Patents by Inventor Jacob Marks

Jacob Marks 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: 10869751
    Abstract: Methods and devices are provided for anchoring a ligament or tendon to bone. In one embodiment, a surgical implant is provided having a sheath and an expander that is received within the sheath. Various delivery tools, including a sheath inserter and a driver, are also provided. In use, the sheath inserter can be used to position a tendon within a prepared bone hole, and it can be used to deliver the sheath with a guidewire coupled thereto into the bone hole. The driver can be provided for delivering the expander into the sheath. A loader can optionally be used to load the driver and expander onto the guidewire coupled to the implanted sheath.
    Type: Grant
    Filed: June 18, 2018
    Date of Patent: December 22, 2020
    Assignee: MEDOS INTERNATIONAL SARL
    Inventors: David R. Diduch, Mark H. Getelman, Gerome Miller, Jacob A. Marks, Matthew J. Ravenscroft, Mehmet Z. Sengun, Howard C. Tang, Gregory R. Whittaker
  • Publication number: 20200390538
    Abstract: Methods and devices are provided for anchoring a ligament or tendon to bone. In general, various inserter tools are provided for simultaneously delivering an expandable sheath and an expander into bone. With both components of the implant mounted on the same tool, the sheath and a ligament can be advanced into a bone hole and the expander, which trails behind the sheath during delivery of the sheath, can be advanced into the sheath to expand the sheath and anchor the sheath and ligament within the bone hole.
    Type: Application
    Filed: August 27, 2020
    Publication date: December 17, 2020
    Inventors: Mehmet Z. Sengun, Benjamin Cleveland, David R. Diduch, Mark H. Getelman, James J. Mahoney, JR., Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Howard C. Tang, Gregory R. Whittaker
  • Patent number: 10856966
    Abstract: Methods and devices are provided for anchoring a ligament or tendon to bone. In one embodiment, a surgical implant is provided having a sheath and an expander that is received within the sheath. Various delivery tools, including a sheath inserter and a driver, are also provided. In use, the sheath inserter can be used to position a tendon within a prepared bone hole, and it can be used to deliver the sheath with a guidewire coupled thereto into the bone hole. The driver can be provided for delivering the expander into the sheath. A loader can optionally be used to load the driver and expander onto the guidewire coupled to the implanted sheath.
    Type: Grant
    Filed: January 30, 2015
    Date of Patent: December 8, 2020
    Assignee: MEDOS INTERNATIONAL SARL
    Inventors: David R. Diduch, Mark H. Getelman, Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Mehmet Z. Sengun, Howard C. Tang, Paul P. Weitzel, Gregory R. Whittaker
  • Patent number: 10861596
    Abstract: A system for controlling process pathways is described. The system includes a network, a system backend communicable with said network and configured to generate a process pathway based on a set of rules reflecting a predetermined condition and a series of notifications corresponding to the process pathway. The system may also include a mobile device communicable with said system backend via said network. The mobile device may be configured to receive from said backend at least one notification defining a task of the process pathway, and upon which notification a user is authorized to act, allowing the user to modify a state of said the notification with a one-step action.
    Type: Grant
    Filed: August 3, 2017
    Date of Patent: December 8, 2020
    Assignee: Mobile Heartbeat, LLC
    Inventors: Jacob Mark, James Edward Charles Webb
  • Publication number: 20200323623
    Abstract: A variety of configurations of implant management devices are provided. The configurations provide different combinations of features for maintaining a location of an implant with respect to the device and managing filaments of the implant. One exemplary embodiment of a device includes a generally rectangular-shaped body having an implantable body retainer, an opening disposed a distance apart from the retainer and configured to receive a ligament graft therein, and a fold extending across the body and intersecting the opening. Folding one end of the body towards a bottom surface of the body along the fold can form a filament loop engaging region to hold in tension a filament loop extending from the implant. Additional filament(s) associated with the implant can be managed by various filament retention features. Methods for preparing a ligament graft for implantation by relying upon indicia formed on a surface of the device body are also provided.
