Patents Examined by Helene Bor
  • Patent number: 10849595
    Abstract: An imaging apparatus is disclosed for diagnosis including a plurality of transmitting and receiving units, an error of a scale of a tomographic image to be generated is reduced. The imaging apparatus can include including acquisition means for acquiring a propagation velocity of an ultrasound signal of a flushing liquid, generation means for generating ultrasound line data based on the propagation velocity of the ultrasound signal in a blood vessel tissue, and conversion means for converting positional information of each position within a range in which the flushing liquid flows regarding the ultrasound line data generated by the generation means based on a ratio between the propagation velocity in the blood vessel tissue and the propagation velocity in the flushing liquid. A tomographic image of a blood vessel is constructed by using the ultrasound line data converted by the conversion means.
    Type: Grant
    Filed: October 1, 2015
    Date of Patent: December 1, 2020
    Assignee: TERUMO KABUSHIKI KAISHA
    Inventors: Ema Itoh, Isao Mori
  • Patent number: 10813574
    Abstract: A data processing method for determining a range of motion of an artificial knee joint which connects a femur and a tibia via a medial ligament and a lateral ligament, wherein at least the femur comprises an implant which forms a medial condyle and a lateral condyle, the method comprising the steps of: acquiring the maximum lengths of the lateral ligament and the medial ligament for a particular flexion angle of the knee joint; calculating a first virtual position between the femur and the tibia in which the lateral condyle of the femoral implant touches the tibia and the medial ligament is stretched to its maximum length; calculating a maximum valgus angle of the range of motion from the first virtual position; calculating a second virtual position between the femur and the tibia in which the medial condyle of the femoral implant touches the tibia and the lateral ligament is stretched to its maximum length; and calculating a maximum varus angle of the range of motion from the second virtual position.
    Type: Grant
    Filed: October 26, 2017
    Date of Patent: October 27, 2020
    Assignees: Smith & Nephew, Inc., Smith & Nephew Asia Pacific Pte. Limited, Smith & Nephew Orthopaedics AG
    Inventors: Oliver Fleig, Christian Brack, Zohar Leder, Martin Bauer
  • Patent number: 10775308
    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: Grant
    Filed: August 24, 2007
    Date of Patent: September 15, 2020
    Assignee: Xenogen Corporation
    Inventors: Daniel G. Stearns, Bradley W. Rice
  • Patent number: 10765403
    Abstract: The invention relates to an ultrasonic measuring device including an ultrasonic array configured to detect ultrasonic signals, and a housing. The housing includes an acoustic window portion and a housing wall. The ultrasonic array is arranged in the housing in acoustic contact with the acoustic window portion. The acoustic window portion is configured to adhere to a surface of the object to be examined. The invention further relates to an examination apparatus, which includes at least one such ultrasonic measuring device, and to a method for ultrasonic signal detection, in particular for ultrasound-based imaging.
    Type: Grant
    Filed: February 18, 2013
    Date of Patent: September 8, 2020
    Assignee: Franhofer-Gesellschaft zur Foerderung der angewandten Forschung, e.V.
    Inventors: Steffen Tretbar, Christian Degel, Matthias Guenther
  • Patent number: 10743815
    Abstract: A device for detecting spatial differences in fluid level changes in a tissue of a patient may include a support structure for securing the device to a body part of the patient, a processing element operably connected to the support structure, a wireless networking interface operably connected to the support structure and in communication with the processing element and an external computing device via a network, a first transmission module operably connected to the support structure and in communication with the processing element, a second transmission module and a third transmission module operably connected to the support structure and in communication with the processing element. When activated, the first transmission module transmits a first time varying magnetic field through the tissue of the patient. The second and third transmission modules, which are spatially separated from one another, receive first and second versions, respectively, of the first time varying magnetic field.
    Type: Grant
    Filed: September 3, 2015
    Date of Patent: August 18, 2020
    Assignee: CEREBROTECH MEDICAL SYSTEMS, INC.
