WO2008050397A1 - Analyseur - Google Patents

Analyseur Download PDF

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Publication number
WO2008050397A1
WO2008050397A1 PCT/JP2006/321137 JP2006321137W WO2008050397A1 WO 2008050397 A1 WO2008050397 A1 WO 2008050397A1 JP 2006321137 W JP2006321137 W JP 2006321137W WO 2008050397 A1 WO2008050397 A1 WO 2008050397A1
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WO
WIPO (PCT)
Prior art keywords
analysis
unit
information
search
output
Prior art date
Application number
PCT/JP2006/321137
Other languages
English (en)
Japanese (ja)
Inventor
Shoji Iguchi
Original Assignee
Olympus Corporation
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Olympus Corporation filed Critical Olympus Corporation
Priority to PCT/JP2006/321137 priority Critical patent/WO2008050397A1/fr
Priority to JP2008540828A priority patent/JP4838855B2/ja
Publication of WO2008050397A1 publication Critical patent/WO2008050397A1/fr

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Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N35/00Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor
    • G01N35/00584Control arrangements for automatic analysers
    • G01N35/00594Quality control, including calibration or testing of components of the analyser
    • G01N35/00603Reinspection of samples

Definitions

  • the present invention relates to an analysis apparatus including a plurality of units used according to each analysis content and output means for outputting information related to the analysis.
  • an analyzer for performing an immunological test has a reaction mechanism for reacting a sample and a reagent in a reaction container, and a mechanism for removing unreacted substances in the reaction container on a plurality of turntables.
  • Patent Document 1 Japanese Patent Application Laid-Open No. 2005-164508
  • the operator of the analyzer analyzes the operation information of the mechanism used before and after the occurrence of the abnormality and the analysis result of the sample analyzed before and after the occurrence of the abnormality in the order of measurement start All of them are displayed, and the cause of the abnormality is identified based on the displayed operation information and analysis results.
  • conventional automatic analyzers perform various analysis processes with different reaction times, reagents used, mechanisms used, mechanism use timing, etc., each has a complicated apparatus configuration.
  • many complicated processing operations are performed. For this reason, when operation information and analysis results are displayed to identify the cause of an abnormality, all operation information and analysis results related to complex processing operations in multiple mechanisms are displayed. After performing a complicated process of extracting necessary information from the enormous amount of motion information and analysis results, the extracted motion information and And identified abnormalities by referring to the analysis results.
  • the present invention has been made in view of the above-described drawbacks of the prior art, and an object thereof is to provide an analyzer that reduces the burden on the operator in the abnormality identification process.
  • the analysis apparatus outputs a plurality of units used according to each analysis content and analysis information related to the analysis.
  • a storage means for storing the analysis information of each specimen together with information indicating the unit used in the analysis processing of the specimen, and an input means for inputting the desired unit as a search condition.
  • search means for searching the storage means for analysis information of the sample analyzed using the desired unit, and search by the search means
  • the analysis information is rearranged in the order of use of the desired unit, and the output means is output together with the use order information indicating the use order of the desired unit. Characterized by comprising a means.
  • control unit causes the output unit to output the analysis information other than the analysis information corresponding to the search condition under a predetermined condition.
  • the input means can input a plurality of the desired units
  • the control means corresponds to the desired information corresponding to the analysis information searched by the search means, respectively. It is characterized in that it is output to the output means divided into units.
  • the input means can input instruction information for instructing output of a graph image corresponding to the analysis information searched by the search means, and the control means can , The analysis information searched by the search means and the order of use The output means outputs a graph image corresponding to information.
  • the input means can input one or a plurality of desired analysis contents as a search condition, and the search means inputs the desired analysis input by the input means.
  • the analysis information of the sample corresponding to the contents is searched from the storage means, and the control means divides the analysis information searched by the search means into the desired analysis contents and outputs them to the output means in the order of analysis. It is characterized by making it.
  • the analysis device when the search unit inputs all the units as a search condition, or when the input unit does not input the unit as a search condition, The analysis information is searched from the storage means according to the search condition input by the input means, and the control means is responsive to the analysis start order, analysis start time, analysis end order, or analysis end time.
  • the analysis information searched by the search means is rearranged and output to the output means.
  • the analyzer according to the present invention is characterized in that the input means can input the type of the sample as a search condition.
  • control means causes the output means to output position information indicating a use position of a reaction table of a sample corresponding to the analysis information together with the analysis information.
  • the input means can input setting information for setting the priority order of search conditions, and the control means rearranges the analysis information according to the priority order.
