Patents by Inventor John A. Perkins

John A. Perkins 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: 11986179
    Abstract: Devices and methods for minimally invasive suturing are disclosed. One suturing device for minimally invasive suturing includes a proximal section a distal end, and an intermediate region therebetween. The device includes a suture head assembly having a suturing needle with a pointed end and a second end. The suturing needle is capable of rotating about an axis approximately perpendicular to a longitudinal axis of the device, wherein the pointed end of the suturing needle is positioned within the suture head assembly prior to deployment of guides that are adapted and configured to guide the needle around a circular path when advanced by a drive mechanism having a needle driver for engaging and rotating the suturing needle.
    Type: Grant
    Filed: November 22, 2020
    Date of Patent: May 21, 2024
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Gerald I. Brecher, John C. Meade, John Aho, Roger Baske, James H. Bleck, John F Carlson, Thomas Eagan, Michael J. Helander, James W. Murray, Ashley Perkins, Wayne A. Shakal, Jonathan Towle
  • Publication number: 20240097989
    Abstract: A system, method, and computer-readable medium for an information technology (IT) ecosystem management and monitoring operation. The IT ecosystem management and monitoring operation includes: executing a sustainability application on a hardware processor of an information handling system; providing an IT ecosystem monitoring and management console, the IT ecosystem monitoring and management console comprising an IT ecosystem sustainability system, the IT ecosystem sustainability system comprising a sustainability component; and, communicating between the sustainability component and the sustainability application to perform an IT environment sustainability operation.
    Type: Application
    Filed: September 16, 2022
    Publication date: March 21, 2024
    Applicant: Dell Products L.P.
    Inventors: Christopher A. Robinette, David O. Garner, John T. Morrison, Preeth K. Srinivasan, Jace W. Files, Karthik Suryanarayanan, Jaegeon Park, Alexis Perkins
  • Publication number: 20240095614
    Abstract: A system, method, and computer-readable medium for an information technology (IT) ecosystem management and monitoring operation. The IT ecosystem management and monitoring operation includes: providing a sustainability application to an information handling system, the information handling system comprising a modular component architecture; obtaining sustainability information regarding a component of the information handling system via the sustainability application; providing an IT ecosystem monitoring and management console, the IT ecosystem monitoring and management console comprising an IT ecosystem sustainability system, the IT ecosystem sustainability system comprising a sustainability component; and, communicating between the sustainability component and the sustainability application to perform an IT environment sustainability operation, the communicating providing the sustainability component with the sustainability information regarding the component of the information handling system.
    Type: Application
    Filed: September 16, 2022
    Publication date: March 21, 2024
    Applicant: Dell Products L.P.
    Inventors: Christopher A. Robinette, Karthik Suryanarayanan, David O. Garner, John T. Morrison, Preeth Srinivasan, Jace W. Files, Jaegeon Park, Alexis Perkins
  • Publication number: 20240000582
    Abstract: A method of implanting an intervertebral spacer may include positioning the intervertebral spacer within an intervertebral space defined by adjacent vertebral bodies. The intervertebral spacer may include a plurality of bores, and each of the plurality of bores may be configured to receive either a linear fastening element or a curvilinear fastening element. The method also may include selecting a first fastening element from a group including linear fastening elements and curvilinear fastening elements, and inserting the first fastening element into a first bore of the plurality of bores such that the first fastening element is inserted into one of the adjacent vertebral bodies to secure the intervertebral spacer within the intervertebral space.
    Type: Application
    Filed: September 15, 2023
    Publication date: January 4, 2024
    Inventors: Jason Zappacosta, Mark Fromhold, Jason Gray, Michael Hunt, Chris Saville, Robert Rhoads, Michael Evangelist, John Perkins, Nick Padovani
  • Publication number: 20230349401
    Abstract: A redundant valve manifold system includes at least two automatic valves coupled to one another and at least two automatic isolation valves each corresponding to one of the at least two automatic valves. Each of at least two automatic isolation valves is operatively coupled to one of the at least two automatic valves and isolates the one of the at least two automatic valves when the one of the at least two automatic valves is removed from the system to deliver media to an outlet.
