CorWave SA

France

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Date
2025 October 2
2025 (YTD) 5
2024 4
2023 4
2022 3
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IPC Class
A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices 16
A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders 16
A61M 60/462 - Electromagnetic force 13
A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps 12
A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body 12
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Status
Pending 7
Registered / In Force 30
Found results for  patents

1.

SYSTEMS AND METHODS FOR POWERING AND CONTROLLING AN IMPLANTABLE HEART PUMP

      
Application Number IB2025053546
Publication Number 2025/215486
Status In Force
Filing Date 2025-04-03
Publication Date 2025-10-16
Owner CORWAVE SA (France)
Inventor
  • Pruvost, Remi
  • Rasser, Charlotte
  • Snyder, Trevor
  • Rigoudy, Yann
  • Chague, Salome

Abstract

Systems and methods for powering and controlling implantable heart pumps are provided. An example system may include an external controller housing for housing a processor programmable to control an implantable heart pump, a battery housing removably attachable to the external controller housing for housing battery cells to supply power to the implantable heart pump, a button connected to the battery housing, and a latch extending from the button to a latch protrusion. The button may be biased away from the battery housing in a locked position. In the locked position, the latch protrusion may engage with a latch receiver of the external controller housing to lock the external controller housing to the battery housing. The button may be depressed toward the battery housing to cause the latch protrusion to disengage from the latch receiver to permit the battery housing to be detached and removed from the external controller housing.

IPC Classes  ?

  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/216 - Non-positive displacement blood pumps including a rotating member acting on the blood, e.g. impeller
  • A61M 60/585 - User interfaces
  • A61M 60/873 - Energy supply devicesConverters therefor specially adapted for wireless or transcutaneous energy transfer [TET], e.g. inductive charging
  • A61M 60/88 - Percutaneous cables

2.

SYSTEMS AND METHODS FOR POWERING AND CONTROLLING AN IMPLANTABLE HEART PUMP

      
Application Number 19169841
Status Pending
Filing Date 2025-04-03
First Publication Date 2025-10-09
Owner CorWave SA (France)
Inventor
  • Pruvost, Remi
  • Rasser, Charlotte
  • Snyder, Trevor
  • Rigoudy, Yann
  • Chague, Salome

Abstract

Systems and methods for powering and controlling implantable heart pumps are provided. An example system may include an external controller housing for housing a processor programmable to control an implantable heart pump, a battery housing removably attachable to the external controller housing for housing battery cells to supply power to the implantable heart pump, a button connected to the battery housing, and a latch extending from the button to a latch protrusion. The button may be biased away from the battery housing in a locked position. In the locked position, the latch protrusion may engage with a latch receiver of the external controller housing to lock the external controller housing to the battery housing. The button may be depressed toward the battery housing to cause the latch protrusion to disengage from the latch receiver to permit the battery housing to be detached and removed from the external controller housing.

IPC Classes  ?

  • A61M 60/585 - User interfaces
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/88 - Percutaneous cables

3.

IMPLANTABLE HEART PUMP SYSTEMS INCLUDING AN IMPROVED APICAL CONNECTOR AND/OR GRAFT CONNECTOR

      
Application Number 19086860
Status Pending
Filing Date 2025-03-21
First Publication Date 2025-07-03
Owner CorWave SA (France)
Inventor
  • Snyder, Trevor
  • Bourquin, Amelie
  • Quelenn, Pierre-Yves
  • Wittig, Bastien
  • Maher, Tim
  • Harter, Jean

Abstract

Systems and methods are provided herein for improving connections between a heart pump, such a left ventricular assist device (LVAD), and the heart and/or tubing such as a graft tube. An apical connector including a cylindrical housing and a ring support connected to the housing is described. The apical connector may include a sewing ring to be connected to the patient's heart and a spring positioned within the cylindrical housing to engage a portion of the pump and secure the apical connector to the pump. Alternatively, an apical connector may include an upper and lower housing with locks positioned in channels between the housings and may include a handle and a ring to cause the locks to engage a portion of the pump. A quick connect assembly is also described for efficiently connecting a graft tube to an outlet of a heart pump using a flange with through-holes and protrusions.

IPC Classes  ?

  • A61M 60/859 - Connections therefor
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/424 - Details relating to driving for positive displacement blood pumps

4.

BLOOD PUMPS HAVING AN ENCAPSULATED ACTUATOR

      
Application Number 19076730
Status Pending
Filing Date 2025-03-11
First Publication Date 2025-06-26
Owner CorWave SA (France)
Inventor
  • Quelenn, Pierre-Yves
  • Botterbusch, Carl N.
  • Snyder, Trevor
  • Cornat, Francois
  • Condemi, Francesca
  • Le Blanc, Petrus
  • Olivé, Antoine

Abstract

Systems and methods for generating blood flow with a blood pump including a membrane and an encapsulated actuator are described. The pump may be implantable and may include a stator assembly, an electromagnetic assembly supported by the stator assembly, a magnetic assembly, one or more springs attached to the stator and the magnetic assembly, and encapsulation portions that connect the magnetic assembly to the stator assembly. The magnetic assembly may further be coupled to a membrane assembly including a flexible membrane. The electromagnetic assembly may be selectively activated to cause the magnetic assembly to reciprocate, thereby causing the membrane assembly to reciprocate and inducing wavelike undulations in the flexible membrane to pump blood from an inlet to an outlet of the pump. The encapsulation portions may prevent blood from interacting with an interior moving portion of the pump thereby reducing the risk of hemolysis.

