IP Library Granted Patent US 11,235,131
Granted Patent B2
US 11,235,131 · App. 16/378,376 · Granted Feb 1, 2022

Apparatus and methods for treating intracorporeal fluid accumulation

Inventors: Thomas Werner Degen (Birmensdorf, CH); Daniel Thomas Thommen (Steinhausen, CH); Noel L. Johnson (Saratoga, CA)
Assignee: Sequana Medical NV
A61M27/002A61M1/28A61M5/14236A61M5/14276G16H40/63A61M2205/10A61M2205/3368A61M2205/3379A61M2205/3507A61M2205/3569A61M2205/502A61M2205/52A61M2205/8243A61M2230/005A61M2230/42G16H20/17
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Quick Facts
Patent No.
US 11,235,131
App. No.
16/378,376
Granted
Feb 1, 2022
Kind
B2
Abstract

A fluid management system for the treatment of ascites, pleural effusion or pericardial effusion is provided including an implantable device including a pump, control circuitry, battery and transceiver; a charging and communication system configured to periodically charge the battery and communicate with the implantable device to retrieve performance data; and monitoring and control software, suitable for use with conventional personal computers, for configuring and controlling operation of the implantable device and charging and communication system. The implantable device includes a number of features that provide automated movement of fluid to the bladder with reduced risk of clogging, with no patient involvement other than occasional recharging of the battery of the implantable device. The monitoring and control software is available only to the treating physician, such that the physician interacts with the implantable device via the charging and communication system.

Claims (26)

1. A fluid management system comprising:

an inflow catheter comprising an inlet end and an outlet end, the inlet end in fluid communication with a first cavity;

an outflow catheter comprising an inlet end and an outlet end, the outlet end in fluid communication with a second cavity; and

an implantable device coupled to the outlet end of the inflow catheter and the inlet end of the outflow catheter, the implantable device comprising a housing containing a battery, at least one sensor, a processor in electrical communication with the at least one sensor, and a positive displacement gear pump coupled to an electric motor, the at least one sensor configured to sense positional data and a direction of rotation of the electric motor, and the processor configured to receive at least one signal indicative of the positional data and the direction of rotation of the electric motor sensed by the at least one sensor and to process the at least one signal to generate information indicative of a volume of fluid pumped by the implantable device.

2. The fluid management system of claim 1 , wherein the at least one sensor comprises at least one hall effect sensor.

3. The fluid management system of claim 1 , wherein the positional data of the electric motor processed by the processor comprises information on a degree of rotation of the positive displacement gear pump.

4. The fluid management system of claim 1 , wherein the processor is configured to process the at least one signal to generate information indicative of a flow rate of fluid pumped by the implantable device.

5. The fluid management system of claim 1 , wherein the processor is configured to process the at least one signal to generate information indicative of a viscosity of fluid pumped by the implantable device.

6. The fluid management system of claim 1 , wherein the inlet end of the inflow catheter is in fluid communication with the first cavity that is one of the following: a peritoneal cavity, a pleural cavity, or a pericardial cavity.

7. The fluid management system of claim 1 , wherein the outlet end of the outflow catheter is in fluid communication with the second cavity that is a bladder or a peritoneal cavity.

8. The fluid management system of claim 1 , further comprising a charging and communication system in wireless communication with the implantable device, the charging and communication system configured to charge the battery.

9. The fluid management system of claim 8 , wherein the charging and communication system is configured to receive the information indicative of the volume of fluid pumped from the implantable device.

10. The fluid management system of claim 9 , further comprising monitoring and control software in communication with the charging and communication system, the monitoring and control software configured to permit control of operational parameters of the implantable device and receive the information indicative of the volume of fluid pumped from the charging and communication system.

11. A method for managing fluid in a system, the method comprising:

providing an inflow catheter comprising an inlet end and an outlet end, the inlet end in fluid communication with a first cavity; an outflow catheter comprising an inlet end and an outlet end, the outlet end in fluid communication with a second cavity;

pumping, by an implantable device coupled to the outlet end of the inflow catheter and the inlet end of the outflow catheter, fluid from the first cavity to the second cavity; the implantable device comprising a housing containing a battery, at least one sensor, a processor in electrical communication with the at least one sensor, and a positive displacement gear pump coupled to an electric motor,

sensing, via the at least one sensor, positional data and a direction of rotation of the electrical motor associated with pumping the fluid by the implantable device;

and generating information indicative of a volume of fluid pumped by the implantable device based on the positional data and the direction of rotation.

12. The method of claim 11 , wherein sensing the positional data and the direction of rotation comprises sensing using at least one hall effect sensor within the implantable device.

13. The method of claim 11 , further comprising generating information indicative of a flow rate of the fluid pumped by the implantable device.

14. The method of claim 11 , further comprising generating information indicative a viscosity of the fluid pumped by the implantable device.

15. The method of claim 11 , wherein pumping the fluid from the first cavity comprises pumping the fluid through the inflow catheter in fluid communication with one of the following: a peritoneal cavity, a pleural cavity, or a pericardial cavity.

16. The method of claim 11 , wherein pumping the fluid to the second cavity comprises pumping the fluid through the outflow catheter in fluid communication with a bladder or a peritoneal cavity.

17. The method of claim 11 , further comprising charging, via an external charging and communication system, the implantable device.

18. The method of claim 17 , further comprising communicating the information indicative of the volume of fluid pumped by the implantable device to the charging and communication system.

19. The method of claim 11 , further comprising displaying, using monitoring and control software, the volume of fluid pumped based on the information indicative of the volume of fluid pumped by the implantable device.

Assignments (4)
SECURITY INTEREST Recorded Sep 25, 2024
From: SEQUANA MEDICAL NV
To: KREOS CAPITAL VII (UK) LIMITED
Reel/Frame 069049/0129 →
RELEASE OF SECURITY INTEREST Recorded Jul 31, 2020
From: BOOTSTRAP EUROPE S.C.SP.
To: SEQUANA MEDICAL NV
Reel/Frame 053375/0176 →
CHANGE OF NAME Recorded Jun 9, 2019
From: SEQUANA MEDICAL AG
To: SEQUANA MEDICAL NV
Reel/Frame 049414/0245 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2019
From: DEGEN, THOMAS WERNER; THOMMEN, DANIEL THOMAS; JOHNSON, NOEL L.
To: SEQUANA MEDICAL AG
Reel/Frame 048824/0847 →
Continuity (4)
Continuation 14874187 · Oct 2, 2015
Continuation 13397509 · Feb 15, 2012
Provisional Application 61443668 · Feb 16, 2011
Related Publication 20190232029A1 · Aug 1, 2019
Cited By (1)
US 12,623,011