IP Library Granted Patent US 7,510,533
Granted Patent B2
US 7,510,533 · App. 10/907,665 · Granted Mar 31, 2009

Pressure sensing valve

Assignee: Codman & Shurtleff, Inc.
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Quick Facts
Patent No.
US 7,510,533
App. No.
10/907,665
Granted
Mar 31, 2009
Kind
B2
Abstract

A pressure sensing catheter having a pressure sensor and an antenna that is coupled to the pressure sensor, e.g., by a connector, are provided. The pressure sensor can be adapted to measure a pressure surrounding the catheter, and the antenna can be adapted to telemetrically communicate the measured pressure to an external device. In an exemplary embodiment, the antenna, pressure sensor, and/or connector are hermetically sealed, e.g., by the catheter and/or a coating, to prevent the antenna, pressure sensor, and connector from coming into contact with fluid, thereby allowing the catheter to be permanently implanted or otherwise used for long term use. Exemplary methods for manufacturing and using pressure sensing catheters are also provided.

Claims (33)

1. An implantable valve, comprising

a valve housing adapted to receive fluid flow therethrough between a valve inlet and a valve outlet;

a valve assembly disposed within the valve housing and adapted to control a rate of fluid flowing through the valve housing; and

a sensor disposed within the valve housing and adapted to measure a pressure of fluid flowing through the valve housing,

wherein the sensor is disposed within a pressure sensor assembly, the pressure sensor assembly disposed within the valve housing and being in fluid communication with the valve inlet and valve outlet,

wherein the pressure sensor assembly includes a domed portion defining a reservoir therein, and wherein the sensor is adapted to measure a pressure of fluid flowing through the reservoir, and

wherein the pressure sensor assembly includes a needle guard disposed therein and positioned between the domed portion and the sensor, the needle guard being adapted to protect the sensor from a needle being inserted through the domed portion.

2. The implantable valve of claim 1 , wherein the sensor is coupled to an antenna that is adapted to communicate a sensed pressure to an external reading device.

3. The implantable valve of claim 2 , wherein the sensor and antenna are coated with a fluid-impermeable coating.

4. The implantable valve of claim 1 , wherein the pressure sensor assembly includes a washer that is adapted to seat the sensor.

5. The implantable valve of claim 4 , wherein the sensor is coupled to a coiled antenna, and wherein the sensor and coiled antenna are adapted to be received within a central opening formed in the washer.

6. The implantable valve of claim 4 , wherein the sensor is coupled to a coiled antenna, and wherein the sensor and coiled antenna are adapted to be received within a central opening formed in the washer.

7. The implantable valve of claim 1 , wherein the needle guard includes an opening formed therein and adapted to expose a portion of the sensor to fluid flowing through the reservoir.

8. The implantable valve of claim 1 , wherein the pressure sensor assembly includes an inlet tube adapted to receive fluid flowing into the valve inlet, and an outlet tube adapted to deliver fluid to the valve outlet.

9. The implantable valve of claim 1 , wherein the pressure sensor assembly includes an inlet tube adapted to receive fluid flowing into the valve inlet, and an outlet tube adapted to deliver fluid to the valve outlet.

10. The implantable device of claim 9 , wherein the valve assembly is disposed between the outlet tube of the pressure sensor assembly and the valve outlet.

11. The implantable device of claim 9 , wherein the valve assembly is disposed between the outlet tube of the pressure sensor assembly and the valve outlet.

12. An implantable valve, comprising:

a housing having a pressure sensor assembly and a valve assembly disposed therein, the pressure sensor assembly being adapted to measure a pressure of fluid flowing through the housing, and the valve assembly being adapted to control a rate of fluid flow through the housing,

wherein the pressure sensor assembly includes a housing defining a reservoir formed therein for receiving fluid flow therethrough, the pressure sensor being adapted to measure a pressure of fluid flowing through the reservoir, and

wherein the pressure sensor assembly includes a guard member disposed therein and adapted to protect the sensor from a needle being inserted through the housing.

13. The implantable valve of claim 12 , wherein the pressure sensor assembly includes a pressure sensor that is coupled to an antenna.

14. The implantable valve of claim 13 , wherein the pressure sensor and the antenna include a coating disposed therearound such that the pressure sensor and antenna are fluid-impermeable.

15. An implantable valve, comprising

a valve housing adapted to receive fluid flow therethrough between a valve inlet and a valve outlet;

a valve assembly disposed within the valve housing and adapted to control a rate of fluid flowing through the valve housing; and

a sensor disposed within the valve housing and adapted to measure a pressure of fluid flowing through the valve housing,

wherein the sensor is disposed within a pressure sensor assembly, the pressure sensor assembly disposed within the valve housing and being in fluid communication with the valve inlet and valve outlet, and

wherein the pressure sensor assembly includes a domed portion defining a reservoir therein and a washer that is adapted to seat the sensor, and wherein the sensor is adapted to measure a pressure of fluid flowing through the reservoir.

16. The implantable valve of claim 15 , wherein the sensor is coupled to an antenna that is adapted to communicate a sensed pressure to an external reading device.

17. The implantable valve of claim 16 , wherein the sensor and antenna are coated with a fluid-impermeable coating.

18. The implantable valve of claim 15 , wherein the pressure sensor assembly includes a needle guard disposed therein and positioned between the domed portion and the sensor, the needle guard being adapted to protect the sensor from a needle being inserted through the domed portion.

19. The implantable valve of claim 18 , wherein the needle guard includes an opening formed therein and adapted to expose a portion of the sensor to fluid flowing through the reservoir.

Assignments (7)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2018
From: DEPUY SYNTHES PRODUCTS, INC.
To: INTEGRA LIFESCIENCES SWITZERLAND SARL
Reel/Frame 045569/0299 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2018
From: DEPUY SPINE, LLC
To: HAND INNOVATIONS LLC
Reel/Frame 045074/0943 →
CHANGE OF NAME Recorded Mar 1, 2018
From: HAND INNOVATIONS LLC
To: DEPUY SYNTHES PRODUCTS, LLC
Reel/Frame 045476/0712 →
CHANGE OF NAME Recorded Mar 1, 2018
From: DEPUY SYNTHES PRODUCTS, LLC
To: DEPUY SYNTHES PRODUCTS, INC.
Reel/Frame 045479/0763 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2018
From: CODMAN & SHURTLEFF, INC.
To: DEPUY SPINE, LLC
Reel/Frame 045058/0627 →
RE-RECORD TO CORRECT THE NAME OF THE FIFTH ASSIGNOR ON A DOCUMENT PREVIOUSLY RECORDED ON REEL 015885 RAME 0823 Recorded Feb 16, 2006
From: MAUGE, CHRISTOPHE; DEXTRADEUR, ALAN J.; MCCUSKER, DANIEL J.; MEYER, STEFAN; BOEDECKER, VOLKER; KRAUS, ROBERT G.; OSTERMEIER, MAX G.
To: CODMAN & SHURTLEFF, INC.
Reel/Frame 017222/0537 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2005
From: MAUGE, CHRISTOPHE; DEXTRADEUR, ALAN J.; MCCUSKER, DANIEL J.; MEYER, STEFAN; BODECKER, VOLKER; KRAUS, ROBERT G.; OSTERMEIER, MAX G.
To: CODMAN & SHURTLEFF, INC.
Reel/Frame 015885/0823 →
Continuity (2)
Provisional Application 6066175800 · Mar 15, 2005
Related Publication 20060211946A1 · Sep 21, 2006