Patents by Inventor Harold Wodlinger

Harold Wodlinger 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: 20240032841
    Abstract: Systems and methods are disclosed to determine one or more sensing zones on a body surface for electrocardiographic mapping of a region of interest associated with the heart. The sensing zone can be utilized to facilitate acquisition, processing and mapping of electrical activity for the corresponding region of interest. In other examples, an application-specific arrangement of electrodes can also be provided based on the sensing zone that is determined for the region of interest.
    Type: Application
    Filed: October 10, 2023
    Publication date: February 1, 2024
    Inventors: PING JIA, CHARULATHA RAMANATHAN, MARIA STROM, BRIAN P. GEORGE, LALITA BHETWAL, HAROLD WODLINGER, JONATHAN D. SMALL
  • Patent number: 11826148
    Abstract: Systems and methods are disclosed to determine one or more sensing zones on a body surface for electrocardiographic mapping of a region of interest associated with the heart. The sensing zone can be utilized to facilitate acquisition, processing and mapping of electrical activity for the corresponding region of interest. In other examples, an application-specific arrangement of electrodes can also be provided based on the sensing zone that is determined for the region of interest.
    Type: Grant
    Filed: December 6, 2021
    Date of Patent: November 28, 2023
    Assignee: CARDIOINSIGHT TECHNOLOGIES INC.
    Inventors: Ping Jia, Charulatha Ramanathan, Maria Strom, Brian P. George, Lalita Bhetwal, Harold Wodlinger, Jonathan D. Small
  • Patent number: 11737698
    Abstract: An electrophysiology system including signal channels each of which processes an electrophysiological signal along a signal path extending from an input port that receives the analog electrophysiological signal, via an adjustable gain element that amplifies the electrophysiological signal, and via an ADC element that converts the analog signal into a corresponding digital signal, to an output port. The system further includes a monitoring element that generates a monitoring signal representative of a DC component of the electrophysiological signal and a gain control element that generates a control signal responsive to the monitoring signal. The control signal controls the gain setting of the gain element to cause a decrease in gain, if an increase in the magnitude of the DC component is determined; and/or an increase in gain, if a decrease in the magnitude of the DC component is determined.
    Type: Grant
    Filed: March 12, 2019
    Date of Patent: August 29, 2023
    Assignee: CathVision ApS
    Inventors: Sigge Nejst Larsen, Victor Shadbolt, David P. MacAdam, Harold Wodlinger
  • Patent number: 11576604
    Abstract: Systems and methods can be used to provide an indication of heart function, such as an indication of mechanical function or hemodynamics of the heart, based on electrical data. For example, a method for assessing a function of the heart can include determining a time-based electrical characteristic for a plurality of points distributed across a spatial region of the heart. The plurality of points can be grouped into at least two subsets of points based on at least one of a spatial location for the plurality of points or the time-based electrical characteristics for the plurality of points. An indication of synchrony for the heart can be quantified based on relative analysis of the determined time-based electrical characteristic for each of the at least two subsets of points.
    Type: Grant
    Filed: May 8, 2020
    Date of Patent: February 14, 2023
    Assignee: CARDIOINSIGHT TECHNOLOGIES INC.
    Inventors: Charulatha Ramanathan, Harold Wodlinger, Maria Strom, Steven G. Arless, Ping Jia
  • Patent number: 11451203
    Abstract: An isolation amplification circuit having an input stage circuitry and a control circuitry stage interconnected through a galvanic isolation barrier. The input stage circuitry includes a first filter network and a second filter network for supplying first and second output signals in response to the application of first and second electrical input signals. The input stage circuitry includes a first feedback path configured for applying a first feedback signal to a common node of the first filter network to close a first feedback loop around the first filter network and a second feedback path configured for applying a second feedback signal to a common node of the second filter network to close a second feedback loop around the second filter network.
