IP Library › Granted Patent US 8,444,559
Granted Patent B2
US 8,444,559 · App. 12/114,490 · Granted May 21, 2013

Skin impedance matching system and method for skin/electrode interface

Inventors: Rainer J. Fink (College Station, TX); Jack N. McCrary (Houston, TX)
Assignee: Reproductive Research Technologies, LP
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Quick Facts
Patent No.
US 8,444,559
App. No.
12/114,490
Granted
May 21, 2013
Kind
B2
Abstract

The present invention relates to a system for measuring the input impedance of a skin/electrode interface and selectively modifying the input impedance of the monitoring circuit to match the measured input impedance. More particularly, a simplified method for correcting for input impedance mismatch between electronic monitoring circuitry and the skin/electrode interface. In accordance with one embodiment of the invention, an input impedance measuring circuit will interface with a microprocessor and a reconfigurable switch network to select the input impedance of the electronic monitoring circuitry, thus eliminating the impedance sensitivity of EMG or EKG instruments.

Claims (25)

1. A system for matching skin impedance of a patient, comprising:

a first module adapted to determine the skin impedance of the patient by sensing an input impedance from the patient through electrodes, and amplifying and digitizing the input impedance;

a resistor ladder network communicably coupled to the first module;

a microprocessor configured to analyze the input impedance and generate a series of control signals to direct the resistor ladder network to match the skin impedance of the patient; and

a second module adapted to sense electrical signals from the patient through electrodes coupled to the patient's skin, wherein the electrical signals are sensed with the resistor ladder network matching the skin impedance of the patient.

2. The system as set forth in claim 1 , wherein the first and second modules use identical electrodes.

3. The system as set forth in claim 1 , wherein the first module comprises a sensing resistor, an amplifier, and an analog to digital converter.

4. The system as set forth in claim 1 , further comprising a pair of switches controlled by the microprocessor for switching between the first and second modules.

5. The system as set forth in claim 1 , wherein the resistor ladder network is digitally configured by the microprocessor through the control signal.

6. The system as set forth in claim 1 , wherein the second module provides the electrical signals to an external medical device.

7. The system as set forth in claim 6 , wherein the electrical signals are calibrated by the second module using the resistor ladder network.

8. The system as set forth in claim 6 , wherein the external medical device includes an electromyography (EMG) monitor.

9. A method for matching skin impedance of a patient, comprising:

applying at least one pair of electrodes to a skin of the patient, and coupling the at least one pair of electrodes to an impedance measurement module;

switching microcontroller activated switches in the impedance measurement module to a matching mode;

determining the skin impedance of the patient by measuring a voltage drop between the at least one pair of electrodes;

switching a resistor ladder network in the impedance measurement module to match the determined skin impedance of the patient;

switching the microcontroller activated switches to a sensing mode;

measuring voltage inputs from the skin of the patient; and

calibrating the voltage inputs using the resistor ladder network to obtain calibrated inputs.

10. The method as set forth in claim 9 , wherein the determining and measuring steps are performed using identical electrodes.

11. The method as set forth in claim 9 , further comprising providing the calibrated inputs to an external medical device.

12. The method as set forth in claim 11 , wherein the external medical device includes an electromyography (EMG) monitor.

13. The method as set forth in claim 11 , wherein the steps of switching microcontroller activated switches to a matching mode and determining the skin impedance by measuring the voltage drop between the at least one pair of electrodes is performed by a microprocessor interposed between the patient and the external medical device.

14. The method as set forth in claim 13 , wherein the resistor ladder network is digitally configured by the microprocessor through a plurality of control signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2008
From: FINK, RAINER J.; MCCRARY, JACK N.
To: REPRODUCTIVE RESEARCH TECHNOLOGIES, LP
Reel/Frame 020895/0141 →
Continuity (2)
Provisional Application 60916202 · May 4, 2007
Related Publication 20080275316A1 · Nov 6, 2008