Sample analysis method and sample analysis system
By obtaining the detection data of whole blood samples in the sample analysis system, calculating and applying actual correction parameters, the problem of inaccurate detection results caused by the use of default HCT correction values in the prior art is solved, and the accuracy of detection of specific proteins is improved.
Patent Information
- Application Number
- CN201910696681.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-07-30
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2039-07-30
AI Technical Summary
Existing sample analyzers such as CRP, SAA, PCT use the default HCT correction values, resulting in inaccurate detection results.
Using a sample analysis method and system, the actual correction parameters are calculated by obtaining the detection data of whole blood samples on the blood cell analyzer and specific protein analyzer, and the detection results of specific proteins are corrected using these parameters.
Improves the accuracy of specific protein detection results, especially in whole blood samples, and can be converted to serum concentrations more accurately.
Smart Images

Figure CN112305246B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of medical detection, and particularly to a sample analysis method and a sample analysis system. Background Art
[0002] In the field of medical diagnosis, with the increasing automation of testing laboratories, the demand for automated detection is also growing. A sample analyzer is used to detect samples such as blood. The samples are generally placed on sample racks and transported through tracks, belts, etc. to achieve a streamlined automated detection operation. By connecting multiple sample analysis instruments through a production line, unified management and scheduling of all samples can be achieved, thereby improving the efficiency of sample analysis.
[0003] In existing production line-type sample analysis systems, there are usually two types of sample analyzers. One is a blood cell analyzer, and the other is a specific protein analyzer for CRP (C-reaction protein), SAA (Serum amyloid A), PCT (Procalcitonin), etc. Due to clinical application requirements, the reported results of specific protein analyzers are usually the test results obtained by measuring serum without blood cells. In a production line-type sample analysis system, specific protein analyzers such as CRP, SAA, and PCT complete the test by measuring whole blood samples, which are the concentrations of various parameters in whole blood. For clinical application requirements, it is necessary to convert the concentrations of CRP, SAA, PCT, etc. in whole blood samples into the concentrations in serum.
[0004] Existing sample analyzers for CRP, SAA, PCT, etc. all use a default unified correction value, that is, default HCT for correction. This correction method often leads to inaccurate reported results for CRP, etc. Summary of the Invention
[0005] In order to solve the above technical problems or at least partially solve the above technical problems, the present application provides a sample analysis method and a sample analysis system, which can improve the accuracy of the detection results of whole blood samples.
[0006] In a first aspect, the present application provides a sample analysis method, which is applied to a sample analysis system. The sample analysis system includes a first sample analyzer, a second sample analyzer, and a sample transport device. The sample transport device is configured to transport a whole blood sample to be tested to the first sample analyzer and the second sample analyzer respectively for detection. The first sample analyzer is a hematology analyzer for detecting the whole blood sample to be tested to obtain a complete blood count test result, and the second sample analyzer is an analyzer for detecting the whole blood sample to be tested to obtain a test result. The sample analysis method includes: obtaining first detection data of the whole blood sample to be tested on the first sample analyzer and second detection data of the whole blood sample to be tested on the second sample analyzer; obtaining an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data; obtaining an actual test result corresponding to the whole blood sample to be tested according to the second detection data; and correcting the actual test result according to the actual correction parameter.
[0007] In a second aspect, a sample analysis system is provided, including: a first sample analyzer, a second sample analyzer, and a sample transport device; the sample transport device is configured to transport a whole blood sample to be tested to the first sample analyzer and the second sample analyzer respectively for detection; the first sample analyzer is a hematology analyzer for detecting the whole blood sample to be tested to obtain complete blood count parameters, and the second sample analyzer is an analyzer for detecting the whole blood sample to be tested to obtain a test result. The sample analysis system is configured to obtain first detection data of the whole blood sample to be tested on the first sample analyzer and second detection data of the whole blood sample to be tested on the second sample analyzer, obtain an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data, obtain an actual test result corresponding to the whole blood sample to be tested according to the second detection data, and correct the actual test result of the whole blood sample to be tested according to the actual correction parameter.
[0008] An embodiment of the present invention provides a sample analysis method and a sample analysis system. In the present invention, correcting the second detection data according to the actual correction parameter, that is, correcting the specific protein detection according to the actual correction parameter, can improve the accuracy of the specific protein detection result. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present invention, and are used together with the specification to explain the principles of the present invention.
[0010] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0011] Figure 1 、 Figure 6 The figure shows a schematic diagram of a sample analysis system according to an embodiment of the present invention;
[0012] Figures 2 to 14 The figure shows a flowchart of a sample analysis method according to an embodiment of the present invention;
[0013] Figure 15 The figure shows a schematic structural diagram of a data management device according to an embodiment of the present invention;
[0014] Figure 16 The figure shows an internal structure diagram of a computer device according to an embodiment of the present invention;
[0015] Figures 17 to 22 The figure shows a flowchart of a sample analysis method according to an embodiment of the present invention. Detailed implementation manners
[0016] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of them. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope protected by the present application.
[0017] The embodiments of the present invention provide a sample analysis method, which is applied to a sample analysis system.
[0018] Figure 1 The figure shows a schematic diagram of a sample analysis system according to an embodiment of the present invention. As Figure 1 shown, the sample analysis system includes a first sample analyzer 110, a second sample analyzer 120, and a sample transport device 190. The sample transport device 190 is used to transport the whole blood sample 100 to be tested to the first sample analyzer 110 and the second sample analyzer 120 respectively for detection. The first sample analyzer 110 is a hematology analyzer for detecting the whole blood sample to be tested to obtain a blood routine test result, and the second sample analyzer 120 is an analyzer for detecting the whole blood sample to be tested to obtain a test result.
[0019] In an embodiment of the present invention, the second sample analyzer may be a specific protein analyzer, a glycosylated hemoglobin analyzer, a coagulation analyzer, an erythrocyte sedimentation rate analyzer, or a flow cytometer, etc., which are devices that measure parameters other than blood routine parameters using anticoagulated whole blood samples. The actual correction parameter may be hematocrit HCT or packed cell volume BCV. Here, the actual detection result is, for example, the concentration of C-reactive protein in whole blood.
[0020] Hematocrit HCT is the percentage of the volume occupied by red blood cells in whole blood. Packed cell volume BCV is the percentage of the volume occupied by all blood cells in whole blood.
[0021] Figure 2 The flowchart of a sample analysis method according to an embodiment of the present invention is shown as Figure 2 shown, and the sample analysis method includes:
[0022] Step 210, obtaining first detection data of the whole blood sample to be tested on the first sample analyzer 110 and second detection data on the second sample analyzer 120;
[0023] Step 220, obtaining the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data;
[0024] Step 230, obtaining the actual detection result corresponding to the whole blood sample to be tested according to the second detection data;
[0025] Step 240, correcting the actual detection result according to the actual correction parameter.
[0026] In an embodiment of the present invention, the first sample analyzer is a blood cell analyzer, and the obtained first detection data may be the blood routine parameters directly output by the first sample analyzer. The blood routine parameters include red blood cell RBC count, white blood cell WBC count, platelet PLT count, hemoglobin, hematocrit (hematocrit HCT), etc. The actual correction parameter (such as hematocrit) is one of the blood routine data, that is, the actual correction parameter can be directly obtained from the blood routine data output by the first sample analyzer.
[0027] In addition, the first detection data may be intermediate data related to the actual correction parameter, that is, intermediate data that can be used to calculate the actual correction parameter. For example, when the actual correction parameter is hematocrit HCT, the first detection data may be the red blood cell RBC count and the mean corpuscular volume MCV, or even the optical signal and electrical signal for calculating the red blood cell RBC count and the mean corpuscular volume MCV. When the actual correction parameter is packed cell volume BCV, the first detection data may include data such as HCT, PLT, MPV, WBC, etc. that can be used to calculate the packed cell volume BCV.
[0028] The second detection data may be intermediate data, such as data generated during the detection process according to the principle; the second detection data may also be the result after being corrected by the default correction parameters of certain types of sample analyzers.
[0029] In the embodiments of the present invention, using the actual correction parameters to correct the actual detection results can improve the accuracy of the detection results.
[0030] In one embodiment of the present invention, the second sample analyzer may be a CRP analyzer, and the actual correction parameter may be the blood cell volume BCV. The detection of whole blood CRP is interfered by the blood cell volume. Conventional HCT correction techniques only consider the influence of the hematocrit on the measurement results of whole blood CRP. In the sample analysis system of the embodiments of the present invention, using BCV for correction can enable accurate results of C-reactive protein to be output for abnormal samples such as high white blood cells and high platelets.
[0031] In the embodiments of the present invention, in step 220, that is, obtaining the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data includes:
[0032] The first sample analyzer 110 obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data; or
[0033] The first target device receives the first detection data sent by the first sample analyzer 110, and obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data.
