Patents by Inventor Ameet Kumar Jain

Ameet Kumar Jain 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: 11596386
    Abstract: An ultrasound imaging system according to the present disclosure may include an ultrasound transducer assembly comprising a plurality of apertures that are configured to transmit signals toward and receive signals from a region of interest (ROI) of a subject, a tracking sensor disposed within the subject and configured to move within the ROI, the sensor being responsive to signals transmitted by the apertures, and at least one processor in communication with the ultrasound transducer assembly and the tracking sensor.
    Type: Grant
    Filed: January 11, 2018
    Date of Patent: March 7, 2023
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Shyam Bharat, Man Nguyen, Ameet Kumar Jain, Jean-Luc Francois-Marie Robert, Vijay Parthasarathy, Atul Gupta, Kunal Vaidya, Ramon Quido Erkamp
  • Publication number: 20230031014
    Abstract: A controller (240/340) for simultaneously tracking multiple interventional medical devices includes a memory (242/342) that stores instructions and a processor (241/341) that executes the instructions. When executed by the processor (241/341), the instructions cause the controller to execute a process that includes receiving timing information from a first signal emitted from an ultrasound probe (252/352) and reflective of timing when the ultrasound probe (252/352) transmits ultrasound beams to generate ultrasound imagery. The process executed by the controller also includes forwarding the timing information to be available for use by a first acquisition electronic component (232/332). The first acquisition electronic component (232/332) also receives sensor information from a first passive ultrasound sensor (S1) on a first interventional medical device (212/312).
    Type: Application
    Filed: October 13, 2022
    Publication date: February 2, 2023
    Inventors: RAMON QUIDO ERKAMP, HENDRIK ROELOF STAPERT, GUNTHER LAMPARTER, AMEET KUMAR JAIN, ALVIN CHEN, SHYAM BHARAT, KUNAL VAIDYA, FRANCOIS GUY GERARD MARIE VIGNON
  • Publication number: 20230012353
    Abstract: The following relates generally to systems and methods of trans-esophageal echocardiography (TEE) automation. Some aspects relate to a TEE probe with ultrasonic transducers on a distal end of the TEE probe. In some implementations, if a target is in a field of view (FOV) of the ultrasonic transducers, an electronic beam steering of the probe is adjusted; if the target is at an edge of the FOV, both the electronic beam steering and mechanical joints of the probe are adjusted; and if the target is not in the FOV, only the mechanical joints of the probe are adjusted.
    Type: Application
    Filed: December 8, 2020
    Publication date: January 12, 2023
    Inventors: Paul THIENPHRAPA, Sean Joseph KYNE, Molly Lara FLEXMAN, Ameet Kumar JAIN, Sibo LI, Kunal VAIDYA, Marcin Arkadiusz BALICKI
  • Patent number: 11547487
    Abstract: A system for tracking an instrument with ultrasound includes a probe (122) for transmitting and receiving ultrasonic energy and a transducer (130) associated with the probe and configured to move with the probe during use. A medical instrument (102) includes a sensor (120) configured to respond to the ultrasonic energy received from the probe. A control module (124) is stored in memory and configured to interpret the ultrasonic energy received from the probe and the sensor to determine a three dimensional location of the medical instrument and to inject a signal to the probe from the transducer to highlight a position of the sensor in an image.
    Type: Grant
    Filed: June 25, 2014
    Date of Patent: January 10, 2023
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Ameet Kumar Jain, Francois Guy Gerard Marie Vignon
  • Publication number: 20220370035
    Abstract: An apparatus for performing a medical procedure is disclosed. The apparatus includes a sensor adapted to convert an ultrasonic signal incident thereon into an electrical signal; and a wireless transceiver configured to receive the electrical signal from the sensor, and to transmit the electrical signal to a wireless receiver remotely located from the apparatus.
    Type: Application
    Filed: August 5, 2022
    Publication date: November 24, 2022
    Inventors: Kunal VAIDYA, Ramon Quido ERKAMP, Shyam BHARAT, Ameet Kumar JAIN, Douglas Allen STANTON, Francois Guy Gerard Marie VIGNON
  • Patent number: 11497563
    Abstract: A controller (240/340) for simultaneously tracking multiple interventional medical devices includes a memory (242/342) that stores instructions and a processor (241/341) that executes the instructions. When executed by the processor (241/341), the instructions cause the controller to execute a process that includes receiving timing information from a first signal emitted from an ultrasound probe (252/352) and reflective of timing when the ultrasound probe (252/352) transmits ultrasound beams to generate ultrasound imagery. The process executed by the controller also includes forwarding the timing information to be available for use by a first acquisition electronic component (232/332). The first acquisition electronic component (232/332) also receives sensor information from a first passive ultrasound sensor (S1) on a first interventional medical device (212/312).
