Patents by Inventor Nitish Swarup

Nitish Swarup 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: 20160199143
    Abstract: A patient side cart for a teleoperated surgical system includes at least one manipulator portion for holding a surgical instrument and a steering interface. The steering interface may include at least one sensor positioned to sense turning, fore, and aft forces exerted by a user to move the cart. The steering interface may further include a coupling mechanism to removably couple the steering interface with the patient side cart. The at least one sensor may be placed in signal communication with a drive control system of the patient side cart when the steering interface is in a coupled state with the patient side cart.
    Type: Application
    Filed: March 18, 2016
    Publication date: July 14, 2016
    Applicant: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul G. GRIFFITHS, Paul W. MOHR, Alan W. PETERSEN, David ROBINSON, Nitish SWARUP, Mark W. ZIMMER, Alexander MAKHLIN, Julio SANTOS-MUNNE, Eric FAULRING, Thomas MOYER
  • Publication number: 20160199142
    Abstract: Robotic and/or surgical devices, systems, and methods include kinematic linkage structures and associated control systems configured to facilitate preparation of the system for use. One or more kinematic linkage sub-systems may include joints that are actively driven, passive, or a mix of both, and may employ a set-up mode in which one or more of the joints are actively driven in response to manual articulation of one or more other joints of the kinematic chain. In an exemplary embodiment, the actively driven joints will move a platform structure that supports multiple manipulators in response to movement of one of the manipulators, facilitating and expediting the arrangement of the overall system by moving those multiple manipulators as a unit into alignment with the workspace. Manual independent positioning of the manipulator can be provided through passive set-up joint systems supporting the manipulators relative to the platform.
    Type: Application
    Filed: January 14, 2016
    Publication date: July 14, 2016
    Inventors: Paul Griffiths, Paul Mohr, Nitish Swarup, Michael Costa, David Larkin, Thomas Cooper, Michael Hanuschik
  • Patent number: 9345546
    Abstract: Robotic devices, systems, and methods for use in robotic surgery and other robotic applications, and/or medical instrument devices, systems, and methods includes both a reusable processor and a limited-use robotic tool or medical treatment probe. A memory the limited-use component includes machine readable code with data and/or programming instructions to be implemented by the processor. Programming of the processor can be updated by shipping of new data once downloaded by the processor from a component, subsequent components can take advantage of the updated processor without repeated downloading.
    Type: Grant
    Filed: December 31, 2013
    Date of Patent: May 24, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Gregory K. Toth, Nitish Swarup, Thomas R. Nixon, David Q. Larkin, Steven J. Colton
  • Patent number: 9339343
    Abstract: In one implementation, a method is disclosed in which a lock sensing mode is entered for a robotic surgical instrument. In the lock sensing mode, the degrees of freedom of movement in the robotic surgical instrument are switchably reduced. Further in the lock sensing mode, one or more end effectors of the robotic surgical instrument are switchably clamped together in the robotic surgical instrument. An increased level of torque may also be applied to the end effectors to increase a gripping force applied by the one or more end effectors in response to the reduced degrees of freedom of movement in the robotic surgical instrument.
    Type: Grant
    Filed: June 26, 2012
    Date of Patent: May 17, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Nitish Swarup, Scott E. Manzo
  • Patent number: 9308937
    Abstract: A patient side cart for a teleoperated surgical system includes at least one manipulator portion for holding a surgical instrument and a steering interface. The steering interface may include at least one sensor positioned to sense turning, fore, and aft forces exerted by a user to move the cart. The steering interface may further include a coupling mechanism to removably couple the steering interface with the patient side cart. The at least one sensor may be placed in signal communication with a drive control system of the patient side cart when the steering interface is in a coupled state with the patient side cart.
    Type: Grant
    Filed: March 13, 2014
    Date of Patent: April 12, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul G. Griffiths, Paul W. Mohr, Alan W. Petersen, David Robinson, Nitish Swarup, Mark W. Zimmer, Alexander Makhlin, Julio Santos-Munne, Eric Faulring, Thomas Moyer
  • Patent number: 9296104
    Abstract: Devices, systems, and methods for providing a desired movement of one or more joints of a manipulator arm having a plurality of joints with redundant degrees of freedom while effecting commanded movement of a distal end effector of the manipulator. Methods include defining a constraint, such as a network of paths, within a joint space defined by the one or more joints and determining a movement of the plurality of joints within a null-space to track the constraints with the one or more joints. Methods may further include calculating a reconfiguration movement of the joints and modifying the constraints to coincide with a reconfigured position of the one or more joints. Various configurations for devices and systems utilizing such methods are provided herein.