IPC Classes  ?

  • A61M 60/462 - Electromagnetic force
  • A61M 60/835 - Constructional details other than related to driving of positive displacement blood pumps

5.

IMPLANTABLE PUMP SYSTEM HAVING AN UNDULATING MEMBRANE WITH IMPROVED HYDRAULIC PERFORMANCE

      
Application Number 19044561
Status Pending
Filing Date 2025-02-03
First Publication Date 2025-06-05
Owner CorWave SA (France)
Inventor
  • Polverelli, Luc
  • Maine, Leopold
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick
  • Schmidt, Alexandra
  • Monticone, Pier-Paolo

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, a battery, a controller, and a programmer. The implantable pump includes a flexible membrane coupled to an actuator assembly via a skirt that extends toward the inlet of the pump and curves to guide blood toward the outlet. The actuator assembly is magnetically engageable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from the inlet, across the skirt, and through the outlet of 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.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 5/142 - Pressure infusion, e.g. using pumps
  • A61M 60/122 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/40 - Details relating to driving
  • A61M 60/419 - Details relating to driving for non-positive displacement blood pumps the force acting on the blood contacting member being permanent magnetic, e.g. from a rotating magnetic coupling between driving and driven magnets
  • A61M 60/427 - Details relating to driving for positive displacement blood pumps the force acting on the blood contacting member being hydraulic or pneumatic
  • A61M 60/457 - Details relating to driving for positive displacement blood pumps the force acting on the blood contacting member being magnetic
  • A61M 60/459 - Details relating to driving for positive displacement blood pumps the force acting on the blood contacting member being magnetic generated by permanent magnets
  • A61M 60/462 - Electromagnetic force
  • A61M 60/50 - Details relating to control
  • A61M 60/508 - Electronic control means, e.g. for feedback regulation
  • A61M 60/837 - Aspects of flexible displacement members, e.g. shapes or materials
  • A61M 60/857 - Implantable blood tubes

6.

IMPLANTABLE PUMP SYSTEM HAVING AN UNDULATING MEMBRANE

      
Application Number 18676020
Status Pending
Filing Date 2024-05-28
First Publication Date 2024-09-26
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Monticone, Pier-Paolo
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, 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 actuator assembly that is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from 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.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/40 - Details relating to driving
  • A61M 60/462 - Electromagnetic force
  • A61M 60/531 - Regulation using real-time patient data using blood pressure data, e.g. from blood pressure sensors
  • A61M 60/562 - Electronic control means, e.g. for feedback regulation for making blood flow pulsatile in blood pumps that do not intrinsically create pulsatile flow
  • A61M 60/569 - Electronic control means, e.g. for feedback regulation for making blood flow pulsatile in blood pumps that do not intrinsically create pulsatile flow synchronous with the native heart beat
  • A61M 60/857 - Implantable blood tubes
  • A61M 60/876 - Implantable batteries

7.

Implantable heart pump systems including an improved apical connector and/or graft connector

      
Application Number 18664247
Grant Number 12257427
Status In Force
Filing Date 2024-05-14
First Publication Date 2024-09-05
Grant Date 2025-03-25
Owner CorWave SA (France)
Inventor
  • Snyder, Trevor
  • Bourquin, Amelie
  • Quelenn, Pierre-Yves
  • Wittig, Bastien
  • Maher, Tim
  • Harter, Jean

Abstract

Systems and methods are provided herein for improving connections between a heart pump, such a left ventricular assist device (LVAD), and the heart and/or tubing such as a graft tube. An apical connector including a cylindrical housing and a ring support connected to the housing is described. The apical connector may include a sewing ring to be connected to the patient's heart and a spring positioned within the cylindrical housing to engage a portion of the pump and secure the apical connector to the pump. Alternatively, an apical connector may include an upper and lower housing with locks positioned in channels between the housings and may include a handle and a ring to cause the locks to engage a portion of the pump. A quick connect assembly is also described for efficiently connecting a graft tube to an outlet of a heart pump using a flange with through-holes and protrusions.

IPC Classes  ?

  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 39/12 - Tube connectors or tube couplings for joining a flexible tube to a rigid attachment
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/424 - Details relating to driving for positive displacement blood pumps
  • A61M 60/859 - Connections therefor

8.

IMPLANTABLE HEART PUMP SYSTEM INCLUDING AN IMPROVED APICAL CONNECTOR AND/OR GRAFT CONNECTOR

      
Application Number IB2023061509
Publication Number 2024/105583
Status In Force
Filing Date 2023-11-14
Publication Date 2024-05-23
Owner CORWAVE SA (France)
Inventor
  • Snyder, Trevor
  • Bourquin, Amelie
  • Quelenn, Pierre-Yves
  • Wittig, Bastien
  • Maher, Tim
  • Harter, Jean

Abstract

Systems and methods are provided herein for improving connections between a heart pump such a left ventricular assist device (LVAD) and the heart and/or tubing such as a graft tube. An apical connector including a cylindrical housing and a ring support connected to the housing is described. The apical connector may include a sewing ring to be connected to the patient's heart and a spring positioned within the cylindrical housing to engage a portion of the pump and secure the apical connector to the pump. Alternatively, an apical connector may include an upper and lower housing with locks positioned in channels between the housings and may include a handle and a ring to cause the locks to engage a portion of the pump. A quick connect assembly is also described for efficiently connecting a graft tube to an outlet of a heart pump using a flange with through-holes and protrusions.

