Patents Examined by Yi-Shan Yang
  • Patent number: 11510616
    Abstract: The invention relates to a detection apparatus and a method for detecting and manipulating a blood vessel under the skin of part of the body of a patient, which comprises a treatment chamber for accommodating the body part, a data processing control device, a vascular structure measuring device for detecting the position and/or dimensions of vascular structure data of the blood vessel in the treatment chamber by measurement, a vascular manipulation device for changing the position and/or dimension of the blood vessel, wherein the control device is designed to control the vascular manipulation device as a function of the vascular structure data.
    Type: Grant
    Filed: January 29, 2018
    Date of Patent: November 29, 2022
    Assignee: FRESENIUS MEDICAL CARE DEUTSCHLAND GMBH
    Inventors: Pascal Kopperschmidt, Pia Daniel, Reiner Spickermann, Otto Arkossy, Cacilia Scholz, Kai-Uwe Ritter, Elke Schulte, Christopher Hauke
  • Patent number: 11510645
    Abstract: Provided is an ultrasound imaging apparatus for predicting fetal growth rate, including: an ultrasound probe configured to transmit ultrasound signals to a fetus and receive ultrasound echo signals reflected from the fetus; a user inputter configured to receive pregnancy information regarding a patient from a user; a communicator configured to receive, from a cloud server, fetal biometric data related to the pregnancy information regarding the patient from among fetal biometric data prestored and accumulated in the cloud server; and a controller configured to generate an ultrasound image of the fetus by using the ultrasound echo signals, measure a size of a body part of the fetus on the ultrasound image, and predict the fetal growth rate based on the measured size of the body part of the fetus and the fetal biometric data received from the cloud server.
    Type: Grant
    Filed: March 27, 2019
    Date of Patent: November 29, 2022
    Assignee: SAMSUNG MEDISON CO., LTD.
    Inventors: Hoki Hong, Daebong Park, Sungnam Park, Jaeho Lee, Jeong Cho, Soonjae Hong
  • Patent number: 11504006
    Abstract: Some embodiments of the present disclosure are directed to ultraweak photon emission imaging systems and methods. In some embodiments, a method comprises acquiring an ultraweak photon emission image of a target area of a patient for detection of a pathological condition; wherein the target area comprises an area of interest and a portion surrounding the area of interest, wherein acquiring the image comprises: enhancing formation of reactive oxygen species and/or reactive nitrogen species in the target area, wherein enhancing formation of the reactive oxygen species and/or the reactive nitrogen species comprises applying low level light illumination to the target area from 1 second to 60 minutes so as to achieve a total power output from 1 mW to 10,000 W using an average power density from 0.1 W/cm2 to 1 W/cm2; and imaging the target area, wherein imaging the target area comprises a total exposure time from 1 second to 60 minutes.
    Type: Grant
    Filed: July 23, 2021
    Date of Patent: November 22, 2022
    Assignee: Ori Imaging, Inc.
    Inventor: Ori Noked
  • Patent number: 11504089
    Abstract: An adaptor for adjusting electrical signals propagated along an electrically-conductive path between a drive unit and a catheter of an intravascular ultrasound imaging system includes a catheter connector disposed along a first end of a housing and configured to receive the catheter. A drive-unit connector is disposed along a second end of the housing and is configured to couple the adaptor to the drive unit. A catheter-conductor interface electrically-couples to a transducer conductor of the catheter. A drive-unit-conductor interface electrically-couples to an electrical conductor of the drive unit. An adaptor conductor electrically-couples the catheter-conductor interface to the drive-unit-conductor interface. A tuning element is electrically-coupled to the adaptor conductor and is configured to adjust electrical signals propagating along the adaptor conductor based, at least in part, on an operational frequency of a transducer disposed in the catheter.
    Type: Grant
    Filed: September 25, 2018
    Date of Patent: November 22, 2022
    Assignee: Boston Scientific Scimed, Inc.
    Inventor: Peter Thornton, Jr.