    Inventors: Richard Warren Wyeth, Mitchell Elliott Levinson, Bryan Jon Weber
  • Patent number: 10736655
    Abstract: A system and method for reducing the risk of contamination of interior regions of a needle guide which is disposed on an endocavity transducer, which system includes an elastic membrane forming a pocket which covers a needle exit hole in the needle guide. The pocket is disposed on a sheath which is both; disposed around the endocavity transducer and between the endocavity transducer and the needle guide.
    Type: Grant
    Filed: April 13, 2012
    Date of Patent: August 11, 2020
    Inventors: Rick L. Pruter, Betty Sedlacek
  • Patent number: 10726741
    Abstract: A system and method for converting a commercial diagnostic ultrasound transducer into a medical training device that is used for simulated ultrasound training; or a system and method for adding a training option to a standard ultrasound diagnostic system by attaching a motion sensor accessory to the commercial diagnostic ultrasound transducer.
    Type: Grant
    Filed: June 30, 2016
    Date of Patent: July 28, 2020
    Assignee: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
    Inventors: Eric Savitsky, Gabriele Nataneli
  • Patent number: 10722167
    Abstract: A method to inspect a solid organ in a subject includes introducing a needle in a predetermined area of the solid organ, inserting an optical probe through a lumen of the needle, and imaging the predetermined area using the optical probe. An optical probe to inspect a solid organ in a subject, the optical probe being intended to be positioned in the solid organ through a needle, the optical probe includes an optical fiber bundle, a ferule to protect the distal tip of the optical fiber bundle, the ferule comprising a shank and a head, and a sheath wrapping the fiber bundle and the shank, wherein the head of the ferule has a length adapted for the optical probe to image the solid organ while keeping the sheath inside the needle.
    Type: Grant
    Filed: September 17, 2010
    Date of Patent: July 28, 2020
    Assignee: Mauna Kea Technologies
    Inventors: Nicolas Boularot, Magalie Genet, France Schwarz
  • Patent number: 10695034
    Abstract: An ultrasound apparatus comprising a plurality of ultrasonic transducers, a non-acoustic sensor, a memory circuitry to store control data for operating the ultrasound apparatus to perform an acquisition task, and a controller. The controller is configured to receive an indication to perform the acquisition task, receive non-acoustic data obtained by the non-acoustic sensor, and control, based on the control data and the non-acoustic data, the plurality of ultrasonic transducers to obtain acoustic data for the acquisition task.
    Type: Grant
    Filed: May 15, 2015
    Date of Patent: June 30, 2020
    Assignee: Butterfly Network, Inc.
    Inventors: Tyler S. Ralston, Nevada J. Sanchez
  • Patent number: 10695026
    Abstract: Devices and methods for obtaining a real-time, three-dimensional image of a body part, particularly a blood vessel. A catheter has a chamber in its tip. The chamber contains an ultrasound transducer and reflector which generally face each other and rotate about a common axis. The transducer element on the transducer and the reflective face on the reflector are both tilted off-axis. The difference in angular velocity generally creates a phase shift between the transducer and the reflective face. The phase shift allows the transducer and the reflective face to actively scan a three-dimensional volume that is generally bounded interiorly by a hyperboloid and exteriorly by the effective range of the ultrasound beam. The transducer and reflector may rotate at constant speeds or nonconstant speeds as well in the same direction or in opposite directions.
    Type: Grant
    Filed: August 12, 2016
    Date of Patent: June 30, 2020
    Assignee: Muffin Incorporated
    Inventors: William J. Havel, Peter S. McKinnis
  • Patent number: 10675003
    Abstract: This disclosure provides systems and methods for intravascular imaging. Some systems may be configured to generate a screening image of a section of a patient's vessel, identify one or more sub-sections of the screening image that each include a diagnostically significant characteristic of the vessel, and imaging the one or more sub-sections. Some systems may be configured to automatically identify the one or more sub-sections and/or to allow a user to manually identify the one or more sub-sections. Some systems may be configured to automatically image the one or more sub-sections after the one or more sub-sections are identified. In some examples, the system may be configured to displace blood during imaging of the sub-sections to enhance image quality. The system may be configured to minimize the period of time blood is displaced by synchronizing imaging and blood displacement.