IPC Classes  ?

  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/859 - Connections therefor
  • A61M 60/863 - Apex rings

9.

Implantable heart pump systems including an improved apical connector and/or graft connector

      
Application Number 18509187
Grant Number 12017059
Status In Force
Filing Date 2023-11-14
First Publication Date 2024-05-16
Grant Date 2024-06-25
Owner CorWave SA (France)
Inventor
  • Snyder, Trevor
  • Bourquin, Amelie
  • Quelenn, Pierre-Yves
  • Wittig, Bastien
  • Maher, Tim
  • Harter, Jean

Abstract

Systems and methods are provided herein for improving connections between a heart pump such a left ventricular assist device (LVAD) and the heart and/or tubing such as a graft tube. An apical connector including a cylindrical housing and a ring support connected to the housing is described. The apical connector may include a sewing ring to be connected to the patient's heart and a spring positioned within the cylindrical housing to engage a portion of the pump and secure the apical connector to the pump. Alternatively, an apical connector may include an upper and lower housing with locks positioned in channels between the housings and may include a handle and a ring to cause the locks to engage a portion of the pump. A quick connect assembly is also described for efficiently connecting a graft tube to an outlet of a heart pump using a flange with through-holes and protrusions.

IPC Classes  ?

  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 39/12 - Tube connectors or tube couplings for joining a flexible tube to a rigid attachment
  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/859 - Connections therefor
  • A61M 60/865 - Devices for guiding or inserting pumps or pumping devices into the patient’s body
  • A61M 39/00 - Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use

10.

BLOOD PUMPS HAVING AN ENCAPSULATED ACTUATOR

      
Application Number IB2023054203
Publication Number 2023/209547
Status In Force
Filing Date 2023-04-24
Publication Date 2023-11-02
Owner CORWAVE SA (France)
Inventor
  • Quelenn, Pierre-Yves
  • Botterbusch, Carl N.
  • Snyder, Trevor
  • Cornat, Francois
  • Condemi, Francesca
  • Le Blanc, Petrus
  • Olivé, Antoine

Abstract

Systems and methods for generating blood flow with a blood pump including a membrane and an encapsulated actuator are described. The pump may be implantable and may include a stator assembly, an electromagnetic assembly supported by the stator assembly, a magnetic assembly, one or more springs attached to the stator and the magnetic assembly, and encapsulation portions that connect the magnetic assembly to the stator assembly. The magnetic assembly may further be coupled to a membrane assembly including a flexible membrane. The electromagnetic assembly may be selectively activated to cause the magnetic assembly to reciprocate, thereby causing the membrane assembly to reciprocate and inducing wavelike undulations in the flexible membrane to pump blood from an inlet to an outlet of the pump. The encapsulation portions may prevent blood from interacting with an interior moving portion of the pump thereby reducing the risk of hemolysis.

IPC Classes  ?

  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/462 - Electromagnetic force
  • A61M 60/837 - Aspects of flexible displacement members, e.g. shapes or materials

11.

Blood pumps having an encapsulated actuator

      
Application Number 18306021
Grant Number 12251550
Status In Force
Filing Date 2023-04-24
First Publication Date 2023-10-26
Grant Date 2025-03-18
Owner CorWave SA (France)
Inventor
  • Quelenn, Pierre-Yves
  • Botterbusch, Carl N.
  • Snyder, Trevor
  • Cornat, Francois
  • Condemi, Francesca
  • Le Blanc, Petrus
  • Olivé, Antoine

Abstract

Systems and methods for generating blood flow with a blood pump including a membrane and an encapsulated actuator are described. The pump may be implantable and may include a stator assembly, an electromagnetic assembly supported by the stator assembly, a magnetic assembly, one or more springs attached to the stator and the magnetic assembly, and encapsulation portions that connect the magnetic assembly to the stator assembly. The magnetic assembly may further be coupled to a membrane assembly including a flexible membrane. The electromagnetic assembly may be selectively activated to cause the magnetic assembly to reciprocate, thereby causing the membrane assembly to reciprocate and inducing wavelike undulations in the flexible membrane to pump blood from an inlet to an outlet of the pump. The encapsulation portions may prevent blood from interacting with an interior moving portion of the pump thereby reducing the risk of hemolysis.

IPC Classes  ?

  • A61M 60/462 - Electromagnetic force
  • A61M 60/835 - Constructional details other than related to driving of positive displacement blood pumps

12.

Implantable pump system having a rectangular membrane

      
Application Number 18131853
Grant Number 12485268
Status In Force
Filing Date 2023-04-06
First Publication Date 2023-08-03
Grant Date 2025-12-02
Owner CorWave SA (France)
Inventor
  • Le Duc De Lillers, Louis-Emmanuel
  • Cornat, Francois
  • Drevet, Jean-Baptiste
  • Botterbusch, Carl N.
  • Schmidt, Alexandra

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.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/462 - Electromagnetic force
  • A61M 60/515 - Regulation using real-time patient data
  • A61M 60/538 - Regulation using real-time blood pump operational parameter data, e.g. motor current
  • A61M 60/861 - Connections or anchorings for connecting or anchoring pumps or pumping devices to parts of the patient’s body
  • A61M 60/88 - Percutaneous cables
  • A61M 60/122 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body

13.