    Type: Grant
    Filed: June 6, 2019
    Date of Patent: November 15, 2022
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Ramon Quido Erkamp, Hendrik Roelof Stapert, Gunther Lamparter, Ameet Kumar Jain, Alvin Chen, Shyam Bharat, Kunal Vaidya, Francois Guy Gerard Marie Vignon
  • Publication number: 20220330914
    Abstract: A steerable multi-plane ultrasound imaging system (MPUIS) for steering a plurality of intersecting image planes (PL1 . . . n) of a beamforming ultrasound imaging probe (BUIP) based on ultrasound signals transmitted between the beamforming ultrasound imaging probe (BUIP) and an ultrasound transducer (S) disposed within a field of view (FOV) of the probe (BUIP). An ultrasound tracking system (UTS) causes the beamforming ultrasound imaging probe (BUIP) to adjust an orientation of the first image plane (PL1) such that a first image plane passes through a position (POS) of the ultrasound transducer (S) by maximizing a magnitude of ultrasound signals transmitted between the beamforming ultrasound imaging probe (BUIP) and the ultrasound transducer (S). An orientation of a second image plane (PL2) is adjusted such that an intersection (AZ) between the first image plane and the second image plane passes through the position of the ultrasound transducer (S).
    Type: Application
    Filed: August 11, 2020
    Publication date: October 20, 2022
    Inventors: Alvin CHEN, Kunal VAIDYA, Alyssa TORJESEN, Sibo LI, Ramon Quido ERKAMP, Shyam BHARAT, Molly Lara FLEXMAN, Ameet Kumar JAIN, Hendrik Roelof STAPERT, Vincentius Paulus BUIL, Njin-Zu CHEN, Ralph Theodorus Hubertus MAESSEN, Niels NIJHOF, Elise Claude Valentine TALGORN
  • Patent number: 11439363
    Abstract: An apparatus for performing a medical procedure is disclosed. The apparatus includes a sensor adapted to convert an ultrasonic signal incident thereon into an electrical signal; and a wireless transceiver configured to receive the electrical signal from the sensor, and to transmit the electrical signal to a wireless receiver remotely located from the apparatus.
    Type: Grant
    Filed: December 6, 2017
    Date of Patent: September 13, 2022
    Assignee: KONINKLIJIKE PHILIPS N.V.
    Inventors: Kunal Vaidya, Ramon Quido Erkamp, Shyam Bharat, Ameet Kumar Jain, Douglas Allen Stanton, Francois Guy Gerard Marie Vignon
  • Publication number: 20220273263
    Abstract: A system for localizing a three-dimensional field of view of a beamforming ultrasound imaging probe based on a position indicator disposed within said field of view. The beamforming ultrasound imaging probe transmits and receives ultrasound signals within a three-dimensional field of view comprising a plurality of predetermined sub-volumes, each sub-volume being defined by a two dimensional array of beams. A controller causes the beamforming ultrasound imaging probe to scan the sub-volumes sequentially by transmitting and receiving ultrasound signals corresponding to each beam. A tracking system determines a position of the position indicator within the three-dimensional field of view; and determines a sub-volume in which the position indicator is located.
    Type: Application
    Filed: August 12, 2020
    Publication date: September 1, 2022
    Inventors: Sibo LI, Kunal VAIDYA, Molly Lara FLEXMAN, Alyssa TORJESEN, Ameet Kumar JAIN, Alvin CHEN, Shyam BHARAT, Ramon Quido ERKAMP
  • Publication number: 20220240901
    Abstract: A controller (250) for differentiating passive ultrasound sensors for interventional medical procedures includes a memory (291) and a processor (292). When executed by the processor (292), instructions from the memory (291) cause a system (200) that includes the controller (250) to implement a process that includes receiving first signals from a first passive ultrasound sensor (S1) and receiving second signals from a second passive ultrasound sensor (S2). The first signals and second signals are generated by the passive ultrasound sensors responsive to beams emitted from an ultrasound imaging probe (210). The process also includes identifying a characteristic of the first signals and the second signals. The characteristic includes shapes of the first signals and the second signals and/or times at which the first signals and the second signals are generated as the beams from the ultrasound imaging probe are received.
