Patents by Inventor Thomas S. Wilson

Thomas S. Wilson 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: 11459439
    Abstract: An embodiment includes a system comprising: a monolithic shape memory polymer (SMP) foam having first and second states; wherein the SMP foam includes: (a) polyurethane, (b) an inner half portion having inner reticulated cells defined by inner struts, (c) an outer half portion, having outer reticulated cells defined by outer struts, surrounding the inner portion in a plane that provides a cross-section of the SMP foam, (d) hydroxyl groups chemically bound to outer surfaces of both the inner and outer struts. Other embodiments are discussed herein.
    Type: Grant
    Filed: August 4, 2020
    Date of Patent: October 4, 2022
    Assignees: Lawrence Livermore National Security, LLC, The Texas A&M University System
    Inventors: Landon D. Nash, Duncan J. Maitland, Nicole Docherty, Thomas S. Wilson, Ward Small, IV, Jason Ortega, Pooja Singhal
  • Patent number: 11453740
    Abstract: New shape memory polymer compositions, methods for synthesizing new shape memory polymers, and apparatus comprising an actuator and a shape memory polymer wherein the shape memory polymer comprises at least a portion of the actuator. A shape memory polymer comprising a polymer composition which physically forms a network structure wherein the polymer composition has shape-memory behavior and can be formed into a permanent primary shape, re-formed into a stable secondary shape, and controllably actuated to recover the permanent primary shape. Polymers have optimal aliphatic network structures due to minimization of dangling chains by using monomers that are symmetrical and that have matching amine and hydroxl groups providing polymers and polymer foams with clarity, tight (narrow temperature range) single transitions, and high shape recovery and recovery force that are especially useful for implanting in the human body.
    Type: Grant
    Filed: December 23, 2019
    Date of Patent: September 27, 2022
    Assignee: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
    Inventors: Thomas S. Wilson, Jane P. Bearinger
  • Publication number: 20220288822
    Abstract: Polymeric based closed cell foams, such as shape memory polymer foams, contain bubbles. Making these bubbles continuous is called reticulation. Disclosed are embodiments of a device and method to controllably reticulate polymer-based closed cell foams by puncturing the membranes of these polymer-based closed cell foams.
    Type: Application
    Filed: May 24, 2022
    Publication date: September 15, 2022
    Inventors: Jennifer N. Rodriguez, Duncan J. Maitland, Thomas S. Wilson
  • Patent number: 11376009
    Abstract: A system for occluding a physical anomaly. One embodiment comprises a shape memory material body wherein the shape memory material body fits within the physical anomaly occluding the physical anomaly. The shape memory material body has a primary shape for occluding the physical anomaly and a secondary shape for being positioned in the physical anomaly.
    Type: Grant
    Filed: April 3, 2020
    Date of Patent: July 5, 2022
    Assignee: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
    Inventors: Thomas S. Wilson, Duncan J. Maitland
  • Patent number: 11345067
    Abstract: Polymeric based closed cell foams, such as shape memory polymer foams, contain bubbles. Making these bubbles continuous is called reticulation. Disclosed are embodiments of a device and method to controllably reticulate polymer-based closed cell foams by puncturing the membranes of these polymer-based closed cell foams.
    Type: Grant
    Filed: May 8, 2020
    Date of Patent: May 31, 2022
    Assignees: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC, THE TEXAS A&M UNIVERSITY SYSTEM
    Inventors: Jennifer N. Rodriguez, Duncan J. Maitland, Thomas S. Wilson
  • Publication number: 20220153888
    Abstract: A polyolefin-based ink for additive manufacturing includes a polyolefin copolymer having a molecular weight no more than five times the entanglement molecular weight of the polyolefin copolymer, wherein the polyolefin copolymer comprises at least one type of functional group for crosslinking. A product of additive manufacturing with a polyolefin-based ink includes a three-dimensional structure including an extruded continuous filament arranged in a predefined pattern. The continuous filament includes a polyolefin matrix having a microstructure, where the microstructure is retained after curing.
    Type: Application
    Filed: November 13, 2020
    Publication date: May 19, 2022
    Inventors: Thomas S. Wilson, Alexandra Melody Golobic, Jeremy M. Lenhardt, Spencer Schmidt
  • Publication number: 20220064463
    Abstract: A product of additive manufacturing with a silicone-based ink includes a plurality of continuous filaments comprised of a siloxane matrix, wherein the continuous filaments are arranged in a geometric pattern, a plurality of inter-filament pores defined by the geometric pattern of the continuous filaments, and a plurality of intra-filament pores having an average diameter in a range of greater than 1 micron to less than 50 microns.
    Type: Application
    Filed: October 12, 2021
    Publication date: March 3, 2022
    Inventors: Lemuel Perez Perez, Eric B. Duoss, Jeremy Lenhardt, Thomas S. Wilson
  • Publication number: 20220064481
    Abstract: A product includes a porous three-dimensional printed structure having printed filaments arranged in a geometric pattern. The printed filaments include a material having a plurality of gas-filled microballoons. The printed structure has hierarchical porosity including an inter-filament porosity defined by the arrangement of the printed filaments, and an intra-filament porosity of the material. The intra-filament porosity is defined by the plurality of gas-filled microballoons in the material of the printed filament.