Implantable pump system having an undulating membrane with improved hydraulic performance

      
Application Number 17930404
Grant Number 12214182
Status In Force
Filing Date 2022-09-07
First Publication Date 2023-01-05
Grant Date 2025-02-04
Owner CorWave SA (France)
Inventor
  • Polverelli, Luc
  • Maine, Leopold
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick
  • Schmidt, Alexandra
  • Monticone, Pier-Paolo

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, a battery, a controller, and a programmer. The implantable pump includes a flexible membrane coupled to an actuator assembly via a skirt that extends toward the inlet of the pump and curves to guide blood toward the outlet. The actuator assembly is magnetically engageable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from the inlet, across the skirt, and through the outlet of 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.

IPC Classes  ?

  • A61M 5/142 - Pressure infusion, e.g. using pumps
  • A61M 60/122 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body
  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/40 - Details relating to driving
  • A61M 60/419 - Details relating to driving for non-positive displacement blood pumps the force acting on the blood contacting member being permanent magnetic, e.g. from a rotating magnetic coupling between driving and driven magnets
  • A61M 60/427 - Details relating to driving for positive displacement blood pumps the force acting on the blood contacting member being hydraulic or pneumatic
  • A61M 60/457 - Details relating to driving for positive displacement blood pumps the force acting on the blood contacting member being magnetic
  • A61M 60/459 - Details relating to driving for positive displacement blood pumps the force acting on the blood contacting member being magnetic generated by permanent magnets
  • A61M 60/462 - Electromagnetic force
  • A61M 60/508 - Electronic control means, e.g. for feedback regulation
  • A61M 60/837 - Aspects of flexible displacement members, e.g. shapes or materials
  • A61M 60/857 - Implantable blood tubes
  • A61M 60/50 - Details relating to control

14.

Implantable pump system having an undulating membrane

      
Application Number 17658074
Grant Number 12005245
Status In Force
Filing Date 2022-04-05
First Publication Date 2022-07-21
Grant Date 2024-06-11
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Monticone, Pier-Paolo
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, 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 actuator assembly that is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from 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.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/40 - Details relating to driving
  • A61M 60/462 - Electromagnetic force
  • A61M 60/531 - Regulation using real-time patient data using blood pressure data, e.g. from blood pressure sensors
  • A61M 60/562 - Electronic control means, e.g. for feedback regulation for making blood flow pulsatile in blood pumps that do not intrinsically create pulsatile flow
  • A61M 60/569 - Electronic control means, e.g. for feedback regulation for making blood flow pulsatile in blood pumps that do not intrinsically create pulsatile flow synchronous with the native heart beat
  • A61M 60/857 - Implantable blood tubes
  • A61M 60/876 - Implantable batteries

15.

Systems and methods for controlling an implantable blood pump

      
Application Number 17474935
Grant Number 12453847
Status In Force
Filing Date 2021-09-14
First Publication Date 2022-03-03
Grant Date 2025-10-28
Owner CorWave SA (France)
Inventor
  • Scheffler, Mattias
  • Barabino, Nicolas
  • Rebillat, Marc
  • Monteiro, Eric
  • Mechbal, Nazih

Abstract

Systems and methods for controlling an implantable pump are provided. For example, the exemplary controller for controlling the implantable pump may only rely on the actuator's current measurement. The controller is robust to pressure and flow changes inside the pump head, and allows fast change of pump's operation point. For example, the controller includes, a two stage, nonlinear position observer module based on a reduced order model of the electromagnetic actuator. The controller includes an algorithm that estimates the position of the moving component of the implantable pump based on the actuator's current measurement and adjusts operation of the pump accordingly. Alternatively, the controller may rely on position measurements and/or velocity estimations.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/427 - Details relating to driving for positive displacement blood pumps the force acting on the blood contacting member being hydraulic or pneumatic
  • A61M 60/462 - Electromagnetic force
  • A61M 60/515 - Regulation using real-time patient data
  • A61M 60/523 - Regulation using real-time patient data using blood flow data, e.g. from blood flow transducers
  • A61M 60/538 - Regulation using real-time blood pump operational parameter data, e.g. motor current
  • A61M 60/585 - User interfaces
  • A61M 60/592 - Communication of patient or blood pump data to distant operators for treatment purposes
  • A61M 60/871 - Energy supply devicesConverters therefor

16.

APPARATUS AND METHODS FOR COUPLING A BLOOD PUMP TO THE HEART

      
Application Number 17299749
Status Pending
Filing Date 2019-11-26
First Publication Date 2022-01-20
Owner CorWave SA (France)
Inventor
  • Bourquin, Amelie
  • Rabardel, Antoine
  • Rudelle, Antoine
  • Quelenn, Pierre-Yves

Abstract

An apparatus for coupling a blood pump to a patients heart is provided. The apparatus includes a sewing ring designed to be sutured to the patients heart, wherein the sewing ring has an opening sized and shaped to receive an inflow cannula of the blood pump. The apparatus further includes a locking element coupled to a housing of the blood pump and transitionable between a closed state and an open state. The locking element is structured to receive the sewing ring in the open state and engage the sewing ring in the closed state to prevent translational and rotational movement of the locking element relative to the sewing ring. In addition, the apparatus includes a biased structure designed to bias the locking element in the closed state.