    Type: Grant
    Filed: July 11, 2014
    Date of Patent: June 9, 2020
    Assignee: ACIST MEDICAL SYSTEMS, INC.
    Inventors: Jason F. Hiltner, Kendall R. Waters, Thomas C. Moore
  • Patent number: 10657645
    Abstract: The subject matter disclosed herein relates to methods for diagnosing a neurological disorder in a subject. In certain aspects, the methods described herein involve determining one or more critical areas in the brain from molecular Magnetic Resonance Imaging (MRI) data where two groups differ and measuring MRI signal within determined critical areas in a new subject in order to assign risk or diagnosis.
    Type: Grant
    Filed: September 29, 2015
    Date of Patent: May 19, 2020
    Assignee: THE TRUSTEES OF COLUMBIA UNIVERSITY IN THE CITY OF NEW YORK
    Inventors: Ramin Parsey, Arthur Mikhno
  • Patent number: 10650519
    Abstract: The subject matter disclosed herein relates to methods for diagnosing a neurological disorder in a subject. In certain aspects, the methods described herein involve determining one or more critical areas in the brain from PET data where two groups differ and measuring PET signal within determined critical areas in a new subject in order to assign risk or diagnosis.
    Type: Grant
    Filed: September 29, 2015
    Date of Patent: May 12, 2020
    Assignee: THE TRUSTEES OF COLUMBIA UNIVERSITY IN THE CITY OF NEW YORK
    Inventors: Ramin Parsey, Arthur Mikhno
  • Patent number: 10641844
    Abstract: The present invention is directed to a system and method for performing tissue, preferably bone tissue manipulation. The system and method may include implanting markers on opposite sides of a bone, fractured bone or tissue to facilitate bone or tissue manipulation, preferably in-situ closed fracture reduction. The markers are preferably configured to be detected by one or more devices, such as, for example, a detection device so that the detection device can determine the relative relationship of the markers. The markers may also be capable of transmitting and receiving signals. An image may be captured of the bone or tissue and the attached markers. From the captured image, the orientation of each marker relative to the bone fragment may be determined. Next, the captured image may be manipulated in a virtual or simulated environment until a desired restored orientation has been achieved. The orientation of the markers in the desired restored orientation may then be determined.
    Type: Grant
    Filed: February 28, 2018
    Date of Patent: May 5, 2020
    Assignee: DePuy Synthes Products, Inc.
    Inventors: Robert Frigg, Stuart Weikel, Stefan Schwer, Geoffrey Flexner, Ross Jonathan Hamel
  • Patent number: 10602991
    Abstract: An apparatus to examine a target in a patient includes an x-ray source configured to deliver a first x-ray beam towards the target, a device having an array of openings, the device located at an angle less than 180 degrees relative to a beam path of the first x-ray beam to receive a second x-ray beam resulted from an interaction between the first x-ray beam and the target, and a detector aligned with the device, the detector located at an angle less than 180 degrees relative to the beam path of the first x-ray beam to receive a part of the second x-ray beam from the device that exits through the openings at the device.
    Type: Grant
    Filed: March 29, 2012
    Date of Patent: March 31, 2020
    Assignee: Varian Medical Systems, Inc.
    Inventors: Edward J. Seppi, Renate Parry
  • Patent number: 10588647
    Abstract: A computer assisted surgery system and a method for operating a computer assisted surgery system is described therein. The system and method includes providing a virtual representation of a medical device to provide an easier application of a medical device, such as an implant or the like. The described system and method allows for simple and fast positioning of a medical device to be applied, such as an implant, for example.