    Type: Application
    Filed: November 9, 2021
    Publication date: March 3, 2022
    Inventors: Jennifer Nicole Rodriguez, Eric B. Duoss, Alexandra Golobic, Jeremy M. Lenhardt, Lemuel Perez Perez, Ward Small, IV, Thomas S. Wilson, Amanda Wu, Timothy Dexter Yee, Stephanie Schulze
  • Publication number: 20220022883
    Abstract: A system for treating an aneurysm in a blood vessel or vein, wherein the aneurysm has a dome, an interior, and a neck. The system includes a shape memory polymer foam in the interior of the aneurysm between the dome and the neck. The shape memory polymer foam has pores that include a first multiplicity of pores having a first pore size and a second multiplicity of pores having a second pore size. The second pore size is larger than said first pore size. The first multiplicity of pores are located in the neck of the aneurysm. The second multiplicity of pores are located in the dome of the aneurysm.
    Type: Application
    Filed: October 7, 2021
    Publication date: January 27, 2022
    Inventors: Jason M. Ortega, William J. Benett, Ward Small, Thomas S. Wilson, Duncan J. Maitland, Jonathan Hartman
  • Publication number: 20210393849
    Abstract: Implant devices and structures that reduce inflammation and promote healing of the area of implant. Specifically, the use of shape memory open cell biocompatible polymer foams for implants that assist in and promote healing and especially in filling and sealing aneurisms.
    Type: Application
    Filed: May 3, 2021
    Publication date: December 23, 2021
    Inventors: Duncan J. Maitland, Thomas S. Wilson
  • Patent number: 11180670
    Abstract: According to one embodiment, a silicone-based ink for additive manufacturing includes a vinyl-terminated diphenyl siloxane macromer, a treated silica hydrophobic reinforcing filler, a rheology modifying additive, and a plurality of porogen particles. According to another embodiment, a product of additive manufacturing with a silicone-based ink includes a plurality of continuous filaments comprised of a siloxane matrix, where the continuous filaments are arranged in a geometric pattern, a plurality of inter-filament pores defined by the geometric pattern of the continuous filaments, and a plurality of intra-filament pores having an average diameter in a range of greater than 1 micron to less than 50 microns.
    Type: Grant
    Filed: March 28, 2019
    Date of Patent: November 23, 2021
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Lemuel Perez Perez, Eric B. Duoss, Jeremy Lenhardt, Thomas S. Wilson
  • Publication number: 20210338880
    Abstract: An embodiment includes a wound dressing comprising: a shape memory polymer (SMP) foam, including open cells, having first and second states; and a hydrogel (HG) included within the cells; wherein (a) in a first position a composite, including the SMP foam and the HG, is configured to be located proximate a hemorrhagic tissue with the SMP foam in the first state; (b) in a second position the composite is configured to be expanded to the second state against the hemorrhagic tissue when the SMP foam is plasticized at 37° C. depressing a glass transition temperature (Tg) of the SMP foam to below 25° C. Other embodiments are described herein.
    Type: Application
    Filed: June 1, 2021
    Publication date: November 4, 2021
    Inventors: Duncan J. Maitland, Todd Lawrence Landsman, Tyler Joseph Touchet, Elizabeth L. Cosgriff-Hernandez, Thomas S. Wilson
  • Patent number: 11141164
    Abstract: A system for treating an aneurysm in a blood vessel or vein, wherein the aneurysm has a dome, an interior, and a neck. The system includes a shape memory polymer foam in the interior of the aneurysm between the dome and the neck. The shape memory polymer foam has pores that include a first multiplicity of pores having a first pore size and a second multiplicity of pores having a second pore size. The second pore size is larger than said first pore size. The first multiplicity of pores are located in the neck of the aneurysm. The second multiplicity of pores are located in the dome of the aneurysm.
    Type: Grant
    Filed: May 18, 2017
    Date of Patent: October 12, 2021
    Assignees: Lawrence Livermore National Security, LLC, The Texas A&M University System
    Inventors: Jason M. Ortega, William J. Benett, Ward Small, Thomas S. Wilson, Duncan J. Maitland, Jonathan Hartman
  • Patent number: 11109869
    Abstract: An embodiment of the invention is a shape memory polymer (SMP) foam designed to recover its original shape through exposure to a solvent. Thermo-responsive SMPs are polymers designed to maintain a programmed secondary shape until heated above their transition temperature, upon which the polymer recovers its original, or primary, shape. The thermo-responsive SMP foam is programmed to its secondary shape prior to use, typically compression of the foam to a small volume, and remains in this programmed shape until exposed to a selected solvent such as dimethyl sulfoxide or ethyl alcohol. Upon exposure to the solvent, the transition temperature of the SMP foam decreases below the temperature of the environment and the SMP foam actuates to its primary shape. The SMP foam is tailored to actuate upon exposure to specific solvents while minimizing or preventing actuation when exposed to water or other solvents.
