Patents by Inventor Stuart Goble

Stuart Goble 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: 10687797
    Abstract: A minimally invasive dilation device includes a plurality of rigid arms radially arrayed about a center and a dilating member positioned between the arms. A stylus may occupy the center. An outer flexible sleeve may be circumferentially secured to the arms, lying within or without the plurality of arms. An inner mesh may surround the stylus and dilating member. The device may be introduced into tissue toward a targeted area, while in a closed configuration. The dilating member may be a balloon, wherein upon inflation of the balloon, the arms are pushed radially outward, expanding the device and dilating the surrounding tissue. The dilating member may be a tube, wherein upon insertion of the tube, the arms are pushed radially outward. A cannula may be inserted inside the plurality of arms to keep the arms in an open configuration, and the dilating member may be withdrawn, providing an open passageway through the device to the targeted area. The device may be used with a neural monitoring system.
    Type: Grant
    Filed: March 27, 2015
    Date of Patent: June 23, 2020
    Assignee: Howmedica Osteonics Corp.
    Inventors: Corbett W. Stone, Ephraim Akyuz, Stuart Goble, Bryan Howard, Daniel J. Triplett, Andrew R. Fauth, Douglas M. Lorang
  • Publication number: 20170172557
    Abstract: A minimally invasive dilation device includes a plurality of rigid arms radially arrayed about a center and a dilating member positioned between the arms. A stylus may occupy the center. An outer flexible sleeve may be circumferentially secured to the arms, lying within or without the plurality of arms. An inner mesh may surround the stylus and dilating member. The device may be introduced into tissue toward a targeted area, while in a closed configuration. The dilating member may be a balloon, wherein upon inflation of the balloon, the arms are pushed radially outward, expanding the device and dilating the surrounding tissue. The dilating member may be a tube, wherein upon insertion of the tube, the arms are pushed radially outward. A cannula may be inserted inside the plurality of arms to keep the arms in an open configuration, and the dilating member may be withdrawn, providing an open passageway through the device to the targeted area. The device may be used with a neural monitoring system.
    Type: Application
    Filed: March 27, 2015
    Publication date: June 22, 2017
    Inventors: Corbett W. Stone, Ephraim Akyuz, Stuart Goble, Bryan Howard, Daniel J. Triplett, Andrew R. Fauth, Douglas M. Lorang
  • Publication number: 20160278755
    Abstract: A minimally invasive dilation device includes a plurality of rigid arms radially arrayed about a center and a dilating member positioned between the arms. A stylus may occupy the center. An outer flexible sleeve may be circumferentially secured to the arms, lying within or without the plurality of arms. An inner mesh may surround the stylus and dilating member. The device may be introduced into tissue toward a targeted area, while in a closed configuration. The dilating member may be a balloon, wherein upon inflation of the balloon, the arms are pushed radially outward, expanding the device and dilating the surrounding tissue. The dilating member may be a tube, wherein upon insertion of the tube, the arms are pushed radially outward. A cannula may be inserted inside the plurality of arms to keep the arms in an open configuration, and the dilating member may be withdrawn, providing an open passageway through the device to the targeted area. The device may be used with a neural monitoring system.
    Type: Application
    Filed: March 27, 2015
    Publication date: September 29, 2016
    Inventors: Corbett W. Stone, Ephraim Akyuz, Stuart Goble, Bryan Howard, Daniel J. Triplett, Andrew R. Fauth, Douglas M. Lorang
  • Patent number: 8992558
    Abstract: A minimally invasive dilation device includes a plurality of rigid arms radially arrayed about a center and a dilating member positioned between the arms. A stylus may occupy the center. An outer flexible sleeve may be circumferentially secured to the arms, lying within or without the plurality of arms. An inner mesh may surround the stylus and dilating member. The device may be introduced into tissue toward a targeted area, while in a closed configuration. The dilating member may be a balloon, wherein upon inflation of the balloon, the arms are pushed radially outward, expanding the device and dilating the surrounding tissue. The dilating member may be a tube, wherein upon insertion of the tube, the arms are pushed radially outward. A cannula may be inserted inside the plurality of arms to keep the arms in an open configuration, and the dilating member may be withdrawn, providing an open passageway through the device to the targeted area. The device may be used with a neural monitoring system.
    Type: Grant
    Filed: April 14, 2011
    Date of Patent: March 31, 2015
    Assignee: OsteoMed, LLC
    Inventors: Corbett Stone, Ephraim Akyuz, Stuart Goble, Bryan Howard, Daniel J. Triplett, Douglas M. Lorang, Andrew Fauth
  • Patent number: 8864797
    Abstract: A line lock system may include a line routed through a plate. The plate may have an elongated body with a plurality of passageways. The line is routed to form at least one one-way slide so no knots are required. The system may include filaments routed through the passageways of the plate or around a dogbone feature of the plate. The filaments may be used to toggle the plate after passage through a hole to prevent withdrawal of the plate back through the hole. The system may include a line lock stabilizer or counter-tension tool to stabilize the line lock as the line is adjusted. The system may include a compression limiter to selectively reduce compression in the one-way slide to facilitate adjustment of the line. The line lock stabilizer, counter-tension tool, or compression limiter may be a filament.