[0034] In the embodiments of the present invention, in step 230, that is, obtaining the actual detection result corresponding to the whole blood sample to be tested according to the second detection data includes:
[0035] The second sample analyzer 120 obtains the actual detection result corresponding to the whole blood sample to be tested according to the second detection data; or
[0036] The second target device receives the second detection data sent by the second sample analyzer 120, and obtains the actual detection result corresponding to the whole blood sample to be tested according to the second detection data.
[0037] In the embodiments of the present invention, obtaining the actual correction parameter can be on the first sample analyzer 110, or can be on other instruments of the sample analysis system, such as the data management device 140, laboratory information system 150, third sample analyzer 130, etc. described below; obtaining the actual detection result can be on the second sample analyzer 120, or can be on other instruments of the sample analysis system, such as the data management device 140, laboratory information system 150, third sample analyzer 130, etc. described below.
[0038] In an embodiment of the present invention, the laboratory information system is also referred to as LIS (Laboratory Information System), and can uniformly manage the detection results of the sample analysis system.
[0039] In an embodiment of the present invention, the data management device is used to manage the data of the sample analysis system, including the detection data of the sample analyzer, the status data of the sample transport device, and the sample data, etc. The data management device can have functions such as information query, data display, result review, result transmission, report printing, etc. Information query can ask the laboratory information system for patient-related information. Result review can be either manual review or automatic review, and the measurement mode can be increased or decreased through rules, so as to act on the sample analyzer.
[0040] If actual correction parameters and / or actual detection results are obtained on other instruments of the sample analysis system, the first detection data and / or the second detection data need to be sent to the corresponding instrument, which will not be elaborated here.
[0041] In an embodiment of the present invention, in step 240, that is, correcting the actual detection result according to the actual correction parameter includes:
[0042] The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter.
[0043] Figure 3 The figure shows a flowchart of a sample analysis method according to an embodiment of the present invention. As Figure 3 shown, the third target device is the first sample analyzer 110, and the first sample analyzer 110 is communicatively connected to the second sample analyzer 120. The communication connection can be a direct connection or can be a connection through other devices / instruments for transfer.
[0044] Figure 1 In, an arrow is used to represent the communication connection. Figure 1 The arrow direction in only lists possibilities and does not mean that the communication connection can only be in the arrow direction.
[0045] In an embodiment of the present invention, the communication connection can be a wired connection, such as a USB bus, a CAN bus, a WLAN, etc., or a wireless connection, such as WIFI, Bluetooth, etc.
[0046] Step 240, that is, the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, includes:
[0047] Step 310, the first sample analyzer 110 receives the actual detection result sent by the second sample analyzer 120;
[0048] Step 320, the first sample analyzer 110 corrects the actual detection result according to the actual correction parameter.
[0049] In the above embodiments of the present invention, the first sample analyzer 110 corrects the actual detection result, and uses the actual correction parameter to correct the actual detection result, which can improve the accuracy of the detection result.
[0050] Figure 4 The flowchart of the sample analysis method according to an embodiment of the present invention is shown. As Figure 4 shown, the first sample analyzer 110 is communicatively connected to the second sample analyzer 120, and the third target device is the second sample analyzer 120.
[0051] Step 240, that is, the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including:
[0052] Step 410, the second sample analyzer 120 receives the actual correction parameter sent by the first sample analyzer 110;
[0053] Step 420, the second sample analyzer 120 corrects the actual detection result according to the actual correction parameter.
[0054] In other embodiments of the present invention, the instrument for obtaining the actual correction parameter and the instrument for performing the correction may be the same. For example, the actual correction parameter is obtained on the second sample analyzer 120 and the correction is performed on the second sample analyzer 120. Of course, the instrument for obtaining the actual correction parameter and the instrument for performing the correction may also be different. For example, the actual correction parameter is obtained on the data management device 140 and the correction is performed on the laboratory information system 150, etc., which will not be elaborated here.
[0055] In another embodiment of the present invention, in step 410, the second sample analyzer 120 receives the actual correction parameter sent by the first sample analyzer 110, including:
[0056] The second sample analyzer 120 sends a correction parameter acquisition request to the first sample analyzer 110 according to the actual detection result. The correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested, so that the first sample analyzer 110 acquires the actual correction parameter according to the identification code in the correction parameter request;
[0057] The second sample analyzer 120 receives the actual correction parameter sent by the first sample analyzer 110.
[0058] Specifically, Figure 5 The flowchart of the sample analysis method according to an embodiment of the present invention is shown. As Figure 5As shown, the sample analysis method includes:
[0059] Step 510, the second sample analyzer 120 obtains the second test data and / or the actual test result of the whole blood sample to be tested;
[0060] Step 520, the second sample analyzer 120 sends a request for obtaining correction parameters to the first sample analyzer 110, and the request for obtaining correction parameters includes the identification code corresponding to the whole blood sample to be tested;
[0061] Step 530, the first sample analyzer 110 obtains the actual correction parameters corresponding to the whole blood sample to be tested according to the identification code in the correction parameter request;
[0062] Step 540, the first sample analyzer 110 sends the actual correction parameters to the second sample analyzer 120;
[0063] Step 550, the second sample analyzer 120 corrects the actual test result according to the actual correction parameters.
[0064] In an embodiment of the present invention, after obtaining the actual correction parameters, the first sample analyzer 110 may, as in Figure 4 the embodiment shown, actively send the actual correction parameters to the second sample analyzer 120, or may, as in Figure 5 the embodiment shown, after the second sample analyzer 120 obtains the second test data or the actual test result, request the actual correction parameters from the first sample analyzer 110, and the first sample analyzer 110 sends the actual correction parameters to the second sample analyzer 120 according to the correction parameter acquisition request.
[0065] Figure 6 As shown is a schematic structural diagram of a sample analysis system according to an embodiment of the present invention. As in Figure 6 shown, different from the sample analysis system shown in Figure 1 the sample analysis system further includes a data management device 140 in addition to the first sample analyzer 110, the second sample analyzer 120 and the sample transport device 190. The first sample analyzer 110 and the second sample analyzer 120 are respectively communicatively connected to the data management device 140. Figure 6 The sample analysis system shown may further include a third sample analyzer 130, a laboratory information system 150, etc. When necessary, Figure 6 among the instruments in the sample analysis system shown, all can be communicatively connected.
[0066] Figure 6 In Figure 6 the communication connections are indicated by arrows. The arrow directions in
[0067] Figure 7 The flowchart of the sample analysis method according to an embodiment of the present invention is shown, which is applied to Figure 6 the sample analysis system shown. The third target device is the data management device 140 or the third sample analyzer 130. As Figure 7 shown, step 240, that is, the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, includes:
[0068] Step 710, the first sample analyzer 110 sends the actual correction parameter or the first detection data to the data management device 140 or the third sample analyzer 130, that is, the data management device 140 or the third sample analyzer 130 receives the actual correction parameter or the first detection data sent by the first sample analyzer 110;
[0069] Step 720, the second sample analyzer 120 sends the second detection data or the actual detection result to the data management device 140 or the third sample analyzer 130, that is, the data management device 140 or the third sample analyzer 130 receives the second detection data or the actual detection result sent by the second sample analyzer 120;
[0070] Step 730, the data management device 140 or the third sample analyzer 130 corrects the actual detection result according to the actual correction parameter.
[0071] In this embodiment, if the first sample analyzer 110 sends the first detection data, the data management device 140 or the third sample analyzer 130 needs to obtain the actual correction parameter from the first detection data; if the second sample analyzer 120 sends the second detection data, the data management device 140 or the third sample analyzer 130 needs to first obtain the actual detection result from the second detection data.
[0072] Figure 8 The flowchart of the sample analysis method according to an embodiment of the present invention is shown, which is applied to Figure 6 the sample analysis system shown. The third target device is the data management device 140 or the third sample analyzer 130. As Figure 8 shown, step 240, that is, the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, includes:
[0073] Step 810, the second sample analyzer 120 sends the second detection data or the actual detection result to the data management device 140 or the third sample analyzer 130;
[0074] Step 820: The data management device 140 or the third sample analyzer 130 sends a correction parameter acquisition request to the first sample analyzer 110 according to the second detection data or the actual detection result. The correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested.
[0075] Step 830: The first sample analyzer 110 acquires the actual correction parameter corresponding to the whole blood sample to be tested according to the identification code in the correction parameter request.
[0076] Step 840: The first sample analyzer 110 sends the actual correction parameter to the data management device 140 or the third sample analyzer 130, that is, the data management device 140 or the third sample analyzer 130 receives the actual correction parameter sent by the first sample analyzer 110.
[0077] Step 850: The data management device 140 or the third sample analyzer 130 corrects the actual detection result according to the actual correction parameter.
[0078] In this embodiment, in step 830, the first sample analyzer 110 may also acquire the first detection data according to the identification code in the correction parameter request, and send the first detection data to the data management device or the third sample analyzer 130 in step 840. In this application scenario, before step 850, the data management device 140 or the third sample analyzer 130 needs to acquire the actual correction parameter from the first detection data.
