Patents by Inventor Josef R. Call

Josef R. Call 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).

  • Publication number: 20170112476
    Abstract: The quality of ping-based ultrasound imaging is dependent on the accuracy of information describing the precise acoustic position of transmitting and receiving transducer elements. Improving the quality of transducer element position data can substantially improve the quality of ping-based ultrasound images, particularly those obtained using a multiple aperture ultrasound imaging probe, i.e., a probe with a total aperture greater than any anticipated maximum coherent aperture width. Various systems and methods for calibrating element position data for a probe are described.
    Type: Application
    Filed: January 6, 2017
    Publication date: April 27, 2017
    Inventors: Artem BELEVICH, Josef R. CALL, Bruce R. RITZI, Nathan W. OSBORN
  • Patent number: 9572549
    Abstract: The quality of ping-based ultrasound imaging is dependent on the accuracy of information describing the precise acoustic position of transmitting and receiving transducer elements. Improving the quality of transducer element position data can substantially improve the quality of ping-based ultrasound images, particularly those obtained using a multiple aperture ultrasound imaging probe, i.e., a probe with a total aperture greater than any anticipated maximum coherent aperture width. Various systems and methods for calibrating element position data for a probe are described.
    Type: Grant
    Filed: August 12, 2013
    Date of Patent: February 21, 2017
    Assignee: MAUI IMAGING, INC.
    Inventors: Artem Belevich, Josef R. Call, Bruce R. Ritzi, Nathan W. Osborn
  • Publication number: 20150080727
    Abstract: An apparent point-source transmit transducers comprises a substantially constant-thickness shell of piezoelectric material in a shape of a spherical-section. Such transducers may be sized such that a single apparent point-source transmit transducer may produce ultrasound waveforms with substantial energy in a medium to be imaged. Use of such transducers in three-dimensional ping-based imaging may permit deeper and higher quality imaging than may be possible with conventional transducers.
    Type: Application
    Filed: May 15, 2014
    Publication date: March 19, 2015
    Inventors: Donald F. SPECHT, Josef R. CALL
  • Publication number: 20140058266
    Abstract: A multiple aperture ultrasound imaging system may be configured to store raw, un-beamformed echo data. Stored echo data may be retrieved and re-beamformed using modified parameters in order to enhance the image or to reveal information that was not visible or not discernible in an original image. Raw echo data may also be transmitted over a network and beamformed by a remote device that is not physically proximate to the probe performing imaging. Such systems may allow physicians or other practitioners to manipulate echo data as though they were imaging the patient directly, even without the patient being present. Many unique diagnostic opportunities are made possible by such systems and methods.
    Type: Application
    Filed: August 20, 2013
    Publication date: February 27, 2014
    Inventors: Josef R. Call, Kenneth D. Brewer, Viet Nam Le, Matthew Ouellette, Mathias Blake
  • Publication number: 20140043933
    Abstract: The quality of ping-based ultrasound imaging is dependent on the accuracy of information describing the precise acoustic position of transmitting and receiving transducer elements. Improving the quality of transducer element position data can substantially improve the quality of ping-based ultrasound images, particularly those obtained using a multiple aperture ultrasound imaging probe, i.e., a probe with a total aperture greater than any anticipated maximum coherent aperture width. Various systems and methods for calibrating element position data for a probe are described.
    Type: Application
    Filed: August 12, 2013
    Publication date: February 13, 2014
    Inventors: Artem Belevich, Josef R. Call, Bruce R. Ritzi, Nathan W. Osborn
  • Publication number: 20130253325
    Abstract: Systems and methods for improving the quality of ultrasound images made up of a combination of multiple sub-images include giving more weight to sub-image information that is more likely to improve a combined image quality. Weighting factor information may be determined from the geometry (e.g., angle or path length) of a location of one or more specific transducer elements relative to a specific point within a region of interest or a region of an image. In some embodiments, any given pixel (or other discrete region of an image) may be formed by combining received echo data in a manner that gives more weight to data that is likely to improve image quality, and/or discounting or ignoring data that is likely to detract from image quality (e.g., by introducing noise or by increasing point spread).
    Type: Application
    Filed: March 26, 2013
    Publication date: September 26, 2013
    Inventors: Josef R. CALL, Donald F. SPECHT, Kenneth D. BREWER
  • Publication number: 20130144166
    Abstract: A method of full-field or “ping-based” Doppler ultrasound imaging allows for detection of Doppler signals indicating moving reflectors at any point in an imaging field without the need to pre-define range gates. In various embodiments, such whole-field Doppler imaging methods may include transmitting a Doppler ping from a transmit aperture, receiving echoes of the Doppler ping with one or more separate receive apertures, detecting Doppler signals and determining the speed of moving reflectors. In some embodiments, the system also provides the ability to determine the direction of motion by solving a set of simultaneous equations based on echo data received by multiple receive apertures.
    Type: Application
    Filed: November 30, 2012
    Publication date: June 6, 2013
    Inventors: Donald F. SPECHT, Kenneth D. BREWER, David M. SMITH, Josef R. CALL, Tony LE, Bruce R. RITZI
  • Patent number: 6094713
    Abstract: A method and apparatus for detecting address range overlaps. According to one embodiment, a first mask is generated for a first address range and a second mask is generated for a second address range. A first AND operation is performed on the first address range and the second mask to output a first temporary value. A second AND operation is performed on the second address range and the first mask to output a second temporary value. The first temporary value is then compared to the second temporary value to detect an overlap between the first address range and the second address range. According to an alternate embodiment, a first mask is generated for a first address range and a second mask is generated for a second address range. The first mask is then compared to the second mask to detect an overlap between the first address range and the second address range.
    Type: Grant
    Filed: September 30, 1997
    Date of Patent: July 25, 2000
    Assignee: Intel Corporation
    Inventors: Ghassan Khadder, Josef R. Call, Michael J. Morrison
  • Patent number: 5848256
    Abstract: A scheduling unit is described for scheduling an execution order of a first instruction of a first type and a second instruction of a second type in an instruction stream where the second instruction precedes the first instruction. The scheduling unit comprises a table that records address component identifiers corresponding to the second instruction. An address comparator is coupled to the table. The address comparator compares address component identifiers that corresponds to the first instruction with address component identifiers on the table. The scheduling unit schedules the first instruction to be executed ahead of the second instruction when the address component identifiers differ from the address component identifiers on the table.
    Type: Grant
    Filed: September 30, 1996
    Date of Patent: December 8, 1998
    Assignee: Institute for the Development of Emerging Architectures, L.L.C.
    Inventors: Josef R. Call, Michael J. Morrison