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Blood cell analyzer and blood cell analyzing method

  • US 9,778,178 B2
  • Filed: 03/27/2014
  • Issued: 10/03/2017
  • Est. Priority Date: 03/29/2013
  • Status: Active Grant
First Claim
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1. A blood cell analyzer comprising:

  • a flow cell configured to flow a measurement specimen containing blood cells therethrough, wherein the flow cell is configured to flow the measurement specimen for a continuous time period that includes without overlap a first period of time and a second period of time;

    a first light source configured to irradiate the blood cells flowing through the flow cell with first light having a first wavelength for the continuous time period;

    a second light source configured to irradiate the blood cells flowing through the flow cell with second light having a second wavelength longer than the first wavelength for the continuous time period;

    a first light receiving portion configured to receive the first light scattered from a respective blood cell and convert the received first light for the continuous time period into a series of first electrical signals carrying first values each representative of an optical property of a respective blood cell exhibited in the first light, wherein the first values comprise a first set of first values obtained for the first period of time and a second set of first values obtained for the second period of time;

    a second light receiving portion configured to receive the second light scattered from a respective blood cell and convert the received second light for the continuous time period into a series of second electrical signals carrying second values each representative of an optical property of a respective blood cell exhibited in the second light, wherein the second values comprise a first set of second values obtained for the first period of time and a second set of second values obtained for the second period of time; and

    an information processing unit programmed to analyze the first and second values to discriminate red blood cells and white blood cells among the blood cells contained in the measurement specimen, the information processing unit being programmed to;

    apply a first threshold to the first pair of correlated first and second values of the blood cells to exclude the first and second values representative of the signal noise from the first pair of correlated first and second values of the blood cells;

    correlate the first sets of first and second values to each other to characterize a respective blood cell with a first pair of correlated first and second values, wherein the first and second wavelengths are selected such that if plotted in a two-dimensional plane defined by first and second orthogonal coordinates representative, respectively, of the first pair of correlated first and second values, a cluster of red blood cells and a cluster of white blood cells are separately distributed in the two-dimensional plane with a distance;

    store the first pair of correlated first and second values in a memory for a respective blood cell;

    analyze the first pair of correlated first and second values of the blood cells stored in the memory to identify a group of blood cells in the measurement specimen having first and second values that fall within a first region of the two-dimensional plane representative of the cluster of red blood cells plotted in the two-dimensional plane;

    apply a second threshold, different from the first threshold, to the second pair of correlated first and second values of the blood cells to exclude the first and second values representative of the red blood cells from the second pair of correlated first and second values of the blood cells;

    correlate the second sets of first and second values to each other to characterize a respective blood cell with a second pair of correlated first and second values;

    store in the memory the second pair of correlated first and second values of the blood cells, wherein the second pair of correlated first and second values representative of red blood cells are excluded; and

    analyze the second sets of correlated first and second values of the blood cells stored in the memory to identify a group of blood cells in the measurement specimen having first and second values that fall within a second region in the two-dimensional plane representative of the cluster of white blood cells plotted in the two-dimensional plane.

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