Patents by Inventor Evzen Amler

Evzen Amler 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: 20190060517
    Abstract: A biocompatible and biodegradable medical device patch actuating primarily as soft tissue structural reinforcement. The device has a layered architecture, where the primary serves as suturing layer and mechanical support to a thick porous scaffold which can be coated with a mimic-like extra cellular matrix (ECM). The device can be provided to the end user under the format of independent layers that can be cut and assembled to the specific need to the end user and patient. The layers are assembled without the need of any adhesive. Totally haemocompatible and of behavior superior to polytetrafluoroethylene used for any soft tissue repaired, the field of this invention is demonstrated for cardiovascular therapy but should not be limited to it. It is of practical relevance of vein, tendon and hernias and dermal treatments.
    Type: Application
    Filed: October 22, 2018
    Publication date: February 28, 2019
    Inventors: Guillaume Saint-Pierre, Miguel Herrero Gomez, Sandra Martinez Creispera, Alberto Saiani, Catherine Merry, Kate Meade, Jean-Baptiste Guilbaud, Aline Fiona Miller, Constentin Ciobanu, Evzen Amler
  • Patent number: 10130735
    Abstract: A biocompatible and biodegradable medical device patch actuating primarily as soft tissue structural reinforcement. The device has a layered architecture, where the primary serves as suturing layer and mechanical support to a thick porous scaffold which can be coated with a mimic-like extra cellular matrix (ECM). The device can be provided to the end user under the format of independent layers that can be cut and assembled to the specific need to the end user and patient. The layers are assembled without the need of any adhesive. Totally haemocompatible and of behavior superior to polytetrafluoroethylene used for any soft tissue repaired, the field of this invention is demonstrated for cardiovascular therapy but should not be limited to it. It is of practical relevance of vein, tendon and hernias and dermal treatments.
    Type: Grant
    Filed: September 21, 2012
    Date of Patent: November 20, 2018
    Assignees: Technologias Avanzadas Inspiralia S.L., The University of Manchester, Institutut de Chimie Macromoleculara Petru Poni, Ustav Experimentatni Mediciny Akademie Ved Ceske Republiky Verejna Vyzkumna Instituce
    Inventors: Guillaume Saint-Pierre, Miguel Herrero Gomez, Sandra Martinez Crespiera, Alberto Saiani, Catherine Merry, Kate Meade, Jean-Baptiste Guilbaud, Aline Fiona Miller, Constentin Ciobanu, Evzen Amler
  • Patent number: 10041189
    Abstract: The invention relates to a method for production of polymeric nanofibers, in which polymeric nanofibers are created due to the action of force of an electric field on solution or melt of a polymer, which is located on the surface of a spinning electrode, whereby the electric field for electrostatic spinning is created alternately between the spinning electrode (1), to which is supplied alternating voltage, and ions (30, 31) of air and/or gas generated and/or supplied to proximity of the spinning electrode (1), whereby according to the phase of the alternating voltage on the spinning electrode (1) polymeric nanofibers with an electric charge of opposite polarity and/or with segments with an electric charge of opposite polarity are created, which after their creation cluster together under the influence of the electrostatic forces into linear formation in the form of a tow or a band, which moves freely in space in direction of gradient of the electric fields away from the spinning electrode (1).
    Type: Grant
    Filed: December 12, 2013
    Date of Patent: August 7, 2018
    Assignees: TECHNICKA UNIVERZITA V LIBERCI, EGU—HV LABORATORY A.S.
    Inventors: Lubomir Kocis, Pavel Pokorny, David Lukas, Petr Mikes, Jiri Chvojka, Eva Kostakova, Jaroslav Beran, Martin Bilek, Jan Valtera, Evzen Amler, Matej Buzgo, Andrea Mickova
  • Publication number: 20150315724
    Abstract: The invention relates to a method for production of polymeric nanofibers, in which polymeric nanofibers are created due to the action of force of an electric field on solution or melt of a polymer, which is located on the surface of a spinning electrode, whereby the electric field for electrostatic spinning is created alternately between the spinning electrode (1), to which is supplied alternating voltage, and ions (30, 31) of air and/or gas generated and/or supplied to proximity of the spinning electrode (1), whereby according to the phase of the alternating voltage on the spinning electrode (1) polymeric nanofibers with an electric charge of opposite polarity and/or with segments with an electric charge of opposite polarity are created, which after their creation cluster together under the influence of the electrostatic forces into linear formation in the form of a tow or a band, which moves freely in space in direction of gradient of the electric fields away from the spinning electrode (1).
    Type: Application
    Filed: December 12, 2013
    Publication date: November 5, 2015
    Inventors: Lubomir KOCIS, Pavel POKORNY, David LUKAS, Petr MIKES, Jiri CHVOJKA, Eva KOSTAKOVA, Jaroslav BERAN, Martin BILEK, Jan VALTERA, Evzen AMLER, Matej BUZGO, Andrea MICKOVA
  • Publication number: 20150246157
    Abstract: A biocompatible and biodegradable medical device patch actuating primarily as soft tissue structural reinforcement. The device has a layered architecture, where the primary serves as suturing layer and mechanical support to a thick porous scaffold which can be coated with a mimic-like extra cellular matrix (ECM). The device can be provided to the end user under the format of independent layers that can be cut and assembled to the specific need to the end user and patient. The layers are assembled without the need of any adhesive. Totally haemocompatible and of behavior superior to polytetrafluoroethylene used for any soft tissue repaired, the field of this invention is demonstrated for cardiovascular therapy but should not be limited to it. It is of practical relevance of vein, tendon and hernias and dermal treatments.
    Type: Application
    Filed: September 21, 2012
    Publication date: September 3, 2015
    Inventors: Guillaume Saint-Pierre, Miguel Herrero Gomez, Sandra Martinez Creispera, Alberto Saiani, Catherine Merry, Kate Meade, Jean-Baptiste Guilbaud, Aline Fiona Miller, Constentin Ciobanu, Evzen Amler