Patents by Inventor Brian K. Berelsman

Brian K. Berelsman 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: 20240130727
    Abstract: A soft tissue repair device can include a housing having a handle, a deployment system having an actuation member, and an insertion system having an inserter and a slider. The slider can be coupled to the actuation member and movable relative to the inserter between deployed and retracted positions. First and second anchors can be carried on an external surface of the slider such that the anchors are spaced apart and portions of the anchors are coaxial with the slider and each other. A flexible strand can couple the anchors. The insertion system can cooperate with the deployment system to move the slider to the deployed position to deploy the first anchor upon activating the actuation member a first time, and to move the slider to the deployed position from the retracted position to deploy the second anchor upon actuating the actuation member a second time after the first time.
    Type: Application
    Filed: December 6, 2023
    Publication date: April 25, 2024
    Inventors: Kevin T. Stone, Nathan M. Sautter, Brian K. Berelsman, Jeffery D. Arnett, Joshua A. Butters, Dylan M. Hushka, Nicholas R. Slater
  • Publication number: 20230225721
    Abstract: A method and apparatus for securing soft tissue to bone can include loading a suture through an eyelet of a suture anchor. The suture anchor can have a longitudinal axis and a distal tip. An anchor inserter assembly can be positioned in contact with the suture anchor. The anchor inserter assembly can include a sleeve portion and an impacting portion. The suture can be engaged with a suture engaging member on the suture inserter assembly at a location adjacent to the eyelet. The sleeve portion can be translated relative to the impacting portion from an alignment position to an insertion position thereby moving the suture a first distance offset from the eyelet in a direction away from the distal tip. The anchor insert assembly can be advanced to a driven position thereby advancing the suture anchor into the bone. The suture engaging member can be released from the suture.
    Type: Application
    Filed: March 20, 2023
    Publication date: July 20, 2023
    Inventors: Brian K. Berelsman, Kevin T. Stone
  • Patent number: 11633297
    Abstract: A footplate assembly for ankle includes a footplate base; a slider arm that is rotatably coupled to the footplate base, the slider arm being configured to be couplable to external ankle instrumentation; a locking fastener configured to lock the slider arm in a chosen orientation relative to the footplate base; and a knob coupled to the footplate base having a scale to display the angle of the slider arm relative to the footplate base.
    Type: Grant
    Filed: July 12, 2019
    Date of Patent: April 25, 2023
    Assignee: Zimmer, Inc.
    Inventors: Sarah Brownhill, Brian K. Berelsman, Sandra Snyder
  • Patent number: 11324497
    Abstract: Described herein are examples of illustrative orthopedic staples, systems and methods. In an illustrative orthopedic staple for fusion of a foot or ankle bone fracture, the staple includes a bridge, a first staple leg and a second staple legs. The bridge of the illustrative staple extends from a first end portion to a second end portion along a first direction. The bridge also includes a step down region located between the first end portion and the second end portion, the step down region having a height along the insertion axis of the staple. In some examples, the first staple leg has a first staple leg height extending from the bridge to the first distal tip and the second staple leg has a second staple leg height extending from the bridge to the second distal tip, and the first staple leg height is greater than the second staple leg height.
    Type: Grant
    Filed: February 7, 2018
    Date of Patent: May 10, 2022
    Assignee: Biomet Manufacturing, LLC
    Inventors: Bryce A. Isch, Kelly Lackey, Brian K. Berelsman
  • Patent number: 11241305
    Abstract: Methods and apparatuses for repairing a tear in soft tissue are disclosed. A method according to the principles of the present disclosure includes connecting an intermediate member to a bone anchor and placing the intermediate member on the soft tissue. The method further includes inserting a first suture through the intermediate member and the soft tissue to attach the intermediate member to the soft tissue and fixing the bone anchor to bone to secure the soft tissue to the bone.
    Type: Grant
    Filed: October 15, 2018
    Date of Patent: February 8, 2022
    Assignee: Biomet Sports Medicine, LLC
    Inventors: Gregory J. Denham, Brian K. Berelsman
  • Patent number: 11213400
    Abstract: An elbow prosthesis according to the present teachings can include a stem structure and an articulating component. The stem structure can be operable to be positioned in a bone of a joint. The stem structure can include a stem portion that is operable to be positioned in the bone and a C-shaped body portion having a first retaining mechanism formed thereon. The articulating component can have a second retaining mechanism formed thereon. One of the first and second retaining mechanisms can comprise an extension portion and a first anti-rotation portion. The other retaining mechanism can comprise a receiving portion and a second anti-rotation portion. The articulating component can be advanced from an insertion position to an assembled position, such that the first and second mechanisms cooperatively interlock to inhibit translation and rotation of the articulating component relative to the C-shaped body portion of the stem structure.