    Type: Application
    Filed: June 25, 2020
    Publication date: October 15, 2020
    Inventors: Jacob A. Marks, Meghan A. Pasquali, Danielle Dufour
  • Patent number: 10758337
    Abstract: Methods and devices are provided for anchoring a ligament or tendon to bone. In general, various inserter tools are provided for simultaneously delivering an expandable sheath and an expander into bone. With both components of the implant mounted on the same tool, the sheath and a ligament can be advanced into a bone hole and the expander, which trails behind the sheath during delivery of the sheath, can be advanced into the sheath to expand the sheath and anchor the sheath and ligament within the bone hole.
    Type: Grant
    Filed: June 1, 2017
    Date of Patent: September 1, 2020
    Assignee: MEDOS INTERNATIONAL SARL
    Inventors: Mehmet Z. Sengun, Gregory R. Whittaker, Benjamin Cleveland, David R. Diduch, Mark H. Getelman, James J. Mahoney, Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Howard C. Tang
  • Patent number: 10751161
    Abstract: Various bone anchor assemblies and methods are provided for anchoring tissue to bone. In one embodiment, an anchor assembly for anchoring a tendon to bone is provided and includes a substantially cylindrical sheath having bone-engaging surface features formed on an external surface thereof, and having an inner lumen formed therein and extending from an open proximal end to a substantially closed distal. The substantially closed distal end includes at least one tendon anchoring feature extending distally therefrom and configured to facilitate anchoring of a tendon to bone. The anchor assembly further includes an expander having a generally elongate cylindrical configuration and being sized and shaped to be received within the inner lumen of the sheath.
    Type: Grant
    Filed: January 30, 2015
    Date of Patent: August 25, 2020
    Assignee: MEDOS INTERNATIONAL SÁRL
    Inventors: David R. Diduch, Mark H. Getelman, James J. Mahoney, Jr., Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Mehmet Z. Sengun, Howard C. Tang, Paul P. Weitzel, Gregory R. Whittaker
  • Patent number: 10729535
    Abstract: A variety of configurations of implant management devices are provided. The configurations provide different combinations of features for maintaining a location of an implant with respect to the device and managing filaments of the implant. One exemplary embodiment of a device includes a generally rectangular-shaped body having an implantable body retainer, an opening disposed a distance apart from the retainer and configured to receive a ligament graft therein, and a fold extending across the body and intersecting the opening. Folding one end of the body towards a bottom surface of the body along the fold can form a filament loop engaging region to hold in tension a filament loop extending from the implant. Additional filament(s) associated with the implant can be managed by various filament retention features. Methods for preparing a ligament graft for implantation by relying upon indicia formed on a surface of the device body are also provided.
    Type: Grant
    Filed: June 12, 2019
    Date of Patent: August 4, 2020
    Assignee: MEDOS INTERNATIONAL SÀRL
    Inventors: Jacob A. Marks, Meghan A. Pasquali, Danielle Dufour
  • Patent number: 10729419
    Abstract: Methods and devices are provided for anchoring a ligament or tendon to bone. In one embodiment, a surgical implant is provided having a sheath and an expander that is received within the sheath. Various delivery tools, including a sheath inserter and a driver, are also provided. In use, the sheath inserter can be used to position a tendon within a prepared bone hole, and it can be used to deliver the sheath with a guidewire coupled thereto into the bone hole. The driver can be provided for delivering the expander into the sheath. A loader can optionally be used to load the driver and expander onto the guidewire coupled to the implanted sheath.
    Type: Grant
    Filed: January 30, 2015
    Date of Patent: August 4, 2020
    Assignee: MEDOS INTERNATIONAL SARL
    Inventors: David R. Diduch, Mark H. Getelman, Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Mehmet Z. Sengun, Howard C. Tang, Gregory R. Whittaker
  • Patent number: 10709488
    Abstract: Methods and devices are provided for anchoring a ligament or tendon to bone. In particular, various delivery tools, including a variety of sheath inserter tools, are provided. The tools can be used to position a tendon within a prepared bone hole, and to deliver a sheath into the bone hole.
    Type: Grant
    Filed: July 27, 2018
    Date of Patent: July 14, 2020
    Assignee: MEDOS INTERNATIONAL SÁRL
    Inventors: David R. Diduch, Mark H. Getelman, Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Mehmet Z. Sengun, Howard C. Tang
  • Publication number: 20200205805
    Abstract: Various devices, systems, and methods for knotless suture anchors are provided. In general, a guide device can be cannulated and can be configured to slidably receive therein an inserter tool configured to deliver a suture anchor into a hole formed in bone, such as with a drill advanced through the guide device. The guide device with the inserter tool therein can be configured to be held as a unit by one hand of a person, e.g., a surgeon or other medical personnel.