[0079] Figure 7 In the shown embodiment, the first sample analyzer 110 actively sends the actual correction parameter to the data management device 140 or the third sample analyzer 130. Figure 8 In the shown embodiment, the data management device 140 or the third sample analyzer 130 requests the actual correction parameter from the first sample analyzer 110 according to the second detection data or the actual detection result.
[0080] In other embodiments of the present invention, the first sample analyzer 110 may actively send the first detection data to the data management device 140 or the third sample analyzer 130, and the data management device 140 or the third sample analyzer 130 acquires the actual correction parameter according to the first detection data. Or the data management device 140 or the third sample analyzer 130 requests the first detection data from the first sample analyzer 110 according to the second detection data or the actual detection result, and acquires the actual correction parameter according to the first detection data.
[0081] In an embodiment of the present invention, the data management device 140 may be in the form of software or a hardware integrated chip, etc. The data management device 140 may be provided on an instrument in the sample analysis system, for example, provided on the first sample analyzer 110 or the second sample analyzer 120, or may be provided on a server / PC / terminal outside the sample analysis system.
[0082] Figure 6 In the sample analysis system shown, a laboratory information system 150 is further included. The first sample analyzer 110 and the second sample analyzer 120 are respectively communicatively connected to the data management device 140, and the data management device 140 is communicatively connected to the laboratory information system 150.
[0083] Figure 9 The figure shows a flowchart of a sample analysis method according to an embodiment of the present invention, which is applied to Figure 6 In the sample analysis system shown, the third target device is the laboratory information system 150. As Figure 9 shown, step 240, that is, the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, includes:
[0084] Step 910, the first sample analyzer 110 sends the first detection data or the actual correction parameter to the laboratory information system 150 through the data management device 140, that is, the laboratory information system 150 receives the first detection data or the actual correction parameter sent by the first sample analyzer 110 through the data management device 140;
[0085] Step 920, the second sample analyzer 120 sends the second detection data or the actual detection result to the laboratory information system 150 through the data management device 140, that is, the laboratory information system 150 receives the second detection data or the actual detection result sent by the second sample analyzer 120 through the data management device 140;
[0086] Step 930, the laboratory information system 150 corrects the actual detection result according to the actual correction parameter.
[0087] In other embodiments of the present invention, the first sample analyzer 110 and the second sample analyzer 120 may also directly send their respective detection results to the laboratory information system 150 so that the laboratory information system 150 can correct the actual detection result according to the actual correction parameter.
[0088] In this embodiment, if the first sample analyzer 110 sends the first detection data, the laboratory information system 150 needs to obtain the actual correction parameters from the first detection data; if the second sample analyzer 120 sends the second detection data, the laboratory information system 150 needs to first obtain the actual test result from the second detection data.
[0089] Figure 10 The flowchart of a sample analysis method according to an embodiment of the present invention is shown and is applied to Figure 6 the sample analysis system shown, where the third target device is the laboratory information system 150, as Figure 10 shown, step 240, that is, the third target device obtains the actual test result and / or the actual correction parameter and corrects the actual test result according to the actual correction parameter, including:
[0090] Step 1010, the second sample analyzer 120 sends the second detection data or the actual test result to the laboratory information system 150;
[0091] Step 1020, the laboratory information system 150 sends a correction parameter acquisition request to the first sample analyzer 110 according to the second detection data or the actual test result, and the correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested;
[0092] Step 1030, the first sample analyzer 110 obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the identification code in the correction parameter request;
[0093] Step 1040, the first sample analyzer 110 sends the actual correction parameter to the laboratory information system 150;
[0094] Step 1050, the laboratory information system 150 corrects the actual test result according to the actual correction parameter.
[0095] Figure 9 In the shown embodiment, the first sample analyzer 110 actively sends the actual correction parameter to the laboratory information system 150, Figure 10 In the shown embodiment, the laboratory information system 150 requests the actual correction parameter from the first sample analyzer 110 according to the second detection data or the actual test result.
[0096] In other embodiments of the present invention, the first sample analyzer 110 may also actively send the first detection data to the laboratory information system 150, and the laboratory information system 150 obtains the actual correction parameter according to the first detection data; or the laboratory information system 150 requests the first detection data from the first sample analyzer 110 according to the second detection data and obtains the actual correction parameter according to the first detection data.
[0097] In an embodiment of the present invention, the correction can also be performed in the third sample analyzer 130. That is, the first sample analyzer 110 and the second sample analyzer 120 are respectively communicatively connected to the third sample analyzer 130. At this time, the first sample analyzer 110 transmits the first detection data or the actual correction parameters to the third sample analyzer 130, and the second sample analyzer 120 sends the actual detection result to the third sample analyzer 130. The third sample analyzer 130 corrects the actual detection result according to the first detection data or the actual correction parameters.
[0098] In an embodiment of the present invention, the correction of the actual detection result can be performed on multiple instruments in the sample analysis system. If a communication failure or an overloaded load occurs in a certain instrument in the sample analysis system, correction can be selected to be performed on other instruments to correct the actual detection result in a timely manner.
[0099] In an embodiment of the present invention, the correction of the actual detection result can be performed in the first sample analyzer 110, the second sample analyzer 120, the third sample analyzer 130, the data management device 140, or the laboratory information system 150.
[0100] In an embodiment of the present invention, after step 240, that is, after the third target device corrects the actual detection result, the method further includes:
[0101] The third target device displays the corrected actual detection result and / or the actual detection result before correction; and / or
[0102] The third target device sends the corrected actual detection result and / or the actual detection result before correction to the fourth target device, so that the fourth target device displays the corrected actual detection result and / or the actual detection result before correction.
[0103] In an embodiment of the present invention, if the third target device is the first sample analyzer 110, then the third target device sends the corrected actual detection result and / or the actual detection result before correction to the fourth target device, so that the fourth target device displays the corrected actual detection result and / or the actual detection result before correction, including:
[0104] The first sample analyzer 110 sends the corrected actual detection result and / or the actual detection result before correction to the second sample analyzer 120, so that the display device of the second sample analyzer 120 displays the corrected actual detection result and / or the actual detection result before correction; and / or
[0105] The first sample analyzer 110 sends the corrected actual test result and / or the actual test result before correction to the third sample analyzer 130, so that the display device of the third sample analyzer 130 displays the corrected actual test result and / or the actual test result before correction; and / or
[0106] The first sample analyzer 110 sends the corrected actual test result and / or the actual test result before correction to the data management device 140 and / or the laboratory information system 150, so that the instrument provided with the data management device 140 and / or the laboratory information system 150 displays the corrected actual test result and / or the actual test result before correction.
[0107] That is to say, the fourth target device can be at least one of the second sample analyzer 120, the third sample analyzer 130, the data management device 140 and / or the laboratory information system 150.
[0108] Here, after the first sample analyzer 110 corrects the actual test result, the first sample analyzer 110 can directly display the corrected actual test result and the actual test result before correction, or send the corrected actual test result to at least one of the second sample analyzer 120, the third sample analyzer 130, and the instrument provided with the data management device 140 and / or the laboratory information system 150, so that the instrument receiving the corrected actual test result displays the corrected actual test result and the actual test result before correction, wherein the actual test result before correction can be sent by the first sample analyzer 110 or the second sample analyzer 120 to at least one of the third sample analyzer 130 and the instrument provided with the data management device 140 and / or the laboratory information system 150.
[0109] In addition, the user can choose to send at least one of the corrected actual test result and the actual test result before correction to the laboratory information system 150.
[0110] In another embodiment of the present invention, when the third target device is the second sample analyzer 120, the third target device sends the corrected actual test result and / or the actual test result before correction to the fourth target device, so that the fourth target device displays the corrected actual test result and / or the actual test result before correction, including:
[0111] The second sample analyzer 120 sends the corrected actual test result and / or the actual test result before correction to the first sample analyzer 110, so that the display device of the first sample analyzer 110 displays the corrected actual test result and / or the actual test result before correction; and / or
[0112] The second sample analyzer 120 sends the corrected actual test result and / or the actual test result before correction to the third sample analyzer 130, so that the display device of the first sample analyzer 130 displays the corrected actual test result and / or the actual test result before correction; and / or
[0113] The second sample analyzer 120 sends the corrected actual test result and / or the actual test result before correction to the data management device 140 and / or the laboratory information system 150, so that the instrument provided with the data management device 140 and / or the laboratory information system 150 displays the corrected actual test result and / or the actual test result before correction.
[0114] That is to say, after the second sample analyzer 120 corrects the actual test result, the second sample analyzer 120 can directly display the corrected actual test result and the actual test result before correction, or send the corrected actual test result to at least one of the first sample analyzer 110, the third sample analyzer 130, and the instrument provided with the data management device 140 and / or the laboratory information system 150, so that the instrument receiving the corrected actual test result displays the corrected actual test result and the actual test result before correction. Among them, the actual test result before correction can be sent by the second sample analyzer 120 to at least one of the third sample analyzer 130 and the instrument provided with the data management device 140 and / or the laboratory information system 150.