    Type: Grant
    Filed: March 20, 2020
    Date of Patent: January 4, 2022
    Assignee: ENCORE MEDICAL, L.P.
    Inventors: Nicholas J. Katrana, Nathan A. Winslow, Thomas M. Vanasse, Brian K. Berelsman
  • Publication number: 20210361286
    Abstract: A soft tissue repair device can include a housing having a handle, a deployment system having an actuation member, and an insertion system having an inserter and a slider. The slider can be coupled to the actuation member and movable relative to the inserter between deployed and retracted positions. First and second anchors can be carried on an external surface of the slider such that the anchors are spaced apart and portions of the anchors are coaxial with the slider and each other. A flexible strand can couple the anchors. The insertion system can cooperate with the deployment system to move the slider to the deployed position to deploy the first anchor upon activating the actuation member a first time, and to move the slider to the deployed position from the retracted position to deploy the second anchor upon actuating the actuation member a second time after the first time.
    Type: Application
    Filed: August 3, 2021
    Publication date: November 25, 2021
    Inventors: Kevin T. Stone, Nathan M. Sautter, Brian K. Berelsman, Jeffery D. Arnett, Joshua A. Butters, Dylan M. Hushka, Nicholas R. Slater
  • Patent number: 11109857
    Abstract: A soft tissue repair device can include a housing having a handle, a deployment system having an actuation member, and an insertion system having an inserter and a slider. The slider can be coupled to the actuation member and movable relative to the inserter between deployed and retracted positions. First and second anchors can be carried on an external surface of the slider such that the anchors are spaced apart and portions of the anchors are coaxial with the slider and each other. A flexible strand can couple the anchors. The insertion system can cooperate with the deployment system to move the slider to the deployed position to deploy the first anchor upon activating the actuation member a first time, and to move the slider to the deployed position from the retracted position to deploy the second anchor upon actuating the actuation member a second time after the first time.
    Type: Grant
    Filed: January 23, 2019
    Date of Patent: September 7, 2021
    Assignee: Biomet Sports Medicine, LLC
    Inventors: Kevin T. Stone, Nathan M. Sautter, Brian K. Berelsman, Jeffery D. Arnett, Joshua A. Butters, Dylan M. Hushka, Nicholas R. Slater
  • Patent number: 11103358
    Abstract: Implementations described herein provide for a bone implant having a cylindrical member and an articulating member. The cylindrical member extends along an implant axis from a first end to an opposed second end thereof. The cylindrical member has a void disposed therein extending from the first end towards the second end. The cylindrical member has an interconnected open-pore structure for promoting bone tissue in-growth. The articulating member has an articulating portion and a core portion extending away from the articulating portion. The articulating member is coupled to the cylindrical member such that the core portion extends into the void disposed in the cylindrical member and the articulating portion is positioned adjacent the first surface of the cylindrical member and extends radially outward from the implant axis to cover the first surface of the cylindrical member.
    Type: Grant
    Filed: November 11, 2016
    Date of Patent: August 31, 2021
    Assignee: Biomet Manufacturing, LLC
    Inventors: David M. Anderson, Brian K. Berelsman
  • Patent number: 11065103
    Abstract: A system for use in graft fixation in a knee reconstruction procedure can include a first femoral fixation member adapted to be retained relative to a first end of a femoral tunnel and a first self-locking adjustable flexible member construct having a passage portion with a pair of free ends and a pair of self-locking adjustable loops. The first flexible member construct can be interconnected to the first femoral fixation member. A second femoral fixation member can be coupled to the first flexible member construct and can be adapted to be positioned in the femoral tunnel relative to a second end of the femoral tunnel adjacent a joint space between the femur and a tibia. A second self-locking adjustable flexible member construct having a passage portion with a pair of free ends and a pair of self-locking adjustable loops can be interconnected to the second femoral fixation member.
