Patents by Inventor Murali Kadaba

Murali Kadaba 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: 11925491
    Abstract: A sterile holder for sterile surgical implants. The implant holder is an ergonomically shaped body of deformable material having an implant-receiving cavity similar in size and shape to the implant. To remove the implant from the holder, the surgeon mates a sterile tool to the implant and gently pries the implant out of the holder by deforming the body. Preferably the tool used to pry the implant out of the body is an insertion tool mated to the implant which is also used to insert the implant in a patient. In this way the surgeon retrieves the implant from its container without touching the container and directly inserts the implant in the patient without risking contamination: sterility is maintained for both the surgeon and the implant. In a preferred embodiment, the implant holder is configured to hold two pedicle screws and their set-screws.
    Type: Grant
    Filed: May 24, 2023
    Date of Patent: March 12, 2024
    Assignee: Ingeniumspine, LLC
    Inventors: David Brumfield, B. Thomas Barker, Murali Kadaba, Dennis Crandall
  • Publication number: 20240000583
    Abstract: Expandable intervertebral spacer system having a top plate and a bottom plate which are separated and held apart a changeable distance forming a cage. The plates are held apart by four locking mechanisms in the cage at or near the corners or the periphery of the plates, leaving the cavity of the cage substantially unobstructed. Each locking mechanism is made of two saw-toothed posts that cooperate to lock the top plate a desired distance from the bottom plate. The saw-tooth posts are biased against each other with a spring. Once the spacer is implanted in a patient with a removable insertion tool, the top and bottom plates are forced apart incrementally, one saw tooth at a time, in a ratchet-like motion, using a removable expansion mechanism. Optionally, each stanchion is surrounded by a sheath to prevent bone particles and other debris from interfering with the mating of the saw teeth.
    Type: Application
    Filed: June 27, 2023
    Publication date: January 4, 2024
    Applicant: Ingeniumspine, LLC
    Inventors: Murali Kadaba, Damien SHULOCK, B. Thomas BARKER, Dennis Crandall, Jason DATTA, Lyle YOUNG
  • Patent number: 11737892
    Abstract: An expandable intervertebral spacer system having a top plate and a bottom plate forming a cage. The top, bottom, and sides of the cage have openings to receive bone graft material. At least one ramp extends into the cage from the top plate or bottom plate. The top plate and bottom plate are connected together at the proximal end of the cage at a hinge. The cage is expanded by inserting a pushrod into the proximal end of the cage against the ramp and forcing the top and bottom plates apart at a desired angle. A locking mechanism at the distal end of the cage locks the plates apart using a ratchet-like mechanism in which a torsion spring biases a movable post against a stationary post, such that the saw teeth of the movable post and stationary post cooperate to lock the top and bottom plates apart.
    Type: Grant
    Filed: January 18, 2023
    Date of Patent: August 29, 2023
    Assignee: Ingeniumspine, LLC
    Inventors: Murali Kadaba, Damien Shulock, Dennis Crandall
  • Patent number: 11191647
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Grant
    Filed: July 8, 2019
    Date of Patent: December 7, 2021
    Assignee: Howmedica Osteonics Corp.
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti
  • Publication number: 20210330474
    Abstract: An anterior lumbar interbody fusion device having a plurality of anchor apertures shaped and arranged in ways that provide options as to the number and locations of fixation points that anchor the device securely to the vertebrae. The anchor apertures may be angled towards or away from the cage vertical midline and cage horizontal midline, as well as angled differently relative to each other. In addition, the proximal opening of the anchor aperture is slightly wider than the distal opening, which permits the anchor to be positioned at a desired pitch within the opening, as opposed to being limited to a single entry angle. In a preferred embodiment, the proximal and distal opening of the anchor aperture are obround and each anchor aperture is sized to receive two anchors. In a given placement, anchors may be placed in some or all of the anchor apertures in each cage.
    Type: Application
    Filed: April 23, 2020
    Publication date: October 28, 2021
    Applicant: Ingeniumspine, LLC
    Inventors: Dennis CRANDALL, B. Thomas BARKER, Murali KADABA
  • Publication number: 20210330475
    Abstract: An anterior lumbar interbody fusion device having a plurality of anchor apertures shaped and arranged in ways that provide options as to the number and locations of fixation points that anchor the device securely to the vertebrae. The anchor apertures may be angled towards or away from the cage vertical midline and cage horizontal midline, as well as angled differently relative to each other. In addition, the proximal opening of the anchor aperture is slightly wider than the distal opening, which permits the anchor to be positioned at a desired pitch within the opening, as opposed to being limited to a single entry angle. In a preferred embodiment, the proximal and distal opening of the anchor aperture are obround and each anchor aperture is sized to receive two anchors. In a given placement, anchors may be placed in some or all of the anchor apertures in each cage.
    Type: Application
    Filed: December 15, 2020
    Publication date: October 28, 2021
    Applicant: Ingeniumspine, LLC
    Inventors: Dennis CRANDALL, B. Thomas BARKER, Murali Murali KADABA
  • Publication number: 20210322060
    Abstract: Spinal curvature modulation systems, methods and related devices and instrumentation are disclosed, which include a flexible tether, a tether tensioning unit and bone anchors for the flexible tether that allow the tether to be secured across multiple vertebrae in a region of treatment. When the flexible tether is attached to multiple vertebrae, it can be used to correct spinal deformities. Tension in the flexible tether is adjustable transcutaneously without invasive surgical procedures by use of remotely driven actuators, such as a magnet-driven motor, or by a small tool insertable through a small incision. Disclosed systems and methods thus allow for multiple adjustments of tether tension, and spinal curvature, over time without repeated, highly invasive, spinal surgeries.
