Patents by Inventor Giuseppe Maria Prisco

Giuseppe Maria Prisco 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: 20160140875
    Abstract: A multi-user medical robotic system for collaboration or training in minimally invasive surgical procedures includes first and second master input devices, a first slave robotic mechanism, and at least one processor configured to generate a first slave command for the first slave robotic mechanism by switchably using one or both of a first command indicative of manipulation of the first master input device by a first user and a second command indicative of manipulation of the second master input device by a second user. To facilitate the collaboration or training, both first and second users communicate with each other through an audio system and see the minimally invasive surgery site on first and second displays respectively viewable by the first and second users.
    Type: Application
    Filed: January 26, 2016
    Publication date: May 19, 2016
    Inventors: Rajesh Kumar, Brian David Hoffman, Giuseppe Maria Prisco, David Q. Larkin, William C. Nowlin, Frederic H. Moll, Stephen J. Blumenkranz, Gunter D. Niemeyer, J. Kenneth Salisbury, JR., Yulun Wang, Modjtaba Ghodoussi, Darrin R. Uecker, James W. Wright, Amante A. Mangaser, Ranjan Mauherjee
  • Patent number: 9339342
    Abstract: A mechanical interface for a robotic medical instrument permits engagement of the instrument and a drive system without causing movement of an actuated portion of the instrument. An instrument interface can include a symmetrical, tapered or cylindrical projection on one of a medical instrument or a drive system and a complementary bore in the other of the drive system or the medical instrument. Symmetry of the projection and the bore allows the projection to be compression fit to the bore regardless of the rotation angle of the drive system relative to the medical instrument.
    Type: Grant
    Filed: January 27, 2012
    Date of Patent: May 17, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Giuseppe Maria Prisco, Theodore W. Rogers, John Ryan Steger
  • Publication number: 20160128791
    Abstract: A method may include coupling a proximal end of a first cannula to a first manipulator of a surgical system, the first manipulator being configured to remotely actuate movement of the first cannula, wherein the first cannula comprises a rigid portion disposed between the proximal end and a distal end of the first cannula, the rigid portion having a curved longitudinal axis, and coupling a proximal end of a second cannula to a second manipulator of a surgical system, the second manipulator being configured to remotely actuate movement of the second cannula, wherein the second cannula comprises a rigid portion disposed between the proximal end and a distal end of the second cannula, the rigid portion having a curved longitudinal axis.
    Type: Application
    Filed: December 29, 2015
    Publication date: May 12, 2016
    Applicant: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Giuseppe Maria PRISCO, Craig R. GERBI, Theodore W. ROGERS, John Ryan STEGER
  • Patent number: 9283050
    Abstract: A robotic surgical system is configured with rigid, curved cannulas that extend through the same opening into a patient's body. Surgical instruments with passively flexible shafts extend through the curved cannulas. The cannulas are oriented to direct the instruments towards a surgical site. A teleoperation control system that moves the curved cannulas and their associated instruments in a manner that allows a surgeon to experience intuitive control is disclosed. The flexible shaft instruments are controlled as if extending along a virtual straight line insertion and withdrawal axis. Various port features that support the curved cannulas within the single opening are disclosed. Cannula support fixtures that support the cannulas during insertion into the single opening and mounting to robotic manipulators are disclosed.
    Type: Grant
    Filed: October 24, 2014
    Date of Patent: March 15, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Giuseppe Maria Prisco, Samuel Au
  • Patent number: 9271798
    Abstract: A multi-user medical robotic system for collaboration or training in minimally invasive surgical procedures includes first and second master input devices, a first slave robotic mechanism, and at least one processor configured to generate a first slave command for the first slave robotic mechanism by switchably using one or both of a first command indicative of manipulation of the first master input device by a first user and a second command indicative of manipulation of the second master input device by a second user. To facilitate the collaboration or training, both first and second users communicate with each other through an audio system and see the minimally invasive surgery site on first and second displays respectively viewable by the first and second users.
