Patents by Inventor Eben D. Bayer

Eben D. Bayer 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: 20260182613
    Abstract: This application relates generally to aerial mycelium and methods of making aerial mycelium suitable for use as a food or textile product or ingredient. The aerial mycelium can be grown using a growth matrix provided into a growth environment and introducing aqueous mist into the growth environment. The aqueous mist has a mean mist deposition rate to allow for aerial mycelial growth from the growth matrix.
    Type: Application
    Filed: February 24, 2026
    Publication date: July 2, 2026
    Inventors: Jacob Michael Winiski, Alex James Carlton, Gavin Reim McIntyre, Peter James Mueller, Eben D. Bayer, Asa Trench Snyder, Meghan Anne O'Brien, Jessica Hannah Kaplan-Bie, Alex Stephen Friedman, Russell Allan Hazen, Stephen Lomnes
  • Patent number: 12582145
    Abstract: This application relates generally to aerial mycelium and methods of making aerial mycelium suitable for use as a food or textile product or ingredient. The aerial mycelium can be grown using a growth matrix provided into a growth environment and introducing aqueous mist into the growth environment. The aqueous mist has a mean mist deposition rate to allow for aerial mycelial growth from the growth matrix.
    Type: Grant
    Filed: September 27, 2024
    Date of Patent: March 24, 2026
    Assignee: Ecovative LLC
    Inventors: Jacob Michael Winiski, Alex James Carlton, Gavin Reim McIntyre, Peter James Mueller, Eben D. Bayer, Asa Trench Snyder, Meghan Anne O'Brien, Jessica Hannah Kaplan-Bie, Alex Stephen Friedman, Russell Allan Hazen, Stephen Lomnes
  • Patent number: 12503576
    Abstract: A mycological biopolymer material is subjected to treatment in one or more solutions that work to enhance and/or retain the inherent material properties of the material. In one embodiment, the solution is an organic solution; in another embodiment, the solution is an organic solvent with a salt; in another embodiment, the solution is an organic solvent phenol and/or polyphenol; and in another embodiment, a series of such solutions is used.
    Type: Grant
    Filed: June 9, 2022
    Date of Patent: December 23, 2025
    Assignee: Ecovative LLC
    Inventors: Jessica Hannah Kaplan-Bie, Gavin Reim McIntyre, Lucy Elaine Greetham, Ian Thomas Bonesteel, Alex James Carlton, Eben D. Bayer
  • Patent number: 12433315
    Abstract: This application relates generally to aerial mycelium and methods of making aerial mycelium suitable for use as a food or textile product or ingredient. The aerial mycelium can be grown using a growth matrix provided into a growth environment and introducing aqueous mist into the growth environment. The aqueous mist has a mist deposition rate and a mean mist deposition rate to allow for aerial mycelial growth from the growth matrix.
    Type: Grant
    Filed: May 3, 2022
    Date of Patent: October 7, 2025
    Assignee: Ecovative LLC
    Inventors: Jacob Michael Winiski, Alex James Carlton, Gavin Reim McIntyre, Peter James Mueller, Eben D. Bayer, Asa Trench Snyder, Meghan Anne O'Brien, Jessica Hannah Kaplan-Bie, Alex Stephen Friedman, Russell Allan Hazen, Stephen Lomnes
  • Publication number: 20250179413
    Abstract: Systems, methods, and machine learning tools are described for controlled growth of mycelium such as aerial mycelium. Methods can include providing one or more growth environments including one or more inocula and a substrate, providing a monitoring system that transmits data to one or more processors and includes a machine learning tool that monitors environmental conditions and/or mycelium growth, and applying the machine learning tool to determine one or more changes to environmental conditions based on the data. The data can include real-time monitoring information on the environmental conditions or mycelium growth within the one or more growth environments. Further machine learning models are provided for selection and control of additional mycelium growth conditions.
    Type: Application
    Filed: November 29, 2024
    Publication date: June 5, 2025
    Inventors: Eben D. Bayer, Peter James Mueller, Julian Noah Rosenberg, Orkan Telhan, Jacob Michael Winiski
  • Publication number: 20250176479
    Abstract: Systems and methods for providing supplemental growth conditions to substrates, growth matrices, and growing aerial mycelium materials are provided which allow for enhanced aerial mycelial growth or targeted mycelial growth from either select or entire portions of substrates, growth matrices, or growing aerial mycelial materials (such as panels), or within select or entire portions of growth environments, when compared to growth levels and/or attributes resulting from base-line growth conditions.
    Type: Application
    Filed: November 29, 2024
    Publication date: June 5, 2025
    Inventors: Eben D. Bayer, Scott Elliot Baker, Gavin Reim McIntyre, Peter James Mueller, Jeff Andrew Mundt, Julian Noah Rosenberg, Orkan Telhan, Jacob Michael Winiski
  • Publication number: 20250017250
    Abstract: This application relates generally to aerial mycelium and methods of making aerial mycelium suitable for use as a food or textile product or ingredient. The aerial mycelium can be grown using a growth matrix provided into a growth environment and introducing aqueous mist into the growth environment. The aqueous mist has a mean mist deposition rate to allow for aerial mycelial growth from the growth matrix.
