Patents by Inventor Cory G. Kimball

Cory G. Kimball 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: 11452528
    Abstract: A surgical instrument comprising a handle, a shaft rotatable relative to the handle, and an end effector articulatable relative to the shaft about an articulation joint is disclosed. The shaft comprises a grip and at least one articulation control on the grip.
    Type: Grant
    Filed: April 11, 2020
    Date of Patent: September 27, 2022
    Assignee: Cilag GmbH International
    Inventors: Richard L. Leimbach, Cory G. Kimball, Geoffrey C. Hueil, Bret W. Smith, Matthew S. Corbin
  • Patent number: 11426251
    Abstract: A surgical instrument comprising a shaft, an end effector, and an articulation joint rotatably connecting the end effector to the shaft is disclosed. The end effector and/or shaft comprise indicator lights which indicate the direction in which the end effector is being articulated. The indicator lights are positioned such that they are visible to a clinician via an endoscope monitor during an endoscopic procedure.
    Type: Grant
    Filed: April 11, 2020
    Date of Patent: August 30, 2022
    Assignee: Cilag GmbH International
    Inventors: Cory G. Kimball, Matthew S. Corbin, Monica Louise Zeckel Rivard, Geoffrey C. Hueil
  • Patent number: 11413114
    Abstract: A surgical instrument includes a shaft assembly, an ultrasonic blade, and a cleaning device. The shaft assembly includes a first tube and an acoustic waveguide. The first tube has a first inner diameter and a distal end. The waveguide has a first outer diameter. The waveguide extends within the first tube. The first outer diameter of the acoustic waveguide and the first inner diameter of the first tube together define a gap. The ultrasonic blade extends distally from the distal end of the first tube. The acoustic waveguide is configured to communicate ultrasonic energy to the ultrasonic blade. The cleaning device is configured to actuate within the gap to thereby clean at least a portion of the shaft assembly and/or at least a portion of the ultrasonic blade.
    Type: Grant
    Filed: April 19, 2019
    Date of Patent: August 16, 2022
    Assignee: Cilag GmbH International
    Inventors: Kristen G. Denzinger, Ashvani K. Madan, Cory G. Kimball, Robert A. Kemerling, John A. Hibner, Rafael J. Ruiz Ortiz, Catherine A. Corbett, Michael R. Lamping, Thomas B. Remm
  • Publication number: 20220240971
    Abstract: A surgical apparatus comprises a transducer assembly and a shaft assembly. The transducer assembly is operable to convert electrical power into ultrasonic vibrations. The shaft assembly comprises an ultrasonic waveguide, a sheath, a shroud, and a torque transfer assembly. The waveguide is configured to couple with the transducer assembly. The waveguide is disposed within the sheath. The sheath extends through the shroud. The torque transfer assembly is contained within the shroud. The torque transfer assembly is configured to transfer a predetermined range of torque from the shroud to the waveguide to thereby couple the waveguide with the transducer assembly. The torque transfer assembly is further configured to prevent transfer of torque from the shroud to the waveguide beyond an upper limit of the predetermined range.
    Type: Application
    Filed: February 16, 2022
    Publication date: August 4, 2022
    Inventors: Cory G. Kimball, David A. Witt, William E. Clem, Nathan D. Grubbs, Daniel J. Prenger
  • Patent number: 11364045
    Abstract: An ultrasonic forceps comprises a housing, an acoustic assembly, and a tine. The housing joins the acoustic assembly and the tine to the forceps and permits the tine to pivot relative to the acoustic assembly. The acoustic assembly comprises a transducer, a waveguide, and ultrasonic blade, and a waveguide sheath. The transducer is configured to generate ultrasonic vibrations directing the ultrasonic vibrations to the waveguide. The waveguide communicates the ultrasonic vibrations distally to the ultrasonic blade. The ultrasonic blade is configured to vibrate in response to the ultrasonic vibrations generated by the transducer. When the tine is pivoted relative to the transducer, the tine is configured to move toward the ultrasonic blade. Tissue may be grasped between the tine and the ultrasonic blade. The tissue may be denatured when the ultrasonic vibrations generated by the transducer vibrate the ultrasonic blade, thus resulting in the tissue being cut and/or sealed.