    Type: Grant
    Filed: August 13, 2013
    Date of Patent: March 1, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Rajesh Kumar, Brian David Hoffman, Giuseppe Maria Prisco, David Q. Larkin, William C. Nowlin, Frederic H. Moll, Stephen J. Blumenkranz, Gunter D. Niemeyer, J. Kenneth Salisbury, Jr., Yulun Wang, Modjtaba Ghodoussi, Darrin R. Uecker, James W. Wright, Amante A. Mangaser, Ranjan Mauherjee
  • Publication number: 20160051332
    Abstract: A robotic control system is placed in clutch mode so that a slave manipulator holding a surgical instrument is temporarily disengaged from control by a master manipulator in order to allow manual positioning of the surgical instrument at a surgical site within a patient. Control systems implemented in a processor compensate for internally generated frictional and inertial resistance experienced during the positioning, thereby making movement more comfortable to the mover, and stabler from a control standpoint. Each control system drives a joint motor in the slave manipulator with a saturated torque command signal which has been generated to compensate for non-linear viscous forces, coulomb friction, cogging effects, and inertia forces subjected to the joint, using estimated joint angular velocities, accelerations and externally applied torques generated by an observer in the control system from sampled displacement measurements received from a sensor associated with the joint.
    Type: Application
    Filed: November 4, 2015
    Publication date: February 25, 2016
    Inventors: Giuseppe Maria Prisco, David Q. Larkin, William C. Nowlin
  • Patent number: 9259289
    Abstract: A robotic system includes a camera having an image frame whose position and orientation relative to a fixed frame is determinable through one or more image frame transforms, a tool disposed within a field of view of the camera and having a tool frame whose position and orientation relative to the fixed frame is determinable through one or more tool frame transforms, and at least one processor programmed to identify pose indicating points of the tool from one or more camera captured images, determine an estimated transform for an unknown one of the image and tool frame transforms using the identified pose indicating points and known ones of the image and tool frame transforms, update a master-to-tool transform using the estimated and known ones of the image and tool frame transforms, and command movement of the tool in response to movement of a master using the updated master-to-tool transform.
    Type: Grant
    Filed: January 27, 2012
    Date of Patent: February 16, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Tao Zhao, Giuseppe Maria Prisco, John Ryan Steger, David Q. Larkin
  • Patent number: 9254178
    Abstract: A robotic surgical system is configured with rigid, curved cannulas that extend through the same opening into a patient's body. Surgical instruments with passively flexible shafts extend through the curved cannulas. The cannulas are oriented to direct the instruments towards a surgical site. Various port features that support the curved cannulas within the single opening are disclosed. Cannula support fixtures that support the cannulas during insertion into the single opening and mounting to robotic manipulators are disclosed. A teleoperation control system that moves the curved cannulas and their associated instruments in a manner that allows a surgeon to experience intuitive control is disclosed.
    Type: Grant
    Filed: August 30, 2013
    Date of Patent: February 9, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Giuseppe Maria Prisco, Craig R. Gerbi, Theodore W. Rogers, John Ryan Steger
  • Patent number: 9198730
    Abstract: A robotic control system is placed in clutch mode so that a slave manipulator holding a surgical instrument is temporarily disengaged from control by a master manipulator in order to allow manual positioning of the surgical instrument at a surgical site within a patient. Control systems implemented in a processor compensate for internally generated frictional and inertial resistance experienced during the positioning, thereby making movement more comfortable to the mover, and stabler from a control standpoint. Each control system drives a joint motor in the slave manipulator with a saturated torque command signal which has been generated to compensate for non-linear viscous forces, coulomb friction, cogging effects, and inertia forces subjected to the joint, using estimated joint angular velocities, accelerations and externally applied torques generated by an observer in the control system from sampled displacement measurements received from a sensor associated with the joint.