    Type: Grant
    Filed: April 25, 2019
    Date of Patent: September 20, 2022
    Assignee: CathVision ApS
    Inventors: Harold Wodlinger, Arkadiusz Biel, Hogyu Xi, Richard Fine
  • Publication number: 20220087589
    Abstract: Systems and methods are disclosed to determine one or more sensing zones on a body surface for electrocardiographic mapping of a region of interest associated with the heart. The sensing zone can be utilized to facilitate acquisition, processing and mapping of electrical activity for the corresponding region of interest. In other examples, an application-specific arrangement of electrodes can also be provided based on the sensing zone that is determined for the region of interest.
    Type: Application
    Filed: December 6, 2021
    Publication date: March 24, 2022
    Inventors: PING JIA, CHARULATHA RAMANATHAN, MARIA STROM, BRIAN P. GEORGE, LALITA BHETWAL, HAROLD WODLINGER, JONATHAN D. SMALL
  • Patent number: 11224374
    Abstract: Systems and methods are disclosed to determine one or more sensing zones on a body surface for electrocardiographic mapping of a region of interest associated with the heart. The sensing zone can be utilized to facilitate acquisition, processing and mapping of electrical activity for the corresponding region of interest. In other examples, an application-specific arrangement of electrodes can also be provided based on the sensing zone that is determined for the region of interest.
    Type: Grant
    Filed: December 20, 2016
    Date of Patent: January 18, 2022
    Assignee: CARDIOINSIGHT TECHNOLOGIES, INC.
    Inventors: Ping Jia, Charulatha Ramanathan, Maria Strom, Brian P. George, Lalita Bhetwal, Harold Wodlinger, Jonathan D. Small
  • Patent number: 11129559
    Abstract: A switchable filter device for use in a system for recording electro-physiological signals. The filter device includes a plurality of recording channels, the recording channels having an ablation recording channel. Each recording channel has a patient side terminal at a patient interface and a corresponding recording side terminal at a recording device interface. Each recording channel includes a first signal path with a first frequency dependent transmission characteristic having a first pass band, a second signal path with a second frequency dependent transmission characteristic different from the first frequency dependent transmission characteristic, the second frequency dependent transmission characteristic having a second pass band overlapping the first pass band, and switching devices operable to switch between the first signal path and the second signal path in response to a control signal indicative of a transient interference signal.
    Type: Grant
    Filed: October 13, 2017
    Date of Patent: September 28, 2021
    Assignee: CathVision ApS
    Inventors: Mads Emil Matthiesen, Sigge Nejst Larsen, Victor Shadbolt, Harold Wodlinger
  • Publication number: 20210058047
    Abstract: An isolation amplification circuit having an input stage circuitry and a control circuitry stage interconnected through a galvanic isolation barrier. The input stage circuitry includes a first filter network and a second filter network for supplying first and second output signals in response to the application of first and second electrical input signals. The input stage circuitry includes a first feedback path configured for applying a first feedback signal to a common node of the first filter network to close a first feedback loop around the first filter network and a second feedback path configured for applying a second feedback signal to a common node of the second filter network to close a second feedback loop around the second filter network.
    Type: Application
    Filed: April 25, 2019
    Publication date: February 25, 2021
    Inventors: Harold Wodlinger, Arkadiusz Biel, Hogyu Xi, Richard Fine
  • Publication number: 20210038103
    Abstract: An electrophysiology system including signal channels each of which processes an electrophysiological signal along a signal path extending from an input port that receives the analog electrophysiological signal, via an adjustable gain element that amplifies the electrophysiological signal, and via an ADC element that converts the analog signal into a corresponding digital signal, to an output port. The system further includes a monitoring element that generates a monitoring signal representative of a DC component of the electrophysiological signal and a gain control element that generates a control signal responsive to the monitoring signal. The control signal controls the gain setting of the gain element to cause a decrease in gain, if an increase in the magnitude of the DC component is determined; and/or an increase in gain, if a decrease in the magnitude of the DC component is determined.