  • the output means outputs the output.
  • the analysis information of the sample analyzed using the desired unit according to the search condition is searched, and the usage order indicating the usage order of the desired unit is rearranged in the usage order of the desired unit.
  • FIG. 1 is a schematic diagram showing a configuration of an analyzer according to an embodiment.
  • FIG. 2 is a flowchart showing a processing procedure in which the analysis apparatus shown in FIG. 1 outputs analysis information.
  • FIG. 3 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 4 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 5 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 6 is a diagram showing an example of a display screen of the display included in the output unit shown in FIG.
  • FIG. 7 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 8 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 9 is a diagram showing an example of a display screen of the display included in the output unit shown in FIG.
  • FIG. 10 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 11 is a diagram showing an example of a display screen of the display included in the output unit shown in FIG.
  • FIG. 12 is a diagram showing an example of a display screen of the display included in the output unit shown in FIG.
  • FIG. 13 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 14 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG.
  • FIG. 15 is a diagram showing an example of a display screen of the display included in the output unit shown in FIG. It is.
  • FIG. 16 is a diagram showing an example of a display screen of the display included in the output unit shown in FIG.
  • FIG. 17 is a diagram showing an example of a display screen of the display included in the output unit shown in FIG.
  • FIG. 18 is a diagram showing an example of a display screen of a display included in the output unit shown in FIG. 1.
  • FIG. 1 is a schematic diagram showing a configuration of an analyzer that works on the present embodiment.
  • the analyzer 1 according to the embodiment includes a measuring mechanism 2 that optically measures a reaction occurring between a specimen and a reagent, and an analyzer 1 including the measuring mechanism 2 that controls the entire apparatus. And a control mechanism 4 for analyzing the measurement results in the measurement mechanism 2.
  • the analyzer 1 automatically performs immunological analysis of a plurality of specimens through the cooperation of these two mechanisms.
  • the measurement mechanism 2 is roughly divided into a sample transfer unit 21, a chip storage unit 22, a sample dispensing transfer mechanism 23, an immune reaction table 24, a BF table 25, a first reagent storage unit 26, a second reagent storage unit 27, The first reagent dispensing and transport mechanism 28, the second reagent dispensing and transport mechanism 29, the enzyme reaction table 30, the photometric mechanism 31, the first cuvette transport mechanism 32, and the second cuvette transport mechanism 33 are provided.
  • Each component of the measurement mechanism 2 includes one or more units that perform predetermined operation processing.
  • the control mechanism 4 includes a control unit 41, an input unit 43, an analysis unit 44, a search unit 45, a storage unit 46, an output unit 47, and a transmission / reception unit 48. Each of these provided in the measurement mechanism 2 and the control mechanism 4 The unit is electrically connected to the control unit 41.
  • the sample transfer section 21 holds a plurality of sample containers 2 la that store samples, and includes a plurality of sample racks 2 lb that are sequentially transferred in the direction of the arrow in the figure.
  • the sample stored in the sample container 21a is blood or urine collected by the donor's power.
  • the chip storage unit 22 is provided with a chip case in which a plurality of chips are aligned, and this case force chip is supplied.
  • This tip is a Disposable Nopple Sampnore chip that is attached to the tip of the nozzle of the sample dispensing transfer mechanism 23 to prevent carryover when measuring infectious disease items, and is exchanged for each sample dispensing.
  • the specimen dispensing / transfer mechanism 23 is a rotating device having a vertical axis passing through its base end ascending and descending in the vertical direction, and a probe for aspirating and discharging the specimen attached to the tip. It has an arm that can be used freely.
  • the sample dispensing transfer mechanism 23 sucks the reagent in the sample container 21a moved to the predetermined position by the sample transfer unit 21 with the probe, rotates the arm, and dispenses it to the cuvette transported to the predetermined position by the BF table 25. Then, the sample is transferred into the cuvette on the BF table 25 at a predetermined timing.
  • the immune reaction table 24 has a reaction line for reacting a specimen and a predetermined reagent corresponding to an analysis item in each cuvette arranged.
  • the immune reaction table 24 is rotatable for each reaction line with a vertical line passing through the center of the immune reaction table 24 as a rotation axis, and transfers the cuvette arranged on the immune reaction table 24 to a predetermined position at a predetermined timing.
  • the peripheral line 24a for pretreatment and pre-dilution, the middle peripheral line 24b for immune reaction between the specimen and the solid phase carrier reagent, and the specimen and labeling reagent Form a triple reaction line structure with the inner peripheral line 24c for the immune reaction.
  • the BF table 25 performs BF (bound-free) separation for separating unreacted substances in the specimen or reagent.
  • the BF table 25 is rotatable for each reaction line using a vertical line passing through the center of the BF table 25 as a rotation axis, and transfers the cuvette arranged on the BF table 25 to a predetermined position at a predetermined timing.
  • the BF table 25 consists of a magnetic flux collecting mechanism for collecting magnetic particle carriers necessary for BF separation, a BF cleaning nozzle for carrying out BF separation, and a magnetically collected carrier. Has a stirring mechanism for dispersing.