    Type: Grant
    Filed: March 18, 2014
    Date of Patent: March 29, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Nitish Swarup, Arjang Hourtash, Paul Mohr
  • Patent number: 9259281
    Abstract: Robotic and/or surgical devices, systems, and methods include kinematic linkage structures and associated control systems configured to facilitate preparation of the system for use. One or more kinematic linkage sub-systems may include joints that are actively driven, passive, or a mix of both, and may employ a set-up mode in which one or more of the joints are actively driven in response to manual articulation of one or more other joints of the kinematic chain. In an exemplary embodiment, the actively driven joints will move a platform structure that supports multiple manipulators in response to movement of one of the manipulators, facilitating and expediting the arrangement of the overall system by moving those multiple manipulators as a unit into alignment with the workspace. Manual independent positioning of the manipulator can be provided through passive set-up joint systems supporting the manipulators relative to the platform.
    Type: Grant
    Filed: August 15, 2013
    Date of Patent: February 16, 2016
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul Griffiths, Paul Mohr, Nitish Swarup, Michael Costa, David Larkin, Thomas Cooper, Michael Hanuschik
  • Publication number: 20160022360
    Abstract: A patient side cart for a teleoperated surgical system can include at least one manipulator arm portion for holding a surgical instrument, a steering interface, and a drive system. The steering interface may be configured to detect a force applied by a user to the steering interface indicating a desired movement for the teleoperated surgical system. The drive system can include at least one driven wheel, a control module, and a model section. The control module may receive as input a signal from the steering interface corresponding to the force applied by the user to the steering interface. The control module may be configured to output a desired movement signal corresponding to the signal received from the steering interface. The model section can include a model of movement behavior of the patient side cart, the model section outputting a movement command output to drive the driven wheel.
    Type: Application
    Filed: July 24, 2015
    Publication date: January 28, 2016
    Applicant: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul G. GRIFFITHS, Arjang M. HOURTASH, Paul W. MOHR, David W. ROBINSON, Nitish SWARUP, John W. ZABINSKI, Mark W. ZIMMER
  • Patent number: 9216243
    Abstract: In one embodiment of the invention, a robotic surgical system is provided including a master control console and a surgical manipulator. The master control console generates control signals to cause one or more fluids to flow into or out of a surgical site. The surgical manipulator is coupled to the console to receive the control signals and includes at least one robotic arm and a surgical instrument coupled thereto. The surgical manipulator controls the surgical instrument in response to the control signals to control the flow of the one or more fluids into or out of the surgical site. The surgical instrument has a first robotically controlled valve that is responsive to the surgical manipulator and a hollow tube having a first end coupled to the first robotically controlled valve with an opening at a second end to direct the flow of one or more fluids.
    Type: Grant
    Filed: April 10, 2012
    Date of Patent: December 22, 2015
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul Millman, David Bailey, Dean Hoornaert, David Stephen Mintz, David Q Larkin, John Magnasco, Gary Guthurt, Nitish Swarup, Salvatore Brogna
  • Publication number: 20150313452
    Abstract: The present invention is directed to an articulate minimally invasive surgical endoscope with a flexible wrist having at least one degree of freedom. When used with a surgical robot having a plurality of robot arms, the endoscope can be used with any of the plurality of arms thereby allowing the use a universal arm design. The endoscope in accordance to the present invention is made more intuitive a to a user by attaching a reference frame used for controlling the at least one degree of freedom motion to the flexible wrist for wrist motion associated with the at least one degree of freedom. The endoscope in accordance to the present invention attenuates undesirable motion at its back/proximal end by acquiring the image of the object in association with the at least one degree of freedom based on a reference frame rotating around a point of rotation located proximal to the flexible wrist.
    Type: Application
    Filed: March 20, 2015
    Publication date: November 5, 2015
    Applicant: Intuitive Surgical Operations, Inc.