    Type: Application
    Filed: March 12, 2019
    Publication date: February 11, 2021
    Inventors: Sigge Nejst Larsen, Victor Shadbolt, David P. MacAdam, Harold Wodlinger
  • Publication number: 20200260978
    Abstract: Systems and methods can be used to provide an indication of heart function, such as an indication of mechanical function or hemodynamics of the heart, based on electrical data. For example, a method for assessing a function of the heart can include determining a time-based electrical characteristic for a plurality of points distributed across a spatial region of the heart. The plurality of points can be grouped into at least two subsets of points based on at least one of a spatial location for the plurality of points or the time-based electrical characteristics for the plurality of points. An indication of synchrony for the heart can be quantified based on relative analysis of the determined time-based electrical characteristic for each of the at least two subsets of points.
    Type: Application
    Filed: May 8, 2020
    Publication date: August 20, 2020
    Inventors: CHARULATHA RAMANATHAN, HAROLD WODLINGER, MARIA STROM, STEVEN G. ARLESS, PING JIA
  • Patent number: 10682066
    Abstract: Systems and methods can be used to provide an indication of heart function, such as an indication of mechanical function or hemodynamics of the heart, based on electrical data. For example, a method for assessing a function of the heart can include determining a time-based electrical characteristic for a plurality of points distributed across a spatial region of the heart. The plurality of points can be grouped into at least two subsets of points based on at least one of a spatial location for the plurality of points or the time-based electrical characteristics for the plurality of points. An indication of synchrony for the heart can be quantified based on relative analysis of the determined time-based electrical characteristic for each of the at least two subsets of points.
    Type: Grant
    Filed: November 7, 2017
    Date of Patent: June 16, 2020
    Assignee: CARDIOINSIGHT TECHNOLOGIES, INC.
    Inventors: Charulatha Ramanathan, Harold Wodlinger, Maria Strom, Steven G. Arless, Ping Jia
  • Publication number: 20200037914
    Abstract: The present invention relates to a switchable filter device for use in a system for recording electro-physiological signals. The filter device comprises a plurality of recording channels, the recording channels comprising an ablation recording channel. Each recording channel has a patient side terminal at a patient interface and a corresponding recording side terminal at a recording device interface. Each recording channel comprises a first signal path with a first frequency dependent transmission characteristic having a first pass band, a second signal path with a second frequency dependent transmission characteristic different from the first frequency dependent transmission characteristic, the second frequency dependent transmission characteristic having a second pass band overlapping the first pass band, and switching devices operable to switch between the first signal path and the second signal path in response to a control signal indicative of a transient interference signal.
    Type: Application
    Filed: October 13, 2017
    Publication date: February 6, 2020
    Inventors: Mads Emil Matthiesen, Sigge Nejst Larsen, Victor Shadbolt, Harold Wodlinger
  • Patent number: 10506948
    Abstract: A system (10) can localize an object in a patient's body. The system (10) can include a pulse generator (18 or 30) configured to provide a localization signal to at least one electrode that is fixed to the object in the patient's body. A sensor array (22) can be configured to detect an electrical field produced in response to the localization signal and provide respective sensor signals. A map generator (42) can be configured to reconstruct electrical signals based on the respective sensor signals and geometry data representing a geometric relationship between patient anatomy and the sensor array. A location calculator (50) can determine a location where the localization signal was applied based on the reconstructed electrical signals.
    Type: Grant
    Filed: July 5, 2012
    Date of Patent: December 17, 2019
    Assignee: CARDIOINSIGHT TECHNOLOGIES, INC.
    Inventors: Harold Wodlinger, Charulatha Ramanathan, Ping Jia
  • Patent number: 10090807
    Abstract: This disclosure provides isolation for a medical amplifier by providing a low impedance path for noise across an isolation barrier. The low impedance path can include a capacitive coupling between a patient ground, which is isolated from control circuitry, and a functional ground of an isolation system that is isolated from earth ground. The low impedance path can draw noise current from an input of an amplifier of patient circuitry.