    Type: Grant
    Filed: November 20, 2019
    Date of Patent: June 21, 2022
    Assignee: Cilag GmbH International
    Inventors: Foster B. Stulen, Michael R. Lamping, Cory G. Kimball, Emron J. Henry, Michael J. Stokes
  • Patent number: 11304720
    Abstract: Various systems and methods for controlling the activation of energy surgical instruments are disclosed. An advance energy surgical instrument, such an electrosurgical instrument or an ultrasonic surgical instrument, can include one or more sensor assemblies for detecting the state or position of the end effector, arm, or other components of the surgical instrument. A control circuit can be configured to control the activation of the surgical instrument according to the state or position of the components of the surgical instrument.
    Type: Grant
    Filed: August 28, 2018
    Date of Patent: April 19, 2022
    Assignee: Cilag GmbH International
    Inventors: Cory G. Kimball, Ion V. Nicolaescu, Andrew W. Carroll, David C. Yates, Daniel W. Price, William B. Weisenburgh, II, Jeffrey L. Aldridge, Monica Louise Zeckel Rivard, Heather N. Doak, Mary E. Mootoo, Eric M. Roberson
  • Patent number: 11304697
    Abstract: An apparatus that includes a body, a shaft, and an end effector. The end effector includes a first jaw, a second jaw, and a tip. The second jaw includes an anvil. At least one of the first jaw or the second jaw is configured to move relative to the other of the first jaw or the second jaw between an open position and a closed position. The tip is connected with the anvil. The tip includes a deformable member. The tip is movable relative to the anvil between first and second discrete positions using the deformable member. The tip remains in the first discrete position located closer toward the cartridge until the deformable member is acted upon by an external input force. The tip remains in the second discrete position that is located further from the cartridge until the deformable member is acted upon by the external input force.
    Type: Grant
    Filed: December 30, 2019
    Date of Patent: April 19, 2022
    Assignee: Cilag GmbH International
    Inventors: Nicholas Fanelli, Bret W. Smith, Robert J. Simms, Scott A. Jenkins, Matthew S. Corbin, Cory G. Kimball
  • Patent number: 11278306
    Abstract: A surgical instrument comprises a body assembly and an end effector. The body assembly includes a control module, an orientation sensor communicatively coupled to the control module, and an energy component. The energy component is operable to activate the end effector at a plurality of energy settings. A storage device is communicatively coupled to the control module and includes a plurality of gesture profiles and corresponding energy settings. The control module is configured to set the energy setting of the energy component to a corresponding energy setting in response to a correlation between the output of the orientation sensor and a gesture profile. In some versions, the control module modifies the energy setting based upon output from a force sensor that measures the force on the end effector. The control module may also decrease the energy setting in response to an anomalous acceleration or deceleration detected by an accelerometer.
    Type: Grant
    Filed: February 4, 2019
    Date of Patent: March 22, 2022
    Assignee: Cilag GmbH International
    Inventors: Daniel W. Price, Sora Rhee, Cory G. Kimball, Timothy G. Dietz, Ashvani K. Madan, Donna L. Korvick, Jeffrey D. Messerly, William E. Clem, Jacqueline C. Aronhalt, William D. Dannaher, John B. Schulte, Danius P. Silkaitis, Stephen J. Balek, Michael R. Lamping
  • Patent number: 11272950
    Abstract: A surgical apparatus comprises a transducer assembly and a shaft assembly. The transducer assembly is operable to convert electrical power into ultrasonic vibrations. The shaft assembly comprises an ultrasonic waveguide, a sheath, a shroud, and a torque transfer assembly. The waveguide is configured to couple with the transducer assembly. The waveguide is disposed within the sheath. The sheath extends through the shroud. The torque transfer assembly is contained within the shroud. The torque transfer assembly is configured to transfer a predetermined range of torque from the shroud to the waveguide to thereby couple the waveguide with the transducer assembly. The torque transfer assembly is further configured to prevent transfer of torque from the shroud to the waveguide beyond an upper limit of the predetermined range.