  • the first reagent storage unit 26 can store a plurality of reagent containers that store the first reagent to be dispensed into the cuvettes arranged on the BF table 25.
  • the second reagent storage unit 27 can store a plurality of reagent containers containing second reagents to be dispensed in the cuvettes arranged on the BF table 25.
  • the first reagent storage unit 26 and the second reagent storage unit 27 can be rotated clockwise or counterclockwise by driving a drive mechanism (not shown), and a desired reagent container can be dispensed and transferred to the first reagent. Transfer to reagent aspiration position by mechanism 28 or second reagent dispensing transfer mechanism 29.
  • the first reagent dispensing / transfer mechanism 28 has a probe for aspirating and discharging the first reagent attached to the distal end portion, and is moved up and down in the vertical direction and has a vertical line passing through its base end portion as a central axis. It has an arm that can rotate freely.
  • the first reagent dispensing transfer mechanism 28 sucks the reagent in the reagent container moved to the predetermined position by the first reagent storage unit 26 with the probe, rotates the arm, and is conveyed to the predetermined position by the BF table 25. Dispense into cuvettes.
  • the second reagent dispensing transfer mechanism 29 has the same configuration as the first reagent dispensing transfer mechanism 28, and the reagent in the reagent container moved to a predetermined position by the second reagent storage unit 27 is used as a probe. Aspirate and swivel the arm and dispense into the cuvette transported to the specified position by the BF table 25.
  • the enzyme reaction table 30 is a reaction line for performing an enzyme reaction that generates light in a cuvette into which a substrate solution has been injected.
  • the photometric mechanism 31 measures luminescence emitted from the reaction solution in the cuvette.
  • the photometric mechanism 31 includes, for example, a photomultiplier tube that detects weak luminescence generated by chemiluminescence, and measures the amount of luminescence.
  • the photometry mechanism 31 holds an optical filter, and calculates the true light emission intensity based on the measured value reduced by the optical filter according to the light emission intensity.
  • the first cuvette transfer mechanism 32 freely moves up and down in the vertical direction and rotates around the vertical line passing through its base end, and immunizes the cuvette containing the liquid at a predetermined timing. Equipped with reaction table 24, BF table 25, enzyme reaction table 30, cuvette supply unit (not shown) and arm to transfer to the specified position of cuvette disposal unit (not shown) #2. Further, the second cuvette transfer mechanism 33 freely moves up and down in the vertical direction and rotates around the vertical line passing through the base end of the second cuvette and moves the cuvette containing the liquid at a predetermined timing. A table 30, a photometric mechanism 31, and an arm for transferring to a predetermined position of a cuvette disposal section (not shown) are provided.
  • the control mechanism 4 is realized by using one or a plurality of computer systems, and is connected to the measurement mechanism 2.
  • the control mechanism 4 uses various programs related to each process of the analyzer 1 to control the operation process of the measurement mechanism 2 and to analyze the measurement result in the measurement mechanism 2.
  • the control unit 41 is configured using a CPU or the like having a control function, and controls processing and operation of each component of the analyzer 1.
  • the control unit 41 performs predetermined input / output control on information input / output to / from each of these components, and performs predetermined information processing on this information.
  • the control unit 41 controls the analyzer 1 by reading out the program stored in the storage unit 46 from the memory.
  • the control unit 41 has an output control unit 42.
  • the input unit 43 is configured using a keyboard for inputting various information, a mouse for designating an arbitrary position on the display screen constituting the output unit 47, and the like, and analyzing the sample Necessary information and analysis operation instruction information from outside.
  • the input unit 43 inputs singular, plural or all desired units, singular or plural desired analysis contents, sample types, and the like as search conditions.
  • the input unit 43 can input setting information for setting the priority order of search conditions.
  • the analysis unit 44 Based on the measurement result obtained from the measurement mechanism 2, the analysis unit 44 performs an analysis process on the sample.
  • the search unit 45 searches the storage unit 46 for sample analysis information according to the search conditions input by the input unit 43.
  • the search unit 45 searches the storage unit 46 for analysis information of the sample corresponding to the desired unit input by the input unit 43.
  • the search unit 45 also searches for the analysis information of the sample corresponding to the desired analysis content input by the input unit 43, also in the storage unit 46.
  • the search unit 45 searches the storage unit 46 for the search condition input by the input unit 43.
  • the storage unit 46 uses a hard disk that magnetically stores information, and a memory that loads various programs related to the processing from the node disk and electrically stores them when the analysis apparatus 1 executes the processing. And stores various information including the analysis result of the specimen.
  • the storage unit 46 may include an auxiliary storage device that can read information stored in a storage medium such as a CD-ROM, a DVD-ROM, or a PC card.
  • the storage unit 46 includes, as analysis information related to the analysis of the sample, identification information of the sample, details of the analysis performed on the sample, analysis results including measurement values for the sample, sample analysis start time, sample analysis end time, and the like. In addition to storing the information, each unit used in the analysis processing of the sample, the usage time of each unit, the arrangement position of each table of the sample, and the like are stored.
