Patents by Inventor Bruce L. Anneaux

Bruce L. Anneaux 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: 20160081783
    Abstract: The present disclosure provides composite prosthetic devices comprising two or more layers of electrospun polymers and methods of preparation thereof. In some embodiments, the two or more layers can be porous and in other embodiments, one or more components is nonporous. The composite prosthetic devices can comprise various materials and the properties of the prosthetic devices can be tailored for use in a range of different applications.
    Type: Application
    Filed: October 22, 2014
    Publication date: March 24, 2016
    Inventors: Sabrina D. Puckett, Joshua Manasco, Robert L. Ballard, Bruce L. Anneaux
  • Publication number: 20160067374
    Abstract: The present disclosure provides composite prosthetic devices comprising two or more layers of electrospun polymers and methods of preparation thereof. In some embodiments, the two or more layers can be porous and in other embodiments, one or more components is nonporous. The composite prosthetic devices can comprise various materials and the properties of the prosthetic devices can be tailored for use in a range of different applications.
    Type: Application
    Filed: September 18, 2015
    Publication date: March 10, 2016
    Inventors: Sabrina D. Puckett, Joshua L. Manasco, Robert L. Ballard, Bruce L. Anneaux
  • Publication number: 20160060797
    Abstract: An improved process for forming a PTFE mat is described. The process includes providing a dispersion with PTFE, a fiberizing polymer and a solvent wherein said dispersion has a viscosity of at least 50,000 cP. An apparatus is provided which comprises a charge source and a target a distance from the charge source. A voltage source is provided which creates a first charge at the charge source and an opposing charge at the target. The dispersion is electrostatically charged by contact with the charge source. The electrostatically charged dispersion is collected on the target to form a mat precursor which is heated to remove the solvent and the fiberizing polymer thereby forming the PTFE mat.
    Type: Application
    Filed: September 18, 2015
    Publication date: March 3, 2016
    Inventors: Bruce L. Anneaux, Robert L. Ballard, David P. Garner
  • Publication number: 20160032505
    Abstract: An improved process for forming a PTFE mat is described. The process includes providing a dispersion with PTFE, a fiberizing polymer and a solvent wherein said dispersion has a viscosity of at least 50,000 cP. An apparatus is provided which comprises a charge source and a target a distance from the charge source. A voltage source is provided which creates a first charge at the charge source and an opposing charge at the target. The dispersion is electrostatically charged by contact with the charge source. The electrostatically charged dispersion is collected on the target to form a mat precursor which is heated to remove the solvent and the fiberizing polymer thereby forming the PTFE mat.
    Type: Application
    Filed: October 21, 2015
    Publication date: February 4, 2016
    Inventors: Bruce L. Anneaux, Robert L. Ballard, David P. Garner
  • Publication number: 20160030154
    Abstract: In accordance with certain embodiments of the present disclosure, a process of forming a prosthetic device is provided. The process includes forming a dispersion of polymeric nanofibers, a fiberizing polymer, and a solvent, the dispersion having a viscosity of at least about 50,000 cPs. A tubular frame is positioned over a tubular polymeric structure. Nanofibers from the dispersion are electrospun onto the tubular frame to form a prosthetic device. The prosthetic device is heated.
    Type: Application
    Filed: September 18, 2015
    Publication date: February 4, 2016
    Inventors: Bruce L. Anneaux, Robert L. Ballard
  • Publication number: 20160002430
    Abstract: An improved process for forming a PTFE mat is described. The process includes providing a dispersion with PTFE, a fiberizing polymer and a solvent wherein said dispersion has a viscosity of at least 50,000 cP. An apparatus is provided which comprises a charge source and a target a distance from the charge source. A voltage source is provided which creates a first charge at the charge source and an opposing charge at the target. The dispersion is electrostatically charged by contact with the charge source. The electrostatically charged dispersion is collected on the target to form a mat precursor which is heated to remove the solvent and the fiberizing polymer thereby forming the PTFE mat.
    Type: Application
    Filed: September 17, 2015
    Publication date: January 7, 2016
    Inventors: Bruce L. Anneaux, Robert L. Ballard, David P. Garner
  • Publication number: 20150354732
    Abstract: A heat shrink tubing, which can be readily peeled in the longitudinal direction after use (e.g., to remove the heat shrink tubing from an underlying material) is provided herein. The heat shrink tubing can be of various compositions, and generally is produced from at least one fluorinated, copolymeric resin. The tubing can exhibit desirable physical properties such as good optical clarity (e.g., translucency or transparency) and/or peelability, exhibiting one or more of complete, straight, and even peeling along a given length of tubing.
