IP Library Patent Application 12388845
Patent Application
App. No. 12/388,845

AUTOMATIC ANALYZER

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Patent No.
US None
App. No.
12/388,845
Abstract

The present invention provides an index that makes it possible to use, in an automatic analyzer, an approximate expression based on a theoretical chemical reaction formula derived from reaction process data, and automatically check for apparatus abnormalities, reagent deteriorations, and improper accuracy control during each continuous or individual inspection. Reaction process data, which is measured when the automatic analyzer determines the relationship between reaction absorbance and time, is approximated to ABS=A 0 +A 1 (1−e −kt ) by the least-squares method. The resulting reaction start point absorbance A 0 , final reaction absorbance A 1 , reaction rate constant k, and residual error, which is the aggregate sum of differences between approximate values and measured values, are then used as the index of reaction status.

Claims (42)

1 . An automatic analyzer comprising:

a storage section for storing absorbance changes on a time-series basis;

reaction rate constant calculation means for calculating a reaction rate constant from an approximate expression in accordance with the absorbance changes stored in the storage section; and

judgment means for judging the presence of a reaction abnormality in accordance with the reaction rate constant calculated by the reaction rate constant calculation means.

2 . An automatic analyzer comprising:

a storage section for storing absorbance changes on a time-series basis;

approximate expression calculation means for determining, in accordance with the absorbance changes stored in the storage section, an approximate expression that is expressed by the equation, absorbance (ABS)=A 0 +A 1 (1−e −kt ), where t is time and k is a reaction rate constant; and

judgment means for judging the presence of a reaction abnormality in accordance with a combination of parameters including the value k, which is determined by the approximate expression calculation means.

3 . The automatic analyzer according to claim 1 , further comprising:

degree-of-mixing index computation means for determining an index of the degree of mixing of a specimen and a reagent in accordance with the value k, which is determined by the approximate expression calculation means.

4 . The automatic analyzer according to claim 3 , further comprising:

warning generation means for generating a mixing failure warning when a preselected index is not reached by the index determined by the degree-of-mixing index computation means.

5 . The automatic analyzer according to claim 3 , wherein the reaction for determining the index is based on the results of accuracy control sample measurements.

6 . The automatic analyzer according to claim 5 , further comprising:

storage means for storing an index on a time-series basis; and

display means for displaying the index stored in the storage means on a time-series basis.

7 . The automatic analyzer according to claim 5 , further comprising:

mixing condition setup means for setting optimum mixing conditions for each reagent in accordance with the determined index.

8 . The automatic analyzer according to claim 1 , further comprising:

judgment means for judging the compatibility of a reagent with an analyzer used for measurements by comparing the values k that prevail when different types of reagents are measured relative to the same item.

9 . The automatic analyzer according to claim 1 , further comprising:

judgment means for judging the deterioration of a reagent by comparing the temporal changes in the value k that prevails when the same type of reagent is measured.

10 . The automatic analyzer according to claim 1 , further comprising:

detection means for detecting a reagent lot change in accordance with a change in the value k.

11 . The automatic analyzer according to claim 1 , further comprising:

judgment means for judging the compatibility of a reagent with an analyzer used for measurements by comparing the values k that prevail when different types of reagents are measured relative to the same item.

12 . An analysis system comprising:

storage means for storing absorbance changes on a time-series basis;

reaction rate constant calculation means for calculating a reaction rate constant from an approximate expression in accordance with the absorbance changes stored in the storage means; and

judgment means for judging the presence of a reaction abnormality in accordance with the reaction rate constant calculated by the reaction rate constant calculation means.

13 . A method of judging the presence of an abnormality in an automatic analyzer having a storage section for storing absorbance changes on a time-series basis, the method comprising:

a reaction rate constant calculation step of calculating a reaction rate constant from an approximate expression in accordance with the absorbance changes stored in the storage section; and

a judgment step of judging the presence of a reaction abnormality in accordance with the reaction rate constant calculated in the reaction rate constant calculation step.

14 . A method of judging the presence of an abnormality in an automatic analyzer having a storage section for storing absorbance changes on a time-series basis, the method comprising:

an approximate expression calculation step of determining, in accordance with the absorbance changes stored in the storage section, an approximate expression that is expressed by the equation, absorbance (ABS)=A 0 +A 1 (1−e −kt ), where A 0 is the absorbance prevailing at the beginning of reaction, A 1 is final reaction absorbance, and k is a reaction rate constant; and

a judgment step of judging the presence of a reaction abnormality in accordance with a combination of parameters including the value k, which is determined in the approximate expression calculation step.

15 . The method according to claim 13 , further comprising:

a degree-of-mixing index computation step of determining an index of the degree of mixing of a specimen and a reagent in accordance with the value k, which is determined in the approximate expression calculation step.

16 . The method according to claim 15 , further comprising:

a warning generation step of generating a mixing failure warning when a preselected index is not reached by the index determined in the degree-of-mixing index computation step.

17 . The method according to claim 13 , further comprising:

a judgment step of judging the deterioration of a reagent by comparing the temporal changes in the value k that prevails when the same type of reagent is measured.

Assignments (2)
CHANGE OF NAME AND ADDRESS Recorded Mar 30, 2020
From: HITACHI HIGH-TECHNOLOGIES CORPORATION
To: HITACHI HIGH-TECH CORPORATION
Reel/Frame 052259/0227 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2009
From: HAMAZUMI, YUKO; MIMURA, TOMONORI; FUKUYAMA, YUKI
To: HITACHI HIGH-TECHNOLOGIES CORPORATION
Reel/Frame 022524/0833 →