[0115] In still another embodiment of the present invention, when the first target device is the data management device 140, the third target device sends the corrected actual test result and / or the actual test result before correction to the fourth target device, so that the fourth target device displays the corrected actual test result and / or the actual test result before correction, including:
[0116] The data management device 140 sends the corrected actual test result and / or the actual test result before correction to the first sample analyzer 110, so that the display device of the first sample analyzer 110 displays the corrected actual test result and / or the actual test result before correction; and / or
[0117] The data management device 140 sends the corrected actual test result and / or the actual test result before correction to the second sample analyzer 120, so that the display device of the second sample analyzer 120 displays the corrected actual test result and / or the actual test result before correction; and / or
[0118] The data management device 140 sends the corrected actual test result and / or the actual test result before correction to the third sample analyzer 130, so that the display device of the third sample analyzer 130 can display the corrected actual test result and / or the actual test result before correction; and / or
[0119] The data management device 140 sends the corrected actual test result and / or the actual test result before correction to the laboratory information system 150, so that the instrument equipped with the laboratory information system 150 can display the corrected actual test result and / or the actual test result before correction.
[0120] Similarly, the actual test result before correction can be sent from the second sample analyzer 120 or the data management device 140 to at least one of the first sample analyzer 110, the third sample analyzer 130, and the instrument equipped with the laboratory information system 150.
[0121] In an embodiment of the present invention, if the first target device is the laboratory information system 150, then the third target device sends the corrected actual test result and / or the actual test result before correction to the fourth target device, so that the fourth target device can display the corrected actual test result and / or the actual test result before correction, including:
[0122] The laboratory information system 150 sends the corrected actual test result and / or the actual test result before correction to the first sample analyzer 110, so that the display device of the first sample analyzer 110 can display the corrected actual test result and / or the actual test result before correction; and / or
[0123] The laboratory information system 150 sends the corrected actual test result and / or the actual test result before correction to the second sample analyzer 120, so that the display device of the second sample analyzer 120 can display the corrected actual test result and / or the actual test result before correction; and / or
[0124] The laboratory information system 150 sends the corrected actual test result and / or the actual test result before correction to the third sample analyzer 130, so that the display device of the third sample analyzer 130 can display the corrected actual test result and / or the actual test result before correction; and / or
[0125] The laboratory information system 150 sends the corrected actual test result and / or the actual test result before correction to the data management device 140, so that the instrument equipped with the data management device 140 can display the corrected actual test result and / or the actual test result before correction.
[0126] In an embodiment of the present invention, an instrument provided with the data management device 140 and / or the laboratory information system 150 may be the central control computer of the sample analysis system and / or other externally connected devices communicatively connected to the first sample analyzer 110 and the second sample analyzer 120.
[0127] In an embodiment of the present invention, correcting the actual detection result and displaying the corrected actual detection result may be the same instrument in the sample analysis system, or may be different instruments in the sample analysis system. For example, it may be corrected on the first sample analyzer 110 and displayed on the instrument provided with the data management device 140, which will not be elaborated here.
[0128] In other embodiments of the present invention, it is also possible to display the actual detection result before correction, the first detection data, the second detection data, etc. The display process is the same as or similar to the display of the corrected actual detection result, which will not be elaborated here. Displaying multiple results enables the user to promptly grasp more comprehensive information.
[0129] In an embodiment of the present invention, the data management device 140 may be provided in the first sample analyzer 110, the second sample analyzer 120, or other instruments. For example, when the data management device 140 is provided on the first sample analyzer 110, the instrument provided with the data management device 140 is the first sample analyzer 110 at this time.
[0130] Figure 1 、 Figure 6 The figure shows a schematic structural diagram of a sample analysis system according to an embodiment of the present invention. The sample analysis system includes: a first sample analyzer 110, a second sample analyzer 120, and a sample transport device; the sample transport device is configured to transport a whole blood sample to be tested to the first sample analyzer 110 and the second sample analyzer 120 respectively for detection; the first sample analyzer 110 is a hematology analyzer for detecting the whole blood sample to be tested to obtain blood routine parameters, the second sample analyzer 120 is an analyzer for detecting the whole blood sample to be tested to obtain a detection result, and the sample analysis system is configured to be able to obtain first detection data of the whole blood sample to be tested on the first sample analyzer 110 and second detection data on the second sample analyzer 120, obtain an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data, obtain an actual detection result corresponding to the whole blood sample to be tested according to the second detection data, and correct the actual detection result of the whole blood sample to be tested according to the actual correction parameter.
[0131] In an embodiment of the present invention, the first sample analyzer 110 in the sample analysis system is configured to be able to obtain an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data; or
[0132] The first target device in the sample analysis system is configured to receive the first detection data sent by the first sample analyzer 110, and obtain the actual correction parameters corresponding to the whole blood sample to be tested according to the first detection data.
[0133] In an embodiment of the present invention, the second sample analyzer 120 in the sample analysis system is configured to obtain the actual test result corresponding to the whole blood sample to be tested according to the second detection data; or
[0134] The second target device in the sample analysis system is configured to receive the second detection data sent by the second sample analyzer 120, and obtain the actual test result corresponding to the whole blood sample to be tested according to the second detection data.
[0135] In an embodiment of the present invention, the third target device in the sample analysis system is configured to obtain the actual test result and / or the actual correction parameter, and correct the actual test result according to the actual correction parameter.
[0136] In an embodiment of the present invention, the third target device in the sample analysis system is configured to display the corrected actual test result;
[0137] The third target device in the sample analysis system is further configured to send the corrected actual test result to the fourth target device, so that the fourth target device displays the corrected actual test result.
[0138] Among them, the first target analysis device, the second target device, the third target device, and the fourth target device can be at least one of the first sample analyzer 110, the second sample analyzer 120, the third sample analyzer 130, the data management device 140, and the laboratory information system.
[0139] Specifically for the second detection data, in an embodiment of the present invention, the second sample analyzer 120 can be configured to send the second detection data to the first sample analyzer 110, so that the first sample analyzer 110 can correct the actual test result according to the actual correction parameter.
[0140] In an embodiment of the present invention, the first sample analyzer 110 can be configured to send the actual correction parameter to the second sample analyzer 120, so that the second sample analyzer 120 can correct the actual test result according to the actual correction parameter.
[0141] In an embodiment of the present invention, the second sample analyzer 120 may be configured to send a correction parameter acquisition request to the first sample analyzer 110 according to the second detection data, where the correction parameter acquisition request includes an identification code corresponding to the whole blood sample to be tested; the first sample analyzer 110 is configured to send the actual correction parameter to the second sample analyzer 120 in response to the sent correction parameter acquisition request; the second sample analyzer 120 is further configured to receive the actual correction parameter sent by the first sample analyzer 110 and correct the second detection data according to the actual correction parameter.
[0142] In an embodiment of the present invention, the sample analysis system may include a data management device 140, and the first sample analyzer 110 and the second sample analyzer 120 are respectively communicatively connected to the data management device 140. In an embodiment of the present invention, the data management device 140 is configured to receive the actual correction parameter and the second detection result sent by the first sample analyzer 110 and the second sample analyzer 120 and correct the actual detection result according to the actual correction parameter.
[0143] In an embodiment of the present invention, the data management device 140 may further be specifically configured to receive the second detection data sent by the second sample analyzer 120 and send a correction parameter acquisition request to the first sample analyzer 110 according to the second detection data, where the correction parameter acquisition request includes an identification code corresponding to the whole blood sample to be tested; the first sample analyzer 110 is configured to send the actual correction parameter to the data management device 140 in response to the sent correction parameter acquisition request; the data management device 140 may further be specifically configured to receive the actual correction parameter sent by the first sample analyzer 110 and correct the actual detection result according to the actual correction parameter.
[0144] In an embodiment of the present invention, the data management device 140 may also be communicatively connected to the laboratory information system 150, so as to send the actual correction parameter and the second detection data received from the first sample analyzer 110 and the second sample analyzer 120 to the laboratory information system 150 for correction on the laboratory information system 150.
[0145] In an embodiment of the present invention, the laboratory information system 150 may further be specifically configured to directly receive the first detection data or the actual correction parameter sent by the first sample analyzer 110 and the second detection data sent by the second sample analyzer 120 and correct the second detection data according to the actual correction parameter.
[0146] In an embodiment of the present invention, the first sample analyzer 110 may include a display device for displaying the corrected actual test result and optionally the actual test result before correction; and / or the second sample analyzer 120 may include a display device for displaying the corrected actual test result and optionally the actual test result before correction; and / or the sample analysis system may include a third instrument having a display device and provided with a data management device 140 for displaying the corrected actual test result and optionally the actual test result before correction.
[0147] The sample analysis system according to the embodiment of the present invention can improve the accuracy of the test result by correcting the actual test result according to the actual correction parameter.
[0148] The embodiment of the present invention also provides a sample analysis method applied to Figure 6 the sample analysis system as shown.