    Type: Grant
    Filed: September 23, 2011
    Date of Patent: October 21, 2014
    Assignee: Coorstek Medical LLC
    Inventors: Daniel F. Justin, Andrew Fauth, Joshua A. Butters, Chad Lewis, Karen E. Mohr, Carlyle Creger, Nicholas Slater, Mark J. Mooradian, Greta Jo Hays, M. Mary Sinnott, Jeremy D. Borchert, Stuart Goble
  • Publication number: 20120065731
    Abstract: A line lock system may include a line routed through a plate. The plate may have an elongated body with a plurality of passageways. The line is routed to form at least one one-way slide so no knots are required. The system may include filaments routed through the passageways of the plate or around a dogbone feature of the plate. The filaments may be used to toggle the plate after passage through a hole to prevent withdrawal of the plate back through the hole. The system may include a line lock stabilizer or counter-tension tool to stabilize the line lock as the line is adjusted. The system may include a compression limiter to selectively reduce compression in the one-way slide to facilitate adjustment of the line. The line lock stabilizer, counter-tension tool, or compression limiter may be a filament.
    Type: Application
    Filed: September 23, 2011
    Publication date: March 15, 2012
    Applicant: MEDICINELODGE, INC. DBA IMDS CO-INNOVATION
    Inventors: Daniel F. Justin, Andrew R. Fauth, Joshua A. Butters, Chad Lewis, Karen E. Mohr, Carlyle J. Creger, Nicholas Slater, Mark J. Mooradian, Greta Jo Hays, M. Mary Sinnott, Jeremy D. Borchert, Stuart Goble
  • Publication number: 20120046747
    Abstract: A system and method for securing an ACL graftmay include a line routed through a plate. The plate may include an elongated body with a plurality of passageways, and a dogbone feature on at least one end of the body. The line may be routed to create at least one one-way slide so no knots are required. The line may form an adjustable loop that receives the graft. The adjustable loop is adjustable through the one-way slide feature. The plate may be configured to pass through a bone tunnel. The plate may be toggled after passage through the bone tunnel to prevent withdrawal back through the bone tunnel because the plate contact area is larger the bone tunnel area.
    Type: Application
    Filed: August 26, 2011
    Publication date: February 23, 2012
    Applicant: MedicineLodge, Inc. dba IMDS Co-Innovation
    Inventors: Daniel F. Justin, Andrew Fauth, Chad Lewis, Karen E. Mohr, Bryan Howard, M. Mary Sinnott, Stuart Goble
  • Publication number: 20110237898
    Abstract: A minimally invasive dilation device includes a plurality of rigid arms radially arrayed about a center and a dilating member positioned between the arms. A stylus may occupy the center. An outer flexible sleeve may be circumferentially secured to the arms, lying within or without the plurality of arms. An inner mesh may surround the stylus and dilating member. The device may be introduced into tissue toward a targeted area, while in a closed configuration. The dilating member may be a balloon, wherein upon inflation of the balloon, the arms are pushed radially outward, expanding the device and dilating the surrounding tissue. The dilating member may be a tube, wherein upon insertion of the tube, the arms are pushed radially outward. A cannula may be inserted inside the plurality of arms to keep the arms in an open configuration, and the dilating member may be withdrawn, providing an open passageway through the device to the targeted area. The device may be used with a neural monitoring system.
    Type: Application
    Filed: April 14, 2011
    Publication date: September 29, 2011
    Applicant: MEDICINELODGE, INC. DBA IMDS CO-INNOVATION
    Inventors: Corbett Stone, Ephraim Akyuz, Stuart Goble, Bryan Howard, Daniel J. Triplett
  • Publication number: 20110160856
    Abstract: A system and method for securing an ACL graft. The system may comprise a line routed through a plate, the plate may comprise an elongated body with a plurality of passageways, and a dogbone feature on one end. The line is routed such to create at least one one-way slide so no knots are required. The line may comprise an adjustable loop that receives the graft. The adjustable loop is adjustable through the one-way slide feature of the line routed around and through the plate. The plate may be configured to pass through a bone tunnel with the use of filaments routed through the passageways of the plate or around the dogbone feature of the plate. The filaments may be used to toggle the plate after passage through the bone tunnel to prevent withdrawal back through the bone tunnel because the plate contact area is larger the bone tunnel area.
    Type: Application
    Filed: July 1, 2010
    Publication date: June 30, 2011
    Applicant: MEDICINELODGE, INC. DBA IMDS CO-INNOVATION
    Inventors: M. Mary Sinnott, Daniel F. Justin, Andrew Fauth, Chad Lewis, Stuart Goble, Karen E. Mohr