    Type: Application
    Filed: July 12, 2023
    Publication date: November 2, 2023
    Inventors: Thomas Peter Thornber, Christopher John Perkins
  • Patent number: 11786377
    Abstract: A method of implanting an intervertebral spacer may include positioning the intervertebral spacer within an intervertebral space defined by adjacent vertebral bodies. The intervertebral spacer may include a plurality of bores, and each of the plurality of bores may be configured to receive either a linear fastening element or a curvilinear fastening element. The method also may include selecting a first fastening element from a group including linear fastening elements and curvilinear fastening elements, and inserting the first fastening element into a first bore of the plurality of bores such that the first fastening element is inserted into one of the adjacent vertebral bodies to secure the intervertebral spacer within the intervertebral space.
    Type: Grant
    Filed: July 19, 2021
    Date of Patent: October 17, 2023
    Assignee: Globus Medical, Inc.
    Inventors: Jason Zappacosta, Mark Fromhold, Jason Gray, Michael Hunt, Chris Saville, Robert Rhoads, Michael Evangelist, John Perkins, Nick Padovani
  • Patent number: 11783952
    Abstract: Application of axial seed magnetic fields in the range 20-100 T that compress to greater than 10,000 T (100 MG) under typical NIF implosion conditions may significantly relax the conditions required for ignition and propagating burn in NIF ignition targets that are degraded by hydrodynamic instabilities. Such magnetic fields can: (a) permit the recovery of ignition, or at least significant alpha particle heating, in submarginal NIF targets that would otherwise fail because of adverse hydrodynamic instability growth, (b) permit the attainment of ignition in conventional cryogenic layered solid-DT targets redesigned to operate under reduced drive conditions, (c) permit the attainment of volumetric ignition in simpler, room-temperature single-shell DT gas capsules, and (d) ameliorate adverse hohlraum plasma conditions during laser drive and capsule compression. In general, an applied magnetic field should always improve the ignition condition for any NIF ignition target design.
    Type: Grant
    Filed: December 14, 2021
    Date of Patent: October 10, 2023
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Lindsay John Perkins, Jim H. Hammer, John H. Moody, Max Tabak, Burl Grant Logan
  • Patent number: 11739772
    Abstract: A redundant valve manifold system includes at least two automatic valves coupled to one another and at least two automatic isolation valves each corresponding to one of the at least two automatic valves. Each of at least two automatic isolation valves is operatively coupled to one of the at least two automatic valves and isolates the one of the at least two automatic valves when the one of the at least two automatic valves is removed from the system to deliver media to an outlet.
    Type: Grant
    Filed: May 19, 2021
    Date of Patent: August 29, 2023
    Assignee: Ross Operating Valve Company
    Inventors: Thomas Peter Thornber, Christopher John Perkins
  • Patent number: 11616844
    Abstract: In some embodiments, an electronic and digital building block system includes modular electronic building modules that can be electrically coupled together to create various different electronic devices. In addition to physical electronic modules, the system can include digital building blocks to further enhance and integrate the functions of an assembled bit-system that can be created/assembled by a user of the block electronic building system. The digital building blocks are not a physical module, but digital content or other software or cloud applications that can be represented as virtual digital blocks, and that can interface with the physical modules. The digital blocks can provide integration between the functionality of the physical building blocks and functionality of computer-based and/or web-based applications, programs and systems. The electronic and digital building block system can include a system program and a visualizer that can be viewed on the display of a computer device.
    Type: Grant
    Filed: May 14, 2020
    Date of Patent: March 28, 2023
    Assignee: Sphero, Inc.
    Inventors: Aya Bdeir, Alin Cosmanescu, Sean Schumer, Stanley Okrasinski, Andrew Tergis, Kristin Salomon, Edward Bear, Julio Liriano, David Newton, John Perkins, David Sharp, Sameer More, Paul Rothman
  • Publication number: 20220108807
    Abstract: Application of axial seed magnetic fields in the range 20-100 T that compress to greater than 10,000 T (100 MG) under typical NIF implosion conditions may significantly relax the conditions required for ignition and propagating burn in NIF ignition targets that are degraded by hydrodynamic instabilities. Such magnetic fields can: (a) permit the recovery of ignition, or at least significant alpha particle heating, in submarginal NIF targets that would otherwise fail because of adverse hydrodynamic instability growth, (b) permit the attainment of ignition in conventional cryogenic layered solid-DT targets redesigned to operate under reduced drive conditions, (c) permit the attainment of volumetric ignition in simpler, room-temperature single-shell DT gas capsules, and (d) ameliorate adverse hohlraum plasma conditions during laser drive and capsule compression. In general, an applied magnetic field should always improve the ignition condition for any NIF ignition target design.
