IP Library Granted Patent US 9,974,932
Granted Patent B2
US 9,974,932 · App. 14/822,662 · Granted May 22, 2018

Method and sensor for detecting catheter obstruction

Inventors: Brian J. Kim (Los Angeles, CA); Ellis Meng (La Canada Flintridge, CA)
Assignee: University of Southern California
A61M27/006A61B5/0538
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Quick Facts
Patent No.
US 9,974,932
App. No.
14/822,662
Granted
May 22, 2018
Kind
B2
Abstract

A self-monitoring catheter system may detect an obstruction during use of a catheter. The system may include a catheter with an interior lumen that has one or more ports into the lumen; a first and a second electrode; and an impedance measurement instrument that measures changes in the impedance between the first and the second electrodes after the first electrode is exposed to fluid within the catheter lumen, thereby signaling an obstruction during use of the catheter.

Claims (20)

1. A self-monitoring catheter system for detecting an obstruction during use of a catheter comprising:

a catheter with an interior lumen that has one or more ports into the lumen;

a first and a second electrode; and

an impedance measurement instrument that measures and signals changes in the impedance between the first and the second electrodes that is caused by an obstruction during use of the catheter after the first electrode is exposed to fluid within the catheter lumen,

wherein the first or the second electrode is affixed to a polymer substrate within the catheter lumen.

2. The self-monitoring catheter system of claim 1 wherein the first electrode is within the catheter lumen.

3. The self-monitoring catheter system of claim 2 wherein the second electrode is within the catheter lumen.

4. The self-monitoring catheter system of claim 2 wherein the second electrode is not within the catheter lumen.

5. The self-monitoring catheter system of claim 4 wherein:

the catheter is configured to be positioned within a living body; and

the second electrode is configured to be positioned on an exterior skin of the living body.

6. The self-monitoring catheter system of claim 2 wherein the catheter and the second electrode are configured to be positioned within a living body.

7. The self-monitoring catheter system of claim 1 further comprising a hydrocephalus shunt or extraventricular drain that shunts fluid within the catheter.

8. The self-monitoring catheter system of claim 1 wherein the first electrode is affixed to a polymer substrate.

9. The self-monitoring catheter system of claim 8 wherein the polymer substrate is within the catheter lumen.

10. The self-monitoring catheter system of claim 9 wherein the polymer substrate is made of Parylene C.

11. The self-monitoring catheter system of claim 8 wherein the second electrode is affixed to the polymer substrate.

12. The self-monitoring catheter system of claim 11 wherein the polymer substrate is within the catheter lumen.

13. The self-monitoring catheter system of claim 12 wherein the polymer substrate is made of Parylene C.

14. The self-monitoring catheter system of claim 1 wherein the impedance measurement instrument applies an AC signal across the electrodes at frequency within the range of 1 to 50 kHz.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2015
From: KIM, BRIAN J.; MENG, ELLIS
To: UNIVERSITY OF SOUTHERN CALIFORNIA
Reel/Frame 036292/0871 →
Continuity (2)
Provisional Application 62046424 · Sep 5, 2014
Related Publication 20160067464A1 · Mar 10, 2016