Patents by Inventor Michael J. Lee

Michael J. Lee 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: 20200187810
    Abstract: An exemplary embodiment providing one or more improvements includes apparatus and methods for sensing electrical activity in tissue of a person in a manner which is substantially limits or eliminates interference from noise in a surrounding environment.
    Type: Application
    Filed: December 16, 2019
    Publication date: June 18, 2020
    Inventors: Michael J. Lee, Hans C. Lee
  • Publication number: 20200146825
    Abstract: Systems, devices and methods related to various heart valve implants and for delivery of those implants are described. The implants may be used to re-size a native valve annulus or to replace a native heart valve. The implants include a re-sizable frame having angled struts. The implant is secured to tissue with anchors that can rotate without axial advancement to engage tissue while drawing the implant closer to the tissue. Collars are used to decrease the angle between struts of a frame to contract the implant. The implants can include a rotatable shaft, such as a threaded shaft, located internally to an axially translatable collar. Rotation of the shaft transmits force to the collar to cause the collar to translate axially, closing the angle of adjacent struts and decreasing the width of the implant and thus of the annulus. The implants can be delivered, secured and contracted via a catheter. The implants are repositionable and retrievable via catheter.
    Type: Application
    Filed: December 18, 2019
    Publication date: May 14, 2020
    Inventors: Randall Lashinski, Kristian Kristoffersen, Matthew Rust, Richard Glenn, Michael J. Lee, Patrick E. Macaulay, Kenny D. Bruner, Padraig J. Savage, Nathan D. Brown
  • Publication number: 20200121461
    Abstract: Features for a restraint to facilitate delivery and deployment of an implantable cardiac device are described. The restraint may include a series of circumferential engagements for securing inwardly corresponding portions of the implant. The restraint may be located inside the implant and provide a radially inward force on the implant. The restraint may include a center shaft having a series of grooves configured to cooperate with corresponding splines of the implant. Distal or proximal advance of the restraint disengages the restraint from the implant. The implant may include a tubular frame configured to contract and be secured by the restraint in a contracted configuration and to expand upon disengagement from the restraint. The restraint may provide for a smaller overall cross-sectional profile of a transcatheter delivery system, for instance by negating the need for a distal delivery sheath.
    Type: Application
    Filed: October 21, 2019
    Publication date: April 23, 2020
    Inventors: Kenny Dwight Bruner, Padraig J. Savage, Matthew Rust, Christopher Lashinski, Nathan D. Brown, Michael J. Lee
  • Patent number: 10595985
    Abstract: Described are methods and apparatus for use in supporting tissue in a patient's body. In some embodiments, the patient's breast or another tissue is supported. One method involves introducing a superior soft tissue anchor into a patient, the anchor having an inferiorly facing total surface area; and introducing at least one inferior soft tissue anchor into the patient, such that the at least one inferior soft tissue anchor is suspended from the superior soft tissue anchor, the sum of all of the at least one inferior soft tissue anchors having a superiorly facing total surface area. The inferiorly facing total surface area of the superior anchor can be greater, such as at least two times greater than the superiorly facing total surface area of the at least one inferior anchor.
    Type: Grant
    Filed: September 15, 2017
    Date of Patent: March 24, 2020
    Assignee: Sinclair Pharmaceuticals Limited
    Inventors: Michael J. Lee, Randall Lashinski, Gordon Bishop, Anthony Beatty, Jasper Benke, Alexe Calarasu, Jeremy Kinkade, Sean Saint, Heather Hardy
  • Patent number: 10548731
    Abstract: Systems, devices and methods related to various heart valve implants and for delivery of those implants are described. The implants may be used to re-size a native valve annulus or to replace a native heart valve. The implants include a re-sizable frame having angled struts. The implant is secured to tissue with anchors that can rotate without axial advancement to engage tissue while drawing the implant closer to the tissue. Collars are used to decrease the angle between struts of a frame to contract the implant. The implants can include a rotatable shaft, such as a threaded shaft, located internally to an axially translatable collar. Rotation of the shaft transmits force to the collar to cause the collar to translate axially, closing the angle of adjacent struts and decreasing the width of the implant and thus of the annulus. The implants can be delivered, secured and contracted via a catheter. The implants are repositionable and retrievable via catheter.