IPC Classes  ?

  • A61M 60/863 - Apex rings
  • A61M 60/81 - Pump housings
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/205 - Non-positive displacement blood pumps

17.

Implantable pump system having a coaxial ventricular cannula

      
Application Number 17409100
Grant Number 11712554
Status In Force
Filing Date 2021-08-23
First Publication Date 2021-12-09
Grant Date 2023-08-01
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable cardiovascular blood pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable cardiovascular pump, 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 cardiovascular pump. The implantable cardiovascular blood pump includes a coaxial inflow cannula and outflow cannula in fluid communication with one another and with a pumping mechanism. The pumping mechanism may be a vibrating membrane pump which may include a flexible membrane coupled to an electromagnetic actuator assembly that causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable cardiovascular pump. The implantable cardiovascular pump may be programmed to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while avoiding thrombus formation, hemolysis and/or platelet activation.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61F 2/82 - Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
  • A61F 2/24 - Heart valves
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/508 - Electronic control means, e.g. for feedback regulation
  • A61M 60/462 - Electromagnetic force
  • A61M 60/88 - Percutaneous cables
  • A61M 60/837 - Aspects of flexible displacement members, e.g. shapes or materials
  • A61M 60/859 - Connections therefor
  • A61M 60/174 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart inside a ventricle, e.g. intraventricular balloon pumps discharging the blood to the ventricle or arterial system via a cannula internal to the ventricle or arterial system

18.

IMPLANTABLE BLOOD PUMPS COMPRISING A LINEAR BEARING

      
Application Number IB2021051879
Publication Number 2021/176423
Status In Force
Filing Date 2021-03-05
Publication Date 2021-09-10
Owner CORWAVE SA (France)
Inventor
  • Snyder, Trevor
  • Botterbusch, Carl N.
  • Le Blanc, Petrus
  • Wittig, Bastien

Abstract

A blood pump (20) incorporating linear bearing (242, 243) technology are provided. The pump (20) includes an actuator assembly, a moving assembly, and a linear hydrodynamic or thin-film bearing positioned within a housing. The moving assembly may include at least one magnet (225) and the actuator assembly may include a magnetic assembly (76) for selectively generating a magnetic field to cause linear reciprocating movement of the moving assembly with respect to the actuator assembly. The linear hydrodynamic or thin- film bearing may include a bearing portion on the moving assembly that is in fluid communication with a bearing portion on the actuator assembly or pump housing. The implantable pump may be suitable for use as a left ventricular assist device (LVAD).

IPC Classes  ?

  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/462 - Electromagnetic force
  • A61M 60/515 - Regulation using real-time patient data
  • A61M 60/531 - Regulation using real-time patient data using blood pressure data, e.g. from blood pressure sensors
  • A61M 60/546 - Regulation using real-time blood pump operational parameter data, e.g. motor current of blood flow, e.g. by adapting rotor speed
  • A61M 60/554 - Regulation using real-time blood pump operational parameter data, e.g. motor current of blood pressure
  • A61M 60/569 - Electronic control means, e.g. for feedback regulation for making blood flow pulsatile in blood pumps that do not intrinsically create pulsatile flow synchronous with the native heart beat
  • A61M 60/592 - Communication of patient or blood pump data to distant operators for treatment purposes
  • A61M 60/837 - Aspects of flexible displacement members, e.g. shapes or materials
  • A61M 60/88 - Percutaneous cables

19.

Implantable blood pumps comprising a linear bearing

      
Application Number 17193867
Grant Number 11191946
Status In Force
Filing Date 2021-03-05
First Publication Date 2021-09-09
Grant Date 2021-12-07
Owner CorWave SA (France)
Inventor
  • Snyder, Trevor
  • Botterbusch, Carl N.
  • Le Blanc, Petrus
  • Wittig, Bastien

Abstract

Systems and methods for generating blood flow with a pump incorporating linear bearing technology are provided. The pump may include an actuator assembly, a moving assembly, and a linear hydrodynamic or thin-film bearing positioned within a housing. The moving assembly may include at least one magnet and the actuator assembly may include a magnetic assembly for selectively generating a magnetic field to cause linear reciprocating movement of the moving assembly with respect to the actuator assembly. The linear hydrodynamic or thin-film bearing may include a bearing portion on the moving assembly that is in fluid communication with a bearing portion on the actuator assembly or pump housing. The system may involve an implantable pump, an extracorporeal battery and a controller coupled to the implantable pump. The implantable pump may be suitable for use as a left ventricular assist device (LVAD).

IPC Classes  ?

  • A61M 60/818 - Bearings
  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/419 - Details relating to driving for non-positive displacement blood pumps the force acting on the blood contacting member being permanent magnetic, e.g. from a rotating magnetic coupling between driving and driven magnets

20.