    Type: Application
    Filed: June 29, 2015
    Publication date: December 10, 2015
    Inventors: Irina Puzdrjakova Roof, Brian Robert Tomblin, Zeth Eberling, Bruce L. Anneaux, Douglas Lee Tourville
  • Publication number: 20150352319
    Abstract: A heat shrink tubing, which can be readily peeled in the longitudinal direction after use (e.g., to remove the heat shrink tubing from an underlying material) is provided herein. The heat shrink tubing can be of various compositions, and generally is produced from at least one fluorinated, copolymeric resin. The tubing can exhibit desirable physical properties such as good optical clarity (e.g., translucency or transparency) and/or peelability, exhibiting one or more of complete, straight, and even peeling along a given length of tubing.
    Type: Application
    Filed: June 5, 2015
    Publication date: December 10, 2015
    Inventors: Irina Puzdrjakova Roof, Brian Robert Tomblin, Zeth Eberling, Bruce L. Anneaux, Douglas Lee Tourville
  • Publication number: 20150183940
    Abstract: An improved process for forming a PTFE mat is described. The process includes providing a dispersion with PTFE, a fiberizing polymer and a solvent wherein said dispersion has a viscosity of at least 50,000 cP. An apparatus is provided which comprises a charge source and a target a distance from the charge source. A voltage source is provided which creates a first charge at the charge source and an opposing charge at the target. The dispersion is electrostatically charged by contact with the charge source. The electrostatically charged dispersion is collected on the target to form a mat precursor which is heated to remove the solvent and the fiberizing polymer thereby forming the PTFE mat.
    Type: Application
    Filed: March 3, 2015
    Publication date: July 2, 2015
    Inventors: Bruce L. Anneaux, Robert L. Ballard, David P. Garner
  • Publication number: 20150182668
    Abstract: A stent or other prosthesis may be formed by encapsulating a scaffold or frame with a polymer coating. The polymer coating may consist of layers of electrospun polytetrafluoroethylne (PTFE). Electrospun PTFE of certain porosities may permit endothelial cell growth within the prosthesis. The stent may be applicable to stents designed for the central venous system, peripheral vascular stents, abdominal aortic aneurism stents, bronchial stents, esophageal stents, biliary stents, or any other stent.
    Type: Application
    Filed: February 26, 2015
    Publication date: July 2, 2015
    Inventors: Robert L. Ballard, Bruce L. Anneaux, Sabrina D. Puckett, Joshua L. Manasco, David P. Garner
  • Publication number: 20150165667
    Abstract: An improved process for forming a polymer mat is described. The process of electrospinning polymer fibers includes providing an apparatus having a charge source, a target a distance from the charged source and a slot die having a spinning edge with a slit. The spinning edge has a radius of curvature between 5 cm and 100 cm. The method further includes providing a polymeric preparation (solution, dispersion, suspension, or melt) to the slot die and applying an electric field to a part or the whole apparatus or polymeric preparation. When the electric field is applied, a plurality of Taylor cones are produced with jets that stretch the polymeric preparation into a fibrous structure that can be collected on a target surface.
    Type: Application
    Filed: December 18, 2014
    Publication date: June 18, 2015
    Inventors: Robert L. Ballard, Bruce L. Anneaux, Shannon Giovannini, Joshua L. Manasco, Zahidul Wahab
  • Patent number: 9034031
    Abstract: In accordance with certain embodiments of the present disclosure, a process of forming a prosthetic device is provided. The process includes forming a dispersion of polymeric nanofibers, a fiberizing polymer, and a solvent, the dispersion having a viscosity of at least about 50,000 cPs. A tubular frame is positioned over a tubular polymeric structure. Nanofibers from the dispersion are electrospun onto the tubular frame to form a prosthetic device. The prosthetic device is heated.
    Type: Grant
    Filed: August 2, 2012
    Date of Patent: May 19, 2015
    Assignee: Zeus Industrial Products, Inc.
    Inventors: Bruce L. Anneaux, Robert L. Ballard
  • Patent number: 8992602
    Abstract: In accordance with certain embodiments of the present disclosure, a process of forming a prosthetic device is provided. The process includes forming a dispersion of polymeric nanofibers, a fiberizing polymer, and a solvent, the dispersion having a viscosity of at least about 50,000 cPs. A tubular frame is positioned over a tubular polymeric structure. Nanofibers from the dispersion are electrospun onto the tubular frame to form a prosthetic device. The prosthetic device is heated.
    Type: Grant
    Filed: August 2, 2012
    Date of Patent: March 31, 2015
    Assignee: Zeus Industrial Products, Inc.