  • the output unit 47 is configured using a display, a printer, a speaker, and the like, and outputs various pieces of information related to analysis under the control of the output control unit 42.
  • the transmission / reception unit 48 has a function as an interface for transmitting / receiving information according to a predetermined format via a communication network (not shown).
  • the output control unit 42 controls output processing in the output unit 47.
  • the output control unit 42 rearranges the analysis information searched by the search unit 45 in the order of use of the desired unit, and causes the output unit 47 to output it together with the use order information indicating the use order of the desired unit. Further, the output control unit 42 causes the output unit 47 to output analysis information other than the analysis information searched by the search unit 45 under a predetermined condition.
  • the output control unit 42 divides the analysis information searched by the search unit 45 into desired units and outputs them to the output unit 47.
  • the output control unit 42 divides the analysis information searched by the search unit 45 into the desired analysis contents and outputs them in the order of analysis. Output to 47.
  • the output control unit 42 performs analysis start order, analysis start time, analysis end order, Based on the analysis end time or the relative value based on the analysis start time, the analysis information retrieved by the retrieval unit 45 is rearranged and output to the output unit 47.
  • the output control unit 42 together with the analysis information, performs immune reaction in the sample corresponding to the analysis information.
  • the output unit 47 outputs position information indicating the arrangement position of the response table 24, the BF table 25, or the enzyme reaction table 30.
  • the output control unit 42 rearranges the analysis information searched by the search unit 45 according to the priority order and outputs it to the output unit 47. .
  • the cuvette is transferred by a first cuvette transfer mechanism 32 to a predetermined position of the BF table 25 from a cuvette supply unit (not shown), and the magnetic particle solid phase carrier reagent as the first reagent is transferred into the cuvette.
  • Reagent dispensing mechanism 28 dispenses. Thereafter, the sample is transferred from the sample container 21a transferred to a predetermined position by the sample transfer unit 21 to the sample in the cuvette on the BF table 25 by the sample dispensing transfer mechanism 23 equipped with the chip supplied from the chip storage unit 22. Is dispensed.
  • the cuvette is stirred by the stirring mechanism of the BF table 25 and then transferred to a predetermined line of the immune reaction table 24 by the first cuvette transfer mechanism 32.
  • the cuvette is transferred to the BF table 25 by the first cuvette transfer mechanism 32, and the magnetic particle carrier is collected by the magnetism collecting mechanism in the BF table 25, and BF cleaning is performed.
  • BF separation is performed by the nozzle.
  • the labeling reagent as the second reagent is dispensed by the second reagent dispensing / transfer mechanism 29 in the cuvette after the BF separation and stirred by the stirring mechanism.
  • the cuvette is transferred to a predetermined line of the immune reaction table 24 by the first cuvette transfer mechanism 32, and is transferred to the BF table 25 after a certain reaction time has elapsed.
  • the magnetic particle carrier is collected by the magnetic collection mechanism, BF separation is performed by the BF washing nozzle, and then the substrate solution is dispensed and stirred again. Then, the cuvette is transferred to the enzyme reaction table 30 by the first cuvette transfer mechanism 32, and is transferred to the photometry mechanism 31 by the second cuvette transfer mechanism 33 after a certain reaction time required for the enzyme reaction has elapsed.
  • the photometric mechanism 31 measures the light emitted from the cuvette and outputs the measurement result to the control mechanism 4.
  • the analysis unit 44 analyzes the presence / absence of the target substance in the sample and the amount of the target substance based on the measurement result output from the photometry mechanism 31.
  • the cuvette that has been measured by the photometric mechanism 31 is moved to a predetermined disposal position by the second cuvette transfer mechanism 33. And then discarded.
  • the control unit 41 determines whether or not the analysis information search mode is selected (step S2). For example, when the analysis information search mode is selected by operating the mouse or keyboard in the input unit 43, instruction information for instructing selection of the analysis information search mode is input from the input unit 43 to the control unit 41.
  • control unit 41 repeats the determination process of step S2 until determining that the analysis information search mode is selected. If the control unit 41 determines that the analysis information search mode is selected (step S2: Yes), the input unit 43 performs search condition input processing (step S4).
  • the output unit 47 displays and outputs the search menu Ml illustrated in FIG.
  • a column Ct for selecting the analysis content is provided at the top
  • a column Ci for selecting the analysis date and time desired to be searched is provided on the right side of the column Ct.
  • check boxes corresponding to the units used are provided in the area Au below the column Ct.
  • the input unit 43 inputs search conditions by performing input to each column and selecting each check box by operating the mouse and keyboard. In FIG.