    Type: Grant
    Filed: December 12, 2017
    Date of Patent: October 2, 2018
    Assignee: Cardioinsight Technologies, Inc.
    Inventors: Arkadiusz Biel, Harold Wodlinger, Richard M. Fine
  • Publication number: 20180102739
    Abstract: This disclosure provides isolation for a medical amplifier by providing a low impedance path for noise across an isolation barrier. The low impedance path can include a capacitive coupling between a patient ground, which is isolated from control circuitry, and a functional ground of an isolation system that is isolated from earth ground. The low impedance path can draw noise current from an input of an amplifier of patient circuitry.
    Type: Application
    Filed: December 12, 2017
    Publication date: April 12, 2018
    Inventors: ARKADIUSZ BIEL, HAROLD WODLINGER, RICHARD M. FINE
  • Publication number: 20180055395
    Abstract: Systems and methods can be used to provide an indication of heart function, such as an indication of mechanical function or hemodynamics of the heart, based on electrical data. For example, a method for assessing a function of the heart can include determining a time-based electrical characteristic for a plurality of points distributed across a spatial region of the heart. The plurality of points can be grouped into at least two subsets of points based on at least one of a spatial location for the plurality of points or the time-based electrical characteristics for the plurality of points. An indication of synchrony for the heart can be quantified based on relative analysis of the determined time-based electrical characteristic for each of the at least two subsets of points.
    Type: Application
    Filed: November 7, 2017
    Publication date: March 1, 2018
    Inventors: CHARULATHA RAMANATHAN, HAROLD WODLINGER, MARIA STROM, STEVEN G. ARLESS, PING JIA
  • Patent number: 9876470
    Abstract: This disclosure provides isolation for a medical amplifier by providing a low impedance path for noise across an isolation barrier. The low impedance path can include a capacitive coupling between a patient ground, which is isolated from control circuitry, and a functional ground of an isolation system that is isolated from earth ground. The low impedance path can draw noise current from an input of an amplifier of patient circuitry.
    Type: Grant
    Filed: October 11, 2013
    Date of Patent: January 23, 2018
    Assignee: Cardioinsight Technologies, Inc.
    Inventors: Arkadiusz Biel, Harold Wodlinger, Richard M. Fine
  • Patent number: 9826915
    Abstract: Systems and methods can be used to provide an indication of heart function, such as an indication of mechanical function or hemodynamics of the heart, based on electrical data. For example, a method for assessing a function of the heart can include determining a time-based electrical characteristic for a plurality of points distributed across a spatial region of the heart. The plurality of points can be grouped into at least two subsets of points based on at least one of a spatial location for the plurality of points or the time-based electrical characteristics for the plurality of points. An indication of synchrony for the heart can be quantified based on relative analysis of the determined time-based electrical characteristic for each of the at least two subsets of points.
    Type: Grant
    Filed: July 13, 2015
    Date of Patent: November 28, 2017
    Assignee: Cardioinsight Technologies, Inc.
    Inventors: Charulatha Ramanathan, Harold Wodlinger, Maria Strom, Steven G. Arless, Ping Jia
  • Patent number: 9750940
    Abstract: A method can include providing at least one parameter to control a therapy that is applied to at least one internal anatomical structure of a patient. Electrical data can be obtained from the patient, including electrical data acquired via a plurality of sensors during each of a plurality of iterations of the therapy. The electrical data can be analyzed for a respective value of the at least one parameter of the therapy at each of the plurality of iterations of the applied therapy to compute an indication of at least one function of the at least one internal anatomical structure of the patient at each respective iteration of the applied therapy. The computed indication can be stored in memory. At least one parameter of the therapy can be adjusted for delivery in a subsequent one of the plurality of iterations based on the indication of the at least one function.
    Type: Grant
    Filed: August 29, 2016
    Date of Patent: September 5, 2017
    Assignee: Cardioisight Technologies, Inc.
    Inventors: Charulatha Ramanathan, Harold Wodlinger, Ping Jia, Maria Strom