    Inventors: Bruce L. Anneaux, Robert L. Ballard
  • Publication number: 20150012108
    Abstract: In accordance with certain embodiments of the present disclosure, a process for forming a multilayered electrospun composite is provided. The process includes forming a dispersion of polymeric nanofibers, a fiberizing polymer, and a solvent, the dispersion having a viscosity of at least about 50,000 cPs. Nanofibers from the dispersion are electrospun onto a first ePTFE layer. A second ePTFE layer is applied onto the nanofibers to form a composite structure. The composite structure is heated.
    Type: Application
    Filed: July 15, 2014
    Publication date: January 8, 2015
    Inventors: Bruce L. Anneaux, Robert L. Ballard, David P. Garner
  • Publication number: 20150011139
    Abstract: An improved process for forming a PTFE mat is described. The process includes providing a dispersion with PTFE, a fiberizing polymer and a solvent wherein said dispersion has a viscosity of at least 50,000 cP. An apparatus is provided which comprises a charge source and a target a distance from the charge source. A voltage source is provided which creates a first charge at the charge source and an opposing charge at the target. The dispersion is electrostatically charged by contact with the charge source. The electrostatically charged dispersion is collected on the target to form a mat precursor which is heated to remove the solvent and the fiberizing polymer thereby forming the PTFE mat.
    Type: Application
    Filed: July 15, 2014
    Publication date: January 8, 2015
    Inventors: Bruce L. Anneaux, Robert L. Ballard, David P. Garner
  • Publication number: 20150012082
    Abstract: In accordance with certain embodiments of the present disclosure, a process of forming a prosthetic device is provided. The process includes forming a dispersion of polymeric nanofibers, a fiberizing polymer, and a solvent, the dispersion having a viscosity of at least about 50,000 cPs. A tubular frame is positioned over a tubular polymeric structure. Nanofibers from the dispersion are electrospun onto the tubular frame to form a prosthetic device. The prosthetic device is heated.
    Type: Application
    Filed: July 15, 2014
    Publication date: January 8, 2015
    Inventors: Bruce L. Anneaux, Robert L. Ballard
  • Publication number: 20140205642
    Abstract: A method of preparing antimicrobial-containing polymeric products is provided, the method involving electrospinning a dispersion comprising a dispersible polymer, a fiberizing polymer, and one or more antimicrobial agents. The electrospun material is heated to remove solvent and the fiberizing polymer, giving a nonwoven polymeric material having antimicrobial agent incorporated therein. The material can be in the form of, for example, a non-woven sheet, tube, or covering.
    Type: Application
    Filed: February 7, 2014
    Publication date: July 24, 2014
    Applicant: Zeus Industrial Products, Inc.
    Inventors: Robert L. Ballard, Bruce L. Anneaux, Joshua L. Manasco
  • Publication number: 20140205781
    Abstract: The present disclosure provides a composite material comprising a silicone component and an electrospun, porous polymeric component and methods of producing such a composite material. The layers are preferably processed so as to result in some degree of penetration of the silicone component into the pores of the electrospun polymeric component. The composite materials can be tailored for use in a range of different applications.
    Type: Application
    Filed: March 14, 2013
    Publication date: July 24, 2014
    Applicant: Zeus Industrial Products, Inc.
    Inventors: Robert L. Ballard, Bruce L. Anneaux, Joshua Manasco, Ping Hao, Jeffrey D. Moulton
  • Patent number: 8685424
    Abstract: A method of preparing antimicrobial-containing polymeric products is provided, the method involving electrospinning a dispersion comprising a dispersible polymer, a fiberizing polymer, and one or more antimicrobial agents. The electrospun material is heated to remove solvent and the fiberizing polymer, giving a nonwoven polymeric material having antimicrobial agent incorporated therein. The material can be in the form of, for example, a non-woven sheet, tube, or covering.
    Type: Grant
    Filed: October 13, 2011
    Date of Patent: April 1, 2014
    Assignee: Zeus Industrial Products, Inc.
    Inventors: Robert L. Ballard, Bruce L. Anneaux, Joshua L. Manasco
  • Publication number: 20130325109
    Abstract: In accordance with certain embodiments of the present disclosure, a process of forming a prosthetic device is provided. The process includes forming a dispersion of polymeric nanofibers, a fiberizing polymer, and a solvent, the dispersion having a viscosity of at least about 50,000 cPs. A tubular frame is positioned over a tubular polymeric structure. Nanofibers from the dispersion are electrospun onto the tubular frame to form a prosthetic device. The prosthetic device is heated.
    Type: Application
    Filed: August 2, 2013
    Publication date: December 5, 2013
    Applicant: Zeus Industrial Products, Inc.
    Inventors: Bruce L. Anneaux, Robert L. Ballard