Patents by Inventor Viacheslav Agarkov

Viacheslav Agarkov 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: 20210068938
    Abstract: Embodiments of an implant for use in surgery are disclosed. The implant may include elastic polymer file made from a suitable biologically compatible polymer. The implant may also include a reinforcement element.
    Type: Application
    Filed: March 16, 2020
    Publication date: March 11, 2021
    Inventors: Viacheslav Agarkov, Igor Uspenskiy, Yury Kolmogorov
  • Patent number: 10588732
    Abstract: Embodiments of a multi-purpose implant for use in surgery, such as for reconstruction of soft tissues, are disclosed. In some embodiments, the implant includes elastic polymer film made from a suitable biologically compatible polymer. The implant also includes a reinforcement element forms from a polyurethane mesh or other strong and stable woven or unwoven synthetic material. The reinforcement element can be fully enclosed by the film so that only the film comes into contact with the organs and tissues. Anti-adhesive properties or control over implant's integration into a body can be determined by the preset surface structure of the implant, while physical and mechanical properties, such as strength and elasticity of the implant, are obtained by virtue of reinforcement element geometry.
    Type: Grant
    Filed: October 31, 2016
    Date of Patent: March 17, 2020
    Assignee: IconLab USA, Inc.
    Inventors: Viacheslav Agarkov, Igor Uspenskiy, Yury Kolmogorov
  • Patent number: 9724850
    Abstract: A method for manufacturing an artificial elastic implant for restorative and reconstructive surgery includes two casting steps performed in a casting mold. The mold has at least a cover that is optically and UV transparent. In a first step, a first layer of a first photo-curable material or of a second photo-curable material is cast while forming a meniscus. Using one of two photo masks, the mold is irradiated with UV light to cure the first layer. In a second step, a second layer of either the first or the second photo-curable material is cast onto the cured first layer while forming a meniscus. After irradiating the mold again with ultraviolet light, unhardened photo-curable material is removed from the product by dissolving in a suitable solvent. After additionally irradiating the product with UV light, the product is soaked, separated from the mold, placed in isopropyl alcohol and then vacuum dried.
    Type: Grant
    Filed: October 1, 2014
    Date of Patent: August 8, 2017
    Assignee: IconLab, USA, Inc.
    Inventors: Viacheslav Agarkov, Igor Uspenskiy, Yury Kolmogorov
  • Publication number: 20170112607
    Abstract: Embodiments of a multi-purpose implant for use in surgery, such as for reconstruction of soft tissues, are disclosed. In some embodiments, the implant includes elastic polymer film made from a suitable biologically compatible polymer. The implant also includes a reinforcement element forms from a polyurethane mesh or other strong and stable woven or unwoven synthetic material. The reinforcement element can be fully enclosed by the film so that only the film comes into contact with the organs and tissues. Anti-adhesive properties or control over implant's integration into a body can be determined by the preset surface structure of the implant, while physical and mechanical properties, such as strength and elasticity of the implant, are obtained by virtue of reinforcement element geometry.
    Type: Application
    Filed: October 31, 2016
    Publication date: April 27, 2017
    Inventors: Viacheslav Agarkov, Igor Uspenskiy, Yury Kolmogorov
  • Patent number: 9480777
    Abstract: Embodiments of a multi-purpose implant for use in surgery, such as for reconstruction of soft tissues, are disclosed. In some embodiments, the implant includes elastic polymer film made from a suitable biologically compatible polymer. The implant also includes a reinforcement element formed from a polyurethane mesh or other strong and stable woven or unwoven synthetic material. The reinforcement element can be fully enclosed by the film so that only the film comes into contact with the organs and tissues. Anti-adhesive properties or control over implant's integration into a body can be determined by the preset surface structure of the implant, while physical and mechanical properties, such as strength and elasticity of the implant, are obtained by virtue of reinforcement element geometry.
    Type: Grant
    Filed: July 3, 2014
    Date of Patent: November 1, 2016
    Assignee: IconLab Inc.
    Inventors: Viacheslav Agarkov, Igor Uspenskiy, Yury Kolmogorov
  • Publication number: 20160096292
    Abstract: A method for manufacturing an artificial elastic implant for restorative and reconstructive surgery includes two casting steps performed in a casting mold. The mold has at least a cover that is optically and UV transparent. In a first step, a first layer of a first photo-curable material or of a second photo-curable material is cast while forming a meniscus. Using one of two photo masks, the mold is irradiated with UV light to cure the first layer. In a second step, a second layer of either the first or the second photo-curable material is cast onto the cured first layer while forming a meniscus. After irradiating the mold again with ultraviolet light, unhardened photo-curable material is removed from the product by dissolving in a suitable solvent. After additionally irradiating the product with UV light, the product is soaked, separated from the mold, placed in isopropyl alcohol and then vacuum dried.
    Type: Application
    Filed: October 1, 2014
    Publication date: April 7, 2016
    Inventors: Viacheslav Agarkov, Igor Uspenskiy, Yury Kolmogorov
  • Publication number: 20150250920
    Abstract: Embodiments of a multi-purpose implant for use in surgery, such as for reconstruction of soft tissues, are disclosed. In some embodiments, the implant includes elastic polymer film made from a suitable biologically compatible polymer. The implant also includes a reinforcement element formed from a polyurethane mesh or other strong and stable woven or unwoven synthetic material. The reinforcement element can be fully enclosed by the film so that only the film comes into contact with the organs and tissues. Anti-adhesive properties or control over implant's integration into a body can be determined by the preset surface structure of the implant, while physical and mechanical properties, such as strength and elasticity of the implant, are obtained by virtue of reinforcement element geometry.
    Type: Application
    Filed: July 3, 2014
    Publication date: September 10, 2015
    Inventors: Viacheslav Agarkov, Igor Uspenskiy, Yury Kolmogorov