    Type: Grant
    Filed: January 16, 2019
    Date of Patent: March 15, 2022
    Assignee: Cilag GmbH International
    Inventors: Cory G. Kimball, David A. Witt, William E. Clem, Nathan D. Grubbs, Daniel J. Prenger, Ashvani K. Madan
  • Patent number: 11266431
    Abstract: A surgical instrument includes a gripping assembly, a shaft assembly, an end effector, and a pivoting member. The gripping assembly defines a first opening for receiving a finger or a thumb of a user. The gripping assembly includes a first deformable feature that is configured to be moved in order to increase or decrease a cross-sectional area of the first opening. The shaft assembly extends distally from the gripping assembly. The end effector is positioned at a distal end of the shaft assembly and includes a first member. The pivoting member is pivotably coupled with the shaft assembly. The pivoting member is pivotable with respect to the first member of the end effector between an open position and a closed position to thereby clamp tissue between the first member and the pivoting member.
    Type: Grant
    Filed: April 10, 2019
    Date of Patent: March 8, 2022
    Assignee: Cilag GmbH International
    Inventors: Tony C. Siebel, William B. Weisenburgh, II, Jeffrey D. Messerly, Matthew C. Miller, Cory G. Kimball
  • Patent number: 11253254
    Abstract: A surgical instrument comprising a handle and a rotatable shaft is disclosed. The handle comprises a rotatable actuator configured to rotate the shaft. In various instances, the rotatable actuator is mounted to the handle in proximity to a grip of the handle so that a clinician can easily rotate the actuator while holding the handle. The direction in which the actuator is rotated corresponds to the direction in which the shaft is rotated.
    Type: Grant
    Filed: April 11, 2020
    Date of Patent: February 22, 2022
    Assignee: Cilag GmbH International
    Inventors: Cory G. Kimball, Matthew S. Corbin
  • Publication number: 20220039826
    Abstract: A surgical instrument includes a gripping assembly, a shaft assembly, an end effector, and a pivoting member. The gripping assembly defines a first opening for receiving a finger or a thumb of a user. The gripping assembly includes a first deformable feature that is configured to be moved in order to increase or decrease a cross-sectional area of the first opening. The shaft assembly extends distally from the gripping assembly. The end effector is positioned at a distal end of the shaft assembly and includes a first member. The pivoting member is pivotably coupled with the shaft assembly. The pivoting member is pivotable with respect to the first member of the end effector between an open position and a closed position to thereby clamp tissue between the first member and the pivoting member.
    Type: Application
    Filed: August 24, 2021
    Publication date: February 10, 2022
    Inventors: Tony C. Siebel, William B. Weisenburgh, II, Jeffrey D. Messerly, Matthew C. Miller, Cory G. Kimball
  • Publication number: 20210338309
    Abstract: Aspects of the present disclosure include control systems of an electrosurgical system for managing the flow of fluid, such as saline, and rates of aspiration or suction, in response to various states of conditions at a surgical site. The control system(s) may monitor and adjust to impedance at the surgical site, temperature of the surgical tissue, and/or RF current of electrodes, and may account for certain undesirable conditions, such as the electrodes sticking. The control systems may include various automatic sensing scenarios, while also allowing for several manual conditions.
    Type: Application
    Filed: May 14, 2021
    Publication date: November 4, 2021
    Inventors: David A. Witt, David C. Yates, Frederick E. Shelton, IV, Cory G. Kimball, Barry C. Worrell, Monica L. Z. Rivard
  • Publication number: 20210220058
    Abstract: An interactive control unit is disclosed. The interactive control unit includes an interactive touchscreen display, an interface configured to couple the control unit to a surgical hub, a processor, and a memory coupled to the processor. The memory stores instructions executable by the processor to receive input commands from the interactive touchscreen display located inside a sterile field and transmit the input commands to the surgical hub to control devices coupled to the surgical hub located outside the sterile field.