    Type: Grant
    Filed: April 18, 2018
    Date of Patent: July 20, 2021
    Assignee: Biomet Sports Medicine, LLC
    Inventors: Brian K. Berelsman, Nathanael K. Conner, Gregory J. Denham, Kevin T. Stone
  • Patent number: 10945851
    Abstract: An elbow prosthesis includes a capitellar implant having an articulating head and a stem. The articulating head includes a first passage along a first axis, a second passage along a second axis, and a receiving groove. The stem includes a proximal end and a connecting end. The connecting end includes a curved body having a bore. The curved body selectively mates with the receiving groove such that the bore axially aligns with the first axis of the first passage in an assembled position for collectively receiving a securing member. The second axis is located between the first axis and the proximal end of the stem.
    Type: Grant
    Filed: November 8, 2018
    Date of Patent: March 16, 2021
    Assignee: Encore Medical, LP
    Inventors: Nicholas J. Katrana, Thomas J. Graham, Brian K. Berelsman, Clinton E. Kehres
  • Publication number: 20200352726
    Abstract: An elbow prosthesis according to the present teachings can include a stem structure and an articulating component. The stem structure can be operable to be positioned in a bone of a joint. The stem structure can include a stem portion that is operable to be positioned in the bone and a C-shaped body portion having a first retaining mechanism formed thereon. The articulating component can have a second retaining mechanism formed thereon. One of the first and second retaining mechanisms can comprise an extension portion and a first anti-rotation portion. The other retaining mechanism can comprise a receiving portion and a second anti-rotation portion. The articulating component can be advanced from an insertion position to an assembled position, such that the first and second mechanisms cooperatively interlock to inhibit translation and rotation of the articulating component relative to the C-shaped body portion of the stem structure.
    Type: Application
    Filed: March 20, 2020
    Publication date: November 12, 2020
    Inventors: Nicholas J. Katrana, Nathan A. Winslow, Thomas M. Vanasse, Brian K. Berelsman
  • Patent number: 10792160
    Abstract: A joint prosthesis is provided and may include first and second stem structures and first and second bearing members. The first stem structure may include a generally U-shaped portion having first and second legs. The second stem structure may include first and second bearing surfaces. The first bearing member may be removably coupled to the first leg and may include a first laterally facing bearing surface rotatably contacting the first bearing surface. The second bearing member may be removably coupled to the second leg and may include a second laterally facing bearing surface rotatably contacting the second bearing surface. The first laterally facing bearing surface may be disposed between the first leg and a first lateral side of the second stem. The second laterally facing bearing surface may be disposed between the second leg and a second lateral side of the second stem. The second lateral side may oppose the first lateral side.
    Type: Grant
    Filed: December 28, 2018
    Date of Patent: October 6, 2020
    Assignee: Encore Medical, L.P.
    Inventors: Nicholas J. Katrana, Brian K. Berelsman, Nathan A. Winslow
  • Patent number: 10758221
    Abstract: A construct is disclosed that may be used to repair or replace a natural ligament. The construct may be formed of materials for biocompatibility and/or resorbtion. The construct may be provided or connected to a soft anchor for connection to a bone portion.
    Type: Grant
    Filed: October 2, 2017
    Date of Patent: September 1, 2020
    Assignee: Biomet Sports Medicine, LLC
    Inventors: Brian K. Berelsman, Mark S Myerson, Kevin T. Stone
  • Patent number: 10743925
    Abstract: Assemblies for securing fractured bone are provided. The assembly includes a first fixation element, a second fixation element, and an adjustable flexible member construct. The first fixation element having a male or a female sleeve is secured within a first portion of the fractured bone. The second fixation element having the other of the male or female sleeve telescopically received within the one of the male or female sleeve is secured within a second portion of the fractured bone. The adjustable flexible member construct extends between the first and second fixation elements and has at least one adjustable loop coupled to the first fixation element and the second fixation element and a pair of adjusting ends extending through an opening in the first fixation element. The pair of adjusting ends can be pulled to reduce a diameter of the adjustable loop and to compress fragments of the fractured bone.
