Patents by Inventor Kristian DiMatteo

Kristian DiMatteo 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: 9555171
    Abstract: A method provides for procuring platelet rich plasma (PRP) from a sample of whole blood in a vial. The method includes the steps of: separating the whole blood into layers through centrifugation with an upper layer containing platelet poor plasma (PPP) and a PRP layer below the upper layer containing PRP; adjusting an end point of a first range of motion of an extractor relative to a position of the PRP layer; moving the extractor through the first range of motion through the vial, PPP passing out from the upper layer through the extractor; and after the extractor reaches the end point of the first range of motion, extracting the PRP through the extractor and collecting the PRP.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: January 31, 2017
    Assignee: DEPUY MITEK, LLC
    Inventors: Mehmet Ziya Sengun, William Parrish, Brooks J. Story, Kristian DiMatteo, Gregory R. Whittaker, Douglas Allen Fifolt
  • Publication number: 20160361172
    Abstract: Methods and devices are provided for preparing and implanting tissue scaffolds. Various embodiments of scribing tools are provided that are configured to mark one or more predetermined shapes around a defect site in tissue. The shape or shapes marked in tissue can be used to cut a tissue scaffold having a shape that matches the shape or shapes marked in tissue. In one embodiment, the scribing tool used to mark a shape in tissue can also be used to cut the tissue scaffold.
    Type: Application
    Filed: August 22, 2016
    Publication date: December 15, 2016
    Inventors: Mehmet Z. Sengun, Kristian DiMatteo
  • Patent number: 9421082
    Abstract: Methods and devices are provided for preparing and implanting tissue scaffolds. Various embodiments of scribing tools are provided that are configured to mark one or more predetermined shapes around a defect site in tissue. The shape or shapes marked in tissue can be used to cut a tissue scaffold having a shape that matches the shape or shapes marked in tissue. In one embodiment, the scribing tool used to mark a shape in tissue can also be used to cut the tissue scaffold.
    Type: Grant
    Filed: March 7, 2013
    Date of Patent: August 23, 2016
    Assignee: DEPUY MITEK, LLC
    Inventors: Mehmet Z. Sengun, Kristian DiMatteo
  • Publication number: 20160038173
    Abstract: A tissue snare comprises an elongated member having a distal end and a loop formed of a shape memory material, the loop including a tissue receiving interior opening and being connected to the distal end of the elongated member, properties of the shape memory material being selected so that, when a temperature of the loop exceeds a critical temperature thereof, the loop constricts from an expanded state to a constricted state.
    Type: Application
    Filed: October 23, 2015
    Publication date: February 11, 2016
    Applicant: Boston Scientific Scimed, Inc.
    Inventors: William J. SHAW, Kristian DiMATTEO
  • Publication number: 20160038162
    Abstract: Methods and devices are provided for forming bone tunnels. In general, the methods and devices allow multiple converging tunnels to be formed in bone, such as in an arthroscopic surgical procedure, e.g., a rotator cuff repair surgical procedure. One or more sutures can be advanced through the converging tunnels, and the suture(s) can be coupled to tissue. The suture(s) with the tissue coupled thereto can be tensioned, thereby helping to maximize an amount of the tissue in contact with the bone. In an exemplary embodiment, a guide device is provided that can be configured to allow a first tunnel to be formed in bone and to allow a plurality of additional tunnels to be formed in the bone at predetermined angular positions relative to the first tunnel such that each of the additional tunnels can extend transverse to the first tunnel and intersect the first tunnel.
