IP Library Patent Application 12422546
Patent Application
App. No. 12/422,546

ABNORMALITY IDENTIFYING METHOD, ANALYZING APPARATUS, AND REAGENT

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Patent No.
US None
App. No.
12/422,546
Abstract

An abnormality identifying method is for identifying an abnormality detail in an analyzing apparatus that analyzes a specimen based on optical measurement. The method includes: for a reagent having a same function as an intermediate product produced during analysis processes, canceling a predetermined analysis process other than an analysis process to be verified for abnormality from among analysis processes with respect to the specimen; and identifying an abnormality in the analyzing apparatus based on a measurement result obtained by performing a same analysis process as an analysis process performed on the intermediate product as well as the analysis process to be verified for abnormality.

Claims (34)

1 . An abnormality identifying method of identifying an abnormality detail in an analyzing apparatus that analyzes a specimen based on optical measurement, the method comprising: for a reagent having a same function as an intermediate product produced during analysis processes,

canceling a predetermined analysis process other than an analysis process to be verified for abnormality from among analysis processes with respect to the specimen; and

identifying an abnormality in the analyzing apparatus based on a measurement result obtained by performing a same analysis process as an analysis process performed on the intermediate product as well as the analysis process to be verified for abnormality.

2 . The abnormality identifying method according to claim 1 , further comprising:

a removal step of performing a same process as a removal process of removing an unreacted substance in a reaction vessel, from among the analysis processes with respect to the specimen, after dispensing the reagent in the reaction vessel;

a measuring step of measuring an amount of luminescence after performing a same analysis process as an analysis process in which the intermediate product becomes able to emit light and enabling the reagent to emit light; and

an abnormality identifying step of determining that there is an abnormality in the removal process from among the analysis processes with respect to the specimen, if a measurement result in the measuring step does not satisfy a tolerance based on an amount of luminescence of the reagent that has been obtained beforehand at the time of normal operation of the analyzing apparatus.

3 . The abnormality identifying method according to claim 2 , wherein a first removal process and a second removal process are performed as the removal process, and the removing step is one of a first removing step of performing a same process as the first removal process, a second removing step of performing a same process as the second removal process, and a third removing step of performing a same process as the first removal process and a same process as the second removal process.

4 . The abnormality identifying method according to claim 3 , wherein in the abnormality identifying step,

when the removing step is the first removing step, it is determined that there is an abnormality in the first removal process from among the analysis processes with respect to the specimen if a first amount of luminescence measured in the measuring step does not satisfy the tolerance;

when the removing step is the second removing step, it is determined that there is an abnormality in the second removal process from among the analysis processes with respect to the specimen if a second amount of luminescence measured in the measuring step does not satisfy the tolerance; and

when the removing step is the third removing step, it is determined that there is an abnormality in the first removal process and/or the second removal process from among the analysis processes with respect to the specimen if a third amount of luminescence measured in the measuring step does not satisfy the tolerance.

5 . The abnormality identifying method according to claim 4 , comprising a computing step of computing, using the first, second, and third amounts of luminescence, relative values for the respective amounts of luminescence, wherein

in the abnormality identifying step it is determined that there is the abnormality in the first removal process and/or the second removal process based on the relative values computed in the computing step.

6 . The abnormality identifying method according to claim 4 , wherein in the abnormality identifying step, the abnormality detail in the removal process is identified based on a dispersion value and an average value of the first, second, and/or third amounts of luminescence obtained by repeating the removing step and the measuring step a plurality of times.

7 . The abnormality identifying method according to claim 1 , wherein the reagent maintains a bonded state between a labeled antibody and a magnetic particle and has a same function as the intermediate product produced during the analysis processes of analyzing the specimen based on an amount of luminescence.

8 . An analyzing apparatus that analyzes a specimen based on an optical measurement, wherein the analyzing apparatus cancels, for a reagent having a same function as an intermediate product produced during analysis processes, a predetermined analysis process other than an analysis process to be verified for abnormality from among analysis processes with respect to the specimen; and

identifies an abnormality in the analyzing apparatus based on a measurement result obtained by performing a same analysis process as an analysis process performed on the intermediate product as well as the analysis process to be verified for abnormality.

9 . The analyzing apparatus according to claim 8 , comprising:

a removing unit that carries out a same process as a removal process of removing an unreacted substance in a reaction vessel from among the analysis processes with respect to the specimen, after the reagent is dispensed in the reaction vessel;

a measuring unit that measures an amount of luminescence after performing a same analysis process as an analysis process in which the intermediate product becomes able to emit light and enabling the reagent to emit light; and

an abnormality identifying unit that determines that there is an abnormality in the removal process from among the analysis processes with respect to the specimen, if a measurement result by the measuring unit does not satisfy a tolerance based on an amount of luminescence that has been obtained beforehand at the time of normal operation of the analyzing apparatus.

10 . The analyzing apparatus according to claim 9 , wherein a first removal process and a second removal process are performed as the removal process, and the removing unit performs a same process as the first removal process, a same process as the second removal process, or both of the same process as the first removal process and the same process as the second removal process, with respect to the reagent.

11 . The analyzing apparatus according to claim 10 , wherein the abnormality identifying unit

determines that there is an abnormality in the first removal process from among the analysis processes with respect to the specimen, when the same process as the first removal process is performed by the removing unit and a first amount of luminescence measured by the measuring unit does not satisfy the tolerance;

determines that there is an abnormality in the second removal process from among the analysis processes with respect to the specimen, when the same process as the second removal process is executed by the removing unit and a second amount of luminescence measured by the measuring unit does not satisfy the tolerance; and

determines that there is an abnormality in the first removal process and/or the second removal process from among the analysis processes with respect to the specimen, when both of the same process as the first removal process and the same process as the second removal processes are executed by the removing unit and a third amount of luminescence measured by the measuring unit does not satisfy the tolerance.

12 . The analyzing apparatus according to claim 11 , comprising:

a computing unit that computes, using the first, second, and third amounts of luminescence, relative values for the respective amounts of luminescence, wherein

the abnormality identifying unit determines that there is the abnormality in the first removal process and/or the second removal process based on the relative values computed by the computing unit.

13 . The analyzing apparatus according to claim 11 , wherein the abnormality identifying unit identifies the abnormality detail in the removal process based on a dispersion value and an average value of the first, second, and third amounts of luminescence obtained by repeating the processes by the removing unit and measuring unit a plurality of times.

14 . The analyzing apparatus according to claim 8 , wherein the reagent maintains a bonded state between a labeled antibody and a magnetic particle and has a same function as the intermediate product produced during the analysis processes of analyzing the specimen based on an amount of luminescence.

15 . A reagent, maintaining a bonded state between a labeled antibody and a magnetic particle, and having a same function as an intermediate product produced during analysis processes of immunologically analyzing a specimen based on an amount of luminescence.

16 . The reagent according to claim 15 , wherein the bonded state is maintained by covalent bonding, bonding due to antigen-antibody reaction, avidin-biotin bonding, ABC bonding, hydrophobic bonding, and hydrogen bonding.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2010
From: OLYMPUS CORPORATION
To: BECKMAN COULTER, INC.
Reel/Frame 023778/0141 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2009
From: KUBOTA, KIYOTAKA; FURUSAWA, YUKIHIRO; FUJIMORI, KOJI
To: OLYMPUS CORPORATION
Reel/Frame 022877/0842 →