[0149] Figure 11 The flowchart of the sample analysis method according to an embodiment of the present invention is shown as Figure 11 shown, and the sample analysis method includes:
[0150] Step 1110, the data management device 140 obtains the correction parameter of the whole blood sample to be tested;
[0151] Step 1120, the data management device 140 obtains the actual test result of the whole blood sample to be tested on the second sample analyzer 120;
[0152] Step 1130, the data management device 140 corrects the actual test result according to the correction parameter.
[0153] In the embodiment of the present invention, the data management device 140 is used to correct the actual test, without making software and hardware modifications to other instruments in the sample analysis system, having good compatibility and low cost.
[0154] In the embodiment of the present invention, the execution order of step 1110 and step 1120 is not limited herein. Step 1110 may be executed first and then step 1120, or step 1120 may be executed first and then step 1110.
[0155] In an embodiment of the present invention, the correction parameter of the whole blood sample to be tested may be the actual correction parameter measured for the whole blood sample to be tested in the first sample analyzer 110. Using the actual correction parameter to correct the actual test result of a specific protein can improve the accuracy of the test result. Of course, the correction parameter of the whole blood sample to be tested may also be a default correction parameter that has nothing to do with the sample to be tested, especially a fixed set value. The default correction parameter may be pre-stored in the first sample analyzer or the second sample analyzer or the data management device or other instruments of the sample analysis system, or may also be input by the user.
[0156] In an embodiment of the present invention, the specific types of the first sample analyzer 110 and the second sample analyzer 120 are as described in the above embodiment, and will not be elaborated herein.
[0157] In an embodiment of the present invention, in step 1110, the data management device 140 obtaining the correction parameter of the whole blood sample to be tested may include:
[0158] The data management device 140 receives the actual correction parameter sent by the first sample analyzer 110;
[0159] Wherein, the actual correction parameter is obtained by the first sample analyzer 110 according to the first detection data, and the first detection data is the detection data of the whole blood sample to be tested on the first sample analyzer 110.
[0160] In an embodiment of the present invention, in step 1110, the data management device 140 obtaining the correction parameter of the whole blood sample to be tested may include:
[0161] The data management device 140 receives the first detection data of the whole blood sample to be tested sent by the first sample analyzer 110, wherein the first detection data is the detection result of the whole blood sample to be tested on the first sample analyzer 110;
[0162] The data management device 140 obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data.
[0163] In an embodiment of the present invention, in step 1120, the data management device 140 obtaining the actual test result of the whole blood sample to be tested may include:
[0164] The data management device 140 receives the actual test result sent by the second sample analyzer 120;
[0165] Wherein, the actual test result is obtained by the second sample analyzer 120 according to the second detection data, and the second detection data is the detection data of the whole blood sample to be tested on the second sample analyzer 120.
[0166] In an embodiment of the present invention, in step 1120, the data management device 140 obtains the actual test result of the whole blood sample to be tested, which may include:
[0167] The data management device 140 receives the second test data of the whole blood sample to be tested sent by the second sample analyzer 120, where the second test data is the test data of the whole blood sample to be tested on the second sample analyzer 120;
[0168] The data management device 140 obtains the actual test result corresponding to the whole blood sample to be tested according to the second test data.
[0169] In an embodiment of the present invention, the first test data and the second test data are as described in the above embodiment, and will not be elaborated here. In an embodiment of the present invention, the data management device may directly obtain the actual correction parameter and the actual test result, or may obtain the actual correction parameter and the actual test result after obtaining the first test data and the second test data.
[0170] In an embodiment of the present invention, in step 1110, that is, the data management device 140 obtains the correction parameter of the whole blood sample to be tested, which may include:
[0171] The data management device 140 sends a correction parameter acquisition request to the first sample analyzer 110 according to the second test data or the actual test result of the whole blood sample to be tested sent by the received second sample analyzer 120, and the correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested;
[0172] The data management device 140 receives the first test data of the whole blood sample to be tested sent by the first sample analyzer 110;
[0173] The data management device 140 obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the first test data.
[0174] In an embodiment of the present invention, the data management device 140 may receive the actual correction parameter actively sent by the first sample analyzer 110; or may receive the first test data actively sent by the first sample analyzer 110 and obtain the actual correction parameter according to the first test data.
[0175] Figure 12 The flowchart of the sample analysis method according to an embodiment of the present invention is shown, as Figure 12 shown, the method may include:
[0176] In step 1210, the data management device 140 receives the second test data of the whole blood sample to be tested sent by the second sample analyzer 120;
[0177] Step 1220, the data management device 140 sends a correction parameter acquisition request to the first sample analyzer 110, and the correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested;
[0178] Step 1230, the data management device 140 receives the first test data of the whole blood sample to be tested sent by the first sample analyzer 110;
[0179] Step 1240, the data management device 140 obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the first test data.
[0180] Figure 13 The figure shows a flowchart of a sample analysis method according to an embodiment of the present invention. As Figure 13 shown, the method may include:
[0181] Step 1310, the data management device 140 receives the second test data of the whole blood sample to be tested sent by the second sample analyzer 120;
[0182] Step 1320, the data management device 140 sends a correction parameter acquisition request to the first sample analyzer 110, and the correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested;
[0183] Step 1330, the data management device 140 receives the actual correction parameter sent by the first sample analyzer 110, and the actual correction parameter is obtained by the first sample analyzer 110 according to the first test data of the whole blood sample to be tested.
[0184] In an embodiment of the present invention, the data management device 140 may actively request the actual correction parameter or the first test data from the first sample analyzer 110 according to the second test data, and correct the second test data according to the actual correction parameter, so as to improve the accuracy of the specific protein detection result.
[0185] In an embodiment of the present invention, Step 1110, that is, the data management device 140 obtains the correction parameter of the whole blood sample to be tested. As Figure 14 shown, it may include:
[0186] Step 1410, the data management device 140 receives the first test data of the whole blood sample to be tested from the first target instrument, and the first test data is sent by the first sample analyzer 110 to the first target instrument;
[0187] Step 1420, the data management device 140 obtains the actual correction parameter of the whole blood sample to be tested according to the first test data;
[0188] Among them, the first target instrument is the second sample analyzer 120 or the third sample analyzer or the laboratory information system 150.
[0189] In an embodiment of the present invention, the method may include:
[0190] The data management device 140 receives the actual correction parameters of the whole blood sample to be tested from a first target instrument, where the actual correction parameters are obtained by the first target instrument according to the first detection data, and the first detection data is sent by the first sample analyzer 110 to the first target instrument.
[0191] The first target instrument may be other instruments in the sample analysis system or other instruments outside the sample analysis system, which will not be elaborated here.
[0192] In an embodiment of the present invention, the first detection data and the actual correction parameters may be directly sent by the first sample analyzer 110 to the data management device 140, or may be relayed by other instruments to the data management device 140.
[0193] In an embodiment of the present invention, the correction parameters may be input by the user, for example, input on the second sample analyzer 120 and then sent to the data management device.
[0194] In an embodiment of the present invention, the data management device 140 may be in the form of software or a hardware integrated chip, etc. The data management device 140 may be set on the instruments in the sample analysis system, such as set on the first sample analyzer 110, the second sample analyzer 120, the third sample analyzer 130 of the sample analysis system or the central control computer of the sample analysis system, or may be set on a server / PC / terminal outside the sample analysis system.
[0195] In an embodiment of the present invention, after the data management device 140 corrects the actual detection result according to the actual correction parameters, the method further includes:
[0196] The data management device 140 sends the corrected actual detection result and the actual detection result before correction to the first analyzer and / or other instruments of the sample analysis system and / or the laboratory information system, so that the display device of the first analyzer and / or the display devices of other instruments of the sample analysis system and / or the instruments equipped with the laboratory information system display the corresponding detection results.
[0197] In an embodiment of the present invention, the other instruments may be a central control computer or an external display device or a third sample analyzer.
[0198] Display the corrected actual detection results, or display the actual detection results before correction simultaneously, which can facilitate the different needs of users and have higher flexibility. For example, synchronizing the actual second detection data corrected with the actual correction parameters to the second sample analyzer 120, the laboratory information system 150, or other instruments can ensure the consistency of the data in the system, so as to trace the consistency among the second sample analyzer 120, the data management device 140, and the laboratory information system 150, and avoid errors caused by manual modification.
[0199] Corresponding to the above sample analysis method, an embodiment of the present invention further provides a data management device 140, which is applied to Figure 6 the sample analysis system shown.
[0200] Figure 15 The following is a schematic structural diagram of the data management device 140 according to an embodiment of the present invention. As Figure 15 shown, the data management device 140 includes:
[0201] A correction parameter acquisition unit 1510, configured to acquire correction parameters of a whole blood sample to be tested;
[0202] An actual detection result acquisition unit 1520, configured to acquire the actual detection result of the whole blood sample to be tested on the second sample analyzer;
[0203] A correction unit 1530, configured to correct the actual detection result to obtain second detection data according to the correction parameters.