    Type: Grant
    Filed: February 9, 2018
    Date of Patent: February 4, 2020
    Assignee: BOSTON SCIENTIFIC SCIMED, INC.
    Inventors: Randall Lashinski, Kristian Kristoffersen, Matthew Rust, Richard Glenn, Michael J. Lee, Patrick E. Macaulay, Kenny D. Bruner, Padraig J. Savage, Nathan D. Brown
  • Patent number: 10548703
    Abstract: A hernia repair device is provided which may include a soft tissue repair prosthesis and an expandable device configured to be removably connected with the soft tissue repair prosthesis. When expanded, the expandable device may be configured to position the soft tissue repair prosthesis adjacent a hernia defect. The soft tissue repair prosthesis may include at least one loop or slit configured to receive a portion of the expandable device. The prosthesis may include a tether to hoist, locate or position the soft tissue repair prosthesis. The expandable device may include indicia for positioning the prosthesis relative to the edge of the hernia defect.
    Type: Grant
    Filed: October 21, 2016
    Date of Patent: February 4, 2020
    Assignee: C.R. Bard, Inc.
    Inventors: Roger E. Darois, John Peter Groetelaars, Michael F. Jacene, Anthony Colesanti, Michael J. Lee, Richard V. Longo, Tara Smith, James M. Brann
  • Publication number: 20200022811
    Abstract: Features for a restraint, such as a cap, are described. The restraint secures a cardiac device in a collapsed, delivery configuration for transcatheter delivery to a heart. The restraint may have a tubular sidewall extending from a proximal end to a distal end, a proximal opening defined by the sidewall at the proximal end and a channel defined by the sidewall and extending distally from the proximal opening. The restraint is configured to receive the implant in the collapsed configuration through the proximal opening to radially restrain the implant within the channel. The restraint eliminates the need for a surrounding sheath, reducing the delivery profile and size of the overall delivery system, among other advantages. The restraint may have an atraumatic leading edge to reduce the risk of injury to the patient.
    Type: Application
    Filed: July 17, 2019
    Publication date: January 23, 2020
    Inventors: Erik Christopher Griswold, Christopher Robert Lashinski, Randall Lashinski, Michael J. Lee
  • Patent number: 10506941
    Abstract: An exemplary embodiment providing one or more improvements includes apparatus and methods for sensing electrical activity in tissue of a person in a manner which is substantially limits or eliminates interference from noise in a surrounding environment.
    Type: Grant
    Filed: May 17, 2016
    Date of Patent: December 17, 2019
    Assignee: THE NIELSEN COMPANY (US), LLC
    Inventors: Michael J. Lee, Hans C. Lee
  • Patent number: 10490374
    Abstract: One embodiment of the invention includes a phase-change material switch. The switch includes a first terminal that receives an input signal and a second terminal. The switch includes an actuation portion that receives a control signal in one of a first state to emit a first heat profile and a second state to emit a second heat profile. The switch further includes a switch portion comprising a phase-change material arranged as a plurality of longitudinal strips that each interconnect the first terminal and the second terminal and that are each in proximity with the actuation portion. The phase-change material can be selectable between a conducting state in response to the first heat profile to conduct an input signal from the first terminal to the second terminal and a blocking state in response to the second heat profile to block the input signal from the first terminal to the second terminal.
    Type: Grant
    Filed: September 12, 2014
    Date of Patent: November 26, 2019
    Assignee: NORTHROP GRUMMAN SYSTEMS CORPORATION
    Inventors: Pavel Borodulin, Nabil Abdel-Meguid El-Hinnawy, Robert Miles Young, Matthew Russell King, Michael J. Lee
  • Publication number: 20190254847
    Abstract: An implantable stent includes multiple circumferential segments that surround a bore and are connected in series along a length to form a tubular wall. Multiple adjacent alternating opposite facing crowns arranged along each segment's circumference are bridged by struts. The struts include a series of staggered arcuate edges with limited flats to provide a limited region of maximum width between significantly extended reducing diameter tapers at either end where they transition into the crowns. Connections between adjacent segments are wider and stiffer than the struts and strut-crown transitions in the segments. The crowns include inner and outer radii with off-set centers along a common axis to provide medial crown peaks along the axis that are wider than the narrowed crown shoulders on either side of the axis and from which the tapered struts extend. Material strain and flexure along the stent during lateral bending is distributed mainly within the segments, e.g.
