals is encoded by a respective row of an N×N invertible orthogonal matrix. Only a selected subset of M rows, with N<M, is employed to encode the transmit signals. Sets of receive signals detected in response to the transmitted diverging ultrasound waves are decoded via a transposed matrix generated based on the invertible orthogonal matrix, with each set of decoded receive signals being associated with insonification via a subset of the ultrasound array elements in the fixed aperture. Synthetic aperture beamforming is performed on the decoded receive signals to generate an ultrasound image.
    Type: Application
    Filed: April 24, 2019
    Publication date: August 26, 2021
    Applicant: Dalhouse University
    Inventors: Christopher SAMSON, Jeremy BROWN, Katherine LATHAM, Robert ADAMSON
  • Patent number: 10989810
    Abstract: The present disclosure provides systems and methods for ultrasound imaging using a modified variable sampling beamforming technique. Unlike conventional methods of variable sampling beamforming, in which in-phase and quadrature samples are obtained for each pixel location, in various example embodiments of the present disclosure, the pixel locations are quadrature-spaced such that for each 5 sample point, an adjacent sample point along an A-line is employed as the quadrature sample. The samples at each array element may be triggered according to the time of flight between a first pixel location and the location of the array element, such that successive samples, corresponding to successive pixel locations along the selected A-line, are obtained such that adjacent samples are spaced by a 10 time interval corresponding to a quarter of an odd number of wavelenghths of the beamformed transmit pulse, and such that only one sample is acquired per pixel.
    Type: Grant
    Filed: January 22, 2016
    Date of Patent: April 27, 2021
    Assignee: DALHOUSIE UNIVERSITY
    Inventors: Jeremy Brown, Christopher Samson, Jeff Leadbetter
  • Publication number: 20200041644
    Abstract: Fresnel elevation focusing at a selected elevation angle is performed by transmitting a sequential set of Fresnel-focused ultrasound pulses, where a different Fresnel phase pattern is used for each pulse, and where the receive signals are coherently compounded. The different Fresnel patterns cause the secondary lobe energy to be reduced via averaging of variations of the pressure fields in the secondary lobe regions. In some embodiments, the method of coherently compounded Fresnel focusing is combined with coherently compounded defocused wave (e.g. plane wave or diverging wave) imaging in the azimuth direction. Each of the elevation slices are collected by changing the Fresnel patterns respectively employed when the sequence of plane waves or diverging waves are transmitted, such that the coherent compounding can benefit both planes simultaneously. Hadamard receive encoding and subsequent dynamic receive beamforming may be employed to further improve performance in the elevation direction.
    Type: Application
    Filed: December 15, 2017
    Publication date: February 6, 2020
    Inventors: Jeremy BROWN, Christopher SAMSON, Katherine LATHAM
  • Publication number: 20180011193
    Abstract: The present disclosure provides systems and methods for ultrasound imaging using a modified variable sampling beamforming technique. Unlike conventional methods of variable sampling beamforming, in which in-phase and quadrature samples are obtained for each pixel location, in various example embodiments of the present disclosure, the pixel locations are quadrature-spaced such that for each 5 sample point, an adjacent sample point along an A-line is employed as the quadrature sample. The samples at each array element may be triggered according to the time of flight between a first pixel location and the location of the array element, such that successive samples, corresponding to successive pixel locations along the selected A-line, are obtained such that adjacent samples are spaced by a 10 time interval corresponding to a quarter of an odd number of wavelenghths of the beamformed transmit pulse, and such that only one sample is acquired per pixel.
    Type: Application
    Filed: January 22, 2016
    Publication date: January 11, 2018
    Inventors: Jeremy BROWN, Christopher SAMSON, Jeff Leadbetter