    Type: Grant
    Filed: March 1, 2010
    Date of Patent: March 17, 2020
    Assignee: Stryker European Holdings I, LLC
    Inventors: Arno Blau, Bernd Simon, Holger Müller-Daniels, Michael Kohnen
  • Patent number: 10542892
    Abstract: A testing apparatus for an optoacoustic device includes a light pulse sensor operatively connected to a light output port of the optoacoustic device, the light pulse sensor being adapted to sense a pulse of light capable of generating an optoacoustic response in a subject and to distinguish between the light pulse and the at least one other light pulse on the basis of the predominant wavelength. The light pulse sensor outputs a trigger signal associated with the distinguished light pulse when such light pulse is sensed. A transducer signal simulator outputs a first plurality of electrical signals simulating those produced by a transducer array and reflective of an optoacoustic response in a subject to a light pulse at a first wavelength in response to a trigger signal from the light pulse sensor associated with a light pulse having a first wavelength.
    Type: Grant
    Filed: July 27, 2017
    Date of Patent: January 28, 2020
    Assignee: Seno Medical Instruments, Inc.
    Inventors: Donald G. Herzog, William Ackerman
  • Patent number: 10537751
    Abstract: A device for positioning an energy-generating transducer probe a movement unit. The transducer probe may be configured for heat treatment of biological tissues and emits energy in one aiming direction which is located in an aiming plane. The movement unit is configured to alter the position of the transducer probe and, consequently, the aiming direction in the aiming plane around a target zone within the aiming plane.
    Type: Grant
    Filed: April 28, 2005
    Date of Patent: January 21, 2020
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Chretien Theophilus Willibrordus Moonen, Rares Salomir, Charles Mougenot
  • Patent number: 10517490
    Abstract: A method for producing an image representative of the vasculature of a subject using a MRI system includes the acquisition of a signal indicative of a subject' cardiac phase. During each heartbeat of the subject, image slices of a volume covering a region of interest (ROI) within the subject are acquired by applying a volume-selective venous suppression pulse to suppress (a) venous signal for an upper slice in the ROI; (b) venous signal for slices that are upstream for venous flow in the ROI; and (c) background signal from the upstream slices. Next, a slice-selective background suppression pulse is applied to suppress background signal of the upper slice. Following a quiescent time interval, a spectrally selective fat suppression pulse is applied to the entire volume to attenuate signal from background fat signal. Then, a simultaneous multi-slice acquisition of the upper slice and the upstream slices is performed.
    Type: Grant
    Filed: October 24, 2016
    Date of Patent: December 31, 2019
    Assignees: Siemens Healthcare GmbH, Northshore University Healthsystem
    Inventors: Shivraman Giri, Robert R. Edelman, Ioannis Koktzoglou, Himanshu Bhat
  • Patent number: 10517566
    Abstract: An ultrasonic device includes a base, a plurality of ultrasonic transducer elements, an acoustic adjustment layer, and a wall part. The ultrasonic transducer elements are arranged in an array form on the base, each of the ultrasonic transducer elements having a vibration film. The acoustic adjustment layer is disposed on each of the ultrasonic transducer elements. The wall part is arranged between adjacent ones of the ultrasonic transducer elements when viewed in a plan view along a thickness direction of the base such that the acoustic adjustment layer on the adjacent ones of the ultrasonic transducer elements are separated by the wall part in a range of at least a portion of a height of the acoustic adjustment layer measured from the base. The wall part has an acoustic impedance that is higher than an acoustic impedance of the acoustic adjustment layer.
    Type: Grant
    Filed: September 29, 2014
    Date of Patent: December 31, 2019
    Assignee: Seiko Epson Corporation
    Inventors: Kanechika Kiyose, Hironori Suzuki, Hiroshi Matsuda