    Type: Application
    Filed: May 3, 2019
    Publication date: August 22, 2019
    Applicant: CELONOVA BIOSCIENCES, INC.
    Inventors: Michael J. LEE, Stuart Earl KARI, Riley KING
  • Patent number: 10327926
    Abstract: There is disclosed an implantable medical stent system, including: a radially expandable stent comprising a filamental structure in a pattern surrounding a bore to form a substantially tubular wall along a length relative to a longitudinal axis; in which the filamental structure includes at least one arcuate crown with a crown peak having a radius of curvature located along a reference axis, and first and second arcuate crown shoulders on first and second sides, respectively, of the reference axis; in which the filamental structure also includes at least one pair of first and second elongated struts extending from the first and second crown shoulders, respectively; the first and second elongated struts have a region of constant maximum width at an intermediate portion and tapering toward the first and second crown shoulders.
    Type: Grant
    Filed: August 11, 2016
    Date of Patent: June 25, 2019
    Assignee: CELONOVA BIOSCIENCES, INC.
    Inventors: Michael J. Lee, Stuart Earl Karl, Riley King
  • Patent number: 10285968
    Abstract: The present disclosure relates to drug eluting devices, and their uses. The drug eluting devices can allow for perfusion during deployment. The coatings the may contain bioactive materials which elute once deployed in a patient and can have anti-proliferative, anti-inflammation, or anti-thrombotic effects. Sol gel technology can be used to coat the devices.
    Type: Grant
    Filed: March 13, 2018
    Date of Patent: May 14, 2019
    Assignee: CELONOVA BIOSCIENCES, INC.
    Inventors: Richard Klein, John Birtles, John Koos, Michael J. Lee
  • Publication number: 20180280004
    Abstract: Aspects of the present invention are generally directed to a biopsy device configured to engage target tissue within a patient and to remove a sample of the target tissue from the patient. The biopsy device comprises an elongate catheter configured to be inserted into a patient. A coring component is disposed at the distal end of the catheter to sample the target tissue.
    Type: Application
    Filed: June 7, 2018
    Publication date: October 4, 2018
    Inventors: Michael J. Lee, William S. Krimsky, Brad A. Snow
  • Publication number: 20180228610
    Abstract: Systems, devices and methods related to various heart valve implants and for delivery of those implants are described. The implants may be used to re-size a native valve annulus or to replace a native heart valve. The implants include a re-sizable frame having angled struts. The implant is secured to tissue with anchors that can rotate without axial advancement to engage tissue while drawing the implant closer to the tissue. Collars are used to decrease the angle between struts of a frame to contract the implant. The implants can include a rotatable shaft, such as a threaded shaft, located internally to an axially translatable collar. Rotation of the shaft transmits force to the collar to cause the collar to translate axially, closing the angle of adjacent struts and decreasing the width of the implant and thus of the annulus. The implants can be delivered, secured and contracted via a catheter. The implants are repositionable and retrievable via catheter.
    Type: Application
    Filed: February 9, 2018
    Publication date: August 16, 2018
    Inventors: Randall Lashinski, Kristian Kristoffersen, Matthew Rust, Richard Glenn, Michael J. Lee, Patrick E. Macaulay
  • Publication number: 20180200222
    Abstract: The present disclosure relates to drug eluting devices, and their uses. The drug eluting devices can allow for perfusion during deployment. The coatings the may contain bioactive materials which elute once deployed in a patient and can have anti-proliferative, anti-inflammation, or anti-thrombotic effects. Sol gel technology can be used to coat the devices.
    Type: Application
    Filed: March 13, 2018
    Publication date: July 19, 2018
    Applicant: CELONOVA BIOSCIENCES, INC.
    Inventors: Richard KLEIN, John BIRTLES, John KOOS, Michael J. LEE
  • Patent number: 9949944
    Abstract: The present disclosure relates to drug eluting devices, and their uses. The drug eluting devices can allow for perfusion during deployment. The coatings the may contain bioactive materials which elute once deployed in a patient and can have anti-proliferative, anti-inflammation, or anti-thrombotic effects. Sol gel technology can be used to coat the devices.