    Type: Application
    Filed: March 12, 2021
    Publication date: July 22, 2021
    Inventors: Jeffrey D. Messerly, Peter K. Shires, Monica L. Z. Rivard, Cory G. Kimball, David C. Yates, Jeffrey L. Aldridge, Daniel W. Price, William B. Weisenburgh, II, Jason L. Harris, Frederick E. Shelton, IV, Jerome R. Morgan
  • Publication number: 20210212770
    Abstract: An interactive control unit is disclosed. The interactive control unit includes an interactive touchscreen display, an interface configured to couple the control unit to a surgical hub, a processor, and a memory coupled to the processor. The memory stores instructions executable by the processor to receive input commands from the interactive touchscreen display located inside a sterile field and transmit the input commands to the surgical hub to control devices coupled to the surgical hub located outside the sterile field.
    Type: Application
    Filed: March 31, 2021
    Publication date: July 15, 2021
    Inventors: Jeffrey D. Messerly, Peter K. Shires, Monica L. Z. Rivard, Cory G. Kimball, David C. Yates, Jeffrey L. Aldridge, Daniel W. Price, William B. Weisenburgh, II, Jason L. Harris, Frederick E. Shelton, IV, Jerome R. Morgan
  • Patent number: 11051839
    Abstract: An ultrasonic instrument for use during a surgical procedure includes a body, a shaft assembly, an ultrasonic blade, and an actuation assembly. The body is configured to receive an ultrasonic transducer for selectively generating a first or a second predetermined oscillation. The shaft assembly projects from the body and includes an acoustic waveguide connected to the ultrasonic blade. The actuation assembly includes an activator ring and an activation mechanism. The activator ring is selectively movable along the body such that the activator ring is accessible to be gripped by an operator around an entirety of an outer circumferential surface of the activator ring. The activation mechanism is connected to the activator ring such that the activation mechanism selectively moves along the body in conjunction with the activator ring. At least a portion of the activation mechanism is configured to selectively direct the ultrasonic transducer to oscillate the ultrasonic blade.
    Type: Grant
    Filed: February 15, 2019
    Date of Patent: July 6, 2021
    Assignee: Ethicon LLC
    Inventors: Benjamin D. Dickerson, Cory G. Kimball, Tylor C. Muhlenkamp, Kristen G. Denzinger, Chester O. Baxter, III, Ashvani K. Madan
  • Publication number: 20210196411
    Abstract: A robotic surgical system includes a robotic surgical assembly and a control assembly. The robotic surgical assembly includes a robotic actuation assembly, a processing device, and a first communication device. The robotic actuation assembly includes a robotic arm. The processing device is configured to instruct the robotic actuation assembly to perform a task based on a set of instructions. The first communication device is operable to transfer the set of instructions to the processing device. The control assembly includes a second communication device and a user input device. The second communication device is operable to communicate the set of instructions to the first communication device. The user input device assembly is configured to generate the set of instructions and send the set of instruction to the second communication device. At least a portion of the instructions are based on positioning of the user input device within three-dimensional space.
    Type: Application
    Filed: January 7, 2021
    Publication date: July 1, 2021
    Inventors: Omar J. Vakharia, James G. Lee, Matthew S. Corbin, Mark D. Overmyer, Cory G. Kimball
  • Patent number: D924400
    Type: Grant
    Filed: May 6, 2019
    Date of Patent: July 6, 2021
    Assignee: Cilag GmbH International
    Inventor: Cory G. Kimball
  • Patent number: D928725
    Type: Grant
    Filed: September 5, 2019
    Date of Patent: August 24, 2021
    Assignee: Cilag GmbH International
    Inventors: Brendan J. Oberkircher, Cory G. Kimball, Matthew C. Miller
  • Patent number: D939545
    Type: Grant
    Filed: September 5, 2019
    Date of Patent: December 28, 2021
    Assignee: Cilag GmbH International
    Inventors: Brendan J. Oberkircher, Cory G. Kimball, Matthew C. Miller, Jacob S. Childs, Leonardo N. Rossoni