    Type: Application
    Filed: June 12, 2020
    Publication date: August 4, 2022
    Inventors: Ramon Quido ERKAMP, Alvin CHEN, Shyam BHARAT, Kunal VAIDYA, Ameet Kumar JAIN, Francois Guy Gerard Marie VIGNON
  • Publication number: 20220240780
    Abstract: An instrument for internal mapping includes a flexible elongated portion (702) and an expandable portion (710) coupled distally to the elongated portion, the expandable portion having one or more expandable loops. An array of sensors (706) and electrodes (708) is distributed on the expandable portion and is configured to concurrently register the instrument to real-time images of an anatomy using the sensors and measure electrical characteristics of the anatomy with the electrodes to generate an electro-physiology (EP) map having the anatomy and intensities of the electrical characteristics mapped together in the real-time images.
    Type: Application
    Filed: February 28, 2022
    Publication date: August 4, 2022
    Inventors: Francois Guy Gerard Marie VIGNON, Ameet Kumar JAIN
  • Publication number: 20220225959
    Abstract: A controller (250) for identifying out-of-plane motion of a passive ultrasound sensor (S1) relative to an imaging plane front an ultrasound imaging probe includes a memory (391) licit stores instructions and a processor (392) that executes the instructions. When executed by the processor, the instructions cause a system that includes the controller (250) to implement a process that includes obtaining (S710). from a position and orientation sensor (212) fixed to the ultrasound imaging probe (210), measurements of motion of the ultrasound imaging probe (210) between a first point in time and a second point in time.
    Type: Application
    Filed: May 29, 2020
    Publication date: July 21, 2022
    Inventors: Shyam BHARAT, Kunal VAIDYA, Ramon Quido ERKAMP, Ameet Kumar JAIN
  • Publication number: 20220225958
    Abstract: A process implemented by a controller (120/220/320) with a circuit (121-126/221-226/321-351) includes receiving (S410) a signal stream between an ultrasound imaging probe (110/210/310) that emits multiple beams and a console (190/290/390) that receives image signals from the ultrasound imaging probe (110/210/310). The signal stream includes synchronization information indicating timing of emission of each beam, and the circuit (121-126/221-226/321-351) extracts the synchronization information. The circuit (121-126/221-226/321-351) receives (S430), from a passive ultrasound sensor (S1) that receives energy from each beam, a first signal that includes first sensor information indicative of a location of the passive ultrasound sensor (S1) and generated based on receipt by the passive ultrasound sensor (S1) of the energy received from each beam.
    Type: Application
    Filed: May 21, 2020
    Publication date: July 21, 2022
    Inventors: Ramon Quido ERKAMP, Ameet Kumar JAIN, Alvin CHEN, Shyam BHARAT, Kunal VAIDYA
  • Publication number: 20220218302
    Abstract: A controller (220) for determining a shape of an interventional medical device in an interventional medical procedure based on a location of the interventional medical device includes a memory (221) that stores instructions and a processor (222) that executes the instructions. The instructions cause a system (200) that includes the controller (220) to implement a process that includes obtaining (S320) the location of the interventional medical device (201) and obtaining (S330) imagery of a volume that includes the interventional medical device. The process also includes applying (S340), based on the location of the interventional medical device (201), image processing to the imagery to identify the interventional medical device (201) including the shape of the interventional medical device (201). The process further includes (S350) segmenting the interventional medical device (201) to obtain a segmented representation of the interventional medical device (201).
    Type: Application
    Filed: May 19, 2020
    Publication date: July 14, 2022
    Inventors: Alyssa TORJESEN, Kunal VAIDYA, Sibo Li, Molly Lara FLEXMAN, Ameet Kumar JAIN, Alvin CHEN, Ramon Quido ERKAMP, Shyam BHARAT
  • Publication number: 20220192760
    Abstract: A system for tracking an instrument includes two or more sensors (22) disposed along a length of an instrument and being spaced apart from adjacent sensors. An interpretation module (45) is configured to select and update an image slice from a three-dimensional image volume in accordance with positions of the two or more sensors. The three-dimensional image volume includes the positions two or more sensors with respect to a target in the volume. An image processing module (48) is configured to generate an overlay (80) indicating reference positions in the image slice. The reference positions include the positions of the two or more sensors and relative offsets from the image slice in a display to provide feedback for positioning and orienting the instrument.