    Type: Application
    Filed: September 27, 2024
    Publication date: January 16, 2025
    Inventors: Jacob Michael Winiski, Alex James Carlton, Gavin Reim McIntyre, Peter James Mueller, Eben D. Bayer, Asa Trench Snyder, Meghan Anne O'Brien, Jessica Hannah Kaplan-Bie, Alex Stephen Friedman, Russell Allan Hazen, Stephen Lomnes
  • Publication number: 20240164262
    Abstract: Apparatus and processes to grow a biomaterial made of aerial mycelium by sensing and controlling airborne mist concentration, regardless of relative humidity. A growth matrix comprising a growth medium and a fungus, is grown under controlled environmental conditions to produce a mycelium product. To control growth conditions precisely and efficiently, airborne mist is electronically detected using one or more sensors, configured to measure airborne mist concentration visually, optically, chemically, electromagnetically, or by laser, ultrasonically, with radar, or other means. Electronic detection of airborne mist using one or more sensors generates a signal that is transmitted to a processor that can either maintain, increase, or decrease airborne mist concentration in a growth environment. The present invention provides processes of growing mycelium that are repeatable and resource efficient, while providing high quality and quantity mycelium-based products.
    Type: Application
    Filed: November 20, 2023
    Publication date: May 23, 2024
    Inventors: Peter James Mueller, Asa Trench Snyder, Ian Thomas Bonesteel, Chirayu Jain, Eben D. Bayer, Alex Stephen Friedman
  • Publication number: 20230348843
    Abstract: This application relates to a method for growing aerial mycelium with a regular growth pattern and products of aerial mycelium biopolymers with regular growth patterns. For example, a regular growth pattern can include a homogeneous growth topology or a geometrically regular pattern of bulbous forms. As further examples, the method for affecting growth topology can include controlling environmental conditions or using a topology adjustment layer.
    Type: Application
    Filed: March 9, 2023
    Publication date: November 2, 2023
    Inventors: Asa Trench Snyder, Jacob Michael Winiski, Eben D. Bayer
  • Publication number: 20230013465
    Abstract: A mycological biopolymer material is subjected to treatment in one or more solutions that work to enhance and/or retain the inherent material properties of the material. In one embodiment, the solution is an organic solution; in another embodiment, the solution is an organic solvent with a salt; in another embodiment, the solution is an organic solvent phenol and/or polyphenol; and in another embodiment, a series of such solutions is used.
    Type: Application
    Filed: June 9, 2022
    Publication date: January 19, 2023
    Inventors: Jessica Hannah Kaplan-Bie, Gavin Reim McIntyre, Lucy Elaine Greetham, Ian Thomas Bonesteel, Alex James Carlton, Eben D. Bayer
  • Publication number: 20220354068
    Abstract: An improved mycelium in the form of an edible aerial mycelium that is suitable for use as a food product, including a food ingredient for making mycelium-based food, such as bacon. A method of making an edible aerial mycelium suitable for use as a food product, including a food ingredient. An edible product containing an edible aerial mycelium, and a method of making an edible product comprising an edible aerial mycelium, such as a mycelium-based bacon. A mycelium-based food product having a texture that is analogous to a whole-muscle meat product, wherein that whole-muscle meat product is bacon.
    Type: Application
    Filed: May 3, 2022
    Publication date: November 10, 2022
    Inventors: Alex James Carlton, Russell Allan Hazen, Nicholas Ruscitto, Alex Stephen Friedman, Gavin Reim McIntyre, Peter James Mueller, Eben D. Bayer, Stephen Lomnes, Asa Trench Snyder, Meghan Anne O'Brien, Jessica Hannah Kaplan-Bie, Damen Donald Schaak, Vivian Lee Kutikov
  • Publication number: 20220354152
    Abstract: This application relates generally to aerial mycelium and methods of making aerial mycelium suitable for use as a food or textile product or ingredient. Such a food product or ingredient can include edible aerial mycelium having a texture that is analogous to a whole-muscle meat product, such as for example mycelium-based bacon. Such a textile product or ingredient can be used in the manufacture of mycelium-based textile products, leather-like materials, petroleum-based product alternatives, or foams.
    Type: Application
    Filed: May 3, 2022
    Publication date: November 10, 2022
    Inventors: Jacob Michael Winiski, Alex James Carlton, Gavin Reim McIntyre, Peter James Mueller, Eben D. Bayer, Asa Trench Snyder, Meghan Anne O'Brien, Jessica Hannah Kaplan-Bie, Alex Stephen Friedman, Russell Allan Hazen, Stephen Lomnes