  • Patent number: 11490867
    Abstract: The present invention relates to a device (1) for fractional flow reserve determination. The device (1) comprises a model generator (10) configured to generate a three-dimensional model (3DM) of a portion of an imaged vascular vessel tree (VVT) surrounding a stenosed vessel segment (SVS), based on a partial segmentation of the imaged vascular vessel tree (VVT). Further, the device comprises an image processor (20) configured to calculate a blood flow (Q) through the stenosed vessel segment (SVS) based on an analysis of a time-series of X-ray images of the vascular vessel tree (VVT). Still further, the device comprises a fractional-flow-reserve determiner (30) configured to determine a fractional flow reserve (FFR) based on the three-dimensional model (3DM) and the calculated blood flow.
    Type: Grant
    Filed: July 7, 2020
    Date of Patent: November 8, 2022
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Hanno Heyke Homann, Michael Grass, Raoul Florent, Holger Schmitt, Odile Bonnefous, Hannes Nickisch
  • Patent number: 11490843
    Abstract: Apparatus, systems, and methods for methods for monitoring the health status of a vehicle occupant by detecting when a triggering physiological condition is met, confirming the triggering physiological condition is real by identifying a separate vehicle triggering event, and automatically responding to minimize the potential impact of the triggering event.
    Type: Grant
    Filed: November 16, 2018
    Date of Patent: November 8, 2022
    Assignee: TOYOTA MOTOR NORTH AMERICA, INC.
    Inventors: Robert D. Slater, Mathew D. Gardner, Shingo Sugimoto
  • Patent number: 11487006
    Abstract: Disclosed is an imaging method for producing an image of a region inside a medium by an array of transducers, including the a transmission step of a plurality of waves inside the medium, a reception step for acquiring a set of data, a beamforming step providing a plurality beamformed pixel values depending on various transmit weighting vectors, and a combining step for combining the beamformed pixel values into a pixel value of each pixel in the image. The transmit weighting vectors are different and orthogonal one to another one.
    Type: Grant
    Filed: December 1, 2015
    Date of Patent: November 1, 2022
    Assignee: SUPERSONIC IMAGINE
    Inventor: Christophe Fraschini
  • Patent number: 11484243
    Abstract: A device is provided for diagnostic measurement by simultaneous multimodal analysis of a subject's head wherein the cerebral blood flow variations as well as the concentration level of oxygenation in the subject's blood are used to determine the presence and the pathophysiology of neurocognitive disorders, including the neurodegenerative disease referred to as Alzheimer's disease.
    Type: Grant
    Filed: August 11, 2017
    Date of Patent: November 1, 2022
    Assignee: NURO CORP.
    Inventor: Francois Gand
  • Patent number: 11478149
    Abstract: Brain function measurement device including: first light-irradiation probe to irradiate a brain of a subject with light; first light-detection probe to detect light reflected by the brain among the light from the first light-irradiation probe; second light-irradiation probe to irradiate the brain with light; second light-detection probe to detect light reflected by the brain among the light from the second light-irradiation probe; and control unit configured to adjust a light amount irradiated by the second light-irradiation probe so that the light amount measured with respect to a channel between the first light-detection and the second light-irradiation probes becomes an observation value with respect to a channel between the first light-irradiation and the first light-detection probes, and to adjust a light amount detected by the second light-detection probe so that the light amount measured with respect to a channel between the second light-irradiation and the second light-detection probes becomes the obs
    Type: Grant
    Filed: March 28, 2018
    Date of Patent: October 25, 2022
    Assignee: National Institute of Advanced Indusuial Science and Technology
    Inventor: Toru Yamada
  • Patent number: 11471210
    Abstract: Systems and methods are disclosed for treating back pain associated with a vertebral body of a patient. The system may include an external energy source configured to be positioned at a location external to the body of the patient, a linear configured to drive translation of the external source in one or more axes, a computer coupled to the external source and linear drive and programming executable on said computer for determining a target treatment site within or near the vertebral body based on acquired imaging data, positioning a focal point of the external energy source to substantially coincide with the target treatment site, and delivering a treatment dose of therapeutic energy at said target treatment site, wherein the treatment dose is configured to modulate a nerve within or near the vertebral body.
    Type: Grant
    Filed: November 29, 2018
    Date of Patent: October 18, 2022
    Assignee: Relievant Medsystems, Inc.
