CA2633669C

Methods and systems for detecting the hydration of sensors

Abstract

A sensor system includes a sensor and a sensor electronics device. The sensor includes a plurality of electrodes. The sensor electronics device includes a connection detection device, a power source, and a delay circuit. The connection detection device determines if the sensor electronics device is connected to the sensor and transmits a connection signal. The delay circuit receives the connection signal, waits a preset hydration time, and couples the regulated voltage from the power source to an electrode in the sensor after the preset hydration time has elapsed. Alternatively, the sensor electronics device may include an electrical detection circuit and a microcontroller. The electrical detection circuit determines if the plurality of electrodes are hydrated and generates an interrupt if the electrodes are hydrated. A microcontroller receives the interrupt and transmits a signal representative of a voltage to an electrode of the plurality of electrodes.

CA2633669C, drawing sheet 1
Sheet 1 of 23

Term

0.2 yearsleft in the term

Expires 21 December 2026.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

12 claims: 5 independent, 7 dependent

  1. 1
    CA 02633669 2013-11-12 WHAT IS CLAIMED IS:1. A method of detecting the hydration of a multi-electrode sensor for measuring a physiological characteristic of a patient's bodily fluid, said method comprising: applying a signal to an electrode of the sensor through an impedance and detecting the signal at said electrode;and generating an interrupt to indicate a sufficient degree of hydration at said sensor when the attenuation of the detected signal at the electrode reaches a pre-determined level.
  2. 3
    A method according to either one of claims one or 2, wherein the signal is AC.
  3. 4
    A program code storage device, comprising:a computer-readable medium;computer-readable program code, stored on the computer-readable medium, the computer-readable program code having instructions, which when executed cause a microcontroller to: cause hydration detection electronics to apply a signal to an electrode of a sensor via an impedance and to detect the signal at the electrode, and to generate an interrupt to indicate a sufficient degree of hydration at said sensor when the attenuation of the detected signal at the electrode reaches a pre-determined level.
  4. 7
    A device according to any one of claims 4, 5 or 6 wherein the code when executed also causes the microcontroller to transmit a second signal to a digital-to-analog converter (DAC), in response to the interrupt, the signal being representative of a voltage that the DAC is to apply to the sensor to instruct the DAC to apply a stabilization series of voltages, the stabilization series of voltages being a first voltage applied for a first time period, a second voltage applied for a second time period, and a cycling of the application of the first voltage for the first time period and the second voltage for the second time period for a number of iterations.
  5. 8
    A sensor system comprising:a sensor having a plurality of electrodes;a sensor electronics device coupled to the sensor and including electrical detection circuitry to determine whether the plurality of electrodes in the sensor are hydrated wherein said electrical detection circuitry includes a signal generator connected via an impedance to an electrode of the sensor, and a comparator connected to the electrode to detect the signal at the electrode, and to generate an interrupt if the attenuation of the signal reaches a predetermined level that indicates sufficient hydration of the sensor;and a micro controller connected to the said circuitry and programmed to receive the interrupt to power up the sensor in response thereto.