Patents by Inventor Michael Darin Mason

Michael Darin Mason 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: 11708667
    Abstract: The present invention provides, inter alia, biocompatible porous structural materials made exclusively or almost exclusively from nanocellulose fibers (CNF), CNC, or bacterial cellulose, as well as processes for making and using provided compositions. Provided compositions may possess specifically tailored mechanical strength properties and have a design-controlled porosity that is homogeneous or graded, depending on the application. Provided compositions may be manufactured by the controlled dewatering of suspensions of CNF. In some embodiments, provided compositions may include a solids concentration of about 10% to about 95% by weight. Controlled water removal and pore homo- or heterogeneity may be accomplished by controlling capillary, hydrostatic and evaporative processes in the environment of a porous mold around the CNF slurry.
    Type: Grant
    Filed: November 11, 2020
    Date of Patent: July 25, 2023
    Assignee: University of Maine System Board of Trustees
    Inventors: Michael Darin Mason, David Gregg Holomakoff, Muhammad Radowan Hossen
  • Publication number: 20220403173
    Abstract: The present invention includes methods of making a nanocellulosic composition comprising one or more nanocellulosic components, wherein the one or more nanocellulosic components comprise a micron-scale cellulose or cellulose nanofibrils (CNF), the method comprising the steps of: creating a nanocellulosic slurry by combining the one or more of nanocellulosic components with a liquid component; and exposing the nanocellulosic slurry to a drying condition, wherein the drying condition comprises microwave radiation, thereby creating a nanocellulosic composition. The present invention also includes compositions comprising cellulose (nanocellulosic compositions), wherein the nanocellulosic compositions have an internal void space of about 5% to about 95% by volume.
    Type: Application
    Filed: October 28, 2020
    Publication date: December 22, 2022
    Inventors: Michael Darin Mason, Mehdi Tajvidi, Aileen Co, Seyed Ali Haji Mirza Tayeb, Islam Hafez, David Gregg Holomakoff
  • Publication number: 20210071366
    Abstract: The present invention provides, inter alia, biocompatible porous structural materials made exclusively or almost exclusively from nanocellulose fibers (CNF), CNC, or bacterial cellulose, as well as processes for making and using provided compositions. Provided compositions may possess specifically tailored mechanical strength properties and have a design-controlled porosity that is homogeneous or graded, depending on the application. Provided compositions may be manufactured by the controlled dewatering of suspensions of CNF. In some embodiments, provided compositions may include a solids concentration of about 10% to about 95% by weight. Controlled water removal and pore homo- or heterogeneity may be accomplished by controlling capillary, hydrostatic and evaporative processes in the environment of a porous mold around the CNF slurry.
    Type: Application
    Filed: November 11, 2020
    Publication date: March 11, 2021
    Inventors: Michael Darin Mason, David Gregg Holomakoff, Muhammad Radowan Hossen
  • Patent number: 10870950
    Abstract: The present invention provides, inter alia, biocompatible porous structural materials made exclusively or almost exclusively from nanocellulose fibers (CNF), CNC, or bacterial cellulose, as well as processes for making and using provided compositions. Provided compositions may possess specifically tailored mechanical strength properties and have a design-controlled porosity that is homogeneous or graded, depending on the application. Provided compositions may be manufactured by the controlled dewatering of suspensions of CNF. In some embodiments, provided compositions may include a solids concentration of about 10% to about 95% by weight. Controlled water removal and pore homo- or heterogeneity may be accomplished by controlling capillary, hydrostatic and evaporative processes in the environment of a porous mold around the CNF slurry.
    Type: Grant
    Filed: March 21, 2017
    Date of Patent: December 22, 2020
    Assignee: University of Maine System Board of Trustees
    Inventors: Michael Darin Mason, David Gregg Holomakoff, Muhammad Radowan Hossen
  • Publication number: 20190093288
    Abstract: The present invention provides, inter alia, biocompatible porous structural materials made exclusively or almost exclusively from nanocellulose fibers (CNF), CNC, or bacterial cellulose, as well as processes for making and using provided compositions. Provided compositions may possess specifically tailored mechanical strength properties and have a design-controlled porosity that is homogeneous or graded, depending on the application. Provided compositions may be manufactured by the controlled dewatering of suspensions of CNF. In some embodiments, provided compositions may include a solids concentration of about 10% to about 95% by weight. Controlled water removal and pore homo- or heterogeneity may be accomplished by controlling capillary, hydrostatic and evaporative processes in the environment of a porous mold around the CNF slurry.
    Type: Application
    Filed: March 21, 2017
    Publication date: March 28, 2019
    Inventors: Michael Darin Mason, David Gregg Holomakoff, Muhammad Radowan Hossen
  • Patent number: 8217992
    Abstract: A method of performing 3D photoactivation microscope imaging includes providing a sample having a plurality of probes, each of the plurality of probes including a photo-activatable material. Probes from the plurality of probes are activated to form a sparse subset of probes, the sparse subset of probes having probes that are spatially separated by at least a microscope resolution. The sample is illuminated with a readout light source, and light emitted from activated probes is detected. Based on the light emission detected from the activated probes, localized three-dimensional positions of the activated probes are obtained.
    Type: Grant
    Filed: January 11, 2008
    Date of Patent: July 10, 2012
    Assignees: The Jackson Laboratory, University of Maine
    Inventors: Joerg Bewersdorf, Michael Darin Mason, Sam T. Hess
  • Publication number: 20100283835
    Abstract: A method of performing 3D photoactivation microscope imaging includes providing a sample having a plurality of probes, each of the plurality of probes including a photo-activatable material. Probes from the plurality of probes are activated to form a sparse subset of probes, the sparse subset of probes having probes that are spatially separated by at least a microscope resolution. The sample is illuminated with a readout light source, and light emitted from activated probes is detected. Based on the light emission detected from the activated probes, localized three-dimensional positions of the activated probes are obtained.
    Type: Application
    Filed: January 11, 2008
    Publication date: November 11, 2010
    Inventors: Joerg Bewersdorf, Michael Darin Mason, Sam T. Hess