    Type: Grant
    Filed: July 17, 2015
    Date of Patent: April 24, 2018
    Assignee: CELONOVA BIOSCIENCES, INC.
    Inventors: Richard Klein, John Birtles, John Koos, Michael J. Lee
  • Publication number: 20180092736
    Abstract: Described are methods and apparatus for use in supporting tissue in a patient's body. In some embodiments, the patient's breast or another tissue is supported. One method involves introducing a superior soft tissue anchor into a patient, the anchor having an inferiorly facing total surface area; and introducing at least one inferior soft tissue anchor into the patient, such that the at least one inferior soft tissue anchor is suspended from the superior soft tissue anchor, the sum of all of the at least one inferior soft tissue anchors having a superiorly facing total surface area. The inferiorly facing total surface area of the superior anchor can be greater, such as at least two times greater than the superiorly facing total surface area of the at least one inferior anchor.
    Type: Application
    Filed: September 15, 2017
    Publication date: April 5, 2018
    Inventors: Michael J. Lee, Randall Lashinski, Gordon Bishop, Anthony Beatty, Jasper Benke, Alexe Calarasu, Jeremy Kinkade, Sean Saint, Heather Hardy
  • Patent number: 9894399
    Abstract: Example systems and methods to determine media effectiveness are disclosed. An example system includes a synchronizer to time shift first neuro-response data gathered from an audience member exposed to media a first amount to align the first neuro-response data with second neuro-response data simultaneously gathered from the audience member to form aligned data, the first neuro-response data representing a first response to a first sensory component of the media and the second neuro-response data representing a second response to a second sensory component of media. The synchronizer is to time shift the second neuro-response data a second amount. The first amount is based on a first cognitive delay of a brain of the audience member and the second amount is based on a second cognitive delay of the brain. The example system includes an analyzer to determine an effectiveness of the media based on the aligned data.
    Type: Grant
    Filed: January 6, 2017
    Date of Patent: February 13, 2018
    Assignee: The Nielsen Company (US), LLC
    Inventors: Hans C. Lee, Timmie T. Hong, Michael J. Lee
  • Patent number: 9763770
    Abstract: Described are methods and apparatus for use in supporting tissue in a patient's body. In some embodiments, the patient's breast or another tissue is supported. One method involves introducing a superior soft tissue anchor into a patient, the anchor having an inferiorly facing total surface area; and introducing at least one inferior soft tissue anchor into the patient, such that the at least one inferior soft tissue anchor is suspended from the superior soft tissue anchor, the sum of all of the at least one inferior soft tissue anchors having a superiorly facing total surface area. The inferiorly facing total surface area of the superior anchor can be greater, such as at least two times greater than the superiorly facing total surface area of the at least one inferior anchor.
    Type: Grant
    Filed: December 27, 2015
    Date of Patent: September 19, 2017
    Assignee: Sinclair Pharmaceuticals Limited
    Inventors: Michael J. Lee, Randall Lashinski, Gordon Bishop, Anthony Beatty, Jasper Benke, Alexe Calarasu, Jeremy Kinkade, Sean Saint, Heather Hardy
  • Patent number: 9704568
    Abstract: Embodiments herein describe a SRAM that selectively flips received chunks of data from a high power state to a low power state before storing the chunks of data. The SRAM generates a flip bit for each of the data chunks stored in memory. The state of the flip bit varies depending on whether the corresponding data chunk was flipped before being stored in the SRAM. In one embodiment, the SRAM flips the bits in a data chunk before storing the bits only if all the bits are in the high power state. If so, the SRAM sets the flip bit for the data chunk to a first state and changes all the bits to the low power state before storing the data chunk. If not, the SRAM sets the flip bit to a second state and stores the data chunk without changing the states of the bits.
    Type: Grant
    Filed: September 2, 2016
    Date of Patent: July 11, 2017
    Assignee: INTERNATIONAL BUSINESS MACHINES CORPORATION
    Inventors: Michael J. Lee, Geoffrey Wang