    Type: Application
    Filed: October 19, 2015
    Publication date: February 11, 2016
    Inventors: Benjamin Cleveland, Kristian Dimatteo, Eric S. Sojka, Christopher G. Weinert, Jose E. Lizardi
  • Patent number: 9226759
    Abstract: Low profile reamers and methods of use are provided which can, in general, allow a hole to be drilled in bone. In one embodiment, a low profile retractable bone reamer is provided having an elongate shaft with a cutting element disposed on a distal end of the elongate shaft that can be configured to drill a hole in bone. The elongate shaft and cutting element can have first and second longitudinally separated portions that are movably coupled to each other. The reamer can be configured to move between a retracted configuration, in which a the reamer has a reduced, low profile configuration, and a non-retracted configuration, in which both longitudinally separated portions of the cutting element can be positioned adjacent to one another to form a single cutting element.
    Type: Grant
    Filed: March 5, 2015
    Date of Patent: January 5, 2016
    Assignee: DePuy Mitek, LLC
    Inventors: Gregory R. Whittaker, Mehmet Z. Sengun, Kristian Dimatteo
  • Patent number: 9226652
    Abstract: Surgical devices and methods used for invaginating tissue during, for example, an endoscopic fundoplication procedure, are disclosed. The device includes an elongated tube having a proximal end configured to extend outside of the body and a distal end configured to extend proximate the tissue to be invaginated, and a distal member coupled to the distal end of the tube. The distal member is configured to hold or grasp the tissue to be invaginated. The devices may include a protective distal sleeve.
    Type: Grant
    Filed: July 5, 2011
    Date of Patent: January 5, 2016
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Robert B. DeVries, Roy H. Sullivan, Marc Tassy, Jr., Kristian DiMatteo, Tak Kwan, William J. Shaw
  • Publication number: 20150351931
    Abstract: Methods and devices are provided for delivering and affixing tissue replacements. In one embodiment, a tissue scaffold can be delivered into a patient through a cannula to a cavity formed at a defect site in tissue, e.g., cartilage. A delivery shaft can be used to deliver the scaffold through the cannula, and a loading device can help load the scaffold onto the delivery shaft. A delivery guide device can position and temporarily hold the scaffold within the cavity. The delivery guide device can guide one or more surgical instruments to the scaffold to affix the scaffold within the cavity, e.g., to bone underlying the scaffold, using at least one securing mechanism.
    Type: Application
    Filed: August 18, 2015
    Publication date: December 10, 2015
    Inventors: Mehmet Z. Sengun, Kristian Dimatteo
  • Patent number: 9186163
    Abstract: Methods and devices are provided for forming bone tunnels. In general, the methods and devices allow multiple converging tunnels to be formed in bone, such as in an arthroscopic surgical procedure, e.g., a rotator cuff repair surgical procedure. One or more sutures can be advanced through the converging tunnels, and the suture(s) can be coupled to tissue. The suture(s) with the tissue coupled thereto can be tensioned, thereby helping to maximize an amount of the tissue in contact with the bone. In an exemplary embodiment, a guide device is provided that can be configured to allow a first tunnel to be formed in bone and to allow a plurality of additional tunnels to be formed in the bone at predetermined angular positions relative to the first tunnel such that each of the additional tunnels can extend transverse to the first tunnel and intersect the first tunnel.
    Type: Grant
    Filed: June 4, 2012
    Date of Patent: November 17, 2015
    Assignee: DePuy Mitek, LLC
    Inventors: Benjamin Cleveland, Kristian DiMatteo, Erik S. Sojka, Christopher G. Weinert, Jose E. Lizardi
  • Patent number: 9186169
    Abstract: A tissue snare comprises an elongated member having a distal end and a loop formed of a shape memory material, the loop including a tissue receiving interior opening and being connected to the distal end of the elongated member, properties of the shape memory material being selected so that, when a temperature of the loop exceeds a critical temperature thereof, the loop constricts from an expanded state to a constricted state.
