Patents by Inventor Louis-Emmanuel LE DUC DE LILLERS

Louis-Emmanuel LE DUC DE LILLERS 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: 20230241371
    Abstract: An implantable pump system is provided, including an implantable blood pump suitable for use as a partial support assist device, the system further including an extracorporeal battery and a controller coupled to the implantable pump, and a programmer selectively periodically coupled to the controller to configure and adjust operating parameters of the implantable pump. The implantable pump includes a flexible membrane coupled to an electromagnetic actuator including a magnetic assembly and electromagnetic assembly, so that when the electromagnetic assembly is energized, the electromagnetic assembly causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable pump. The controller may be programmed by a programmer to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while operating in an efficient manner that avoids thrombus formation, hemolysis and/or platelet activation.
    Type: Application
    Filed: April 6, 2023
    Publication date: August 3, 2023
    Applicant: CorWave SA
    Inventors: Louis-Emmanuel LE DUC DE LILLERS, Francois CORNAT, Jean-Baptiste DREVET, Carl N. BOTTERBUSCH, Alexandra SCHMIDT
  • Patent number: 11623077
    Abstract: An implantable pump system is provided, including an implantable blood pump suitable for use as a partial support assist device, the system further including an extracorporeal battery and a controller coupled to the implantable pump, and a programmer selectively periodically coupled to the controller to configure and adjust operating parameters of the implantable pump. The implantable pump includes a flexible membrane coupled to an electromagnetic actuator including a magnetic assembly and electromagnetic assembly, so that when the electromagnetic assembly is energized, the electromagnetic assembly causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable pump. The controller may be programmed by a programmer to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while operating in an efficient manner that avoids thrombus formation, hemolysis and/or platelet activation.
    Type: Grant
    Filed: February 19, 2021
    Date of Patent: April 11, 2023
    Assignee: CorWave SA
    Inventors: Louis-Emmanuel Le Duc De Lillers, Francois Cornat, Jean-Baptiste Drevet, Carl N. Botterbusch, Alexandra Schmidt
  • Publication number: 20210170160
    Abstract: An implantable pump system is provided, including an implantable blood pump suitable for use as a partial support assist device, the system further including an extracorporeal battery and a controller coupled to the implantable pump, and a programmer selectively periodically coupled to the controller to configure and adjust operating parameters of the implantable pump. The implantable pump includes a flexible membrane coupled to an electromagnetic actuator including a magnetic assembly and electromagnetic assembly, so that when the electromagnetic assembly is energized, the electromagnetic assembly causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable pump. The controller may be programmed by a programmer to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while operating in an efficient manner that avoids thrombus formation, hemolysis and/or platelet activation.
    Type: Application
    Filed: February 19, 2021
    Publication date: June 10, 2021
    Applicant: CorWave SA
    Inventors: Louis-Emmanuel LE DUC DE LILLERS, Francois CORNAT, Jean-Baptiste DREVET, Carl N. BOTTERBUSCH, Alexandra SCHMIDT
  • Patent number: 10933181
    Abstract: An implantable pump system is provided, including an implantable blood pump suitable for use as a partial support assist device, the system further including an extracorporeal battery and a controller coupled to the implantable pump, and a programmer selectively periodically coupled to the controller to configure and adjust operating parameters of the implantable pump. The implantable pump includes a flexible membrane coupled to an electromagnetic actuator including a magnetic assembly and electromagnetic assembly, so that when the electromagnetic assembly is energized, the electromagnetic assembly causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable pump. The controller may be programmed by a programmer to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while operating in an efficient manner that avoids thrombus formation, hemolysis and/or platelet activation.
    Type: Grant
    Filed: March 29, 2018
    Date of Patent: March 2, 2021
    Assignee: CorWave SA
    Inventors: Louis-Emmanuel Le Duc De Lillers, Francois Cornat, Jean-Baptiste Drevet, Carl N. Botterbusch, Alexandra Schmidt
  • Publication number: 20180369469
    Abstract: An implantable pump system is provided, including an implantable blood pump suitable for use as a partial support assist device, the system further including an extracorporeal battery and a controller coupled to the implantable pump, and a programmer selectively periodically coupled to the controller to configure and adjust operating parameters of the implantable pump. The implantable pump includes a flexible membrane coupled to an electromagnetic actuator including a magnetic assembly and electromagnetic assembly, so that when the electromagnetic assembly is energized, the electromagnetic assembly causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable pump. The controller may be programmed by a programmer to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while operating in an efficient manner that avoids thrombus formation, hemolysis and/or platelet activation.
    Type: Application
    Filed: March 29, 2018
    Publication date: December 27, 2018
    Applicant: CorWave SA
    Inventors: Louis-Emmanuel LE DUC DE LILLERS, Francois CORNAT, Jean-Baptiste DREVET, Carl N. BOTTERBUSCH, Alexandra SCHMIDT