    Inventors: Christopher J. HASSER, Nitish SWARUP, Thomas G. COOPER, S. Christopher ANDERSON
  • Patent number: 9101348
    Abstract: A patient side cart for a teleoperated surgical system can include at least one manipulator arm portion for holding a surgical instrument, a steering interface, and a drive system. The steering interface may be configured to detect a force applied by a user to the steering interface indicating a desired movement for the teleoperated surgical system. The drive system can include at least one driven wheel, a control module, and a model section. The control module may receive as input a signal from the steering interface corresponding to the force applied by the user to the steering interface. The control module may be configured to output a desired movement signal corresponding to the signal received from the steering interface. The model section can include a model of movement behavior of the patient side cart, the model section outputting a movement command output to drive the driven wheel.
    Type: Grant
    Filed: March 13, 2014
    Date of Patent: August 11, 2015
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul G. Griffiths, Arjang M. Hourtash, Paul W. Mohr, David Robinson, Nitish Swarup, John Zabinski, Mark Zimmer
  • Patent number: 9050120
    Abstract: In one implementation, a method is disclosed in which a lock sensing mode is entered for a robotic surgical instrument. In the lock sensing mode, the degrees of freedom of movement in the robotic surgical instrument are switchably reduced. Further in the lock sensing mode, one or more end effectors of the robotic surgical instrument are switchably clamped together in the robotic surgical instrument. An increased level of torque may also be applied to the end effectors to increase a gripping force applied by the one or more end effectors in response to the reduced degrees of freedom of movement in the robotic surgical instrument.
    Type: Grant
    Filed: February 8, 2008
    Date of Patent: June 9, 2015
    Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Nitish Swarup, Scott Manzo
  • Patent number: 9014856
    Abstract: In one embodiment of the invention, a control system for a robotic surgical instrument is provided including a torque saturation limiter, a torque to current converter coupled to the torque saturation limiter, and a motor coupled to the torque to current converter. The torque saturation limiter receives a desired torque signal for one or more end effectors and limits the desired torque to a range between an upper torque limit and a lower torque limit generating a bounded torque signal. The torque to current converter transforms a torque signal into a current signal. The motor drives an end effector of one or more end effectors to the bounded torque signal in response to the first current signal.
    Type: Grant
    Filed: November 13, 2012
    Date of Patent: April 21, 2015
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Scott Manzo, Nitish Swarup
  • Patent number: 9005112
    Abstract: The present invention is directed to an articulate minimally invasive surgical endoscope with a flexible wrist having at least one degree of freedom. When used with a surgical robot having a plurality of robot arms, the endoscope can be used with any of the plurality of arms thereby allowing the use a universal arm design. The endoscope in accordance to the present invention is made more intuitive a to a user by attaching a reference frame used for controlling the at least one degree of freedom motion to the flexible wrist for wrist motion associated with the at least one degree of freedom. The endoscope in accordance to the present invention attenuates undesirable motion at its back/proximal end by acquiring the image of the object in association with the at least one degree of freedom based on a reference frame rotating around a point of rotation located proximal to the flexible wrist.
    Type: Grant
    Filed: March 29, 2012
    Date of Patent: April 14, 2015
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Christopher J. Hasser, Nitish Swarup, Thomas G. Cooper, S. Christopher Anderson
  • Patent number: 9002518
    Abstract: In one embodiment of the invention, a control system for a robotic surgical instrument is provided including a torque saturation limiter, a torque to current converter coupled to the torque saturation limiter, and a motor coupled to the torque to current converter. The torque saturation limiter receives a desired torque signal for one or more end effectors and limits the desired torque to a range between an upper torque limit and a lower torque limit generating a bounded torque signal. The torque to current converter transforms a torque signal into a current signal. The motor drives an end effector of one or more end effectors to the bounded torque signal in response to the first current signal.
    Type: Grant
    Filed: September 26, 2006
    Date of Patent: April 7, 2015
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Scott Manzo, Nitish Swarup
  • Publication number: 20140316431
    Abstract: Devices, systems, and methods for providing commanded movement of an end effector of a manipulator while providing a desired movement of one or more joints of the manipulator. Methods include calculating weighted joint velocities using a weighting matrix within the joint space to anisotropically emphasize joint movement within a null-space to provide the desired movement of a first set of joints. Methods may include calculating joint velocities that achieve the desired end effector movement using a pseudo-inverse solution and adjusting the calculated joint velocities using a potential function gradient within the joint space corresponding to the desired movement of the first set of joints. Methods may include use of a weighted pseudo-inverse solution and also an augmented Jacobian solution. One or more auxiliary movements may also be provided using joint velocities calculated from the pseudo-inverse solution. Various configurations for systems utilizing such methods are provided herein.