    Type: Grant
    Filed: September 18, 2014
    Date of Patent: December 1, 2015
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Giuseppe Maria Prisco, David Q. Larkin, William C. Nowlin
  • Publication number: 20150289942
    Abstract: Control systems and methods for a medical instrument use measurements to determine and control the tensions that actuators apply through instrument transmission systems. The use of tension and feedback allows control of a medical instrument having transmission systems that provide non-negligible compliance between joints and actuators even when the positions of joints cannot be directly related to actuator positions. One embodiment determines joint torques and tensions from differences between desired and measured joint positions. Another embodiment determines joint torques and tensions from differences between desired and measured positions of a tip of the instrument. Determination of tensions from joint torques can be performed using sequential evaluation of joints in an order from a distal end of the instrument toward a proximal end of the instrument.
    Type: Application
    Filed: June 26, 2015
    Publication date: October 15, 2015
    Inventors: Samuel Kwok Wai Au, Giuseppe Maria Prisco
  • Publication number: 20150245826
    Abstract: A surgical device comprises a tube including a proximal segment and a distal segment and a plurality of force transmission elements coupled to the tube. The force transmission elements are actuatable to alter the distal segment of the tube between a flexible state and a stiffened state. The device also comprises a plurality of routing members. Each routing member is coupled to a wall of the tube. The routing members are configured to receive and route the force transmission elements along a length of the tube while permitting the length of the tube to flex and compress. The device also comprises a decoupling structure that generates a reduced force transmitted to the proximal segment when an applied force is applied to the distal segment by the force transmission elements.
    Type: Application
    Filed: May 15, 2015
    Publication date: September 3, 2015
    Inventors: Katherine D. Stoy, Giuseppe Maria Prisco, Samuel Kwok Wai Au, Carolyn Fenech
  • Patent number: 9101379
    Abstract: Control systems and methods for a medical instrument use measurements to determine and control the tensions that actuators apply through instrument transmission systems. The use of tension and feedback allows control of a medical instrument having transmission systems that provide non-negligible compliance between joints and actuators even when the positions of joints cannot be directly related to actuator positions. One embodiment determines joint torques and tensions from differences between desired and measured joint positions. Another embodiment determines joint torques and tensions from differences between desired and measured positions of a tip of the instrument. Determination of tensions from joint torques can be performed using sequential evaluation of joints in an order from a distal end of the instrument toward a proximal end of the instrument.
    Type: Grant
    Filed: November 12, 2010
    Date of Patent: August 11, 2015
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Samuel Kwok Wai Au, Giuseppe Maria Prisco
  • Publication number: 20150192743
    Abstract: Localized strain is effectively eliminated in a shape sensing optical fiber where the fiber exits a link in a kinematic chain. In one aspect, the fiber is positioned in a channel within a fiber fixture portion of the link, and a surface of a lip of the channel is curved. The curved surface of the lip begins tangent to a wall of the channel and has a maximum radius of curvature that is less than the minimum bend radius that the fiber will experience during shape sensing. In another aspect, the fiber is positioned within a shape memory alloy tube that extends from the link.
    Type: Application
    Filed: March 23, 2015
    Publication date: July 9, 2015
    Inventors: Theodore W. Rogers, Giuseppe Maria Prisco
  • Publication number: 20150182287
    Abstract: Tool force information is provided to a user of a telesurgical system using an alternative modality other than force reflection on a master manipulator, such as providing the information on user-visible, user-audible, or haptic “buzz” or “viscosity” indicators, so as to allow expanded processing, including amplification, of the information, while not significantly affecting the stability of the telesurgical system or any closed-loop control systems in the telesurgical system.
    Type: Application
    Filed: December 30, 2014
    Publication date: July 2, 2015
    Inventors: Gary S. Guthart, David Q. Larkin, David J. Rosa, Paul W. Mohr, Giuseppe Maria Prisco
  • Patent number: 9055960
    Abstract: A surgical device can include a tube comprising a wall having a plurality of slits oriented generally transverse to a longitudinal axis of the tube. Each of the slits may be defined by opposing surfaces. The surgical device can further include a force transmission element coupled to the tube. In a flexible state of the tube, at least some of the opposing surfaces defining respective slits are separated from one another, and in a stiffened state of the tube, a force exerted on the force transmission element causes the opposing surfaces of each slit to contact one another.