  • “Probe Bl” is selected as a unit by selecting the check box CBbl, a blood sample that has been subjected to normal processing is selected by selecting the check box CBr, and the search condition is controlled from the input unit 43. Input to part 41. Furthermore, as shown in Fig. 4, when selecting the desired analysis content as a search condition, the slider in column Ct is moved up and down by operating the mouse, etc., and cursor C is placed on the desired analysis content and then the search is performed. When the button Sd is selected, the unit “Probe Bl” and the analysis content “34. bhCG” are input from the input unit 43 to the control unit 41 as search conditions.
  • the search unit 45 performs a search process for searching for analysis information from the storage unit 46 in accordance with the search condition input from the input unit 43 (step S6).
  • the search unit 45 uses “rprobe Bl” to “normal process”. Analyze information related to the analysis contents of “34. bhCGj” of the “blood sample that has been processed” is retrieved from the storage unit 46 and output to the control unit 41.
  • the output control unit 42 performs a rearrangement process for rearranging the analysis information searched by the search unit 45 under a predetermined condition (step S8), and performs an output process for outputting the rearranged state (step S10).
  • the analysis information searched by the search unit 45 is rearranged in the order of use of the unit “Probe Bl” shown in the column Cu and is displayed and output in the area Apl.
  • a column Lti indicating the start time is provided. As shown in column Lti, analysis information using “Probe Bl” is displayed in order of analysis start time.
  • control unit 41 determines whether or not there is instruction information for extracting details of predetermined analysis information from the displayed analysis information among the information input from the input unit 43 (step). S12).
  • step S12 determines that there is no instruction information for extracting the details of the predetermined analysis information
  • step S12: Yes the analysis information search process and output process are terminated.
  • step S14 determines that there is instruction information for extracting the details of the predetermined analysis information. Extraction output processing is performed (step S14).
  • the operator wants to examine in detail the analysis information of the sample number “0005” in which “bn” is displayed in the column Le indicating that an abnormality has occurred.
  • the cursor C is placed on the specimen number “0005”
  • the left button of the mouse is clicked
  • the detailed information button Si is selected.
  • the instruction information for extracting the analysis information of the sample number “0005” from the analysis information displayed on the list menu M2 is input from the input unit 43, and the output control unit 42 receives the menu M3 shown in FIG.
  • the details of the analysis information of the sample number “0005” are displayed on the output unit 47.
  • the analysis information corresponding to the desired unit selected as the search condition is searched from the storage unit 46, and the desired units are used in the order of use. Sort and output.
  • the operator in order to identify an abnormality in the analyzer, the operator can acquire information without performing the extraction work of extracting necessary information from the enormous amount of operation information and analysis results that have been required in the past.
  • the analysis information of the desired unit can be quickly acquired in a state where it is rearranged into an array that can be easily confirmed.
  • the analysis information corresponding to the desired unit is stored in the storage unit 46. Therefore, the operator can quickly and easily recognize the analysis information rearranged in the order of use of the desired unit in order to identify the abnormality. it can. Therefore, the analyzer 1 can reduce the burden on the operator in the abnormality identification process.
  • the graph menu M4 in FIG. 7 is displayed.
  • a graph indicating the dependency of the analysis start time of each analysis result displayed in the list menu M2 is displayed in the area Ag.
  • the input unit 43 can input instruction information for instructing the output of the graph image corresponding to the analysis information searched by the search unit 45, and the output control unit 42 can analyze the analysis information searched by the search unit 45.
  • a graph image in which the usage order information is associated with each other may be output to the output unit 47.
  • the search menu Ml in Fig. 3 the case where a single unit is selected as a search condition has been described, but a plurality of units may of course be selected as the search condition.
  • the operator may select a plurality of check boxes indicating units to be searched and select the search button Sd.
  • the search button Sd selects the check box CBg corresponding to "Table G" together with the check box CBbl corresponding to "Probe Bl”.
  • the search is performed from the input section 43 using "rprobe Bl” and "T able G" as search conditions.
  • Instruction information for performing is input to the control unit 41.
  • the search unit 45 searches the analysis information using the units “Probe Bl” and “Table G”.
  • the output control unit 42 displays the analysis information corresponding to rprobe Bl among the analysis information searched by the search unit 45 in the upper area Sbl, and displays “ The analysis information corresponding to “Table G” is displayed in the area Stg below the area Sbl.
  • the analyzer 1 when a plurality of units are selected, the analysis information is displayed in the list menu M2 for each of the units "Probe Bl” and “Table G". Therefore, the operator can accurately recognize the analysis information of each unit, and can smoothly perform the specific examination of the abnormality.
  • the graph button Sg When the graph button Sg is selected, a graph showing the dependence of the analysis start time on each analysis result corresponding to each unit of “rprobe Bl” and “Table G” is displayed.
  • a plurality of analysis contents may be selected as search conditions.
  • the operator can select, for example, the analysis contents of “15. CEA” and “34. bhCG” as search conditions.
  • instruction information for performing a search using the analysis contents “15. CEA” and “34. bhCG” as search conditions is input to the control unit 41, and the search unit 45 performs the search according to the instruction conditions.
