Patents by Inventor Thomas Keyer

Thomas Keyer 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: 20150142055
    Abstract: An anchor-in-anchor fixation system is provided for securing underlying structure, such as bone. The fixation system includes a first bone anchor having a shaft for fixation to underlying bone, and a head that defines an internal bore. A second bone anchor extends through the bore and into underlying bone. A fixation assembly is also provided that includes one or more fixation systems coupled to an auxiliary attachment member configured for long bone fixation, spinal fixation, or fixation of other bones as desired.
    Type: Application
    Filed: October 2, 2014
    Publication date: May 21, 2015
    Inventors: Tom Overes, Robert Frigg, Silas Zurschmiede, Andreas Appenzeller, Jamie Manos, Daniel Vennard, Edward J. McShane, III, Joshua McManus, Thomas Keyer, Eric McDivitt, Joseph Capozzoli, Lawton Laurence, Justin Coppes
  • Publication number: 20140249590
    Abstract: A bone anchor (100) for attaching a rod (108) to a bone has an anchor member (106) for attachment to the bone and an anchor head (104) having a U-shaped opening for receiving the rod. The bone anchor also includes a locking cap (102) that has a main body (900) and a set screw (1000). Advantageously, in one embodiment the locking cap preferably is designed such that a single tool can be used to lock the locking cap in place on the anchor body preferably with a 90° turn and preferably then drive the set screw to clamp the rod. The locking cap also preferably non-threadingly engages the anchor body. The anchor body preferably has an inclined surface on its top surface which elastically deflects extending tabs on the main body to secure the locking cap to the anchor body. A method of implantation and assembly of the bone anchor are also described.
    Type: Application
    Filed: May 12, 2014
    Publication date: September 4, 2014
    Applicant: DePuy Synthes Products LLC
    Inventors: Joseph Peterson, Dennis Chien, Thomas Keyer, Edward McShane, Joseph Capozzoli, Pascal Hauri, Scott Kramer, David Schindler
  • Patent number: 8740946
    Abstract: A bone anchor (100) for attaching a rod (108) to a bone has an anchor member (106) for attachment to the bone and an anchor head (104) having a U-shaped opening for receiving the rod. The bone anchor also includes a locking cap (102) that has a main body (900) and a set screw (1000). Advantageously, in one embodiment the locking cap preferably is designed such that a single tool can be used to lock the locking cap in place on the anchor body preferably with a 90° turn and preferably then drive the set screw to clamp the rod. The locking cap also preferably non-threadingly engages the anchor body. The anchor body preferably has an inclined surface on its top surface which elastically deflects extending tabs on the main body to secure the locking cap to the anchor body. A method of implantation and assembly of the bone anchor are also described.
    Type: Grant
    Filed: June 15, 2012
    Date of Patent: June 3, 2014
    Assignee: DePuy Synthes Products, LLC
    Inventors: Joseph Peterson, Dennis Chien, Thomas Keyer, Edward McShane, Joseph Capozzoli, Pascal Hauri, Scott Kramer, Sandra Bockhorst
  • Publication number: 20140142632
    Abstract: The present disclosure includes a polyaxial bone fixation element for use in spinal fixation to interconnect a longitudinal spinal rod with a patient's vertebra. The polyaxial bone fixation element preferably includes a bone anchor, a collet, a body, and a locking cap. The polyaxial bone fixation element preferably enables in-situ assembly. That is, the polyaxial bone fixation element is preferably configured so that in use, the bone anchor may be secured to the patient's vertebra prior to being received within the body. Accordingly, the polyaxial bone fixation element enables a surgeon to implant the bone anchor without the body to maximize visibility and access around the anchoring site. Once the bone anchor has been secured to the patient's vertebra, the body can be snapped-onto the bone anchor. The bone anchor preferably also includes a second tool interface so that a surgical instrument can be directly coupled to the bone anchor.