[0204] In an embodiment of the present invention, the data management device 140 is used to correct the actual detection result of the second sample analyzer, without making software and hardware modifications to other instruments in the sample analysis system, having good compatibility and low cost.
[0205] In the data management device 140 according to an embodiment of the present invention, the correction parameters of the whole blood sample to be tested may be the actual correction parameters obtained according to the detection result of the first sample analyzer for the whole blood sample to be tested. Using the actual correction parameters to correct the actual detection result of a specific protein can improve the accuracy of the detection result.
[0206] In the data management device 140 according to an embodiment of the present invention, the correction parameter acquisition unit 1510 is further configured to:
[0207] Receive the actual correction parameters of the whole blood sample to be tested sent by the first sample analyzer 110;
[0208] Wherein, the actual correction parameters are obtained by the first sample analyzer 110 according to the first detection data, and the first detection data is the detection data of the whole blood sample to be tested on the first sample analyzer 110.
[0209] In the data management device 140 according to an embodiment of the present invention, the correction parameter acquisition unit is further configured to:
[0210] Receive first detection data of the whole blood sample to be tested sent by the first sample analyzer 110, where the first detection data is detection data of the whole blood sample to be tested on the first sample analyzer 110;
[0211] Obtain an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data.
[0212] In the data management device 140 according to an embodiment of the present invention, the actual detection result acquisition unit is further configured to:
[0213] Receive an actual detection result sent by the second sample analyzer 120;
[0214] where the actual detection result is obtained by the second sample analyzer 120 according to second detection data, and the second detection data is detection data of the whole blood sample to be tested on the second sample analyzer 120.
[0215] In the data management device 140 according to an embodiment of the present invention, the actual detection result acquisition unit is further configured to:
[0216] Receive second detection data of the whole blood sample to be tested sent by the second sample analyzer 120, where the second detection data is detection data of the whole blood sample to be tested on the second sample analyzer 120;
[0217] Obtain an actual detection result corresponding to the whole blood sample to be tested according to the second detection data.
[0218] In the data management device 140 according to an embodiment of the present invention, the correction parameter acquisition unit 1510 may further be configured to:
[0219] Receive second detection data of the whole blood sample to be tested sent by the second sample analyzer 120;
[0220] Send a correction parameter acquisition request to the first sample analyzer 110, where the correction parameter acquisition request includes an identification code corresponding to the whole blood sample to be tested;
[0221] Receive first detection data of the whole blood sample to be tested sent by the first sample analyzer 110;
[0222] Obtain an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data.
[0223] In the data management device 140 according to an embodiment of the present invention, the correction parameter acquisition unit 1510 may further be configured to:
[0224] Receive the second test data of the whole blood sample to be tested sent by the second sample analyzer 120;
[0225] Send a correction parameter acquisition request to the first sample analyzer 110, where the correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested;
[0226] Receive the actual correction parameter sent by the first sample analyzer 110, where the actual correction parameter is obtained by the first sample analyzer 110 according to the first test data of the whole blood sample to be tested.
[0227] In the data management device 140 according to an embodiment of the present invention, the correction parameter acquisition unit 1510 can also be used for:
[0228] Receive the first test data of the whole blood sample to be tested from the first target instrument, where the first test data is sent by the first sample analyzer 110 to the first target instrument;
[0229] Obtain the actual correction parameter of the whole blood sample to be tested according to the first test data;
[0230] Wherein, the first target instrument is the second sample analyzer 120 or the third sample analyzer or the laboratory information system 150.
[0231] In the data management device 140 according to an embodiment of the present invention, the correction parameter acquisition unit 1510 can also be used for: receiving the actual correction parameter of the whole blood sample to be tested from the first target instrument, where the actual correction parameter is obtained by the first target instrument according to the first test data and sent to the data management device 140, and the first test data is sent by the first sample analyzer 110 to the first target instrument.
[0232] In the data management device 140 according to an embodiment of the present invention, the data management device 140 is set on the first sample analyzer 110, or set on the second sample analyzer 120, or set on the laboratory information system 150, or set on a terminal outside the sample analysis system.
[0233] In the data management device 140 according to an embodiment of the present invention, the correction parameter of the whole blood sample to be tested can be a default correction parameter. The default correction parameter can be pre-stored in the first sample analyzer or the second sample analyzer or the data management device or other instruments of the sample analysis system, or can also be input by the user.
[0234] Figure 16 Shows the internal structure diagram of a computer device in an embodiment of the present invention. As Figure 16As shown in the figure, the computer device includes a processor, a memory, a network interface, an input device, and a display screen connected via a system bus. Among them, the memory includes a non-volatile storage medium and an internal memory. The non-volatile storage medium of the computer device stores an operating system and may also store a computer program. When the computer program is executed by the processor, the processor can implement the above method. The internal memory may also store a computer program. When the computer program is executed by the processor, the processor can execute the above method. The display screen of the computer device can be a liquid crystal display screen or an electronic ink display screen. The input device of the computer device can be a touch layer covering the display screen, or a button, a trackball, or a touchpad provided on the outer shell of the computer device, or an external keyboard, touchpad, or mouse, etc.
[0235] Those skilled in the art can understand that Figure 16 the structure shown in is only a block diagram of some structures related to the solution of the present application, and does not constitute a limitation on the computer device to which the solution of the present application is applied. The specific computer device may include more or fewer components than those shown in the figure, or combine some components, or have a different component layout.
[0236] The embodiment of the present invention also provides a sample analysis method, which is applied to a sample analysis system. The sample analysis system is basically as Figure 1 , Figure 6 and described above, and will not be repeated here. The difference is that the result output by the second sample analyzer is not the actual detection result, but the default detection result corrected by the default correction parameter.
[0237] Figure 17 is a flowchart of the sample analysis method according to an embodiment of the present invention. As Figure 17 shown, the sample analysis method includes:
[0238] Step 1710, obtaining first detection data of the whole blood sample to be tested on the first sample analyzer 110;
[0239] Step 1720, obtaining the actual correction parameter of the whole blood sample to be tested according to the first detection data;
[0240] Step 1730, obtaining the default detection result of the whole blood sample to be tested on the second sample analyzer, where the default detection result is the detection result corrected according to the default correction parameter;
[0241] Step 1740, obtaining the actual detection result of the whole blood sample to be tested on the second sample analyzer according to the default detection result and the default correction parameter;
[0242] Step 1750, correcting the actual detection result according to the actual correction parameter.
[0243] In the embodiments of the present invention, the default detection result obtained by the second sample analyzer 120 is the detection result obtained by correcting the actual detection result according to the default parameters. However, each sample is different, and the actual correction parameters of each sample are different. Therefore, in the embodiments of the present invention, first, according to the default detection result and the default parameters, the actual detection result is inversely calculated, and then the actual detection result is corrected by using the actual correction parameters, which can improve the accuracy of the detection result. In addition, in the embodiments of the present invention, it is not necessary to change the software and hardware of the instrument, especially the second sample analyzer. The default detection result output by the current second sample analyzer is directly used for inverse calculation, so as to realize the correction of the actual detection result according to the actual correction parameters, with good compatibility and low cost.
[0244] In the embodiments of the present invention, step 1720, that is, obtaining the actual correction parameters corresponding to the whole blood sample to be tested according to the first detection data, includes:
[0245] The first sample analyzer 110 obtains the actual correction parameters corresponding to the whole blood sample to be tested according to the first detection data; or
[0246] The first target device receives the first detection data sent by the first sample analyzer 110, and obtains the actual correction parameters corresponding to the whole blood sample to be tested according to the first detection data.
[0247] In the embodiments of the present invention, step 1730, obtaining the actual detection result corresponding to the whole blood sample to be tested according to the default detection result, includes:
[0248] The second sample analyzer 120 obtains the actual detection result corresponding to the whole blood sample to be tested according to the default detection result and the default correction parameters, where the default correction parameters are preset in the second sample analyzer or input from the outside; or
[0249] The second target device receives the default detection result sent by the second sample analyzer 120, and obtains the actual detection result corresponding to the whole blood sample to be tested according to the default detection result and the default correction parameters, where the default correction parameters come from the second sample analyzer 120 or are preset in the second target device.
[0250] In the embodiments of the present invention, step 1740, that is, correcting the actual detection result according to the actual correction parameters, includes:
[0251] The third target device obtains the actual detection result and / or the actual correction parameters and corrects the actual detection result according to the actual correction parameters.
[0252] In an embodiment of the present invention, the actual correction parameter can be obtained in the first sample analyzer 110, or can be obtained in other devices in the sample analysis system, or even can be obtained in other devices outside the sample analysis system.
[0253] In an embodiment of the present invention, the first sample analyzer 110 can actively obtain the actual correction parameter of the whole blood sample to be tested, or the instrument for correction can issue an instruction to the first sample analyzer 110 to request the actual correction parameter of the whole blood sample to be tested. The specific process is as shown in the above embodiment and will not be elaborated here.
[0254] In an embodiment of the present invention, the third target device is different from the first target device and the third target device is different from the second target device.
