IP Library Granted Patent US 9,014,775
Granted Patent B2
US 9,014,775 · App. 12/875,939 · Granted Apr 21, 2015

Multi-parametric fluid determination systems using complex admittance

Inventors: James W. Bennett (Santa Clara, CA); Leonid F. Matsiev (San Jose, CA)
Assignee: S.E.A. Medical Systems, Inc.
A61M5/168A61M5/16827G06F19/3468G01N21/17G01N27/02A61M2205/331A61M2205/3313A61M2205/3317A61M2205/3375A61M2205/33A61M2209/02
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Quick Facts
Patent No.
US 9,014,775
App. No.
12/875,939
Granted
Apr 21, 2015
Kind
B2
Abstract

An apparatus, systems, and methods related to determining an identity and a concentration of an intravenous fluid. The apparatus, the systems, and the methods described herein may provide near real-time monitoring and/or determination of an identity of components of the intravenous fluid. A concentration and the identity of all of the components of the intravenous fluid may be identified simultaneously.

Claims (28)

1. A method for determining an identity and a concentration of an intravenous fluid by detecting fluid interactions at first and second sensing surfaces, the method comprising:

contacting the first and second sensing surfaces of a sensor of a device for multi-parametric testing of the intravenous fluid to the intravenous fluid;

determining a multi-parametric profile from the intravenous fluid, wherein the multi-parametric profile comprises

a first parameter detecting the fluid interactions at the first sensing surface, the first parameter comprising a complex admittance or impedance signal from the intravenous fluid, and

a second parameter detecting the fluid interactions at the second sensing surface, wherein the second parameter is independent of the first parameter;

comparing the multi-parametric profile to stored expected parameter values to determine an identity and a concentration of one or more components of the intravenous fluid.

2. The method of claim 1 , wherein the step of comparing the multi-parametric profile comprises simultaneously identifying and determining the concentration of the one or more components of the intravenous fluid.

3. The method of claim 1 , wherein the step of determining the multi-parametric profile comprises measuring an optical parameter.

4. The method of claim 1 , wherein the first parameter comprises an electrical admittance or impedance measurement taken at a plurality of frequencies.

5. A method for determining an identity and a concentration of an intravenous fluid by detecting fluid interactions at first and second sensing surfaces, the method comprising:

contacting the intravenous fluid to the first and second sensing surfaces of a device for multi-parametric testing of the intravenous fluid;

determining a multi-parametric profile from the intravenous fluid, wherein the multi-parametric profile comprises

a first parameter detecting the fluid interactions at the first sensing surface, the first parameter comprises a first complex admittance or impedance signal from the intravenous fluid, and

a second parameter detecting the fluid interactions at the second sensing surface, wherein the second parameter comprises a second complex admittance or impedance signal from the intravenous fluid;

comparing the first and second parameters of the multi-parametric profile to stored expected parameter values to identify and determine a concentration of one or more components of the intravenous fluid.

6. The method of claim 5 , wherein the first parameter comprises an admittance or impedance spectrum taken at a plurality of frequencies.

7. The method of claim 5 , wherein the second parameter comprises an admittance or impedance spectrum taken at a plurality of frequencies.

8. The method of claim 5 , wherein the step of determining the multi-parametric profile comprises determining a third parameter that is not a complex admittance or impedance signal.

9. The method of claim 8 wherein the third parameter is an optical parameter.

10. The method of claim 5 , further comprising connecting the device for multi-parametric testing of the intravenous fluid to an intravenous infusion device for infusion of the fluid into a vascular system of a patient.

11. A method for determining an identity and a concentration of an intravenous fluid by detecting fluid interactions at first and second sensing surfaces, the method comprising:

applying the intravenous fluid to the first and second sensing surfaces of a device for testing of the intravenous fluid by admittance or impedance spectroscopy;

determining complex admittance or impedance signals from the intravenous fluid between a first pair of electrodes by detecting the fluid interactions at the first sensing surface;

determining complex admittance or impedance signals from the intravenous fluid between a second pair of electrodes by detecting the fluid interactions at the second sensing surface, and

comparing received parameter values incorporating the complex admittance or impedance signals with stored expected parameter values to identify and determine a concentration of one or more components of the intravenous fluid.

12. The method of claim 11 , wherein the complex admittance or impedance signals comprise an admittance or impedance spectrum taken at a plurality of frequencies.

13. The method of claim 11 , further comprising applying the intravenous fluid into a vascular system of a patient.

14. The method of claim 11 , further comprising connecting the device to an intravenous infusion device for infusion of the fluid into a vascular system of a patient.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2019
From: S.E.A. MEDICAL SYSTEMS INC
To: MATSIEV, LEONID; BENNETT, JAMES W
Reel/Frame 050712/0341 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2011
From: BENNETT, JAMES W.; MATSIEV, LEONID F.
To: S.E.A. MEDICAL SYSTEMS, INC.
Reel/Frame 026007/0694 →
Continuity (5)
Continuation In Part PCTUS2009001494 · Mar 9, 2009
Provisional Application 61035339 · Mar 10, 2008
Provisional Application 61049367 · Apr 30, 2008
Provisional Application 61198523 · Nov 6, 2008
Related Publication 20110060198A1 · Mar 10, 2011