    Type: Grant
    Filed: September 26, 2017
    Date of Patent: August 18, 2020
    Assignee: Biomet Sports Medicine, LLC
    Inventors: Kevin T. Stone, Brian K. Berelsman, Ryan A. Kaiser
  • Publication number: 20200222042
    Abstract: A method and apparatus for securing soft tissue to bone can include loading a suture through an eyelet of a suture anchor. The suture anchor can have a longitudinal axis and a distal tip. An anchor inserter assembly can be positioned in contact with the suture anchor. The anchor inserter assembly can include a sleeve portion and an impacting portion. The suture can be engaged with a suture engaging member on the suture inserter assembly at a location adjacent to the eyelet. The sleeve portion can be translated relative to the impacting portion from an alignment position to an insertion position thereby moving the suture a first distance offset from the eyelet in a direction away from the distal tip. The anchor insert assembly can be advanced to a driven position thereby advancing the suture anchor into the bone. The suture engaging member can be released from the suture.
    Type: Application
    Filed: March 30, 2020
    Publication date: July 16, 2020
    Inventors: Brian K. Berelsman, Kevin T. Stone
  • Patent number: 10675073
    Abstract: A method and apparatus for securing a fractured or sectioned sternum in a patient's body is disclosed. The apparatus can include an attachment member and an adjustable flexible member construct. The attachment member can have a flexible member holder. The adjustable flexible member construct can have first and second ends and a body defining at least one passage portion. The first and second ends can be passed into and through the at least one passage portion via first and second openings associated with the at least one passage portion of the adjustable flexible member construct to form a pair of loops. The attachment member can be configured to be coupled to at least one of the formed pair of loops. The adjustable flexible member construct can be positioned about the sternum and can be reduced to compress the fractured or sectioned sternum.
    Type: Grant
    Filed: March 17, 2017
    Date of Patent: June 9, 2020
    Assignee: Biomet Sports Medicine, LLC
    Inventors: Kevin T. Stone, Brian K. Berelsman, Zachary Wagner
  • Patent number: 10639023
    Abstract: A method and apparatus for securing soft tissue to bone can include loading a suture through an eyelet of a suture anchor. The suture anchor can have a longitudinal axis and a distal tip. An anchor inserter assembly can be positioned in contact with the suture anchor. The anchor inserter assembly can include a sleeve portion and an impacting portion. The suture can be engaged with a suture engaging member on the suture inserter assembly at a location adjacent to the eyelet. The sleeve portion can be translated relative to the impacting portion from an alignment position to an insertion position thereby moving the suture a first distance offset from the eyelet in a direction away from the distal tip. The anchor insert assembly can be advanced to a driven position thereby advancing the suture anchor into the bone. The suture engaging member can be released from the suture.
    Type: Grant
    Filed: December 9, 2016
    Date of Patent: May 5, 2020
    Assignee: Biomet Sports Medicine, LLC
    Inventors: Brian K. Berelsman, Kevin T. Stone
  • Patent number: 10596006
    Abstract: An elbow prosthesis according to the present teachings can include a stem structure and an articulating component. The stem structure can be operable to be positioned in a bone of a joint. The stem structure can include a stem portion that is operable to be positioned in the bone and a C-shaped body portion having a first retaining mechanism formed thereon. The articulating component can have a second retaining mechanism formed thereon. One of the first and second retaining mechanisms can comprise an extension portion and a first anti-rotation portion. The other retaining mechanism can comprise a receiving portion and a second anti-rotation portion. The articulating component can be advanced from an insertion position to an assembled position, such that the first and second mechanisms cooperatively interlock to inhibit translation and rotation of the articulating component relative to the C-shaped body portion of the stem structure.
    Type: Grant
    Filed: June 5, 2017
    Date of Patent: March 24, 2020
    Assignee: Encore Medical, L.P.
    Inventors: Nicholas J. Katrana, Nathan A. Winslow, Thomas M. Vanasse, Brian K. Berelsman
  • Publication number: 20200015992
    Abstract: A footplate assembly for ankle includes a footplate base; a slider arm that is rotatably coupled to the footplate base, the slider arm being configured to be couplable to external ankle instrumentation; a locking fastener configured to lock the slider arm in a chosen orientation relative to the footplate base; and a knob coupled to the footplate base having a scale to display the angle of the slider arm relative to the footplate base.
    Type: Application
    Filed: July 12, 2019
    Publication date: January 16, 2020
    Inventors: Sarah Brownhill, Brian K. Berelsman, Sandra Snyder