    Type: Application
    Filed: December 14, 2021
    Publication date: April 7, 2022
    Inventors: Lindsay John Perkins, Jim H. Hammer, John H. Moody, Max Tabak, Burl Grant Logan
  • Publication number: 20220079774
    Abstract: A method of implanting an intervertebral spacer may include positioning the intervertebral spacer within an intervertebral space defined by adjacent vertebral bodies. The intervertebral spacer may include a plurality of bores, and each of the plurality of bores may be configured to receive either a linear fastening element or a curvilinear fastening element. The method also may include selecting a first fastening element from a group including linear fastening elements and curvilinear fastening elements, and inserting the first fastening element into a first bore of the plurality of bores such that the first fastening element is inserted into one of the adjacent vertebral bodies to secure the intervertebral spacer within the intervertebral space.
    Type: Application
    Filed: November 29, 2021
    Publication date: March 17, 2022
    Inventors: Jason Zappacosta, Mark Fromhold, Jason Gray, Michael Hunt, Chris Saville, Robert A. Rhoads, Michael Evangelist, John Perkins, Nick Padovani
  • Patent number: 11227693
    Abstract: Application of axial seed magnetic fields in the range 20-100 T that compress to greater than 10,000 T (100 MG) under typical NIF implosion conditions may significantly relax the conditions required for ignition and propagating burn in NIF ignition targets that are degraded by hydrodynamic instabilities. Such magnetic fields can: (a) permit the recovery of ignition, or at least significant alpha particle heating, in submarginal NIF targets that would otherwise fail because of adverse hydrodynamic instability growth, (b) permit the attainment of ignition in conventional cryogenic layered solid-DT targets redesigned to operate under reduced drive conditions, (c) permit the attainment of volumetric ignition in simpler, room-temperature single-shell DT gas capsules, and (d) ameliorate adverse hohlraum plasma conditions during laser drive and capsule compression. In general, an applied magnetic field should always improve the ignition condition for any NIF ignition target design.
    Type: Grant
    Filed: October 5, 2018
    Date of Patent: January 18, 2022
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Lindsay John Perkins, Jim H. Hammer, John H. Moody, Max Tabak, Burl Grant Logan
  • Publication number: 20210364017
    Abstract: A redundant valve manifold system includes at least two automatic valves coupled to one another and at least two automatic isolation valves each corresponding to one of the at least two automatic valves. Each of at least two automatic isolation valves is operatively coupled to one of the at least two automatic valves and isolates the one of the at least two automatic valves when the one of the at least two automatic valves is removed from the system to deliver media to an outlet.
    Type: Application
    Filed: May 19, 2021
    Publication date: November 25, 2021
    Inventors: Thomas Peter Thornber, Christopher John Perkins
  • Publication number: 20210353336
    Abstract: The present invention is generally directed to orthopedic fixation devices that comprise a coupling element and a bone fastener, whereby the bone fastener can be loaded into the coupling element through the bottom of a bore in the coupling element. The orthopedic fixation devices described herein can include modular locking clamp assemblies that can be fixed onto fasteners that are already implanted in bone. The modular locking clamp assemblies can include polyaxial locking clamp assemblies, as well as monoaxial locking clamp assemblies.
    Type: Application
    Filed: July 29, 2021
    Publication date: November 18, 2021
    Inventors: Devjeet Mishra, Michael Harper, Milan George, Katherine Manninen, John Perkins
  • Publication number: 20210346062
    Abstract: Orthopedic fixation devices and methods of installing the same. The orthopedic fixation device may include a coupling element and a bone fastener, whereby the bone fastener can be loaded into the coupling element through the bottom of a bore in the coupling element.
