Patents by Inventor John D. G. Rather

John D. G. Rather 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: 7759685
    Abstract: A multisurfaced microdevice system array is produced from a wafer formed of semiconductor substrate material. Sensing, controlling and actuating microdevices are fabricated at specific location on both sides of the wafer, and the wafer is diced. Each die thus created is then formed into a multisurfaced, multifaced structure having outer and inner faces. The multifaced structure and the microdevices form a standardized microdevice system, and cooperatively combined microdevice systems form a microdevice system array. Communication of energy and data to and between microdevices on each and other microdevice systems of the microdevice system array is provided by energy transferring devices including electric conductors for transferring electric energy, ultrasound emitters and receivers for transferring acoustic energy, and electromagnetic energy emitters and receivers for transferring electromagnetic energy.
    Type: Grant
    Filed: April 15, 2009
    Date of Patent: July 20, 2010
    Inventors: John D. G. Rather, Gregory W. Auner
  • Publication number: 20090283777
    Abstract: A multisurfaced microdevice system array is produced from a wafer formed of semiconductor substrate material. Sensing, controlling and actuating microdevices are fabricated at specific location on both sides of the wafer, and the wafer is diced. Each die thus created is then formed into a multisurfaced, multifaced structure having outer and inner faces. The multifaced structure and the microdevices form a standardized microdevice system, and cooperatively combined microdevice systems form a microdevice system array. Communication of energy and data to and between microdevices on each and other microdevice systems of the microdevice system array is provided by energy transferring devices including electric conductors for transferring electric energy, ultrasound emitters and receivers for transferring acoustic energy, and electromagnetic energy emitters and receivers for transferring electromagnetic energy.
    Type: Application
    Filed: April 15, 2009
    Publication date: November 19, 2009
    Inventors: John D. G. Rather, Gregory W. Auner
  • Patent number: 7531371
    Abstract: A multisurfaced microdevice system array is produced from a wafer formed of semiconductor substrate material. Sensing, controlling and actuating microdevices are fabricated at specific location on both sides of the wafer, and the wafer is diced. Each die thus created is then formed into a multisurfaced, multifaced structure having outer and inner faces. The multifaced structure and the microdevices form a standardized microdevice system, and cooperatively combined microdevice systems form a microdevice system array. Communication of energy and data to and between microdevices on each and other microdevice systems of the microdevice system array is provided by energy transferring devices including electric conductors for transferring electric energy, ultrasound emitters and receivers for transferring acoustic energy, and electromagnetic energy emitters and receivers for transferring electromagnetic energy.
    Type: Grant
    Filed: February 21, 2006
    Date of Patent: May 12, 2009
    Inventors: John D. G. Rather, Gregory W. Auner
  • Patent number: 6728567
    Abstract: The present invention relates to a method and apparatus for the construction and/or use of multidimensional fields that can be used for high-resolution detection and characterization of features within objects. The multidimensional field is constructed from data that is collected by an array of radiation detectors that substantially surround the object under study. The detected radiation is produced by an array of radiation sources and is subsequently scattered, reflected, transmitted, or diffracted by the object under study and any features within the object under study. In particular embodiments of the invention, the radiation that is used is ultrasonic radiation and the object under study is human or animal tissue or an organ. In this case, the invention permits the detection and identification of cancer by an intelligently trained evaluation system.
    Type: Grant
    Filed: November 27, 2001
    Date of Patent: April 27, 2004
    Assignee: Barbara Ann Karmanos Cancer Institute
    Inventors: John D. G. Rather, H. John Caulfield, Richard D. Doolittle, Peter J. Littrup, Glenn W. Zeiders
  • Patent number: 6672165
    Abstract: An acoustoelectronic method and apparatus for generating real-time three-dimensional images of an object and characterizing such object are provided. The object is insonified with an incident acoustic signal derived from an electrical signal. Acoustic signals scattered from the object are collected by an acoustic receiver, which generates analog electrical signals that are subsequently converted to digital electronic signals. The digital electronic signals are used in both direct-imaging and holographic methods to produce a three-dimensional representation of the object from which images and characterizations can be generated.
    Type: Grant
    Filed: February 25, 2002
    Date of Patent: January 6, 2004
    Assignee: Barbara Ann Karmanos Cancer Center
    Inventors: John D. G. Rather, H. John Caulfield, Richard D. Doolittle, Glenn W. Zeiders, Gregory W. Auner
  • Patent number: 6540678
    Abstract: An acoustoelectronic method and apparatus for generating real-time three-dimensional images of an object and characterizing such object are provided. The object is insonified with an incident acoustic signal derived from an electrical signal. Acoustic signals scattered from the object are collected by an acoustic receiver, which generates analog electrical signals that are subsequently converted to digital electronic signals. The digital electronic signals are used in both direct-imaging and holographic methods to produce a three-dimensional representation of the object from which images and characterizations can be generated.