    Inventors: Richard C Pellegrino, Rex Peters
  • Patent number: 11471067
    Abstract: Methods and systems for position determination are described for using an intrabody probe having a plurality of electrodes to generate a plurality of different electrical fields, and to also measure, using the plurality of electrodes, a measurement set (a Ve-e measurement set) comprising a plurality of measurements of the plurality of different electrical fields while the probe remains in one position. From the Ve-e measurement set, spatial position coordinates for the intrabody probe are estimated within an intrabody coordinate system, using an established mapping between previously observed Ve-e measurement sets and positions in the intrabody coordinate system. Systems and methods for generating and selecting such mappings are also described.
    Type: Grant
    Filed: February 8, 2018
    Date of Patent: October 18, 2022
    Assignee: Navix International Limited
    Inventors: Shlomo Ben-Haim, Zalman Ibragimov, Yehonatan Ben David
  • Patent number: 11471240
    Abstract: A system for dynamic localization of medical instruments includes an ultrasound imaging system (110) configured to image a volume where one or more medical instruments are deployed. A registration module (136) registers two images of the one or more medical instruments to compute a transform between the two images, the two images being separated in time. A planning module (142) is configured to have positions of the volume and the one or more medical instruments updated based on the transform and, in turn, update a treatment plan in accordance with the updated positions such that changes in the volume and positions of the one or more medical instruments are accounted for in the updated plan.
    Type: Grant
    Filed: December 8, 2015
    Date of Patent: October 18, 2022
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Ehsan Dehghan Marvast, Shyam Bharat, Jochen Kruecker
  • Patent number: 11464490
    Abstract: A method for providing real-time feedback and semantic-rich guidance on ultrasound image quality is performed by a processor in an ultrasound system. The method includes receiving an ultrasound image and classifying the ultrasound image into one or more categories based on image features. The classifying creates a classified image. The method also includes determining whether the classified image provides an acceptable representation of a target organ. In response to determining that the classified image does not provide an acceptable representation of the target organ, the method includes selecting operator guidance corresponding to the one or more category; presenting via a display and/or audible sound, the selected operator guidance; and receiving additional ultrasound images. The method further includes calculating a result based on the classified image in response to determining that the classified image provides an acceptable representation of the target organ.
    Type: Grant
    Filed: November 13, 2018
    Date of Patent: October 11, 2022
    Assignee: Verathon Inc.
    Inventors: Si Luo, Dave Scott
  • Patent number: 11464486
    Abstract: A wireless handheld ultrasound system an ultrasound front end to transmit ultrasonic waves into a subject and convert received ultrasonic echoes into digital data; an image processor coupled to the ultrasound front end to convert the digital data into an image; and a power section coupled to the ultrasound front end and the image processor. The power section may include a battery; a charging circuit to charge the battery; and a wireless power transducer coupled to the charging circuit to convert wireless power received from an external source into electrical energy for the charging circuit.
    Type: Grant
    Filed: March 19, 2019
    Date of Patent: October 11, 2022
    Assignee: Shenzhen Mindray Bio-Medical Electronics Co., Ltd.
    Inventor: Glen W. McLaughlin
  • Patent number: 11464480
    Abstract: An intravascular imaging device is provided. In one embodiment, the intravascular imaging device includes a flexible elongate member sized and shaped for insertion into a vessel of a patient, the flexible elongate member having a proximal portion and a distal portion; a conductor extending between the proximal and distal portions of the flexible elongate member; an imaging assembly disposed at the distal portion of the flexible elongate member, the imaging assembly including: a flex circuit including a body and a tab extending therefrom, the tab having a conductive portion coupled to the conductor; and a support member around which the flex circuit is disposed, the support member including a shelf on which tab is positioned.
    Type: Grant
    Filed: March 23, 2017
    Date of Patent: October 11, 2022
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Maritess Minas, Princeton Saroha, Jeremy Stigall, David Kenneth Wrolstad
  • Patent number: 11464439
    Abstract: A grip-type electrocardiographic measuring device includes a main body portion that has a spheroid shape, a plate-shaped flange portion mounted on a side surface of the main body portion, a first electrocardiographic electrode disposed at a back surface side of the main body portion and making contact with one hand when the main body portion is gripped by the one hand, and a second electrocardiographic electrode disposed on a surface of the flange portion and making contact with a finger of the other hand when the flange portion is pinched by the other hand. The flange portion has flexibility and is bendable from a mounting portion on the main body portion.