    Type: Grant
    Filed: November 15, 2010
    Date of Patent: June 16, 2015
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Katherine D. Stoy, Giuseppe Maria Prisco, Samuel Kwok Wai Au, Carolyn Fenech
  • Publication number: 20150148690
    Abstract: A medical system provides navigation assistance to a surgeon so that the surgeon may navigate a flexible medical device through linked passages of an anatomical structure to a target in or adjacent to the anatomical structure. As the medical device moves through the linked passages, images are captured by an image capturing element at its distal end and pose and shape information for the medical device are received from sensors disposed in the medical device. A 4-D computer model of the anatomical structure is registered to the medical device using one or both of 4-D shape registration and virtual camera registration so that the captured image and a virtual image generated from the perspective of a virtual camera are registered to each other and displayed while providing an indication of a navigational path to the target.
    Type: Application
    Filed: November 3, 2014
    Publication date: May 28, 2015
    Inventors: Prashant Chopra, Caitlin Q. Donhowe, Vincent Duindam, Giuseppe Maria Prisco
  • Patent number: 9039608
    Abstract: In a robotic endoscope system, the orientation of a captured camera view at a distal tip of a robotic endoscope and displayed on a screen viewable by an operator of the endoscope is automatically maintained at a roll orientation associated with a setpoint so as not to disorient the operator as the endoscope is moved, flexed and its tip turned in different orientations. A processor generates a current commanded state of the tip from operator input and modifies it to maintain the setpoint roll orientation. To generate the modified current commanded state, the current commanded roll position and velocity are constrained to be a modified current commanded roll position and velocity that have been modified according to a roll angular adjustment indicated by a prior process period commanded state of the tip and the setpoint. The processor then commands the robotic endoscope to be driven to the modified commanded state.
    Type: Grant
    Filed: January 23, 2014
    Date of Patent: May 26, 2015
    Assignee: INTUITUVE SURGICAL OPERATIONS, INC.
    Inventors: Caitlin Q. Donhowe, Giuseppe Maria Prisco
  • Patent number: 9011021
    Abstract: A first link and a second link are articulated relative to each other via a joint coupled between the first and second links. A shape-sensing optical fiber is used to sense a position of the first link and the second link relative to each other. The fiber passes through a channel having an opening defining a lip and extending from the first link toward the joint. The lip has a curved surface that begins substantially tangent to a wall of the channel, and during bending of the optical fiber, the optical fiber is positioned tangent to the curved surface of the lip.
    Type: Grant
    Filed: December 20, 2013
    Date of Patent: April 21, 2015
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Theodore W. Rogers, Giuseppe Maria Prisco
  • Publication number: 20150073435
    Abstract: A robotic control system is placed in clutch mode so that a slave manipulator holding a surgical instrument is temporarily disengaged from control by a master manipulator in order to allow manual positioning of the surgical instrument at a surgical site within a patient. Control systems implemented in a processor compensate for internally generated frictional and inertial resistance experienced during the positioning, thereby making movement more comfortable to the mover, and stabler from a control standpoint. Each control system drives a joint motor in the slave manipulator with a saturated torque command signal which has been generated to compensate for non-linear viscous forces, coulomb friction, cogging effects, and inertia forces subjected to the joint, using estimated joint angular velocities, accelerations and externally applied torques generated by an observer in the control system from sampled displacement measurements received from a sensor associated with the joint.
    Type: Application
    Filed: September 18, 2014
    Publication date: March 12, 2015
    Inventors: Giuseppe Maria Prisco, David Q. Larkin, William C. Nowlin
  • Patent number: 8957367
    Abstract: A shape-sensing segment traverses through at least a portion of a kinematic chain of a tele-operated slave surgical instrument in a tele-operated minimally-invasive surgical system. The shape-sensing segment includes a pre-set perturbation. Shape information from the pre-set perturbation allows determination of relative partial-pose information for at least one link in the kinematic chain.
    Type: Grant
    Filed: November 13, 2009
    Date of Patent: February 17, 2015
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Giuseppe Maria Prisco, Theodore W. Rogers, John Ryan Steger