  • the output control unit 42 displays the analysis information corresponding to the analysis content “15. CEA” among the analysis information searched by the search unit 45 in the upper area.
  • the analysis information corresponding to “34. bhCG” is displayed in the area St b below the area Stc.
  • the analysis information is divided into the analysis contents “15. CEA” and “34. bhCG” in the list menu M 21. Is displayed, the operator can accurately recognize the analysis information of each analysis content, and can smoothly perform the specific examination of the abnormality.
  • the graph button Sg is selected, a graph showing the dependence of the analysis start time of each analysis result corresponding to each analysis content of “15. CEA” and “34. bhCG” is displayed.
  • a column Ct2 for selecting the second analysis content other than the analysis content selected in the column Ctl is further provided to provide a plurality of analysis content. Let's be able to select.
  • all units may be selected as search conditions! /.
  • search unit 45 searches the storage unit 46 for analysis information corresponding to all units according to the search condition.
  • the output control unit 42 rearranges the analysis information searched by the search unit 45 according to the analysis start time and causes the output unit 47 to output it.
  • the operator can confirm the analysis information in detail in the order of the analysis start time.
  • the operator can freely set the priority order of the search conditions.
  • the priority of analysis contents can be set in the area Ant in the setting menu Ms.
  • V can be set for analysis content with priority “1st”, in column Bt2, for analysis content with priority “2nd”, in column Bt3 for priority “3rd” Can be set.
  • the output analysis information is divided into analysis contents and output in the order according to the priority order.
  • the priority of units used can be set.
  • a unit with priority “1st” can be set, in column Bu2, a unit with priority “2nd” can be set, and in column Bu3, a unit with priority “3rd” can be set .
  • the output analysis information is output to each unit in the order according to the priority order. In this way, the priority in the output of analysis information can be set freely, so the operator can flexibly change the method of acquiring analysis information, enabling efficient identification of abnormalities. Become.
  • the output control unit 42 may cause the output means to output analysis information other than the analysis information corresponding to the search condition under a predetermined condition.
  • the unit "Probe Bl” if the unit "Probe Bl" is entered as a search condition, the unit "Probe Bl" Analysis information corresponding to other units may be displayed in the order of sample numbers after the corresponding analysis information.
  • the analysis information corresponding to “rprobe Bl” is displayed in the upper area Sbl, and the analysis information corresponding to other units is displayed in the order of the sample number as shown in the column Ls in the lower area StO of the area Sb 1.
  • the analysis information corresponding to the other unit is displayed in the order of analysis contents after the analysis information corresponding to the unit “Probe Bl”. Also good.
  • the analysis information corresponding to “rprobe B 1” is displayed in the upper area Sbl, and the analysis information corresponding to other units is displayed in the order of the analysis contents as shown in the column Lte in the lower area StO of the area Sbl.
  • analysis information other than the analysis information corresponding to the search condition may be displayed before the analysis information corresponding to the search condition instead of after the analysis information corresponding to the search condition. Also, as shown in the column Lti in FIG.
  • the analysis start time may be left blank.
  • the analysis apparatus 1 displays the analysis information other than the analysis information corresponding to the search condition as the predetermined condition, the analysis information other than the analysis information corresponding to the search condition can be confirmed. It is possible to omit the process of performing the search process and re-outputting the analysis information other than the analysis information corresponding to the first search condition.
  • the output unit 47 has been described as an example in which the analysis information rearranged by the output control unit 42 is displayed and output. However, of course, the analysis performed by the output control unit 42 is rearranged.
  • the information may be printed, or the output control unit 42 may output the file storing the rearranged analysis information to the storage unit 46 or an external storage medium.
  • the transmission / reception unit 48 may output the analysis information rearranged by the output control unit 42 to another computer system via a network line.
  • the analysis apparatus described in the above embodiment can be realized by executing a prepared program on a computer system such as a personal computer or a workstation.
  • This computer system realizes the processing operation of the analyzer by reading and executing a program recorded in a predetermined recording medium.
  • the predetermined recording medium is a combination of a “portable physical medium” such as a flexible disk (FD), a CD-ROM, an MO disk, a DVD disk, a magneto-optical disk, and an IC card.
  • Any recording medium that records a program that can be read by a computer system such as a ⁇ communication medium '' that holds the program in a short time when sending a program, such as a hard disk drive (HDD) installed inside or outside the user system. It is included.
  • this computer system obtains another computer system power program connected via a network, and realizes the processing operation of the analyzer by executing the obtained program.
  • the analysis apparatus is useful for a medical analysis apparatus having a plurality of units, and in particular, when an abnormality occurs in the analysis apparatus, desired analysis information is specified for specifying an abnormality. Suitable for simple and quick acquisition.

