Patents by Inventor Joshua Leven

Joshua Leven 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: 12108998
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Grant
    Filed: June 12, 2023
    Date of Patent: October 8, 2024
    Assignees: Intuitive Surgical Operations, Inc., The Johns Hopkins University
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Publication number: 20230338101
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Application
    Filed: June 12, 2023
    Publication date: October 26, 2023
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Patent number: 11717365
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Grant
    Filed: July 11, 2022
    Date of Patent: August 8, 2023
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Publication number: 20220354603
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Application
    Filed: July 11, 2022
    Publication date: November 10, 2022
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Patent number: 11399909
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Grant
    Filed: January 27, 2020
    Date of Patent: August 2, 2022
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Patent number: 11259870
    Abstract: In one embodiment of the invention, a a minimally invasive surgical system is disclosed. The system configured to capture and display camera images of a surgical site on at least one display device at a surgeon console; switch out of a following mode and into a masters-as-mice (MaM) mode; overlay a graphical user interface (GUI) including an interactive graphical object onto the camera images; and render a pointer within the camera images for user interactive control. In the following mode, the input devices of the surgeon console may couple motion into surgical instruments. In the MaM mode, the input devices interact with the GUI and interactive graphical objects. The pointer is manipulated in three dimensions by input devices having at least three degrees of freedom. Interactive graphical objects are related to physical objects in the surgical site or a function thereof and are manipulatable by the input devices.
    Type: Grant
    Filed: October 4, 2017
    Date of Patent: March 1, 2022
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Simon P. DiMaio, Christopher J. Hasser, Russell H. Taylor, David Q. Larkin, Peter Kazanzides, Anton Deguet, Balazs Peter Vagvolgyi, Joshua Leven
  • Publication number: 20220015832
    Abstract: A minimally invasive surgical system is disclosed including a processor coupled to a stereoscopic endoscope and a stereoscopic video display device. The processor generates an operative image of an anatomic structure in the surgical site, overlays the operative image onto the captured stereo video images for display on the stereoscopic video display device, generates and overlays a pointer onto the operative image or the captured stereo video images to display the pointer on the stereoscopic video display device with a three dimensional appearance, and switches between a first mode for input devices of a surgeon console used to couple motion into surgical instruments and a second mode used to control an interactive graphical user interface to allow interactions with the pointer and the operative image in three dimensions using input devices having at least three degrees of freedom.
    Type: Application
    Filed: September 7, 2021
    Publication date: January 20, 2022
    Inventors: Simon P. DiMaio, Christopher J. Hasser, Russell H. Taylor, David Q. Larkin, Peter Kazanzides, Anton Deguet, Balazs Peter Vagvolgyi, Joshua Leven
  • Publication number: 20200163732
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Application
    Filed: January 27, 2020
    Publication date: May 28, 2020
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Patent number: 10646293
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Grant
    Filed: January 23, 2017
    Date of Patent: May 12, 2020
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Publication number: 20200134260
    Abstract: A system and method for implementing a proficiency-driven feedback and improvement platform is disclosed. A particular embodiment includes: establishing a data connection with a learner; generating a distribution of questions to determine the learner's level of proficiency on a topic, the topic being composed of a set of codes and counter-codes; determining the learner proficient on the topic after the learner has demonstrated proficiency on each code and counter-code within the topic; and distributing questions to the learner on codes and counter-codes within the topic until the learner has demonstrated proficiency on each code and counter-code within the topic. A particular embodiment further includes: providing the learner feedback on work according to a set of criteria; and ensuring that only users who have first demonstrated proficiency on one or more criteria in the set of criteria can give feedback on those criteria.
    Type: Application
    Filed: December 31, 2019
    Publication date: April 30, 2020
    Inventors: Jeff Scheur, Jocelyn Karlan, Joshua Leven
  • Patent number: 10603127
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Grant
    Filed: January 23, 2017
    Date of Patent: March 31, 2020
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Patent number: 10565304
    Abstract: A system and method for implementing a proficiency-driven feedback and improvement platform is disclosed. A particular embodiment includes: establishing a data connection with a learner; generating a distribution of questions to determine the learner's level of proficiency on a topic, the topic being composed of a set of codes and counter-codes; determining the learner proficient on the topic after the learner has demonstrated proficiency on each code and counter-code within the topic; and distributing questions to the learner on codes and counter-codes within the topic until the learner has demonstrated proficiency on each code and counter-code within the topic. A particular embodiment further includes: providing the learner feedback on work according to a set of criteria; and ensuring that only users who have first demonstrated proficiency on one or more criteria in the set of criteria can give feedback on those criteria.
    Type: Grant
    Filed: September 16, 2017
    Date of Patent: February 18, 2020
    Assignee: NoRedInk Corp.
    Inventors: Jeff Scheur, Jocelyn Karlan, Joshua Leven
  • Publication number: 20180042680
    Abstract: In one embodiment of the invention, a a minimally invasive surgical system is disclosed. The system configured to capture and display camera images of a surgical site on at least one display device at a surgeon console; switch out of a following mode and into a masters-as-mice (MaM) mode; overlay a graphical user interface (GUI) including an interactive graphical object onto the camera images; and render a pointer within the camera images for user interactive control. In the following mode, the input devices of the surgeon console may couple motion into surgical instruments. In the MaM mode, the input devices interact with the GUI and interactive graphical objects. The pointer is manipulated in three dimensions by input devices having at least three degrees of freedom. Interactive graphical objects are related to physical objects in the surgical site or a function thereof and are manipulatable by the input devices.