    Type: Application
    Filed: February 27, 2020
    Publication date: July 2, 2020
    Inventors: Jacob A. Marks, Ami Shyam Joshi
  • Publication number: 20200171474
    Abstract: Catalysts and methods for transformation of glycerol and a carbon feedstock, such as CO2, a carbonate salt or a bicarbonate salt, are described herein. Homogeneous catalysts include compounds of formula M[NHC-R-linker]aLbXc, where M is a transition metal, NHC is an N-heterocyclic carbene ligand, R is an alkyl or aryl group, linker is a polar group, L is a neutral ligand, X is an anionic ligand, a ranges from 1-3, b ranges from 0-3, and c ranges from 0-3. Heterogeneous catalysts include a solid support with a catalytically active compound immobilized on the solid support, where the catalytically active compound has the formula M[NHC-R-linker]aLbXc where M is a transition metal, NHC is an N-heterocyclic carbene ligand, R is an alkyl or aryl group; linker is a polar group, L is a neutral ligand, X is an anionic ligand, a ranges from 1-3, b ranges from 0-3, and c ranges from 0-3.
    Type: Application
    Filed: May 21, 2018
    Publication date: June 4, 2020
    Inventors: Jacob Mark HELTZEL, Matthew Thomas FINN, Adelina VOUTCHKOVA-KOSTAL
  • Publication number: 20200162015
    Abstract: Methods and systems of managing dynamic response to wind in a solar tracker system are provided. The method includes determining a wind speed, comparing the wind speed to a predetermined threshold value to determine if the wind speed equals or exceeds the predetermined threshold, positioning a windward most solar tracker to a predetermined angle based on the comparing, and positioning a leeward most solar tracker to the predetermined angle based on the comparing. The solar trackers are positioned at the predetermined angle at a predetermined interval starting at the windward most solar tracker and the remaining solar trackers remain in a normal operating condition.
    Type: Application
    Filed: November 20, 2018
    Publication date: May 21, 2020
    Inventors: Stuart Upfill-Brown, Tushar Guha, Jacob Mark Morin
  • Publication number: 20200129171
    Abstract: Methods and devices are provided for anchoring a ligament or tendon to bone. In one embodiment, a surgical implant is provided having a sheath and an expander that is received within the sheath. Various delivery tools, including a sheath inserter and a driver, are also provided. In use, the sheath inserter can be used to position a tendon within a prepared bone hole, and it can be used to deliver the sheath with a guidewire coupled thereto into the bone hole. The driver can be provided for delivering the expander into the sheath. A loader can optionally be used to load the driver and expander onto the guidewire coupled to the implanted sheath.
    Type: Application
    Filed: January 2, 2020
    Publication date: April 30, 2020
    Applicant: Medos International Sarl
    Inventors: David R. Diduch, Mark H. Getelman, Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Mehmet Z. Sengun, Howard C. Tang, Gregory R. Whittaker
  • Publication number: 20200078164
    Abstract: Devices and methods for securing a graft with respect to bone are provided. One exemplary embodiment of a surgical implant includes a flexible filament body and a suture filament or repair construct that extends through the filament body at multiple locations. The repair construct is formed into one or more coils, which can receive a graft. The flexible filament body can be configured to be actuated between unstressed and anchoring configurations, the latter of which sets a location of the suture filament, and associated graft, in a bone tunnel. More particularly, the flexible filament body can ball up, or become denser, to a size that cannot pass into the bone tunnel in which the suture filament holding the graft is disposed. The present disclosure also provides for feedback units to assist a surgeon in knowing a location of the implant. Further, other exemplary devices and methods are provided.
    Type: Application
    Filed: November 14, 2019
    Publication date: March 12, 2020
    Inventors: Mehmet Ziya Sengun, Jacob A. Marks
  • Patent number: 10582925
    Abstract: Various devices, systems, and methods for knotless suture anchors are provided. In general, a guide device can be cannulated and can be configured to slidably receive therein an inserter tool configured to deliver a suture anchor into a hole formed in bone, such as with a drill advanced through the guide device. The guide device with the inserter tool therein can be configured to be held as a unit by one hand of a person, e.g., a surgeon or other medical personnel.