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Automatic Analysis And Handling Materials Therefor (AREA)

Abstract

L'invention porte sur un analyseur (1) comportant: des unités multiples respectivement utilisées selon leurs contenus analytiques individuels; une section (47) de production des informations analytiques relatives à l'analyse; une section (46) de stockage des informations analytiques sur chaque analyte avec les informations indiquant l'unité utilisée dans le traitement analytique de l'analyte; une section (43) d'introduction d'une unité désirable en tant que condition de recherche; une section (45) de recherche des contenus de la section (46) de stockage des informations analytiques sur l'analyte analysé, utilisant l'unité désirable en conformité avec la condition de recherche introduite par la section (43) d'introduction; et une section (42) de reclassement des informations analytiques recherchées par la section (45) de recherche dans l'ordre indiqué par l'unité désirable et émettant lesdites informations avec une indication de l'ordre d'utilisation de l'unité désirable à la section (47) de production.
PCT/JP2006/321137 2006-10-24 2006-10-24 Analyseur WO2008050397A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/JP2006/321137 WO2008050397A1 (fr) 2006-10-24 2006-10-24 Analyseur
JP2008540828A JP4838855B2 (ja) 2006-10-24 2006-10-24 分析装置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2006/321137 WO2008050397A1 (fr) 2006-10-24 2006-10-24 Analyseur