    Type: Application
    Filed: March 14, 2022
    Publication date: June 23, 2022
    Inventors: Shyam BHARAT, Ameet Kumar JAIN, Antonio BONILLAS VACA
  • Publication number: 20220196789
    Abstract: The present invention relates to an apparatus for tracking a position of an interventional device respective an image plane of an ultrasound field. The position includes an out-of-plane distance (Dop). A geometry-providing unit (GPU) includes a plurality of transducer-to-distal-end lengths (Ltde1 . . . n), each length corresponding to a predetermined distance (Ltde) between a distal end of an interventional device and an ultrasound detector attached to the interventional device, for each of a plurality of interventional device types (T1 . . . n). An image fusion unit (IFU) receives data indicative of the type (T) of the interventional device being tracked; and based on the type (T): selects from the geometry-providing unit (GPU), a corresponding transducer-to-distal-end length (Ltde); and indicates in a reconstructed ultrasound image (RUI) both the out-of-plane distance (Dop) and the transducer-to-distal-end length (Ltde) for the interventional device within the ultrasound field.
    Type: Application
    Filed: February 17, 2022
    Publication date: June 23, 2022
    Inventors: Hendrik Roelof STAPERT, Carina SNIJDER, Ameet Kumar JAIN, Willem-Jan Arend DE WIJS
  • Publication number: 20220198669
    Abstract: Ultrasound image devices, systems, and methods are provided. An ultrasound imaging system comprising a processor circuit configured to receive, from an ultrasound imaging device, a sequence of input image frames of a moving object over a time period, wherein the moving object comprises at least one of an anatomy of a patient or a medical device traversing through the patient's anatomy, and wherein a portion of the moving object is at least partially invisible in a first input image frame of the sequence of input image frames; apply a recurrent predictive network to the sequence of input image frames to generate segmentation data; and output, to a display, a sequence of output image frames based on the segmentation data, wherein the portion of the moving object is fully visible in a first output image frame of the sequence of output image frames.
    Type: Application
    Filed: March 30, 2020
    Publication date: June 23, 2022
    Inventors: ALVIN CHEN, KUNAL VAIDYA, BRIAN LEE, VIPUL SHRIHAN PAI RAIKAR, MINGXIN ZHENG, SHYAM BHARAT, AMEET KUMAR JAIN
  • Patent number: 11324479
    Abstract: A system for highlighting an instrument in an image includes a probe (122) for transmitting and receiving ultrasonic energy to and from a volume and a marker device (120) configured to respond to a received ultrasonic signal and emit an ultrasonic signal after a delay. The ultrasonic signal includes one or more pulses configured to generate a marker, when rendered, of a given size at a position within an image. A medical instrument (102) is disposed in the volume and includes the marker device. A control module (124) is stored in memory and is configured to interpret the ultrasonic energy received from the probe and from the marker device to determine a three dimensional location of the medical instrument and to highlight the three dimensional location of the marker device with the marker in the image.
    Type: Grant
    Filed: February 26, 2020
    Date of Patent: May 10, 2022
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Ameet Kumar Jain, Francois Vignon
  • Patent number: 11298192
    Abstract: A system for tracking an instrument includes two or more sensors (22) disposed along a length of an instrument and being spaced apart from adjacent sensors. An interpretation module (45) is configured to select and update an image slice from a three-dimensional image volume in accordance with positions of the two or more sensors. The three-dimensional image volume includes the positions two or more sensors with respect to a target in the volume. An image processing module (48) is configured to generate an overlay (80) indicating reference positions in the image slice. The reference positions include the positions of the two or more sensors and relative offsets from the image slice in a display to provide feedback for positioning and orienting the instrument.
    Type: Grant
    Filed: July 14, 2015
    Date of Patent: April 12, 2022
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Shyam Bharat, Ameet Kumar Jain, Antonio Bonillas Vaca
  • Patent number: 11298028
    Abstract: The invention relates to a temperature distribution determination apparatus for determining a temperature distribution within an object (20), while an energy application element (2) applies energy to the object, especially while an ablation procedure for ablating a tumor within an organ is performed. A time-dependent first ultrasound signal is generated for an ultrasound measurement region within the object and a temperature distribution within the object is determined based on the generated time-dependent first ultrasound signal and based on a position of the energy application element (2) relative to the ultrasound measurement region tracked over time. This can ensure that always the correct position of the energy application element, which may be regarded as being a heat source, is considered, even if the energy application element moves, for instance, due to a movement of the object. This can lead to a more accurate determination of the temperature distribution.
    Type: Grant
    Filed: February 2, 2015
    Date of Patent: April 12, 2022
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Shriram Sethuraman, Ajay Anand, Sheng-Wen Huang, Francois Guy Gerard Marie Vignon, Ameet Kumar Jain