[0255] The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including:
[0256] The third target device receives the actual correction parameter sent by the first target device or the first sample analyzer 110;
[0257] The third target device receives the actual detection result sent by the second target device or the second sample analyzer 120;
[0258] The third target device corrects the actual detection result according to the actual correction parameter;
[0259] Wherein, the third target device is an instrument or a third sample analyzer provided with a data management device or a laboratory information system.
[0260] In an embodiment of the present invention, the third target device is the same as the first target device and the third target device is different from the second target device.
[0261] The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including:
[0262] The third target device receives the actual detection result sent by the second target device or the second sample analyzer 120;
[0263] The third target device corrects the actual detection result according to the actual correction parameter;
[0264] Wherein, the third target device is an instrument or a third sample analyzer provided with a data management device or a laboratory information system.
[0265] In an embodiment of the present invention, the third target device is different from the first target device and the third target device is the same as the second target device.
[0266] The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including:
[0267] The third target device receives the actual correction parameter sent by the first target device or the first sample analyzer 110;
[0268] The third target device corrects the actual detection result according to the actual correction parameter;
[0269] Wherein, the third target device is an instrument or a third sample analyzer provided with a data management device or a laboratory information system.
[0270] In an embodiment of the present invention, the third target device is the same as the first target device, and the third target device is the same as the second target device.
[0271] The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including:
[0272] The third target device corrects the actual detection result according to the actual correction parameter;
[0273] Wherein, the third target device is an instrument or a third sample analyzer provided with a data management device or a laboratory information system.
[0274] In an embodiment of the present invention, the device for obtaining the actual correction parameter, the actual detection result, and correcting the actual detection result may be the same device, or two of them may be obtained in the same device and the other in another device, or all three may be obtained in different devices.
[0275] In an embodiment of the present invention, the third target device is the first sample analyzer 110. The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including:
[0276] The first sample analyzer 110 receives the actual detection result sent by the second target device or the second sample analyzer 120;
[0277] The third target device corrects the actual detection result according to the actual correction parameter.
[0278] In an embodiment of the present invention, the third target device is the second sample analyzer 120.
[0279] The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including:
[0280] The second sample analyzer 120 receives the actual correction parameters sent by the first target device or the first sample analyzer 110;
[0281] The second sample analyzer 120 corrects the actual detection result according to the actual correction parameters.
[0282] In an embodiment of the present invention, after the third target device corrects the actual detection result, the method further includes:
[0283] The display device of the third target device displays the corrected actual detection result and / or the actual detection result before correction;
[0284] Wherein, the third target device is the first sample analyzer 110, or the second sample analyzer 120, or an instrument provided with a data management device or a laboratory information system, or a third sample analyzer.
[0285] In an embodiment of the present invention, after the third target device corrects the actual detection result, the method further includes:
[0286] The third target device sends the corrected actual detection result and / or the actual detection result before correction to the fourth target device, so that the fourth target device displays the corresponding detection result;
[0287] Wherein, the fourth target device is the first sample analyzer, or the second sample analyzer, or an instrument provided with a data management device or a laboratory information system, or a third sample analyzer; the fourth target device is different from the third target device.
[0288] In an embodiment of the present invention, after correcting the actual detection result, the corrected actual detection result can also be displayed, the actual detection result before correction can also be displayed, and various intermediate data can also be displayed. The display device can be any display device in or outside the sample analysis system, which can provide more information to customers and improve user satisfaction.
[0289] Figure 18 The flowchart of the sample analysis method according to an embodiment of the present invention is shown, as Figure 18 As shown, the sample analysis method according to an embodiment of the present invention may include:
[0290] Step 1810, the second sample analyzer 120 sends the default detection result to the first sample analyzer 110,
[0291] Step 1820, the first sample analyzer 110 obtains the actual detection result according to the default detection result and the default correction parameters;
[0292] Step 1830, the first sample analyzer 110 corrects the actual detection result according to the actual correction parameters.
[0293] In the embodiment of the present invention, the actual detection result is calculated inversely and the correction of the actual detection result are both performed on the first sample analyzer 110. The default correction parameter is pre-stored in the first sample analyzer 110 or sent to the first sample analyzer 110 by the second sample analyzer 120.
[0294] Figure 19 The flowchart of the sample analysis method according to an embodiment of the present invention is shown, as Figure 19 shown, the sample analysis method may include:
[0295] Step 1910, the second sample analyzer 120 sends the default detection result to the first sample analyzer 110,
[0296] Step 1920, the first sample analyzer 110 obtains the actual detection result according to the default detection result and the default correction parameter;
[0297] Step 1930, the first sample analyzer 110 sends the actual correction parameter and the actual detection result to the third target device,
[0298] Step 1940, the third target device corrects the actual detection result according to the actual correction parameter;
[0299] Wherein, the third target device is an instrument equipped with a data management device 140 or a laboratory information system 150 or a third sample analyzer 130, and the first sample analyzer 110 and the second sample analyzer 120 are communicatively connected to the third target device.
[0300] In the embodiment of the present invention, the actual detection result is calculated inversely on the first sample analyzer 110, and the correction of the actual detection result is performed on the third target device, that is, the correction is performed on the data management device 140 or the laboratory information system 150 or the third sample analyzer 130.
[0301] Figure 20 The flowchart of the sample analysis method according to an embodiment of the present invention is shown, as Figure 20 shown, the sample analysis method may include:
[0302] Step 2010, the second sample analyzer 120 sends the default detection result to the third target device;
[0303] Step 2020, the third target device obtains the actual detection result according to the default detection result and the default correction parameter, wherein the default correction parameter may be stored in the third target device or may be sent to the third target device by the second sample analyzer;
[0304] Step 2030, the first sample analyzer 110 sends the actual correction parameters to the third target device;
[0305] Step 2040, the third target device corrects the actual detection result according to the actual correction parameters;
[0306] Wherein, the third target device is an instrument or a third sample analyzer 130 provided with a data management device 140 or a laboratory information system 150, and the first sample analyzer 110 and the second sample analyzer 120 are communicatively connected to the third target device.
[0307] In an embodiment of the present invention, step 2020 and step 2030 may be executed synchronously, or step 2020 may be executed before step 2030, or step 2020 may be executed after step 2030, which will not be elaborated here.
[0308] In an embodiment of the present invention, the actual detection result is back-calculated on the third target device, and the correction of the actual detection result is also performed on the third target device, that is, both the back-calculation and the correction are performed on the same device, and both are performed on the third target device.
[0309] Figure 21 The figure shows a flowchart of a sample analysis method according to an embodiment of the present invention. As Figure 21 shown, the sample analysis method may further include:
[0310] Step 2110, the second sample analyzer 120 sends the default detection result to the third target device;
[0311] Step 2120, the third target device obtains the actual detection result according to the default detection result and the default correction parameters;
[0312] Step 2130, the third target device sends the actual detection result to the fourth target device;
[0313] Step 2140, the first sample analyzer 110 sends the actual correction parameters to the fourth target device;
[0314] Step 2150, the fourth target device corrects the actual detection result according to the actual correction parameters;
[0315] Wherein, the third target device is an instrument or a third sample analyzer 130 provided with a data management device 140 or a laboratory information system 150, the fourth target device is an instrument or a third sample analyzer 130 provided with a data management device 140 or a laboratory information system 150, the third target device is different from the third target device, and the first sample analyzer 110 and the second sample analyzer 120 are respectively communicatively connected to the third target device and the fourth target device.
[0316] In the embodiment of the present invention, the actual detection result is back-calculated on the third target device, and the correction of the actual detection result is performed on the fourth target device, that is, the back-calculation and the correction are performed on different instruments and are performed outside the first sample analyzer 110 and the second sample analyzer 120.
[0317] Figure 22 The flowchart of the sample analysis method according to an embodiment of the present invention is shown as Figure 22 shown, and the sample analysis method includes:
[0318] Step 2210, the second sample analyzer 120 sends the default detection result to the third target device;
[0319] Step 2220, the third target device obtains the actual detection result according to the default detection result and the default correction parameter;
[0320] Step 2230, the third target device sends the actual detection result to the first sample analyzer 110;
[0321] Step 2240, the first sample analyzer 110 corrects the actual detection result according to the actual correction parameter;
[0322] Wherein, the third target device is an instrument or a third sample analyzer 130 provided with a data management device 140 or a laboratory information system 150, and the first sample analyzer 110 and the second sample analyzer 120 are communicatively connected to the third target device.
[0323] In the embodiment of the present invention, the actual detection result is back-calculated on the third target device, and the correction of the actual detection result is performed on the first sample analyzer 110, that is, the back-calculation and the correction are not performed on the same instrument.
[0324] In the above embodiments of the present invention, the correction of the actual detection result can be performed on multiple instruments in the sample analysis system, which can be performed simultaneously or can be performed successively according to the data transfer link. In the embodiment of the present invention, if a communication failure or an overload occurs in a certain instrument in the sample analysis system, correction can be selected to be performed on other instruments so as to correct the actual detection result in a timely manner.