Publications (1)

Publication Number Publication Date
WO2008050397A1 true WO2008050397A1 (fr) 2008-05-02

Family

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PCT/JP2006/321137 WO2008050397A1 (fr) 2006-10-24 2006-10-24 Analyseur

Country Status (2)

Country Link
JP (1) JP4838855B2 (fr)
WO (1) WO2008050397A1 (fr)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009281802A (ja) * 2008-05-21 2009-12-03 Hitachi High-Technologies Corp 自動分析装置および検体検索システム
JP2010236962A (ja) * 2009-03-31 2010-10-21 Hitachi High-Technologies Corp 検体検査システムとその装置管理サーバの運用方法
CN102818908A (zh) * 2012-08-24 2012-12-12 叶孔国 一种任选式全自动免疫检测仪的运作装置
US9921235B2 (en) 2008-12-04 2018-03-20 Beckman Coulter, Inc. Automatic analyzer and sample dispensing method for the automatic analyzer
WO2018056175A1 (fr) * 2016-09-21 2018-03-29 株式会社日立ハイテクノロジーズ Dispositif d'analyse automatisé

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JPH07181187A (ja) * 1993-12-22 1995-07-21 Jasco Corp システムコントローラを用いた分析装置ユニット
JPH1010131A (ja) * 1996-06-20 1998-01-16 Hitachi Ltd 測定来歴の報告機能を有する自動分析装置
JP2003329690A (ja) * 2002-05-09 2003-11-19 Sysmex Corp 臨床検査システム
JP2005043270A (ja) * 2003-07-24 2005-02-17 Olympus Corp 自動分析装置
JP2005061887A (ja) * 2003-08-20 2005-03-10 Horiba Ltd データ管理システムおよびそれに適用される分析装置
JP2006275830A (ja) * 2005-03-30 2006-10-12 Sysmex Corp 分析システム、データ処理装置、及びアプリケーションプログラム

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JP4045999B2 (ja) * 2003-04-11 2008-02-13 株式会社島津製作所 機器分析用データ管理装置
JP4979307B2 (ja) * 2006-08-25 2012-07-18 シスメックス株式会社 血液試料測定装置
JP2008058129A (ja) * 2006-08-31 2008-03-13 Hitachi High-Technologies Corp 自動分析装置

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Publication number Priority date Publication date Assignee Title
JPH07181187A (ja) * 1993-12-22 1995-07-21 Jasco Corp システムコントローラを用いた分析装置ユニット
JPH1010131A (ja) * 1996-06-20 1998-01-16 Hitachi Ltd 測定来歴の報告機能を有する自動分析装置
JP2003329690A (ja) * 2002-05-09 2003-11-19 Sysmex Corp 臨床検査システム
JP2005043270A (ja) * 2003-07-24 2005-02-17 Olympus Corp 自動分析装置
JP2005061887A (ja) * 2003-08-20 2005-03-10 Horiba Ltd データ管理システムおよびそれに適用される分析装置
JP2006275830A (ja) * 2005-03-30 2006-10-12 Sysmex Corp 分析システム、データ処理装置、及びアプリケーションプログラム

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009281802A (ja) * 2008-05-21 2009-12-03 Hitachi High-Technologies Corp 自動分析装置および検体検索システム
US9921235B2 (en) 2008-12-04 2018-03-20 Beckman Coulter, Inc. Automatic analyzer and sample dispensing method for the automatic analyzer
JP2010236962A (ja) * 2009-03-31 2010-10-21 Hitachi High-Technologies Corp 検体検査システムとその装置管理サーバの運用方法
CN102818908A (zh) * 2012-08-24 2012-12-12 叶孔国 一种任选式全自动免疫检测仪的运作装置
WO2018056175A1 (fr) * 2016-09-21 2018-03-29 株式会社日立ハイテクノロジーズ Dispositif d'analyse automatisé
JPWO2018056175A1 (ja) * 2016-09-21 2019-08-08 株式会社日立ハイテクノロジーズ 自動分析装置
US11125765B2 (en) 2016-09-21 2021-09-21 Hitachi High-Tech Corporation Automatic analyzer

Also Published As

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JP4838855B2 (ja) 2011-12-14
JPWO2008050397A1 (ja) 2010-02-25

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