    Type: Application
    Filed: July 1, 2021
    Publication date: October 21, 2021
    Inventors: John Barrett, Murali Kadaba, John Ashley, Damien Shulock
  • Patent number: 11065037
    Abstract: Spinal curvature modulation systems, methods and related devices and instrumentation are disclosed, which include a flexible tether, a tether tensioning unit and bone anchors for the flexible tether that allow the tether to be secured across multiple vertebrae in a region of treatment. When the flexible tether is attached to multiple vertebrae, it can be used to correct spinal deformities. Tension in the flexible tether is adjustable transcutaneously without invasive surgical procedures by use of remotely driven actuators, such as a magnet-driven motor, or by a small tool insertable through a small incision. Disclosed systems and methods thus allow for multiple adjustments of tether tension, and spinal curvature, over time without repeated, highly invasive, spinal surgeries.
    Type: Grant
    Filed: May 19, 2017
    Date of Patent: July 20, 2021
    Assignee: Auctus Surgical, Inc.
    Inventors: John Barrett, Murali Kadaba, John Ashley
  • Publication number: 20190328544
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Application
    Filed: July 8, 2019
    Publication date: October 31, 2019
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti
  • Publication number: 20190298417
    Abstract: Spinal curvature modulation systems, methods and related devices and instrumentation are disclosed, which include a flexible tether, a tether tensioning unit and bone anchors for the flexible tether that allow the tether to be secured across multiple vertebrae in a region of treatment. When the flexible tether is attached to multiple vertebrae, it can be used to correct spinal deformities. Tension in the flexible tether is adjustable transcutaneously without invasive surgical procedures by use of remotely driven actuators, such as a magnet-driven motor, or by a small tool insertable through a small incision. Disclosed systems and methods thus allow for multiple adjustments of tether tension, and spinal curvature, over time without repeated, highly invasive, spinal surgeries.
    Type: Application
    Filed: May 19, 2017
    Publication date: October 3, 2019
    Inventors: John Barrett, Murali Kadaba, John Ashley
  • Patent number: 10342673
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Grant
    Filed: December 13, 2016
    Date of Patent: July 9, 2019
    Assignee: Howmedica Osteonics Corp.
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti
  • Publication number: 20170224506
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Application
    Filed: December 13, 2016
    Publication date: August 10, 2017
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Damien J. Shulock, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti, Dennis Crandall
  • Patent number: 9545316
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Grant
    Filed: March 11, 2015
    Date of Patent: January 17, 2017
    Assignee: Howmedica Osteonics Corp.
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Damien Shulock, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti, Dennis Crandall
  • Publication number: 20150289988
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Application
    Filed: March 11, 2015
    Publication date: October 15, 2015
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Damien Shulock, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti, Dennis Crandall
  • Patent number: 8992620
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: March 31, 2015
    Assignee: CoAlign Innovations, Inc.
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Damien J. Shulock, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti, Dennis Crandall
  • Patent number: 8956413
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. Angular deformities can also be corrected, and natural curvatures restored. Preferably, the implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system preferably having a plurality of locking elements to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Grant
    Filed: April 8, 2013
    Date of Patent: February 17, 2015
    Assignee: CoAlign Innovations, Inc.
    Inventors: John E. Ashley, Murali Kadaba, Philip J. Simpson, Walter Dean Gillespie, Thomas Grotz, George A. Mansfield, III, David G. Matsuura, Rudy Pretti
  • Patent number: 8696751
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a refracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Grant
    Filed: May 25, 2010
    Date of Patent: April 15, 2014
    Assignee: CoAlign Innovations, Inc.
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Damien J. Shulock, Murali Kadaba, David G. Matsuura, George A. Mansfield, III, Thomas Grotz, Rudy Pretti
  • Publication number: 20130261748
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. Angular deformities can also be corrected, and natural curvatures restored. Preferably, the implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system preferably having a plurality of locking elements to lock the implant in an extended configuration.
    Type: Application
    Filed: April 8, 2013
    Publication date: October 3, 2013
    Inventors: John E. Ashley, Murali Kadaba, Philip J. Simpson, Walter Dean Gillespie, Thomas Grotz, George A. Mansfield, III, David G. Matsuura, Rudy Pretti
  • Publication number: 20130253650
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. The implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system having a plurality of linked locking elements that work in unison to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Application
    Filed: March 15, 2013
    Publication date: September 26, 2013
    Applicant: CoAlign Innovations, Inc.
    Inventors: John E. Ashley, Philip J. Simpson, Walter Dean Gillespie, Damien J. Shulock, Murali Kadaba, David G. Matsuura, George A. Mansfield, Thomas Grotz, Rudy Pretti
  • Patent number: 8435296
    Abstract: A spinal implant which is configured to be deployed between adjacent vertebral bodies. The implant has at least one extendable support element with a retracted configuration to facilitate deployment of the implant and an extended configuration so as to expand the implant and effectively distract the disc space, stabilize the motion segments and eliminate pathologic spine motion. Angular deformities can also be corrected, and natural curvatures restored. Preferably, the implant has a minimal dimension in its unexpanded state that is smaller than the dimensions of the neuroforamen through which it typically passes to be deployed within the intervertebral space. The implant is provided with a locking system preferably having a plurality of locking elements to lock the implant in an extended configuration. Bone engaging anchors also may be provided to ensure secure positioning.
    Type: Grant
    Filed: August 26, 2009
    Date of Patent: May 7, 2013
    Assignee: CoAlign Innovations, Inc.
    Inventors: Murali Kadaba, Philip J. Simpson, John E. Ashley, Walter Dean Gillespie, Thomas Grotz, George A. Mansfield, III, David G. Matsuura, Rudy Pretti