Implantable pump system having a rectangular membrane

      
Application Number 17179961
Grant Number 11623077
Status In Force
Filing Date 2021-02-19
First Publication Date 2021-06-10
Grant Date 2023-04-11
Owner CorWave SA (France)
Inventor
  • Le Duc De Lillers, Louis-Emmanuel
  • Cornat, Francois
  • Drevet, Jean-Baptiste
  • Botterbusch, Carl N.
  • Schmidt, Alexandra

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.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/462 - Electromagnetic force
  • A61M 60/88 - Percutaneous cables
  • A61M 60/861 - Connections or anchorings for connecting or anchoring pumps or pumping devices to parts of the patient’s body
  • A61M 60/538 - Regulation using real-time blood pump operational parameter data, e.g. motor current
  • A61M 60/515 - Regulation using real-time patient data
  • A61M 60/122 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body

21.

Undulating-membrane fluid circulator

      
Application Number 16762909
Grant Number 11512689
Status In Force
Filing Date 2018-11-09
First Publication Date 2021-06-10
Grant Date 2022-11-29
Owner CorWave SA (France)
Inventor
  • Drevet, Jean-Baptiste
  • Guillemin, Harold

Abstract

The present invention relates to an undulating-membrane fluid circulator having an intake port (3), a pump housing (4) delimiting a propulsion chamber (5), a discharge port (6), and an undulating membrane (2) paired with a drive means permitting an undulating movement of the membrane (2) between the upstream (8) and downstream (9) edges thereof, the undulating membrane (2) being capable of moving a fluid towards the discharge port (6). According to the invention, the circulator further comprises at least one means (7) for guiding the fluid, said means being disposed in the fluid propulsion chamber (5) near one of the edges (8, 9) of the undulating membrane (2) and making it possible to channel the fluid flow in a direction substantially parallel to the displacement of the wave along the membrane (2).

IPC Classes  ?

  • F04B 43/00 - Machines, pumps, or pumping installations having flexible working members
  • F04B 43/04 - Pumps having electric drive

22.

Implantable pump system having an undulating membrane with improved hydraulic performance

      
Application Number 16766267
Grant Number 11446480
Status In Force
Filing Date 2018-11-22
First Publication Date 2020-11-26
Grant Date 2022-09-20
Owner CorWave SA (France)
Inventor
  • Polverelli, Luc
  • Maine, Leopold
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick
  • Schmidt, Alexandra
  • Monticone, Pier-Paolo

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, a battery, a controller, and a programmer. The implantable pump includes a flexible membrane coupled to an actuator assembly via a skirt that extends toward the inlet of the pump and curves to guide blood toward the outlet. The actuator assembly is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from the inlet, across the skirt, and through the outlet of 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.

IPC Classes  ?

  • A61M 1/00 - Suction or pumping devices for medical purposesDevices for carrying-off, for treatment of, or for carrying-over, body-liquidsDrainage systems
  • A61M 1/36 - Other treatment of blood in a by-pass of the natural circulatory system, e.g. temperature adaptation, irradiation
  • A61M 60/00 - Blood pumpsDevices for mechanical circulatory actuationBalloon pumps for circulatory assistance
  • A61M 60/122 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body
  • A61M 60/232 - Centrifugal pumps
  • A61M 60/80 - Constructional details other than related to driving
  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 5/142 - Pressure infusion, e.g. using pumps
  • A61M 60/40 - Details relating to driving
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/419 - Details relating to driving for non-positive displacement blood pumps the force acting on the blood contacting member being permanent magnetic, e.g. from a rotating magnetic coupling between driving and driven magnets
  • A61M 60/857 - Implantable blood tubes
  • A61M 60/50 - Details relating to control

23.

SYSTEMS AND METHODS FOR CONTROLLING AN IMPLANTABLE BLOOD PUMP

      
Application Number IB2020052337
Publication Number 2020/188453
Status In Force
Filing Date 2020-03-13
Publication Date 2020-09-24
Owner CORWAVE SA (France)
Inventor
  • Scheffler, Mattias
  • Barabino, Nicolas
  • Rebillat, Marc
  • Monteiro, Eric
  • Mechbal, Nazih

Abstract

Systems and methods for controlling an implantable pump are provided. For example, the exemplary controller for controlling the implantable pump may only rely on the actuator's current measurement. The controller is robust to pressure and flow changes inside the pump head, and allows fast change of pump's operation point. For example, the controller includes, a two stage, nonlinear position observer module based on a reduced order model of the electromagnetic actuator. The controller includes an algorithm that estimates the position of the moving component of the implantable pump based on the actuator's current measurement and adjusts operation of the pump accordingly. Alternatively, the controller may rely on position measurements and/or velocity estimations.

IPC Classes  ?

  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body
  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps

24.

Systems and methods for controlling an implantable blood pump

      
Application Number 16819021
Grant Number 10799625
Status In Force
Filing Date 2020-03-13
First Publication Date 2020-09-17
Grant Date 2020-10-13
Owner CorWave SA (France)
Inventor
  • Scheffler, Mattias
  • Barabino, Nicolas
  • Rebillat, Marc
  • Monteiro, Eric
  • Mechbal, Nazih

Abstract

Systems and methods for controlling an implantable pump are provided. For example, the exemplary controller for controlling the implantable pump may only rely on the actuator's current measurement. The controller is robust to pressure and flow changes inside the pump head, and allows fast change of pump's operation point. For example, the controller includes, a two stage, nonlinear position observer module based on a reduced order model of the electromagnetic actuator. The controller includes an algorithm that estimates the position of the moving component of the implantable pump based on the actuator's current measurement and adjusts operation of the pump accordingly. Alternatively, the controller may rely on position measurements and/or velocity estimations.

