Patents by Inventor Ellen Klingbeil

Ellen Klingbeil 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: 12678245
    Abstract: Various approaches to solve for inverse kinematics may be used for teleoperation of a surgical robotic system. In one approach, an iterative solver solves for the linear component of motion independently from solving for the angular component of motion. One solver may be used to solve for both together. In another approach, all limits (e.g., position, velocity, and acceleration) are handled in one solution. Where a limit is reached, the limit is used as a bound in the intermediate solution, allowing solution even where a bound is reached. In another approach, a ratio of limits of position are used to create a slow-down region near the bounds to more naturally control motion. In yet another approach, the medical-based teleoperation uses a bounded Gauss-Siedel solver, such as with successive-over-relaxation.
    Type: Grant
    Filed: May 6, 2024
    Date of Patent: July 14, 2026
    Assignee: Auris Health, Inc.
    Inventors: Renbin Zhou, Haoran Yu, Seungkook Yun, Ellen Klingbeil, Apoorv Shrivastava
  • Patent number: 12636097
    Abstract: A medical system may include an input device for controlling a medical instrument. The input device may include a grasper for receiving user input and a sensor coupled to the grasper for generating sensor information related to a user presence at the grasper. The medical system may also include a processor and memory that stores instructions for receiving secondary information associated with the grasper and determining a user presence at the grasper based on the sensor information and the secondary information. A method for operating the medical system with the input device is also disclosed herein.
    Type: Grant
    Filed: October 20, 2022
    Date of Patent: May 26, 2026
    Assignee: Auris Health, Inc.
    Inventors: Nicholas Cheung, Colin Allen Wilson, Ellen Klingbeil, Karan Handa, Chembian Parthiban
  • Patent number: 12611270
    Abstract: An endoscope is controlled by a surgical robotic system. A user input with six degrees of freedom maps to control of an endoscope by a robotic arm having a fewer number of degrees of freedom. For example, untethered user interface devices control motion of an endoscope through a series of projections from user command, to endoscope motion, and to joint motion of the robotic arm. The projection from user command to endoscope motion may project a singular angular motion from three angular motions of the user interface devices. The projection may account for the remote center of motion and/or an angular orientation of the view of the endoscope relative to a shaft of the endoscope.
    Type: Grant
    Filed: August 27, 2020
    Date of Patent: April 28, 2026
    Assignee: AURIS HEALTH, INC.
    Inventors: Renbin Zhou, Seungkook Yun, Haoran Yu, Ellen Klingbeil, Apoorv Shrivastava
  • Patent number: 12514662
    Abstract: For teleoperation of a surgical robotic system, the user command for the pose of the end effector is projected into a subspace reachable by the end effector. For example, a user command with six DOF is projected to a five DOF subspace. The six DOF user interface device may be used to more intuitively control, based on the projection, the end effector with the limited DOF relative to the user interface device.
    Type: Grant
    Filed: May 29, 2024
    Date of Patent: January 6, 2026
    Assignee: Verb Surgical Inc.
    Inventors: Ellen Klingbeil, Renbin Zhou, Haoran Yu
  • Publication number: 20250107859
    Abstract: A surgical robotic system has a robotic grasper, a user interface device (UID), and one or more processors communicatively coupled to the UID and the robotic grasper. The system detects a directive to engage or re-engage a teleoperation mode, determines that the system is in a non-teleoperation mode, receives a sequence of user actions through the UID, determines the UID matches a jaw angle or a grip force of the robotic grasper, and transitions into teleoperation mode. Other embodiments are also described and claimed.
    Type: Application
    Filed: October 8, 2024
    Publication date: April 3, 2025
    Inventors: Ellen Klingbeil, Haoran Yu
  • Patent number: 12150725
    Abstract: A surgical robotic system has a robotic grasper, a user interface device (UID), and one or more processors communicatively coupled to the UID and the robotic grasper. The system detects a directive to engage or re-engage a teleoperation mode, determines that the system is in a non-teleoperation mode, receives a sequence of user actions through the UID, determines the UID matches a jaw angle or a grip force of the robotic grasper, and transitions into teleoperation mode. Other embodiments are also described and claimed.
    Type: Grant
    Filed: October 7, 2022
    Date of Patent: November 26, 2024
    Assignee: Verb Surgical Inc.
    Inventors: Ellen Klingbeil, Haoran Yu
  • Publication number: 20240382277
    Abstract: For teleoperation of a surgical robotic system, the control of the surgical robotic system accounts for a limited degree of freedom of a tool in a surgical robotic system. A projection from the greater DOF of the user input commands to the lesser DOF of the tool is included within or as part of the inverse kinematics. The projection identifies feasible motion in the end-effector domain. This projection allows for a general solution that works for tools having different degrees of freedom and will converge on a solution.