    Type: Application
    Filed: January 24, 2014
    Publication date: May 22, 2014
    Applicant: DEPUY SYNTHES PRODUCTS, LLC
    Inventors: Thomas Keyer, Joseph Capozzoli, Eric McDivitt
  • Patent number: 8663298
    Abstract: The present invention is directed a polyaxial bone fixation element for use in spinal fixation to interconnect a longitudinal spinal rod with a patient's vertebra. The polyaxial bone fixation element preferably includes a bone anchor, a collet, a body, and a locking cap. The polyaxial bone fixation element preferably enables in-situ assembly. That is, the polyaxial bone fixation element is preferably configured so that in use, the bone anchor may be secured to the patient's vertebra prior to being received within the body. Accordingly, the polyaxial bone fixation element enables a surgeon to implant the bone anchor without the body to maximize visibility and access around the anchoring site. Once the bone anchor has been secured to the patient's vertebra, the body can be snapped-onto the bone anchor. The bone anchor preferably also includes a second tool interface so that a surgical instrument can be directly coupled to the bone anchor.
    Type: Grant
    Filed: July 21, 2008
    Date of Patent: March 4, 2014
    Assignee: DePuy Synthes Products, LLC
    Inventors: Thomas Keyer, Joseph Capozzoli, Eric McDivitt
  • Publication number: 20120253409
    Abstract: A bone anchor (100) for attaching a rod (108) to a bone has an anchor member (106) for attachment to the bone and an anchor head (104) having a U-shaped opening for receiving the rod. The bone anchor also includes a locking cap (102) that has a main body (900) and a set screw (1000). Advantageously, in one embodiment the locking cap preferably is designed such that a single tool can be used to lock the locking cap in place on the anchor body preferably with a 90° turn and preferably then drive the set screw to clamp the rod. The locking cap also preferably non-threadingly engages the anchor body. The anchor body preferably has an inclined surface on its top surface which elastically deflects extending tabs on the main body to secure the locking cap to the anchor body. A method of implantation and assembly of the bone anchor are also described.
    Type: Application
    Filed: June 15, 2012
    Publication date: October 4, 2012
    Applicant: Synthes USA, LLC
    Inventors: Joseph Peterson, Dennis Chien, Thomas Keyer, Edward McShane, Joseph Capozzoli, Pascal Hauri, Scott Kramer, David Schindler, Sandra Bockhorst
  • Patent number: 8221472
    Abstract: A bone anchor (100) for attaching a rod (108) to a bone has an anchor member (106) for attachment to the bone and an anchor head (104) having a U-shaped opening for receiving the rod. The bone anchor also includes a locking cap (102) that has a main body (900) and a set screw (1000). Advantageously, in one embodiment the locking cap preferably is designed such that a single tool can be used to lock the locking cap in place on the anchor body preferably with a 90° turn and preferably then drive the set screw to clamp the rod. The locking cap also preferably non-threadingly engages the anchor body. The anchor body preferably has an inclined surface on its top surface which elastically deflects extending tabs on the main body to secure the locking cap to the anchor body. A method of implantation and assembly of the bone anchor are also described.
    Type: Grant
    Filed: April 25, 2006
    Date of Patent: July 17, 2012
    Assignee: Synthes USA, LLC
    Inventors: Joseph Peterson, Dennis Chien, Thomas Keyer, Edward McShane, Joseph Capozzoli, Pascal Hauri, Scott Kramer, David Schindler, Sandra Bockhorst, legal representative
  • Publication number: 20120041490
    Abstract: A minimally invasive system and method for coupling a spinal rod to a plurality of bone anchors implanted into a plurality of vertebral bodies. A plurality of bottom-loading polyaxial anchor seat assemblies having different vertical heights are chosen to pop over the heads of the implanted bone anchors and a spinal rod is more easily introduced and secured to the bone anchors. The variety of different heights that characterize the plurality of polyaxial anchor seat assemblies allows a surgeon to intraoperatively choose the appropriate offset for a particular spinal level during spinal corrections.
    Type: Application
    Filed: November 18, 2009
    Publication date: February 16, 2012
    Applicant: Synthes USA, LLC
    Inventors: R. Patrick Jacob, Eric McDivitt, Joseph Capozzoli, Thomas Keyer
  • Publication number: 20110270325
    Abstract: An anchor assembly for use in spinal fixation to interconnect a longitudinal spinal rod, which is integrally formed with a body of the anchor assembly. The anchor assembly includes a bone anchor, a collet, a body portion, a rod portion, and a locking cap. The anchor assembly is preferably configured so that in use, the bone anchor may be secured to the patient's vertebra prior to being received within the body portion. The anchor assembly enables a surgeon to implant the bone anchor without the body portion to maximize visibility and access around the anchoring site. Once the bone anchor has been secured to the patient's vertebra, the rod portion may be inserted into the rod-receiving channel of a second bone fixation element having a rod-receiving channel implanted at a second site and the body portion can be snapped-onto the bone anchor.