    Type: Grant
    Filed: April 23, 2010
    Date of Patent: November 17, 2015
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: William J. Shaw, Kristian Dimatteo
  • Patent number: 9149369
    Abstract: Methods and devices are provided for delivering and affixing tissue replacements. In one embodiment, a tissue scaffold can be delivered into a patient through a cannula to a cavity formed at a defect site in tissue, e.g., cartilage. A delivery shaft can be used to deliver the scaffold through the cannula, and a loading device can help load the scaffold onto the delivery shaft. A delivery guide device can position and temporarily hold the scaffold within the cavity. The delivery guide device can guide one or more surgical instruments to the scaffold to affix the scaffold within the cavity, e.g., to bone underlying the scaffold, using at least one securing mechanism.
    Type: Grant
    Filed: July 5, 2012
    Date of Patent: October 6, 2015
    Assignee: DePuy Mitek, LLC
    Inventors: Mehmet Z. Sengun, Kristian Dimatteo
  • Publication number: 20150173778
    Abstract: Low profile reamers and methods of use are provided which can, in general, allow a hole to be drilled in bone. In one embodiment, a low profile retractable bone reamer is provided having an elongate shaft with a cutting element disposed on a distal end of the elongate shaft that can be configured to drill a hole in bone. The elongate shaft and cutting element can have first and second longitudinally separated portions that are movably coupled to each other. The reamer can be configured to move between a retracted configuration, in which a the reamer has a reduced, low profile configuration, and a non-retracted configuration, in which both longitudinally separated portions of the cutting element can be positioned adjacent to one another to form a single cutting element.
    Type: Application
    Filed: March 5, 2015
    Publication date: June 25, 2015
    Inventors: Gregory R. Whittaker, Mehmet Z. Sengun, Kristian Dimatteo
  • Publication number: 20150157314
    Abstract: Tissue repair suture plates and methods of use are provided which can, in general, allow soft tissue to be secured to bone. In one embodiment, a tissue repair suture plate can include a plurality of openings formed therethrough that can each be configured to have one or more sutures passed therethrough. Each of the sutures can be configured to be coupled to a soft tissue to be positioned against bone for healing thereagainst such that the soft tissue can have multiple sutures coupled thereto at different areas thereof. One or more bone fixation elements can be coupled to the plate and can be configured to attach the plate to the bone. The plate can be configured to move between a first configuration in which the plate has a first maximum length and a second configuration in which the plate has a second, greater maximum length.
    Type: Application
    Filed: February 13, 2015
    Publication date: June 11, 2015
    Inventor: Kristian Dimatteo
  • Patent number: 9011443
    Abstract: Low profile reamers and methods of use are provided which can, in general, allow a hole to be drilled in bone. In one embodiment, a low profile retractable bone reamer is provided having an elongate shaft with a cutting element disposed on a distal end of the elongate shaft that can be configured to drill a hole in bone. The elongate shaft and cutting element can have first and second longitudinally separated portions that are movably coupled to each other. The reamer can be configured to move between a retracted configuration, in which a the reamer has a reduced, low profile configuration, and a non-retracted configuration, in which both longitudinally separated portions of the cutting element can be positioned adjacent to one another to form a single cutting element.
    Type: Grant
    Filed: September 20, 2012
    Date of Patent: April 21, 2015
    Assignee: DePuy Mitek, LLC
    Inventors: Gregory R. Whittaker, Mehmet Z. Sengun, Kristian DiMatteo
  • Patent number: 8979909
    Abstract: Tissue repair suture plates and methods of use are provided which can, in general, allow soft tissue to be secured to bone. In one embodiment, a tissue repair suture plate can include a plurality of openings formed therethrough that can each be configured to have one or more sutures passed therethrough. Each of the sutures can be configured to be coupled to a soft tissue to be positioned against bone for healing thereagainst such that the soft tissue can have multiple sutures coupled thereto at different areas thereof. One or more bone fixation elements can be coupled to the plate and can be configured to attach the plate to the bone. The plate can be configured to move between a first configuration in which the plate has a first maximum length and a second configuration in which the plate has a second, greater maximum length.
