Patents by Inventor Edward James Wildin Tucker

Edward James Wildin Tucker 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: 20230150128
    Abstract: A control system of a surgical robot arm, the surgical robot arm comprising a series of joints by which the configuration of that surgical robot arm can be altered, an attachment for a surgical instrument at a distal end of the robot arm and one or more force or torque sensors, each force or torque sensor configured to sense a force or torque at a joint of the series of joints; the control system being configured to control the configuration of the surgical robot arm to be altered in response to an externally applied force or torque by: receiving sensory data from the one or more force or torque sensors indicative of a sensed force or torque at a point of the surgical robot arm resulting from the externally applied force or torque; resolving the sensed force or torque so as to determine the components of the sensed force or torque acting at the point in a direction parallel with the longitudinal axis of a surgical instrument attached to the attachment; and sending a command signal to the surgical robot arm to
    Type: Application
    Filed: March 29, 2021
    Publication date: May 18, 2023
    Inventors: Edward John MOTTRAM, Edward James Wildin TUCKER
  • Patent number: 11576742
    Abstract: A control system for regulating operative control of a surgical instrument by a remote surgeon input device. The surgical instrument is supported by an articulated robot arm, and comprises an end effector connected to a shaft by an articulated coupling. The remote surgeon input device is capable of operatively controlling the surgical instrument by controlling articulation of the end effector, and controlling articulation of the robot arm and coupling. On receiving a request to engage operative control of the surgical instrument by the surgeon input device, the control system initially engages operative control of articulation of the robot arm and coupling by the surgeon input device, whilst maintaining disengagement of operative control of articulation of the end effector by the surgeon input device. Subsequently, the control system engages operative control of articulation of the end effector by the surgeon input device following a manipulation of the surgeon input device.
    Type: Grant
    Filed: March 9, 2018
    Date of Patent: February 14, 2023
    Assignee: CMR SURGICAL LIMITED
    Inventors: Edward James Wildin Tucker, Gordon Thomas Deane, Rachel Marie Garsed, Rebecca Anne Cuthbertson, Ross Hamilton Henrywood
  • Publication number: 20220192766
    Abstract: A control system for controlling a surgical robot by a surgeon console remote from the surgical robot, the control system being configured to: receive one or more state signal associated with a plurality of instruments, each of the plurality of instruments being attachable to the surgical robot, the one or more state signal indicating a selectability of each of the plurality of instruments for control by the surgeon console, and a control mode of each of the plurality of instruments from a group of modes, the group of modes comprising a manipulation mode in which an instrument of the plurality of instruments is controllable by the surgeon console, and a selection mode in which an instrument of the plurality of instruments is selectable for control by the surgeon console; determine a graphical arrangement of icons for display in dependence on the received one or more state signal, where each icon represents a respective one of the plurality of instruments, and output a display signal to cause the graphical arr
    Type: Application
    Filed: March 10, 2022
    Publication date: June 23, 2022
    Inventors: Duncan Robinson, Edward James Wildin Tucker, Gordon Thomas Deane, Luke David Ronald Hares, Rachel Marie Garsed, Rebecca Anne Cuthbertson, Ross Hamilton Henrywood
  • Patent number: 11311345
    Abstract: A control system for controlling a surgical robot by a surgeon console remote from the surgical robot, the control system being configured to: receive one or more state signal associated with a plurality of instruments, each of the plurality of instruments being attachable to the surgical robot, the one or more state signal indicating a selectability of each of the plurality of instruments for control by the surgeon console, and a control mode of each of the plurality of instruments from a group of modes, the group of modes comprising a manipulation mode in which an instrument of the plurality of instruments is controllable by the surgeon console, and a selection mode in which an instrument of the plurality of instruments is selectable for control by the surgeon console; determine a graphical arrangement of icons for display in dependence on the received one or more state signal, where each icon represents a respective one of the plurality of instruments, and output a display signal to cause the graphical arr
    Type: Grant
    Filed: March 9, 2018
    Date of Patent: April 26, 2022
    Assignee: CMR SURGICAL LIMITED
    Inventors: Duncan Robinson, Edward James Wildin Tucker, Gordon Thomas Deane, Luke David Ronald Hares, Rachel Marie Garsed, Rebecca Anne Cuthbertson, Ross Hamilton Henrywood
  • Publication number: 20210161606
    Abstract: A control system for controlling manipulation of a surgical instrument in response to manipulation of a remote surgeon input device at a remote surgeon's console, the surgical instrument being supported by a surgical robot arm, the surgical instrument comprising an end effector connected to a distal end of a shaft by an articulated coupling, the articulated coupling comprising one or more joints enabling the end effector to adopt a range of attitudes relative to the distal end of the shaft, the control system configured to: receive a command from an input actuated by a user to straighten the surgical instrument; and in response to the received command, to command driving forces to be applied to joint(s) of the articulated coupling to drive the instrument to adopt a predetermined configuration in which the profile of the end effector is most closely aligned with the profile of the distal end of the shaft.
    Type: Application
    Filed: November 27, 2020
    Publication date: June 3, 2021
    Inventors: Luke David Ronald Hares, Gordon Thomas Deane, Edward James Wildin Tucker, Graham John Veitch
  • Publication number: 20210145532
    Abstract: A control system for regulating operative control of a surgical instrument by a remote surgeon input device. The surgical instrument is supported by an articulated robot arm, and comprises an end effector connected to a shaft by an articulated coupling. The remote surgeon input device is capable of operatively controlling the surgical instrument by controlling articulation of the end effector, and controlling articulation of the robot arm and coupling. On receiving a request to engage operative control of the surgical instrument by the surgeon input device, the control system initially engages operative control of articulation of the robot arm and coupling by the surgeon input device, whilst maintaining disengagement of operative control of articulation of the end effector by the surgeon input device. Subsequently, the control system engages operative control of articulation of the end effector by the surgeon input device following a manipulation of the surgeon input device.
    Type: Application
    Filed: March 9, 2018
    Publication date: May 20, 2021
    Inventors: Edward James Wildin Tucker, Gordon Thomas Deane, Rachel Marie Garsed, Rebecca Anne Cuthbertson, Ross Hamilton Henrywood
  • Publication number: 20210145526
    Abstract: A control system for controlling a surgical robot by a surgeon console remote from the surgical robot, the control system being configured to: receive one or more state signal associated with a plurality of instruments, each of the plurality of instruments being attachable to the surgical robot, the one or more state signal indicating a selectability of each of the plurality of instruments for control by the surgeon console, and a control mode of each of the plurality of instruments from a group of modes, the group of modes comprising a manipulation mode in which an instrument of the plurality of instruments is controllable by the surgeon console, and a selection mode in which an instrument of the plurality of instruments is selectable for control by the surgeon console; determine a graphical arrangement of icons for display in dependence on the received one or more state signal, where each icon represents a respective one of the plurality of instruments, and output a display signal to cause the graphical arr
    Type: Application
    Filed: March 9, 2018
    Publication date: May 20, 2021
    Inventors: Duncan Robinson, Edward James Wildin Tucker, Gordon Thomas Deane, Luke David Ronald Hares, Rachel Marie Garsed, Rebecca Anne Cuthbertson, Ross Hamilton Henrywood