    Type: Grant
    Filed: January 30, 2020
    Date of Patent: September 7, 2021
    Assignees: Lawrence Livermore National Security, LLC, The Texas A&M University System
    Inventors: Anthony Boyle, Keith Hearon, Duncan J. Maitland, Landon D. Nash, Thomas S. Wilson
  • Publication number: 20210269659
    Abstract: The silicone-based ink for additive manufacturing includes a siloxane macromer, and a porogen mixture comprising a water-soluble porogen and a surfactant. The product of additive manufacturing with a silicone-based ink includes a three-dimensional printed structure including a plurality of continuous filaments arranged in a predefined pattern and a plurality of inter-filament pores defined by the predefined pattern of the continuous filaments. In addition, each continuous filament of the three-dimensional printed structure includes a silicone matrix having an open cell structure with a plurality of intra-filament pores, and the intra-filament pores form continuous channels through the silicone matrix.
    Type: Application
    Filed: February 28, 2020
    Publication date: September 2, 2021
    Inventors: Du Nguyen, Eric Duoss, Jeremy Lenhardt, Thomas S. Wilson
  • Patent number: 11034131
    Abstract: A three-dimensionally patterned energy absorptive material and fabrication method having multiple layers of patterned filaments extrusion-formed from a curable pre-cursor material and stacked and cured in a three-dimensionally patterned architecture so that the energy absorptive material produced thereby has an engineered bulk property associated with the three-dimensionally patterned architecture.
    Type: Grant
    Filed: March 2, 2018
    Date of Patent: June 15, 2021
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Eric B. Duoss, James M. Frank, Joshua Kuntz, Robert S. Maxwell, Thomas R. Metz, Christopher Spadaccini, Thomas S. Wilson
  • Patent number: 11020507
    Abstract: An embodiment includes a wound dressing comprising: a shape memory polymer (SMP) foam, including open cells, having first and second states; and a hydrogel (HG) included within the cells; wherein (a) in a first position a composite, including the SMP foam and the HG, is configured to be located proximate a hemorrhagic tissue with the SMP foam in the first state; (b) in a second position the composite is configured to be expanded to the second state against the hemorrhagic tissue when the SMP foam is plasticized at 37° C. depressing a glass transition temperature (Tg) of the SMP foam to below 25° C. Other embodiments are described herein.
    Type: Grant
    Filed: March 14, 2019
    Date of Patent: June 1, 2021
    Assignees: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC, THE TEXAS A&M UNIVERSITY SYSTEM
    Inventors: Duncan J. Maitland, Todd Lawrence Landsman, Tyler Joseph Touchet, Elizabeth L. Cosgriff-Hernandez, Thomas S. Wilson
  • Publication number: 20210137527
    Abstract: An embodiment of the invention includes an expandable implant to endovascularly embolize an anatomical void or malformation, such as an aneurysm. An embodiment is comprised of a chain or linked sequence of expandable polymer foam elements. Another embodiment includes an elongated length of expandable polymer foam coupled to a backbone. Another embodiment includes a system for endovascular delivery of an expandable implant (e.g., shape memory polymer) to embolize an aneurysm. The system may include a microcatheter, a lumen-reducing collar coupled to the distal tip of the microcatheter, a flexible pushing element detachably coupled to an expandable implant, and a flexible tubular sheath inside of which the compressed implant and pushing element are pre-loaded. Other embodiments are described herein.
    Type: Application
    Filed: January 22, 2021
    Publication date: May 13, 2021
    Inventors: Thomas S. Wilson, Ward Small, IV, William J. Benett, Jason M. Ortega, Duncan J. Maitland, Jonathan Hartman
  • Publication number: 20210070918
    Abstract: This invention relates to chemical polymer compositions, methods of synthesis, and fabrication methods for devices regarding polymers capable of displaying shape memory behavior (SMPs) and which can first be polymerized to a linear or branched polymeric structure, having thermoplastic properties, subsequently processed into a device through processes typical of polymer melts, solutions, and dispersions and then crossed linked to a shape memory thermoset polymer retaining the processed shape.
    Type: Application
    Filed: December 2, 2019
    Publication date: March 11, 2021
    Inventors: Thomas S. Wilson, Michael Keith Hearon, Jane P. Bearinger
  • Publication number: 20210022847
    Abstract: A stent for treating a physical anomaly. The stent includes a skeletal support structure for expanding in the physical anomaly and a shape memory material coupled to the skeletal support structure.
    Type: Application
    Filed: October 14, 2020
    Publication date: January 28, 2021
    Inventors: Thomas S. Wilson, Duncan J. Maitland, Ward Small, IV, Patrick R. Buckley, William J. Benett, Jonathan Hartman, David Saloner