    Type: Grant
    Filed: June 29, 2012
    Date of Patent: March 17, 2015
    Assignee: DePuy Mitek, LLC
    Inventor: Kristian DiMatteo
  • Publication number: 20150038992
    Abstract: Methods and devices are provided for anchoring suture to tissue, incorporating anchoring devices constructed substantially from suture. The anchoring devices are constructed as longitudinally extended, preformed knot configurations that upon deployment are reconfigured to form anchoring knots having an increased cross-section relative to the preformed knot configuration, for secure lodging in tissue. The anchoring devices are suitable for single and multi-anchor surgical procedures in soft tissue or bone, and multiple anchors can be delivered using a single delivery device.
    Type: Application
    Filed: August 8, 2014
    Publication date: February 5, 2015
    Inventors: Kristian DiMatteo, Gregory R. Whittaker, Brooks J. Story, Mehmet Ziya Sengun, Mark A. Capobianco, Douglas Allen Fifolt
  • Publication number: 20140336703
    Abstract: Methods and devices are provided for repairing a tear in a meniscus. A pair of fixation member each entailing a preformed knot configuration coupled together by a suture length. The fixation members are placed on the meniscal tissue with the suture length spanning the tear, the knot configurations are expanded to form anchoring knots and the suture length is shortened to close the tear.
    Type: Application
    Filed: July 28, 2014
    Publication date: November 13, 2014
    Inventors: Mehmet Ziya Sengun, Mark A. Capobianco, Douglas Allen Fifolt, Kristian DiMatteo, Gregory R. Whittaker, Brooks J. Story
  • Patent number: 8882801
    Abstract: Methods and devices are provided for anchoring suture to bone. In one exemplary embodiment, a cannulated suture anchor is provided and it includes a suture-engaging member formed therein and configured to receive a suture therearound such that trailing ends of the suture can extend through the suture anchor. The suture anchor can also include at least a proximal portion having dual threads to facilitate engagement with bone. The present invention also provides exemplary sutures and drivers that can be used with the various methods and devices disclosed herein, or with other methods and devices known in the art.
    Type: Grant
    Filed: September 14, 2007
    Date of Patent: November 11, 2014
    Assignee: DePuy Mitek, LLC
    Inventors: Kristian DiMatteo, Chris Kilburn-Peterson, Nathan S. Cauldwell, Jonathan Howe, Hugh S. West
  • Patent number: 8870788
    Abstract: Methods and device for extracting and collecting tissue, which can be used for example in tissue engineering and grafting applications, are disclosed. In one embodiment, a device can include an outer tube. A rotatable shaft can be disposed within the outer tube can have a tissue harvesting tip formed on its distal end, the tissue harvesting tip being effective to excise tissue upon rotation thereof. A tissue collection device can be included to receive and collected excised tissue, and the tissue collection device can indicate the amount of tissue collected therein. For example, the tissue collection device can include a straining element which collects excised tissue and an indicator by which to assess the amount of collected tissue. In some embodiments, the tissue collection device can translate to indicate the amount of collected tissue.
    Type: Grant
    Filed: June 24, 2011
    Date of Patent: October 28, 2014
    Assignee: DePuy Mitek, LLC
    Inventors: Robert S. Pesce, Shelby Cook, Kristian DiMatteo, Kevin Ranucci, Robert Boock
  • Patent number: 8845714
    Abstract: An endovascular prosthesis of the present invention includes an expandable stent and a means for sealably attaching a tubular graft to the stent within the stent's lumen. The means of sealably attaching a graft includes membranes, foams, polymeric materials and combinations thereof. Additionally, the present invention includes methods of forming an endovascular prosthesis and methods of implanting an endovascular prosthesis within a vessel to provide sealable securement of a tubular graft within the stent's lumen.
    Type: Grant
    Filed: June 14, 2011
    Date of Patent: September 30, 2014
    Assignee: LifeShield Sciences LLC
    Inventors: Kristian DiMatteo, John Spiridigliozzi, Robert C. Thistle