IPC Classes  ?

  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps
  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body

25.

APPARATUS AND METHODS FOR COUPLING A BLOOD PUMP TO THE HEART

      
Application Number IB2019060144
Publication Number 2020/115607
Status In Force
Filing Date 2019-11-26
Publication Date 2020-06-11
Owner CORWAVE SA (France)
Inventor
  • Bourquin, Amelie
  • Rabardel, Antoine
  • Rudelle, Antoine
  • Quelenn, Pierre-Yves

Abstract

An apparatus for coupling a blood pump to a patient's heart is provided. The apparatus includes a sewing ring designed to be sutured to the patient's heart, wherein the sewing ring has an opening sized and shaped to receive an inflow cannula of the blood pump. The apparatus further includes a locking element coupled to a housing of the blood pump and transitionable between a closed state and an open state. The locking element is structured to receive the sewing ring in the open state and engage the sewing ring in the closed state to prevent translational and rotational movement of the locking element relative to the sewing ring. In addition, the apparatus includes a biased structure designed to bias the locking element in the closed state.

IPC Classes  ?

  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps
  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body

26.

Implantable pump system having an undulating membrane

      
Application Number 16557711
Grant Number 11298522
Status In Force
Filing Date 2019-08-30
First Publication Date 2019-12-19
Grant Date 2022-04-12
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Monticone, Pier-Paolo
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, 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 actuator assembly that is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from 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.

IPC Classes  ?

  • A61M 60/40 - Details relating to driving
  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/562 - Electronic control means, e.g. for feedback regulation for making blood flow pulsatile in blood pumps that do not intrinsically create pulsatile flow

27.

IMPLANTABLE PUMP SYSTEM HAVING AN UNDULATING MEMBRANE WITH IMPROVED HYDRAULIC PERFORMANCE

      
Application Number IB2018059199
Publication Number 2019/106493
Status In Force
Filing Date 2018-11-22
Publication Date 2019-06-06
Owner CORWAVE SA (France)
Inventor
  • Polverelli, Luc
  • Maine, Leopold
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick
  • Schmidt, Alexandra
  • Monticone, Pier-Paolo

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, a battery, a controller, and a programmer. The implantable pump includes a flexible membrane coupled to an actuator assembly via a skirt that extends toward the inlet of the pump and curves to guide blood toward the outlet. The actuator assembly is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from the inlet, across the skirt, and through the outlet of 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.

IPC Classes  ?

  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps
  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body

28.

Implantable pump system having a coaxial ventricular cannula

      
Application Number 16234519
Grant Number 11097091
Status In Force
Filing Date 2018-12-27
First Publication Date 2019-05-02
Grant Date 2021-08-24
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable cardiovascular blood pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable cardiovascular pump, 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 cardiovascular pump. The implantable cardiovascular blood pump includes a coaxial inflow cannula and outflow cannula in fluid communication with one another and with a pumping mechanism. The pumping mechanism may be a vibrating membrane pump which may include a flexible membrane coupled to an electromagnetic actuator assembly that causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable cardiovascular pump. The implantable cardiovascular pump may be programmed to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while avoiding thrombus formation, hemolysis and/or platelet activation.

IPC Classes  ?

  • A61M 60/148 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable via, into, inside, in line, branching on, or around a blood vessel in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices
  • A61F 2/82 - Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
  • A61F 2/24 - Heart valves
  • A61M 60/40 - Details relating to driving
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders

29.

Implantable pump system having an undulating membrane with improved hydraulic performance

      
Application Number 15953269
Grant Number 10188779
Status In Force
Filing Date 2018-04-13
First Publication Date 2019-01-29
Grant Date 2019-01-29
Owner CorWave SA (France)
Inventor
  • Polverelli, Luc
  • Maine, Leopold
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick
  • Schmidt, Alexandra
  • Monticone, Pier-Paolo

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, a battery, a controller, and a programmer. The implantable pump includes a flexible membrane coupled to an actuator assembly via a skirt that extends toward the inlet of the pump and curves to guide blood toward the outlet. The actuator assembly is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from the inlet, across the skirt, and through the outlet of 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.

IPC Classes  ?

  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body
  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps

30.

Implantable pump system having a rectangular membrane

      
Application Number 15940856
Grant Number 10933181
Status In Force
Filing Date 2018-03-29
First Publication Date 2018-12-27
Grant Date 2021-03-02
Owner CorWave SA (France)
Inventor
  • Le Duc De Lillers, Louis-Emmanuel
  • Cornat, Francois
  • Drevet, Jean-Baptiste
  • Botterbusch, Carl N.
  • Schmidt, Alexandra

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.

IPC Classes  ?

  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps
  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body

31.

IMPLANTABLE PUMP SYSTEM HAVING A RECTANGULAR MEMBRANE

      
Application Number IB2018052215
Publication Number 2018/178939
Status In Force
Filing Date 2018-03-29
Publication Date 2018-10-04
Owner CORWAVE SA (France)
Inventor
  • Le Duc De Lillers, Louis-Emmanuel
  • Cornat, Francois
  • Drevet, Jean-Baptiste
  • Botterbusch, Carl N.
  • Schmidt, Alexandra

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.

IPC Classes  ?

  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps
  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body

32.

