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Electrochemical test strip, measurement system and method for determining sample content in the reactive region of the electrochemical test strip

  • US 9,823,213 B2
  • Filed: 08/21/2015
  • Issued: 11/21/2017
  • Est. Priority Date: 11/10/2014
  • Status: Active Grant
First Claim
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1. A method for determining a sample volume in a reaction region of an electrochemical test strip, comprising:

  • providing the electrochemical test strip comprising;

    an insulator substrate with an electrode system disposed thereon, the electrode system comprising at least one first set of electrodes and second set of electrodes;

    a lower separated plate disposed on the insulator substrate and including a reactive region and a port for sampling;

    a reactive layer placed on the reaction region; and

    an upper separated plate disposed above the lower plate,wherein the first set of electrodes is designed for a first signal loop for sample volume and the second set of electrodes is designed for a second signal loop for sample volume characterized in that the first and second signal loops reflect on a volume of the reaction region;

    placing the electrochemical test strip into an electrochemical measurement system;

    providing an electrical test signal to the first and second sets of electrodes of the electrochemical test strip;

    performing measurement of a first volume signal and a second volume signal using the electrochemical measurement system; and

    analyzing and determining a sample volume in the reaction region based on a signal difference between the first and the second volume signals using a signal processor, if the sample volume is sufficient, then proceeding with a concentrating measurement step;

    if the sample volume is deficient, then demanding redo measurement or adding more sample to the reaction region,wherein calculation of the signal difference between the first and the second volume signals is based on a diffusion current calculation method using a calculation unit; and

    wherein the diffusion current calculation method satisfies the following equation;

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