Patents by Inventor Brian GINN

Brian GINN 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: 20200157493
    Abstract: A engineered textile construction includes a first textile having a first average pore size forming a textile cell growth matrix in which the first textile is a woven or a knit construction, the textile cell growth matrix is configured to have a surface area sufficient to promote cell expansion and the first average pore size is preselected to prevent filling of the pores during cell expansion.
    Type: Application
    Filed: November 21, 2019
    Publication date: May 21, 2020
    Inventors: Brian GINN, Peter D. GABRIELE, Jeremy J. HARRIS, Amanda K. WEBER
  • Publication number: 20200139330
    Abstract: A method of forming cured microparticles includes providing a poly(glycerol sebacate) resin in an uncured state. The method also includes forming the composition into a plurality of uncured microparticles and curing the uncured microparticles to form the plurality of cured microparticles. The uncured microparticles are free of a photo-induced crosslinker. A method of forming a scaffold includes providing microparticles including poly(glycerol sebacate) in a three-dimensional arrangement. The method also includes stimulating the microparticles in the three-dimensional arrangement to sinter the microparticles, thereby forming the scaffold having a plurality of pores. A scaffold is formed of a plurality of microparticles including a poly(glycerol sebacate) thermoset resin in a three-dimensional arrangement. The scaffold has a plurality of pores.
    Type: Application
    Filed: January 6, 2020
    Publication date: May 7, 2020
    Inventors: Steven LU, Peter D. GABRIELE, Julia DONNELLY, Brian GINN, Charles Brendan NICHOLSON, Jeremy J. HARRIS, Michael S. FLEMMENS
  • Patent number: 10556217
    Abstract: A method of forming cured microparticles includes providing a poly(glycerol sebacate) resin in an uncured state. The method also includes forming the composition into a plurality of uncured microparticles and curing the uncured microparticles to form the plurality of cured microparticles. The uncured microparticles are free of a photo-induced crosslinker. A method of forming a scaffold includes providing microparticles including poly(glycerol sebacate) in a three-dimensional arrangement. The method also includes stimulating the microparticles in the three-dimensional arrangement to sinter the microparticles, thereby forming the scaffold having a plurality of pores. A scaffold is formed of a plurality of microparticles including a poly(glycerol sebacate) thermoset resin in a three-dimensional arrangement. The scaffold has a plurality of pores.
    Type: Grant
    Filed: March 30, 2018
    Date of Patent: February 11, 2020
    Assignee: THE SECANT GROUP, LLC
    Inventors: Steven Lu, Peter D. Gabriele, Julia Donnelly, Brian Ginn, Charles Brendan Nicholson, Jeremy J. Harris, Michael S. Flemmens
  • Publication number: 20190231890
    Abstract: A bone filling composition includes a bone filler. The bone filler includes microparticles of at least one elastomeric material. The at least one elastomeric material includes a poly(glycerol sebacate)-based thermoset. The poly(glycerol sebacate)-based thermoset may be porous thermoset poly(glycerol sebacate) flour, thermoset poly(glycerol sebacate) microspheres, or a combination thereof. In some embodiments, the bone filling composition is a bone filling composite that further includes a carrier material including a poly(glycerol sebacate) resin. A method of forming a bone filling composite includes selecting a bone filler and mixing the bone filler with a carrier material to form the bone filling composite. A method of treating a bony defect includes molding a bone filling composite and placing the bone filling composite in the bony defect. The bone filling composite includes a bone filler mixed with a carrier material.
    Type: Application
    Filed: January 31, 2019
    Publication date: August 1, 2019
    Inventors: Jeremy J. HARRIS, Charles Brendan NICHOLSON, Peter D. GABRIELE, Jared ELY, Brian GINN
  • Publication number: 20190218506
    Abstract: A pH-modulating poly(glycerol sebacate) composition includes poly(glycerol sebacate) and at least one pH-modulating agent associated with the poly(glycerol sebacate). A process of making a pH-modulating poly(glycerol sebacate) composition includes forming a poly(glycerol sebacate) by a water-mediated reaction from glycerol and sebacic acid and associating at least one pH-modulating agent with the poly(glycerol sebacate). A process of modulating a pH of a buffered aqueous solution includes placing a pH-modulating poly(glycerol sebacate) composition in a buffered aqueous solution. The pH-modulating agent is released into the buffered aqueous solution during degradation of the poly(glycerol sebacate) to reduce a decrease in pH of the buffered aqueous solution caused by degradation of the poly(glycerol sebacate).
    Type: Application
    Filed: January 17, 2019
    Publication date: July 18, 2019
    Inventors: Peter D. GABRIELE, Jeremy J. HARRIS, Charles Brendan NICHOLSON, Steven LU, Brian GINN
  • Publication number: 20180280912
    Abstract: A method of forming cured microparticles includes providing a poly(glycerol sebacate) resin in an uncured state. The method also includes forming the composition into a plurality of uncured microparticles and curing the uncured microparticles to form the plurality of cured microparticles. The uncured microparticles are free of a photo-induced crosslinker. A method of forming a scaffold includes providing microparticles including poly(glycerol sebacate) in a three-dimensional arrangement. The method also includes stimulating the microparticles in the three-dimensional arrangement to sinter the microparticles, thereby forming the scaffold having a plurality of pores. A scaffold is formed of a plurality of microparticles including a poly(glycerol sebacate) thermoset resin in a three-dimensional arrangement. The scaffold has a plurality of pores.
    Type: Application
    Filed: March 30, 2018
    Publication date: October 4, 2018
    Inventors: Steven LU, Peter D. GABRIELE, Julia DONNELLY, Brian GINN, Charles Brendan NICHOLSON, Jeremy J. HARRIS, Michael S. FLEMMENS
  • Patent number: 5241469
    Abstract: A method and apparatus which include a special purpose cable and printed circuit board adapted for use with and installation in a personal computer for the specific purpose of automated acquisition and processing of analog spirometry and temperature data. The cable has on one end an interchangeable connector that is plugged into a volumetric spirometer. A temperature sensor is placed within the body of the connector and external to the sheaths of the cable and transmits analog data to the board via lines within the sheaths of the cable. The board provides an excitation voltage signal via the cable to the volumetric spirometer and receives analog data from the spirometer. The board then filters the analog spirometry and temperature data and alternately switches the data to an A/D converter by virtue of a signal selector. The A/D converter is enabled by the output of a comparing address and clocked by a frequency divided signal provided by a timing device.
    Type: Grant
    Filed: July 25, 1990
    Date of Patent: August 31, 1993
    Assignee: Micro Development Technologies, Inc.
    Inventors: Rodger C. Nelson, F. Brian Ginn