    Type: Application
    Filed: September 29, 2009
    Publication date: November 3, 2011
    Inventors: Thomas Keyer, Eric McDivitt, Joseph Capozzoli, Boyd Wolf
  • Publication number: 20100312280
    Abstract: An anchor-in-anchor fixation system is provided for securing underlying structure, such as bone. The fixation system includes a first bone anchor having a shaft for fixation to underlying bone, and a head that defines an internal bore. A second bone anchor extends through the bore and into underlying bone. A fixation assembly is also provided that includes one or more fixation systems coupled to an auxiliary attachment member configured for long bone fixation, spinal fixation, or fixation of other bones as desired.
    Type: Application
    Filed: June 9, 2010
    Publication date: December 9, 2010
    Applicant: SYNTHES USA, LLC
    Inventors: Tom Overes, Robert Frigg, Silas Zurschmiede, Andreas Appenzeller, Jamie Manos, Daniel Vennard, Edward J. McShane, III, Joshua McManus, Thomas Keyer, Eric McDivitt, Joseph Capozzoli, Lawton Laurence, Justin Coppes
  • Publication number: 20100198272
    Abstract: The present invention is directed a polyaxial bone fixation element for use in spinal fixation to interconnect a longitudinal spinal rod with a patient's vertebra. The polyaxial bone fixation element preferably includes a bone anchor, a collet, a body, and a locking cap. The polyaxial bone fixation element preferably enables in-situ assembly. That is, the polyaxial bone fixation element is preferably configured so that in use, the bone anchor may be secured to the patient's vertebra prior to being received within the body. Accordingly, the polyaxial bone fixation element enables a surgeon to implant the bone anchor without the body to maximize visibility and access around the anchoring site. Once the bone anchor has been secured to the patient's vertebra, the body can be snapped-onto the bone anchor. The bone anchor preferably also includes a second tool interface so that a surgical instrument can be directly coupled to the bone anchor.
    Type: Application
    Filed: July 21, 2008
    Publication date: August 5, 2010
    Inventors: Thomas Keyer, Joseph Capozzoli, Eric McDivitt
  • Publication number: 20080294202
    Abstract: A bone anchor (100) for attaching a rod (108) to a bone has an anchor member (106) for attachment to the bone and an anchor head (104) having a U-shaped opening for receiving the rod. The bone anchor also includes a locking cap (102) that has a main body (900) and a set screw (1000). Advantageously, in one embodiment the locking cap preferably is designed such that a single tool can be used to lock the locking cap in place on the anchor body preferably with a 90° turn and preferably then drive the set screw to clamp the rod. The locking cap also preferably non-threadingly engages the anchor body. The anchor body preferably has an inclined surface on its top surface which elastically deflects extending tabs on the main body to secure the locking cap to the anchor body. A method of implantation and assembly of the bone anchor are also described.
    Type: Application
    Filed: April 25, 2006
    Publication date: November 27, 2008
    Inventors: Joseph Peterson, Dennis Chien, Thomas Keyer, Edward McShane, Joseph Capozzoli, Pascal Hauri, Scott Kramer, Sandra Bockhorst, David Schindler
  • Publication number: 20050228392
    Abstract: A surgical instrument is provided for urging a longitudinal spinal member into a top-loading spinal implant. The instrument may comprise a holder assembly having a pair of fingers sized and configured to engage the underside of an edge of the spinal implant, a release assembly, and an actuating member. The release assembly may comprise a tubular member and a pusher member, the tubular member being sized and configured to be slidably disposed within the holder assembly, and the pusher member being sized and configured to slidably surround at least a portion of the holder assembly. Upon movement of the actuating member, the holder assembly and the release assembly are moveable with respect to one another so that the longitudinal spinal rod, which is engaged to the pusher member, is urged into engagement with the rod-receiving channel of the spinal implant.