    Type: Grant
    Filed: February 25, 2002
    Date of Patent: April 1, 2003
    Assignee: Barbara Ann Karmanos Cancer Institute
    Inventors: John D. G. Rather, H. John Caulfield, Richard D. Doolittle, Glenn W. Zeiders, Gregory W. Auner
  • Publication number: 20020143245
    Abstract: An acoustoelectronic method and apparatus for generating real-time three-dimensional images of an object and characterizing such object are provided. The object is insonified with an incident acoustic signal derived from an electrical signal. Acoustic signals scattered from the object are collected by an acoustic receiver, which generates analog electrical signals that are subsequently converted to digital electronic signals. The digital electronic signals are used in both direct-imaging and holographic methods to produce a three-dimensional representation of the object from which images and characterizations can be generated.
    Type: Application
    Filed: February 25, 2002
    Publication date: October 3, 2002
    Applicant: Barbara Ann Karmanos Cancer Institute
    Inventors: John D.G. Rather, H. John Caulfield, Richard D. Doolittle, Glenn W. Zeiders, Gregory W. Auner
  • Publication number: 20020138000
    Abstract: An acoustoelectronic method and apparatus for generating real-time three-dimensional images of an object and characterizing such object are provided. The object is insonified with an incident acoustic signal derived from an electrical signal. Acoustic signals scattered from the object are collected by an acoustic receiver, which generates analog electrical signals that are subsequently converted to digital electronic signals. The digital electronic signals are used in both direct-imaging and holographic methods to produce a three-dimensional representation of the object from which images and characterizations can be generated.
    Type: Application
    Filed: February 25, 2002
    Publication date: September 26, 2002
    Applicant: Barbara Ann Karmanos Cancer Institute
    Inventors: John D.G. Rather, H. John Caulfield, Richard D. Doolittle, Glenn W. Zeiders, Gregory W. Auner
  • Patent number: 6450960
    Abstract: An acoustoelectronic method and apparatus for generating real-time three-dimensional images of an object and characterizing such object are provided. The object is insonified with an incident acoustic signal derived from an electrical signal. Acoustic signals scattered from the object are collected by an acoustic receiver, which generates analog electrical signals that are subsequently converted to digital electronic signals. The digital electronic signals are used in both direct-imaging and holographic methods to produce a three-dimensional representation of the object from which images and characterizations can be generated.
    Type: Grant
    Filed: August 29, 2000
    Date of Patent: September 17, 2002
    Assignee: Barbara Ann Karmanos Cancer Institute
    Inventors: John D. G. Rather, H. John Caulfield, Richard D. Doolittle, Glenn W. Zeiders, Gregory W. Auner
  • Publication number: 20020065466
    Abstract: The present invention relates to a method and apparatus for the construction and/or use of multidimensional fields that can be used for high-resolution detection and characterization of features within objects. The multidimensional field is constructed from data that is collected by an array of radiation detectors that substantially surround the object under study. The detected radiation is produced by an array of radiation sources and is subsequently scattered, reflected, transmitted, or diffracted by the object under study and any features within the object under study. In particular embodiments of the invention, the radiation that is used is ultrasonic radiation and the object under study is human or animal tissue or an organ. In this case, the invention permits the detection and identification of cancer by an intelligently trained evaluation system.
    Type: Application
    Filed: November 27, 2001
    Publication date: May 30, 2002
    Applicant: Barbara Ann Karmanos Cancer Institute
    Inventors: John D. G. Rather, H. John Caulfield, Richard D. Doolittle, Peter J. Littrup, Glenn W. Zeiders
  • Patent number: 6385474
    Abstract: The present invention relates to a method and apparatus for the construction and/or use of multidimensional fields that can be used for high-resolution detection and characterization of features within objects. The multidimensional field is constructed from data that is collected by an array of radiation detectors that substantially surround the object under study. The detected radiation is produced by an array of radiation sources and is subsequently scattered, reflected, transmitted, or diffracted by the object under study and any features within the object under study. In particular embodiments of the invention, the radiation that is used is ultrasonic radiation and the object under study is human or animal tissue or an organ. In this case, the invention permits the detection and identification of cancer by an intelligently trained evaluation system.
    Type: Grant
    Filed: March 19, 1999
    Date of Patent: May 7, 2002
    Assignee: Barbara Ann Karmanos Cancer Institute
    Inventors: John D. G. Rather, H. John Caulfield, Richard D. Doolittle, Peter J. Littrup, Glenn W. Zeiders
  • Patent number: 4950878
    Abstract: An adaptive optics wavefront control system is presented wherein phase errors are reduced to a minimum using a coarse/fine gradient sensor.
    Type: Grant
    Filed: April 12, 1989
    Date of Patent: August 21, 1990
    Assignee: Kaman Aerospace Corporation
    Inventors: Bobby L. Ulich, John D. G. Rather, Gregory H. Ames, Albert J. Lazzarini, Edward Conklin
  • Patent number: 4825062
    Abstract: An extendable large aperture phased array mirror system includes a plurality of mirror segments cooperatively configured to receive an incoming electromagnetic beam. In response to signals from a sensor indicative of wavefront distortion in the beam, a control apparatus displaces a plurality of segment actuators to configure the mirror segments to generate an outgoing conjugate phase electromagnetic beam.
    Type: Grant
    Filed: October 29, 1987
    Date of Patent: April 25, 1989
    Assignee: Kaman Aerospace Corporation
    Inventors: John D. G. Rather, Gregory H. Ames, Edward K. Conklin, Albert J. Lazzarini, Joseph Mangano, Bobby L. Ulich