    Type: Application
    Filed: July 26, 2024
    Publication date: November 21, 2024
    Inventors: APOORV SHRIVASTAVA, RENBIN ZHOU, HAORAN YU, SEUNGKOOK YUN, ELLEN KLINGBEIL
  • Publication number: 20240307138
    Abstract: For teleoperation of a surgical robotic system, the user command for the pose of the end effector is projected into a subspace reachable by the end effector. For example, a user command with six DOF is projected to a five DOF subspace. The six DOF user interface device may be used to more intuitively control, based on the projection, the end effector with the limited DOF relative to the user interface device.
    Type: Application
    Filed: May 29, 2024
    Publication date: September 19, 2024
    Inventors: ELLEN KLINGBEIL, RENBIN ZHOU, HAORAN YU
  • Patent number: 12076099
    Abstract: For teleoperation of a surgical robotic system, the control of the surgical robotic system accounts for a limited degree of freedom of a tool in a surgical robotic system. A projection from the greater DOF of the user input commands to the lesser DOF of the tool is included within or as part of the inverse kinematics. The projection identifies feasible motion in the end-effector domain. This projection allows for a general solution that works for tools having different degrees of freedom and will converge on a solution.
    Type: Grant
    Filed: July 6, 2021
    Date of Patent: September 3, 2024
    Assignee: Verb Surgical Inc.
    Inventors: Apoorv Shrivastava, Renbin Zhou, Haoran Yu, Seungkook Yun, Ellen Klingbeil
  • Publication number: 20240285361
    Abstract: Various approaches to solve for inverse kinematics may be used for teleoperation of a surgical robotic system. In one approach, an iterative solver solves for the linear component of motion independently from solving for the angular component of motion. One solver may be used to solve for both together. In another approach, all limits (e.g., position, velocity, and acceleration) are handled in one solution. Where a limit is reached, the limit is used as a bound in the intermediate solution, allowing solution even where a bound is reached. In another approach, a ratio of limits of position are used to create a slow-down region near the bounds to more naturally control motion. In yet another approach, the medical-based teleoperation uses a bounded Gauss-Siedel solver, such as with successive-over-relaxation.
    Type: Application
    Filed: May 6, 2024
    Publication date: August 29, 2024
    Inventors: RENBIN ZHOU, HAORAN YU, SEUNGKOOK YUN, ELLEN KLINGBEIL, APOORV SHRIVASTAVA
  • Patent number: 12023117
    Abstract: For teleoperation of a surgical robotic system, the user command for the pose of the end effector is projected into a subspace reachable by the end effector. For example, a user command with six DOF is projected to a five DOF subspace. The six DOF user interface device may be used to more intuitively control, based on the projection, the end effector with the limited DOF relative to the user interface device.
    Type: Grant
    Filed: July 6, 2021
    Date of Patent: July 2, 2024
    Assignee: Verb Surgical Inc.
    Inventors: Ellen Klingbeil, Renbin Zhou, Haoran Yu
  • Patent number: 12004829
    Abstract: Various approaches to solve for inverse kinematics may be used for teleoperation of a surgical robotic system. In one approach, an iterative solver solves for the linear component of motion independently from solving for the angular component of motion. One solver may be used to solve for both together. In another approach, all limits (e.g., position, velocity, and acceleration) are handled in one solution. Where a limit is reached, the limit is used as a bound in the intermediate solution, allowing solution even where a bound is reached. In another approach, a ratio of limits of position are used to create a slow-down region near the bounds to more naturally control motion. In yet another approach, the medical-based teleoperation uses a bounded Gauss-Siedel solver, such as with successive-over-relaxation.
    Type: Grant
    Filed: June 9, 2020
    Date of Patent: June 11, 2024
    Assignee: Verb Surgical Inc.
    Inventors: Renbin Zhou, Haoran Yu, Seungkook Nia Yun, Ellen Klingbeil, Apoorv Shrivastava
  • Publication number: 20230145970
    Abstract: A surgical robotic system has a robotic grasper, a user interface device (UID), and one or more processors communicatively coupled to the UID and the robotic grasper. The system detects a directive to engage or re-engage a teleoperation mode, determines that the system is in a non-teleoperation mode, receives a sequence of user actions through the UID, determines the UID matches a jaw angle or a grip force of the robotic grasper, and transitions into teleoperation mode. Other embodiments are also described and claimed.
    Type: Application
    Filed: October 7, 2022
    Publication date: May 11, 2023
    Inventors: Ellen Klingbeil, Haoran Yu
  • Publication number: 20230125107
    Abstract: A medical system may include an input device for controlling a medical instrument. The input device may include a grasper for receiving user input and a sensor coupled to the grasper for generating sensor information related to a user presence at the grasper. The medical system may also include a processor and memory that stores instructions for receiving secondary information associated with the grasper and determining a user presence at the grasper based on the sensor information and the secondary information. A method for operating the medical system with the input device is also disclosed herein.