    Type: Application
    Filed: April 12, 2004
    Publication date: October 13, 2005
    Inventors: Thomas Keyer, Lawrence Binder, Martin Walther
  • Publication number: 20050119663
    Abstract: The present invention is directed to a surgical drill guide. The drill guide may include a first drill guide body having a distal end for placement substantially adjacent a bone, a second drill guide body slidable with respect to the first drill guide body and having a proximal end for contacting a portion of a drill bit, a handle associated with at least one of the first drill guide body and the second drill guide body, and a detent mechanism for releasably retaining the position of the first drill guide body with respect to the second drill guide body in predefined increments. Additionally or alternatively, the drill guide may include a locking member movable between a first position where it substantially prevents sliding of the second drill guide body with respect to the first drill guide body, and a second position where it permits sliding of the second drill guide body with respect to the first drill guide body. The locking member may be resiliently biased to the first position.
    Type: Application
    Filed: October 14, 2003
    Publication date: June 2, 2005
    Inventors: Thomas Keyer, Roger Berger, Douglas Kephart, Martin Walther
  • Publication number: 20050080415
    Abstract: The present invention is directed to a polyaxial bone anchor for attaching a rod to a bone comprising an anchor member for attachment to the bone, a body member having a U-shaped channel for receiving the rod and a compressible recess for receiving a head of the anchor member such that the anchor member can initially polyaxially angulate with respect to the body member, a collar slidably disposed about the body member and capable of compressing the recess around the head, and a fastener capable of pressing the rod against the collar. The body member may define a first axis, an upper bounding edge, and a lower bounding edge, and the lower bounding edge may include a countersunk region to permit increased angulation of the anchor member with respect to the first axis when the anchor member is oriented toward the countersunk region. Other structures for providing increased angulation of the anchor member are disclosed as well.
    Type: Application
    Filed: October 14, 2003
    Publication date: April 14, 2005
    Inventors: Thomas Keyer, Roger Berger, Martin Walther
  • Publication number: 20050080416
    Abstract: A Linking Transconnector is disclosed for coupling a first longitudinal spinal rod to a second longitudinal spinal rod. The Linking Transconnector generally includes a pair of hook engaging members for engaging the longitudinal spinal rods, a lateral rod for spanning a distance between the hook engaging members, and a locking element which interconnects the hook engaging members with the lateral rod. The locking element being configured to allow for multiple degrees of adjustment to permit the Linking Transconnector to accommodate for varying spinal rod alignments. The locking element also permits the location of the lateral rod to be fixed relative to the hook engaging members once the desired position of the lateral rod with respect to the longitudinal spinal rods has been achieved. The locking element may also be able to fix the position of the lateral rod with respect to the hook engaging members by a force applied to the locking element.
    Type: Application
    Filed: October 9, 2003
    Publication date: April 14, 2005
    Inventors: Christopher Ryan, Thomas Keyer, Martin Walther
  • Publication number: 20050080414
    Abstract: The present invention is directed to a spinal fixation device. The device may include a body defining a channel for receiving a spinal rod, the channel having a first branch and a second branch separated by a lateral opening, a hook extending from the body for engaging a portion of a vertebra, and a fastener configured to secure the spinal rod in the channel. The fastener may extend through only the first branch. The spinal fixation device may also include one or more tool engagement recesses. Additionally, the present invention is directed to methods of spinal fixation.
    Type: Application
    Filed: October 14, 2003
    Publication date: April 14, 2005
    Inventors: Thomas Keyer, Martin Walther
  • Publication number: 20050049593
    Abstract: A fixation system includes a plate comprising a top surface, a bottom surface, a central longitudinal axis, at least one fixation hole extending between the top and bottom surfaces and comprising an undercut therein, and at least one passage intersecting one of the undercuts. At least one resilient clip is disposed in at least a portion of the undercut, with the at least one clip having a pair of generally parallel sides and an end tab. At least one fastener is provided and comprises a head and a threaded shaft, with the head comprising a perimetral groove extending around at least a portion thereof and an instrument receiving portion. The at least one clip is configured and dimensioned to seat in the undercut with the end tab extending within the passage, and the at least one fastener is configured and dimensioned to be received in the at least one fixation hole and securable therein when the at least one clip abuts the perimetral groove of the head.
    Type: Application
    Filed: September 3, 2003
    Publication date: March 3, 2005
    Inventors: Lan Anh Duong, Sean Suh, David Rathbun, Thomas Keyer, Lawrence Binder