Patents by Inventor Antoine Lucas

Antoine Lucas 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: 11820891
    Abstract: The invention relates to a thermoplastic polymer composition comprising polyamides, its preparation method and a device for a motor vehicle capable of damping vibrations. The composition (I1, I2, I3, I4) comprises an aliphatic polyamide a polyphthalamide coming from a C6-C12 aliphatic diamine and from an aromatic diacid comprising terephthalic acid, the aliphatic polyamide/polyphthalamide weight ratio being >1 and a reinforcing filler comprising glass fibers. The composition has, after “RH50” conditioning, maximum tan delta values according to ISO 6721-5 between 60-90° C. and 1-3000 Hz, with (i) tan delta >4.20% at 60° C. and/or (ii) tan delta >4.00% at 80° C. and/or (iii) tan delta >3.80% at 90° C.
    Type: Grant
    Filed: November 19, 2020
    Date of Patent: November 21, 2023
    Assignee: Hutchinson
    Inventors: Antoine Lucas, Marion Doudeau-Pirat
  • Patent number: 11564750
    Abstract: A system for assisting guiding an endovascular instrument in vascular structures of an anatomical region of interest of a patient. This system includes an imaging device for capturing three-dimensional images of parts of the body of a patient, a programmable device and a viewing unit. The imaging device captures partially superposed fluoroscopic images of the region, and the programmable device forms a first augmented image, representative of a complete panorama of bones of the region, and cooperates with the imaging device to obtain a second augmented image including a representation of the vascular structures of the region. The imaging device captures a current fluoroscopic image of a part of the region, and the programmable device registers the current fluoroscopic image with respect to the first augmented image and locates and displays, on the viewing unit, an image region corresponding to the current fluoroscopic image in the second augmented image.
    Type: Grant
    Filed: June 5, 2018
    Date of Patent: January 31, 2023
    Assignee: THERENVA
    Inventors: Florent Lalys, Mathieu Colleaux, Vincent Durrmann, Antoine Lucas, Cemil Goksu
  • Publication number: 20210147678
    Abstract: The invention relates to a thermoplastic polymer composition comprising polyamides, its preparation method and a device for a motor vehicle capable of damping vibrations. The composition (I1, I2, I3, I4) comprises an aliphatic polyamide a polyphthalamide coming from a C6-C12 aliphatic diamine and from an aromatic diacid comprising terephthalic acid, the aliphatic polyamide/polyphthalamide weight ratio being >1 and a reinforcing filler comprising glass fibers. The composition has, after “RH50” conditioning, maximum tan delta values according to ISO 6721-5 between 60-90° C. and 1-3000 Hz, with (i) tan delta>4.20% at 60° C. and/or (ii) tan delta>4.00% at 80° C. and/or (iii) tan delta>3.80% at 90° C.
    Type: Application
    Filed: November 19, 2020
    Publication date: May 20, 2021
    Inventors: Antoine LUCAS, Marion DOUDEAU-PIRAT
  • Patent number: 10959780
    Abstract: A method and a system are provided for helping to guide an endovascular tool in vascular structures. The method includes an initial planning phase in which a first three-dimensional anatomical model specific to the patient is determined from an acquired three-dimensional image, and an intervention phase in which a final transformation, which is a combination of a rigid transformation and of an elastic transformation, is applied to the first three-dimensional anatomical model specific to the patient in order to obtain a second three-dimensional model specific to the patient. The rigid transformation is estimated between the preoperative three-dimensional image and one or more perioperative two-dimensional images of perioperative two-dimensional images, and the elastic transformation is calculated as a function of a simulation of vascular deformations that are induced by introducing the tool into the target vascular structure.
    Type: Grant
    Filed: June 24, 2016
    Date of Patent: March 30, 2021
    Assignee: THERENVA
    Inventors: Aurelien Dumenil, Cemil Goksu, Florent Lalys, Antoine Lucas
  • Publication number: 20200178916
    Abstract: A system for assisting guiding an endovascular instrument in vascular structures of an anatomical region of interest of a patient. This system includes an imaging device for capturing three-dimensional images of parts of the body of a patient, a programmable device and a viewing unit. The imaging device captures partially superposed fluoroscopic images of the region, and the programmable device forms a first augmented image, representative of a complete panorama of bones of the region, and cooperates with the imaging device to obtain a second augmented image including a representation of the vascular structures of the region. The imaging device captures a current fluoroscopic image of a part of the region, and the programmable device registers the current fluoroscopic image with respect to the first augmented image and locates and displays, on the viewing unit, an image region corresponding to the current fluoroscopic image in the second augmented image.
    Type: Application
    Filed: June 5, 2018
    Publication date: June 11, 2020
    Applicant: Therenva
    Inventors: Florent LALYS, Mathieu COLLEAUX, Vincent DURRMANN, Antoine LUCAS, Cemil GÖKSU
  • Publication number: 20180161099
    Abstract: A method and a system are provided for helping to guide an endovascular tool in vascular structures. The method includes an initial planning phase in which a first three-dimensional anatomical model specific to the patient is determined from an acquired three-dimensional image, and an intervention phase in which a final transformation, which is a combination of a rigid transformation and of an elastic transformation, is applied to the first three-dimensional anatomical model specific to the patient in order to obtain a second three-dimensional model specific to the patient. The rigid transformation is estimated between the preoperative three-dimensional image and one or more perioperative two-dimensional images of perioperative two-dimensional images, and the elastic transformation is calculated as a function of a simulation of vascular deformations that are induced by introducing the tool into the target vascular structure.
    Type: Application
    Filed: June 24, 2016
    Publication date: June 14, 2018
    Inventors: Aurelien Dumenil, Cemil Goksu, Florent Lalys, Antoine Lucas
  • Publication number: 20100196250
    Abstract: The invention relates to a method for obtaining composite fibers, that comprises dispersing colloidal particles in a solvent, injecting the dispersion into a co-flow of a polymer coagulation solution for forming a pre-fiber, circulating the pre-fiber in a duct, extracting, optionally washing and drying the pre-fiber in order to obtain a fiber, and winding the fiber thus obtained, characterized in that the minimum retention time of the fiber within the duct is adjusted so that it has a mechanical strength sufficient to be extracted from the duct, and in that its extraction is vertical and continuous. The invention also relates to composite fibers that can be made according to said method.
    Type: Application
    Filed: March 18, 2008
    Publication date: August 5, 2010
    Applicant: Arkema France
    Inventors: Alain Derre, Antoine Lucas, Philippe Poulin