    Type: Application
    Filed: October 20, 2022
    Publication date: April 27, 2023
    Inventors: Nicholas CHEUNG, Colin Allen WILSON, Ellen KLINGBEIL, Karan HANDA, Chembian PARTHIBAN
  • Publication number: 20230009907
    Abstract: For teleoperation of a surgical robotic system, the control of the surgical robotic system accounts for a limited degree of freedom of a tool in a surgical robotic system. A projection from the greater DOF of the user input commands to the lesser DOF of the tool is included within or as part of the inverse kinematics. The projection identifies feasible motion in the end-effector domain. This projection allows for a general solution that works for tools having different degrees of freedom and will converge on a solution.
    Type: Application
    Filed: July 6, 2021
    Publication date: January 12, 2023
    Inventors: APOORV SHRIVASTAVA, RENBIN ZHOU, HAORAN YU, SEUNGKOOK YUN, ELLEN KLINGBEIL
  • Publication number: 20230011725
    Abstract: For teleoperation of a surgical robotic system, the user command for the pose of the end effector is projected into a subspace reachable by the end effector. For example, a user command with six DOF is projected to a five DOF subspace. The six DOF user interface device may be used to more intuitively control, based on the projection, the end effector with the limited DOF relative to the user interface device.
    Type: Application
    Filed: July 6, 2021
    Publication date: January 12, 2023
    Inventors: ELLEN KLINGBEIL, RENBIN ZHOU, HAORAN YU
  • Patent number: 11478312
    Abstract: A surgical robotic system has a robotic grasper, a user interface device (UID), and one or more processors communicatively coupled to the UID and the robotic grasper. The system detects a directive to engage or re-engage a teleoperation mode, determines that the system is in a non-teleoperation mode, receives a sequence of user actions through the UID, determines the UID matches a jaw angle or a grip force of the robotic grasper, and transitions into teleoperation mode. Other embodiments are also described and claimed.
    Type: Grant
    Filed: May 10, 2019
    Date of Patent: October 25, 2022
    Assignee: VERB SURGICAL INC.
    Inventors: Ellen Klingbeil, Haoran Yu
  • Publication number: 20220061936
    Abstract: An endoscope is controlled by a surgical robotic system. A user input with six degrees of freedom maps to control of an endoscope by a robotic arm having a fewer number of degrees of freedom. For example, untethered user interface devices control motion of an endoscope through a series of projections from user command, to endoscope motion, and to joint motion of the robotic arm. The projection from user command to endoscope motion may project a singular angular motion from three angular motions of the user interface devices. The projection may account for the remote center of motion and/or an angular orientation of the view of the endoscope relative to a shaft of the endoscope.
    Type: Application
    Filed: August 27, 2020
    Publication date: March 3, 2022
    Inventors: RENBIN ZHOU, SEUNGKOOK YUN, HAORAN YU, ELLEN KLINGBEIL, APOORV SHRIVASTAVA
  • Publication number: 20210378769
    Abstract: Various approaches to solve for inverse kinematics may be used for teleoperation of a surgical robotic system. In one approach, an iterative solver solves for the linear component of motion independently from solving for the angular component of motion. One solver may be used to solve for both together. In another approach, all limits (e.g., position, velocity, and acceleration) are handled in one solution. Where a limit is reached, the limit is used as a bound in the intermediate solution, allowing solution even where a bound is reached. In another approach, a ratio of limits of position are used to create a slow-down region near the bounds to more naturally control motion. In yet another approach, the medical-based teleoperation uses a bounded Gauss-Siedel solver, such as with successive-over-relaxation.
    Type: Application
    Filed: June 9, 2020
    Publication date: December 9, 2021
    Inventors: RENBIN ZHOU, HAORAN YU, SEUNGKOOK Nia YUN, ELLEN KLINGBEIL, APOORV SHRIVASTAVA
  • Publication number: 20200352663
    Abstract: A surgical robotic system has a robotic grasper, a user interface device (UID), and one or more processors communicatively coupled to the UID and the robotic grasper. The system detects a directive to engage or re-engage a teleoperation mode, determines that the system is in a non-teleoperation mode, receives a sequence of user actions through the UID, determines the UID matches a jaw angle or a grip force of the robotic grasper, and transitions into teleoperation mode. Other embodiments are also described and claimed.
    Type: Application
    Filed: May 10, 2019
    Publication date: November 12, 2020
    Inventors: Ellen Klingbeil, Haoran Yu