    Type: Application
    Filed: October 4, 2017
    Publication date: February 15, 2018
    Inventors: Simon P. DiMaio, Christopher J. Hasser, Russell H. Taylor, David Q. Larkin, Peter Kazanzides, Anton Deguet, Balazs Peter Vagvolgyi, Joshua Leven
  • Patent number: 9795446
    Abstract: In one embodiment of the invention, a method for a minimally invasive surgical system is disclosed. The method includes capturing and displaying camera images of a surgical site on at least one display device at a surgeon console; switching out of a following mode and into a masters-as-mice (MaM) mode; overlaying a graphical user interface (GUI) including an interactive graphical object onto the camera images; and rendering a pointer within the camera images for user interactive control. In the following mode, the input devices of the surgeon console may couple motion into surgical instruments. In the MaM mode, the input devices interact with the GUI and interactive graphical objects. The pointer is manipulated in three dimensions by input devices having at least three degrees of freedom. Interactive graphical objects are related to physical objects in the surgical site or a function thereof and are manipulatable by the input devices.
    Type: Grant
    Filed: February 25, 2013
    Date of Patent: October 24, 2017
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Simon P. DiMaio, Christopher J. Hasser, Russell H. Taylor, David Q. Larkin, Peter Kazanzides, Anton Deguet, Balazs Peter Vagvolgyi, Joshua Leven
  • Publication number: 20170128145
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Application
    Filed: January 23, 2017
    Publication date: May 11, 2017
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Publication number: 20170128041
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Application
    Filed: January 23, 2017
    Publication date: May 11, 2017
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Publication number: 20170128144
    Abstract: A LUS robotic surgical system is trainable by a surgeon to automatically move a LUS probe in a desired fashion upon command so that the surgeon does not have to do so manually during a minimally invasive surgical procedure. A sequence of 2D ultrasound image slices captured by the LUS probe according to stored instructions are processable into a 3D ultrasound computer model of an anatomic structure, which may be displayed as a 3D or 2D overlay to a camera view or in a PIP as selected by the surgeon or programmed to assist the surgeon in inspecting an anatomic structure for abnormalities. Virtual fixtures are definable so as to assist the surgeon in accurately guiding a tool to a target on the displayed ultrasound image.
    Type: Application
    Filed: January 23, 2017
    Publication date: May 11, 2017
    Inventors: Christopher J. Hasser, Russell H. Taylor, Joshua Leven, Michael Choti
  • Publication number: 20130245375
    Abstract: In one embodiment of the invention, a method for a minimally invasive surgical system is disclosed. The method includes capturing and displaying camera images of a surgical site on at least one display device at a surgeon console; switching out of a following mode and into a masters-as-mice (MaM) mode; overlaying a graphical user interface (GUI) including an interactive graphical object onto the camera images; and rendering a pointer within the camera images for user interactive control. In the following mode, the input devices of the surgeon console may couple motion into surgical instruments. In the MaM mode, the input devices interact with the GUI and interactive graphical objects. The pointer is manipulated in three dimensions by input devices having at least three degrees of freedom. Interactive graphical objects are related to physical objects in the surgical site or a function thereof and are manipulatable by the input devices.
    Type: Application
    Filed: February 25, 2013
    Publication date: September 19, 2013
    Applicants: The Johns Hopkins University c/o John Hopkins Technology Transfer, Intuitive Surgical Operations, Inc.
    Inventors: Simon P. DiMaio, Christopher J. Hasser, Russell H. Taylor, David Q. Larkin, Peter Kazanzides, Anton Deguet, Balazs Peter Vagvolgyi, Joshua Leven
  • Patent number: 8398541
    Abstract: In one embodiment of the invention, a method for a minimally invasive surgical system is disclosed. The method includes capturing and displaying camera images of a surgical site on at least one display device at a surgeon console; switching out of a following mode and into a masters-as-mice (MaM) mode; overlaying a graphical user interface (GUI) including an interactive graphical object onto the camera images; and rendering a pointer within the camera images for user interactive control. In the following mode, the input devices of the surgeon console may couple motion into surgical instruments. In the MaM mode, the input devices interact with the GUI and interactive graphical objects. The pointer is manipulated in three dimensions by input devices having at least three degrees of freedom. Interactive graphical objects are related to physical objects in the surgical site or a function thereof and are manipulatable by the input devices.
    Type: Grant
    Filed: August 11, 2008
    Date of Patent: March 19, 2013
    Assignees: Intuitive Surgical Operations, Inc., Johns Hopkins University
    Inventors: Simon P. DiMaio, Christopher J. Hasser, Russell H. Taylor, David Q. Larkin, Peter Kazanzides, Anton Deguet, Bálazs Peter Vágvölgyi, Joshua Leven
  • Publication number: 20090036902
    Abstract: In one embodiment of the invention, a method for a minimally invasive surgical system is disclosed. The method includes capturing and displaying camera images of a surgical site on at least one display device at a surgeon console; switching out of a following mode and into a masters-as-mice (MaM) mode; overlaying a graphical user interface (GUI) including an interactive graphical object onto the camera images; and rendering a pointer within the camera images for user interactive control. In the following mode, the input devices of the surgeon console may couple motion into surgical instruments. In the MaM mode, the input devices interact with the GUI and interactive graphical objects. The pointer is manipulated in three dimensions by input devices having at least three degrees of freedom. Interactive graphical objects are related to physical objects in the surgical site or a function thereof and are manipulatable by the input devices.
    Type: Application
    Filed: August 11, 2008
    Publication date: February 5, 2009
    Applicants: Intuitive Surgical, Inc., The Johns Hopkins University c/o Johns Hopkins Technology Transfer
    Inventors: Simon P. DiMaio, Christopher J. Hasser, Russell H. Taylor, David Q. Larkin, Peter Kazanzides, Anton Deguet, Balazs Peter Vagvolgyi, Joshua Leven