    Type: Grant
    Filed: April 5, 2019
    Date of Patent: October 11, 2022
    Assignee: MURATA MANUFACTURING CO., LTD.
    Inventor: Toru Shimuta
  • Patent number: 11464497
    Abstract: Apparatuses, systems, and techniques are provided for modular ultrasonic transducers and frame. An ultrasonic transducer array may include a modular ultrasonic transducer array frame. The modular ultrasonic transducer array frame may include mechanisms for the attachment of ultrasonic transducer modules to the ultrasonic transducer array frame. The ultrasonic transducer array may include ultrasonic transducer modules which may include arrays of ultrasonic transducer elements within the ultrasonic transducer modules. Two of the ultrasonic transducer modules may include arrays of ultrasonic transducer elements where the ultrasonic transducer elements are different between the two ultrasonic transducer modules.
    Type: Grant
    Filed: October 8, 2020
    Date of Patent: October 11, 2022
    Assignee: Acoustiic inc.
    Inventor: Sean Taffler
  • Patent number: 11457824
    Abstract: An aspect of the disclosure pertains to a wrist-worn device that may be characterized by the following features: an external surface that is not in contact with the user when the wrist-worn device is worn; a force sensor; a PPG sensor disposed on the wrist-worn device; and control logic configured to: (i) generate one or more sensor data samples, each sensor data sample including data that links force data generated by the force sensor when a user presses a against the external surface at a given time with heart rate data obtained from the PPG sensor at the given time; and (ii) calculate an estimate of blood pressure from the one or more sensor data samples. As examples, the force sensor may be a force sensitive touch screen or film, a strain gauge integrating into the device, or a calibrated spring element configured to be pressed by the user.
    Type: Grant
    Filed: March 7, 2017
    Date of Patent: October 4, 2022
    Assignee: Fitbit, Inc.
    Inventor: Shelten Gee Jao Yuen
  • Patent number: 11452887
    Abstract: A guide framework for positioning an ultrasonic transducer which emits a focused ultrasound to a target point in carrying out surgery to apply ultrasonic stimulation to a subject's brain, includes a body in a shape of a mask that is laid on the subject's face, and a positioning hole formed through an inner surface and an outer surface of the mask body, the positioning hole into which the ultrasonic transducer is inserted, wherein the inner surface of the mask body is formed to conform a facial contour of the subject, and when the guide framework is laid on the subject's face and the ultrasonic transducer is disposed at the positioning hole, the position of the target point is naturally disposed at a preset stimulation site of the brain. An ultrasonic stimulation device includes an ultrasonic transducer and the guide framework for positioning the ultrasonic transducer.
    Type: Grant
    Filed: September 5, 2017
    Date of Patent: September 27, 2022
    Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    Inventors: Hyung Min Kim, Inchan Youn, Seung-Jong Kim, Junhyuk Choi, Hongchae Baek, Chan Yul Jung
  • Patent number: 11439367
    Abstract: A hybrid elastography method includes application of a continuous low frequency vibration and generation, using an ultrasonic transducer in contact with the viscoelastic medium, of a first series of ultrasonic acquisitions, the first series of ultrasonic acquisitions including groups of ultrasonic acquisitions, the groups of ultrasonic acquisitions being generated with a first repetition rate, each group of ultrasonic acquisitions including at least one acquisition, the continuous vibration generating an elastic wave within the viscoelastic medium; application of a low frequency pulse and generation, using the ultrasonic transducer, of a second series of ultrasonic acquisitions, the ultrasonic acquisitions composing the second series being generated with a second repetition rate, the low frequency pulse generating a transient shear wave propagating within the viscoelastic medium; the continuous vibration applied by the first vibrator being stopped before the application of the low frequency pulse.
    Type: Grant
    Filed: February 26, 2019
    Date of Patent: September 13, 2022
    Assignee: ECHOSENS
    Inventors: Laurent Sandrin, Hugo Bernard Martin Loree