    Type: Application
    Filed: July 19, 2021
    Publication date: November 11, 2021
    Inventors: Daniel Spangler, Jason Cianfrani, Michael Harper, Milan George, Katherine Manninen, John Perkins
  • Publication number: 20210346172
    Abstract: A method of implanting an intervertebral spacer may include positioning the intervertebral spacer within an intervertebral space defined by adjacent vertebral bodies. The intervertebral spacer may include a plurality of bores, and each of the plurality of bores may be configured to receive either a linear fastening element or a curvilinear fastening element. The method also may include selecting a first fastening element from a group including linear fastening elements and curvilinear fastening elements, and inserting the first fastening element into a first bore of the plurality of bores such that the first fastening element is inserted into one of the adjacent vertebral bodies to secure the intervertebral spacer within the intervertebral space.
    Type: Application
    Filed: July 19, 2021
    Publication date: November 11, 2021
    Inventors: Jason Zappacosta, Mark Fromhold, Jason Gray, Michael Hunt, Chris Saville, Robert Rhoads, Michael Evangelist, John Perkins, Nick Padovani
  • Patent number: 11103286
    Abstract: The invention is directed to orthopedic fixation devices that comprise a coupling element and a bone fastener, whereby the bone fastener can be loaded into the coupling element through the bottom of a bore in the coupling element. The orthopedic fixation devices described herein can include modular locking clamp assemblies that can be fixed onto fasteners that are already implanted in bone. The modular locking clamp assemblies can include polyaxial locking clamp assemblies, as well as monoaxial locking clamp assemblies.
    Type: Grant
    Filed: June 19, 2019
    Date of Patent: August 31, 2021
    Assignee: Globus Medical, Inc.
    Inventors: Devjeet Mishra, Michael Harper, Milan George, Katherine Manninen, John Perkins
  • Patent number: 11090087
    Abstract: Orthopedic fixation devices and methods of installing the same. The orthopedic fixation device may include a coupling element and a bone fastener, whereby the bone fastener can be loaded into the coupling element through the bottom of a bore in the coupling element.
    Type: Grant
    Filed: May 15, 2018
    Date of Patent: August 17, 2021
    Assignee: Globus Medical, Inc.
    Inventors: Daniel Spangler, Jason Cianfrani, Michael Harper, Milan George, Katherine Manninen, John Perkins
  • Patent number: 11065128
    Abstract: A method of implanting an intervertebral spacer may include positioning the intervertebral spacer within an intervertebral space defined by adjacent vertebral bodies. The intervertebral spacer may include a plurality of bores, and each of the plurality of bores may be configured to receive either a linear fastening element or a curvilinear fastening element. The method also may include selecting a first fastening element from a group including linear fastening elements and curvilinear fastening elements, and inserting the first fastening element into a first bore of the plurality of bores such that the first fastening element is inserted into one of the adjacent vertebral bodies to secure the intervertebral spacer within the intervertebral space.
    Type: Grant
    Filed: April 25, 2018
    Date of Patent: July 20, 2021
    Assignee: Globus Medical, Inc.
    Inventors: Jason Zappacosta, Mark Fromhold, Jason Gray, Michael Hunt, Chris Saville, Robert Rhoads, Michael Evangelist, John Perkins, Nick Padovani
  • Patent number: 10818400
    Abstract: A hybrid indirect-drive/direct drive for inertial confinement fusion utilizing laser beams from a first direction and laser beams from a second direction including a central fusion fuel component; a first portion of a shell surrounding said central fusion fuel component, said first portion of a shell having a first thickness; a second portion of a shell surrounding said fusion fuel component, said second portion of a shell having a second thickness that is greater than said thickness of said first portion of a shell; and a hohlraum containing at least a portion of said fusion fuel component and at least a portion of said first portion of a shell; wherein said hohlraum is in a position relative to said first laser beam and to receive said first laser beam and produce X-rays that are directed to said first portion of a shell and said fusion fuel component; and wherein said fusion fuel component and said second portion of a shell are in a position relative to said second laser beam such that said second portion
    Type: Grant
    Filed: January 18, 2018
    Date of Patent: October 27, 2020
    Assignee: Lawrence Livermore National Security, LLC
    Inventor: Lindsay John Perkins