    Type: Application
    Filed: March 18, 2014
    Publication date: October 23, 2014
    Applicant: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Arjang Hourtash, Nitish Swarup
  • Publication number: 20140316654
    Abstract: A patient side cart for a teleoperated surgical system includes at least one manipulator portion for holding a surgical instrument and a steering interface. The steering interface may include at least one sensor positioned to sense turning, fore, and aft forces exerted by a user to move the cart. The steering interface may further include a coupling mechanism to removably couple the steering interface with the patient side cart. The at least one sensor may be placed in signal communication with a drive control system of the patient side cart when the steering interface is in a coupled state with the patient side cart.
    Type: Application
    Filed: March 13, 2014
    Publication date: October 23, 2014
    Applicant: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul G. GRIFFITHS, Paul W. MOHR, Alan W. PETERSEN, David ROBINSON, Nitish SWARUP, Mark W. ZIMMER, Alexander MAKHLIN, Julio SANTOS-MUNNE, Eric FAULRING, Thomas MOYER
  • Publication number: 20140297130
    Abstract: A patient side cart for a teleoperated surgical system can include at least one manipulator arm portion for holding a surgical instrument, a steering interface, and a drive system. The steering interface may be configured to detect a force applied by a user to the steering interface indicating a desired movement for the teleoperated surgical system. The drive system can include at least one driven wheel, a control module, and a model section. The control module may receive as input a signal from the steering interface corresponding to the force applied by the user to the steering interface. The control module may be configured to output a desired movement signal corresponding to the signal received from the steering interface. The model section can include a model of movement behavior of the patient side cart, the model section outputting a movement command output to drive the driven wheel.
    Type: Application
    Filed: March 13, 2014
    Publication date: October 2, 2014
    Applicant: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Paul G. GRIFFITHS, Arjang M. HOURTASH, Paul W. MOHR, David ROBINSON, Nitish SWARUP, John ZABINSKI, Mark ZIMMER
  • Publication number: 20140276951
    Abstract: Methods, apparatus, and systems for controlling a plurality of manipulator assemblies of a robotic system. In accordance with a method, a first plurality of sensor signals are received at a plurality of joint space interface elements from a plurality of connector input elements via a first mapping between the joint space interface elements and joints of the first manipulator assembly. The connector input elements are operable to couple to only one manipulator assembly at a time. The received first sensor signals are then processed with a joint controller so as to control the first manipulator assembly. A second plurality of sensor signals are then received from the connector input elements at the joint space interface elements via a second mapping different than the first mapping. The received second sensor signals are then processed with the joint controller so as to control a second manipulator assembly different than the first manipulator assembly.
    Type: Application
    Filed: March 18, 2014
    Publication date: September 18, 2014
    Applicant: Intuitive Surgical Operations, Inc.
    Inventors: Arjang Hourtash, Nicola Diolaiti, Pushkar Hingwe, Niels Smaby, Nitish Swarup
  • Publication number: 20140276952
    Abstract: Devices, systems, and methods for positioning an end effector or remote center of a manipulator arm by floating a first set of joints within a null-perpendicular joint velocity sub-space and providing a desired state or movement of a proximal portion of a manipulator arm concurrent with end effector positioning by driving a second set of joints within a null-space orthogonal to the null-perpendicular space. Methods include floating a first set of joints within a null-perpendicular space to allow manual positioning of one or both of a remote center or end effector position within a work space and driving a second set of joints according to an auxiliary movement calculated within a null-space according to a desired state or movement of the manipulator arm during the floating of the joints. Various configurations for devices and systems utilizing such methods are provided herein.
    Type: Application
    Filed: March 18, 2014
    Publication date: September 18, 2014
    Applicant: INTUITIVE SURGICAL OPERATIONS, INC.
    Inventors: Arjang Hourtash, Nitish Swarup