    Type: Grant
    Filed: February 6, 2017
    Date of Patent: March 10, 2020
    Assignee: MEDOS INTERNATIONAL SARL
    Inventors: Jacob A. Marks, Ami Shyam Joshi
  • Publication number: 20200020442
    Abstract: A system having a system backend having a backend processor configured to define a patient clinical team associated with a patient clinical process comprising of a series of patient clinical tasks effected within the healthcare facility, each patient clinical task with an associated patient clinical task location within the healthcare facility, a group of mobile devices communicably connected via a network to the system backend, each mobile device being associated with and configured for use by at least one care member of the patient clinical team, a low energy (LE) beacon array arranged in a predetermined relationship with and differentiating between different patient clinical task locations, and communicably connected to each of the mobile devices that is configured to resolve its proximity, from the beacon array, relative to the at least one patient clinical task location.
    Type: Application
    Filed: August 5, 2019
    Publication date: January 16, 2020
    Applicant: Mobile Heartbeat, LLC
    Inventors: Jacob Mark, Sajikumar Aravind, Michael Allen Kellstrand
  • Publication number: 20200008928
    Abstract: Various bone anchor assemblies and methods are provided for anchoring tissue to bone. In one embodiment, an anchor assembly for anchoring a tendon to bone is provided and includes a substantially cylindrical sheath having bone-engaging surface features formed on an external surface thereof, and having an inner lumen formed therein and extending from an open proximal end to a substantially closed distal. The substantially closed distal end includes at least one tendon anchoring feature extending distally therefrom and configured to facilitate anchoring of a tendon to bone. The anchor assembly further includes an expander having a generally elongate cylindrical configuration and being sized and shaped to be received within the inner lumen of the sheath.
    Type: Application
    Filed: September 18, 2019
    Publication date: January 9, 2020
    Applicant: MEDOS INTERNATIONAL SÁRL
    Inventors: David R. Diduch, Mark H. Getelman, James J. Mahoney, JR., Jacob A. Marks, Gerome Miller, Matthew J. Ravenscroft, Mehmet Z. Sengun, Howard C. Tang, Paul P. Weitzel, Gregory R. Whittaker
  • Patent number: 10496790
    Abstract: A system having a system backend having a backend processor configured to define a patient clinical team associated with a patient clinical process comprising of a series of patient clinical tasks effected within the healthcare facility, each patient clinical task with an associated patient clinical task location within the healthcare facility, a group of mobile devices communicably connected via a network to the system backend, each mobile device being associated with and configured for use by at least one care member of the patient clinical team, a low energy (LE) beacon array arranged in a predetermined relationship with and differentiating between different patient clinical task locations, and communicably connected to each of the mobile devices that is configured to resolve its proximity, from the beacon array, relative to the at least one patient clinical task location.
    Type: Grant
    Filed: March 30, 2015
    Date of Patent: December 3, 2019
    Assignee: Mobile Heartbeat, LLC
    Inventors: Jacob Mark, Sajikumar Aravind, Michael Allen Kellstrand
  • Patent number: 10485652
    Abstract: Devices and methods for securing a graft with respect to bone are provided. One exemplary embodiment of a surgical implant includes a flexible filament body and a suture filament or repair construct that extends through the filament body at multiple locations. The repair construct is formed into one or more coils, which can receive a graft. The flexible filament body can be configured to be actuated between unstressed and anchoring configurations, the latter of which sets a location of the suture filament, and associated graft, in a bone tunnel. More particularly, the flexible filament body can ball up, or become denser, to a size that cannot pass into the bone tunnel in which the suture filament holding the graft is disposed. The present disclosure also provides for feedback units to assist a surgeon in knowing a location of the implant. Further, other exemplary devices and methods are provided.
    Type: Grant
    Filed: January 5, 2018
    Date of Patent: November 26, 2019
    Assignee: DEPUY SYNTHES PRODUCTS, INC.
    Inventors: Mehmet Ziya Sengun, Jacob A. Marks