Implantable pump system having an undulating membrane

      
Application Number 15976831
Grant Number 10398821
Status In Force
Filing Date 2018-05-10
First Publication Date 2018-09-13
Grant Date 2019-09-03
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Monticone, Pier-Paolo
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, 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 actuator assembly that is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from 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.

IPC Classes  ?

  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body
  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps

33.

IMPLANTABLE PUMP SYSTEM HAVING AN UNDULATING MEMBRANE

      
Application Number IB2017052068
Publication Number 2017/178959
Status In Force
Filing Date 2017-04-11
Publication Date 2017-10-19
Owner CORWAVE SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Monticone, Pier-Paolo
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, 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 actuator assembly that is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from 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.

IPC Classes  ?

  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body
  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps

34.

IMPLANTABLE PUMP SYSTEM HAVING A COAXIAL VENTRICULAR CANNULA

      
Application Number IB2017052069
Publication Number 2017/178960
Status In Force
Filing Date 2017-04-11
Publication Date 2017-10-19
Owner CORWAVE SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable cardiovascular blood pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable cardiovascular pump, 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 cardiovascular pump. The implantable cardiovascular blood pump includes a coaxial inflow cannula and outflow cannula in fluid communication with one another and with a pumping mechanism. The pumping mechanism may be a vibrating membrane pump which may include a flexible membrane coupled to an electromagnetic actuator assembly that causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable cardiovascular pump. The implantable cardiovascular pump may be programmed to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while avoiding thrombus formation, hemolysis and/or platelet activation.

IPC Classes  ?

  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body
  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps

35.

Implantable pump system having an undulating membrane

      
Application Number 15484101
Grant Number 09968720
Status In Force
Filing Date 2017-04-10
First Publication Date 2017-10-12
Grant Date 2018-05-15
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Monticone, Pier-Paolo
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable pump, 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 actuator assembly that is magnetically engagable with electromagnetic coils, so that when the electromagnetic coils are energized, the actuator assembly causes wavelike undulations to propagate along the flexible membrane to propel blood from 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.

IPC Classes  ?

  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps
  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body

36.

Implantable pump system having a coaxial ventricular cannula

      
Application Number 15484108
Grant Number 10166319
Status In Force
Filing Date 2017-04-10
First Publication Date 2017-10-12
Grant Date 2019-01-01
Owner CorWave SA (France)
Inventor
  • Botterbusch, Carl N.
  • Lucquin, Silvere
  • Drevet, Jean-Baptiste
  • Guignabert, Adrien
  • Meneroud, Patrick

Abstract

An implantable cardiovascular blood pump system is provided, suitable for use as a left ventricular assist device (LVAD) system, having an implantable cardiovascular pump, 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 cardiovascular pump. The implantable cardiovascular blood pump includes a coaxial inflow cannula and outflow cannula in fluid communication with one another and with a pumping mechanism. The pumping mechanism may be a vibrating membrane pump which may include a flexible membrane coupled to an electromagnetic actuator assembly that causes wavelike undulations to propagate along the flexible membrane to propel blood through the implantable cardiovascular pump. The implantable cardiovascular pump may be programmed to operate at frequencies and duty cycles that mimic physiologic flow rates and pulsatility while avoiding thrombus formation, hemolysis and/or platelet activation.

IPC Classes  ?

  • A61M 1/12 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps implantable into the body
  • A61M 1/10 - Blood pumps; Artificial hearts; Devices for mechanical circulatory assistance, e.g. intra-aortic balloon pumps
  • A61F 2/82 - Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
  • A61F 2/24 - Heart valves

37.

BLOOD PUMPS HAVING AN ENCAPSULATED ACTUATOR

      
Document Number 03250624
Status Pending
Filing Date 2023-04-24
Owner CORWAVE SA (France)
Inventor
  • Quelenn, Pierre-Yves
  • Botterbusch, Carl N.
  • Snyder, Trevor
  • Cornat, Francois
  • Condemi, Francesca
  • Le Blanc, Petrus
  • Olivé, Antoine

Abstract

Systems and methods for generating blood flow with a blood pump including a membrane and an encapsulated actuator are described. The pump may be implantable and may include a stator assembly, an electromagnetic assembly supported by the stator assembly, a magnetic assembly, one or more springs attached to the stator and the magnetic assembly, and encapsulation portions that connect the magnetic assembly to the stator assembly. The magnetic assembly may further be coupled to a membrane assembly including a flexible membrane. The electromagnetic assembly may be selectively activated to cause the magnetic assembly to reciprocate, thereby causing the membrane assembly to reciprocate and inducing wavelike undulations in the flexible membrane to pump blood from an inlet to an outlet of the pump. The encapsulation portions may prevent blood from interacting with an interior moving portion of the pump thereby reducing the risk of hemolysis.

IPC Classes  ?

  • A61M 60/178 - Implantable pumps or pumping devices, i.e. the blood being pumped inside the patient’s body implantable in, on, or around the heart drawing blood from a ventricle and returning the blood to the arterial system via a cannula external to the ventricle, e.g. left or right ventricular assist devices
  • A61M 60/268 - Positive displacement blood pumps including a displacement member directly acting on the blood the displacement member being flexible, e.g. membranes, diaphragms or bladders
  • A61M 60/462 - Electromagnetic force
  • A61M 60/837 - Aspects of flexible displacement members, e.g. shapes or materials