[0325] Corresponding to the above sample analysis method, an embodiment of the present invention further provides a sample analysis system. Refer to Figure 1 and Figure 6As shown, the sample analysis system includes: a first sample analyzer 110, a second sample analyzer 120, and a sample transport device; the sample transport device is configured to transport a whole blood sample to be tested to the first sample analyzer 110 and the second sample analyzer 120 respectively for testing; the first sample analyzer 110 is a hematology analyzer for detecting the whole blood sample to be tested to obtain a blood routine test result, and the second sample analyzer 120 is an analyzer for detecting the whole blood sample to be tested to obtain a corresponding test result; the sample analysis system is configured to obtain first detection data of the whole blood sample to be tested on the first sample analyzer 110, obtain an actual correction parameter of the whole blood sample to be tested according to the first detection data, obtain a default test result of the whole blood sample to be tested on the second sample analyzer 120, the default test result being a test result corrected according to a default correction parameter, obtain an actual test result of the whole blood sample to be tested on the second sample analyzer 120 according to the default test result and the default correction parameter, and correct the actual test result according to the actual correction parameter.
[0326] In an embodiment of the present invention, the first sample analyzer 110 is configured to obtain an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data; or
[0327] The first target device of the sample analysis system is configured to receive the first detection data sent by the first sample analyzer 110 and obtain an actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data.
[0328] In an embodiment of the present invention, the second sample analyzer 120 is configured to obtain an actual test result corresponding to the whole blood sample to be tested according to the default test result and the default correction parameter, wherein the default correction parameter is preset in the second sample analyzer or input from the outside; or
[0329] The second target device of the sample analysis system is configured to receive the default test result sent by the second sample analyzer 120 and obtain an actual test result corresponding to the whole blood sample to be tested according to the default test result and the default correction parameter, wherein the default correction parameter comes from the second sample analyzer 120 or is preset in the second target device.
[0330] In an embodiment of the present invention, the third target device of the sample analysis system is configured to obtain the actual test result and / or the actual correction parameter and correct the actual test result according to the actual correction parameter.
[0331] In an embodiment of the present invention, the display device of the third target device is configured to display the corrected actual test result and / or the actual test result before correction;
[0332] Wherein, the third target device is the first sample analyzer 110, or the second sample analyzer 120, or an instrument provided with a data management device or a laboratory information system, or the third sample analyzer.
[0333] In an embodiment of the present invention, the second sample analyzer 120 can be configured to send a default detection result to the first sample analyzer 110, so that the first sample analyzer 110 can obtain an actual detection result according to the default detection result and default correction parameters, and correct the actual detection result according to the actual correction parameters.
[0334] Specifically, in an embodiment of the present invention, the second sample analyzer 120 can also be configured to send a default detection result to the first sample analyzer 110, so that the first sample analyzer 110 can obtain an actual detection result according to the default detection result and default correction parameters and send the actual detection result and actual correction parameters to the third target device, so that the third target device can correct the actual detection result according to the actual correction parameters;
[0335] Wherein, the third target device is an instrument provided with a data management device 140 or a laboratory information system 150 or the third sample analyzer, and the first sample analyzer 110 and the second sample analyzer 120 are communicatively connected to the first target instrument.
[0336] In an embodiment of the present invention, the second sample analyzer 120 is further configured to send a default detection result to the third target device, so that the third target device can obtain an actual detection result according to the default detection result and default correction parameters;
[0337] The first sample analyzer 110 can also be configured to send the actual correction parameters to the third target device, so that the third target device corrects the actual detection result according to the actual correction parameters;
[0338] Wherein, the third target device is an instrument provided with a data management device 140 or a laboratory information system 150 or the third sample analyzer, and the first sample analyzer 110 and the second sample analyzer 120 are communicatively connected to the first target instrument.
[0339] In an embodiment of the present invention, the second sample analyzer 120 can also be configured to send a default detection result to the second target device, so that the second target device can obtain an actual detection result according to the default detection result and default correction parameters and send the actual detection result to the third target device;
[0340] The first sample analyzer 110 can also be configured to send the actual correction parameters to the second target instrument, so that the third target device corrects the actual detection result according to the actual correction parameters.
[0341] Among them, the second target device is an instrument or a third sample analyzer provided with a data management device 140 or a laboratory information system 150, the third target device is an instrument or a third sample analyzer provided with a data management device 140 or a laboratory information system 150, the third target device is different from the second target device, and the first sample analyzer 110 and the second sample analyzer 120 are respectively communicatively connected to the second target device and the third target device.
[0342] In an embodiment of the present invention, the second sample analyzer 120 may also be configured to send a default test result to the second target device, so that the second target device can obtain an actual test result according to the default test result and a default correction parameter and send the actual test result to the first sample analyzer 110;
[0343] The first sample analyzer 110 may also be configured to correct the actual test result according to an actual correction parameter;
[0344] Among them, the second target device is an instrument or a third sample analyzer provided with a data management device 140 or a laboratory information system 150, and the first sample analyzer 110 and the second sample analyzer 120 are communicatively connected to the second target device.
[0345] In an embodiment of the present invention, the first sample analyzer 110 includes a display device for displaying the corrected actual test result; and / or
[0346] The second sample analyzer 120 includes a display device for displaying the corrected actual test result; and / or
[0347] The sample analysis system includes other devices having a display device and provided with a data management device 140 for displaying the corrected actual test result.
[0348] Among them, the other device is the second sample analyzer 120 or the data management device 140 or the laboratory information system 150 or the third sample analyzer, and the first sample analyzer 110 is communicatively connected to the other device.
[0349] In an embodiment of the present invention, the actual correction parameter may be hematocrit HCT or blood cell volume BCV.
[0350] In the sample analysis system of the embodiment of the present invention, it is not necessary to improve the software and hardware of the original second sample analyzer, etc., and the actual test result can be corrected by using the actual correction parameter, which can improve compatibility, reduce costs, and improve the accuracy of the test result.
[0351] It should be noted that in this text, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprise", "include" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or apparatus comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or elements inherent to such process, method, article or apparatus. Without further limitation, an element defined by the statement "comprising a..." does not exclude the presence of additional identical elements in the process, method, article or apparatus comprising said element.
[0352] The features mentioned above in the description, the drawings and the claims, as long as they are meaningful within the scope of the present invention and do not conflict with each other, can be combined arbitrarily. The features and advantages described for the sample analysis method according to the present invention apply to the sample analysis system according to the present invention in a corresponding manner, and vice versa.
[0353] The above are only specific embodiments of the present invention, which enable those skilled in the art to understand or implement the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but rather to the broadest scope consistent with the principles and novel features claimed herein.
Claims
1. A method for sample analysis, characterized in that, it is applied to a sample analysis system, the sample analysis system includes a first sample analyzer, a second sample analyzer and a sample transport device, the sample transport device is used to transport a whole blood sample to be tested to the first sample analyzer and the second sample analyzer respectively for detection, the first sample analyzer is a hematology analyzer for detecting the whole blood sample to be tested to obtain a blood routine test result, the second sample analyzer is an analyzer for detecting the whole blood sample to be tested to obtain a corresponding test result, and the first sample analyzer is communicatively connected to the second sample analyzer; The sample analysis method includes: Obtaining first detection data of the whole blood sample to be tested on the first sample analyzer and second detection data on the second sample analyzer; a default correction parameter is set in the second sample analyzer; the second detection data is the result corrected by the second sample analyzer according to the default correction parameter; According to the first detection data, obtaining the actual correction parameter corresponding to the whole blood sample to be tested; According to the second detection data, obtaining the actual test result corresponding to the whole blood sample to be tested, wherein the second detection data is the default test result corrected by the default correction parameter, and according to the default test result and the default correction parameter, the actual test result of the whole blood sample to be tested on the second sample analyzer is inversely calculated and obtained; Correcting the actual test result according to the actual correction parameter.
2. The method according to claim 1, characterized in that, According to the first detection data, obtaining the actual correction parameter corresponding to the whole blood sample to be tested includes: The first sample analyzer obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data; or The first target device receives the first detection data sent by the first sample analyzer and obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data.
3. The method according to claim 1, characterized in that, According to the second detection data, obtaining the actual test result corresponding to the whole blood sample to be tested includes: The second sample analyzer obtains the actual test result corresponding to the whole blood sample to be tested according to the second detection data; or The second target device receives the second detection data sent by the second sample analyzer and obtains the actual test result corresponding to the whole blood sample to be tested according to the second detection data.
4. The method according to claim 2, characterized in that, According to the second detection data, obtaining the actual test result corresponding to the whole blood sample to be tested includes: The second sample analyzer obtains the actual test result corresponding to the whole blood sample to be tested according to the second detection data; or The second target device receives the second detection data sent by the second sample analyzer and obtains the actual test result corresponding to the whole blood sample to be tested according to the second detection data.
5. The method according to any one of claims 1 to 4, characterized in that, According to the actual correction parameter, correcting the actual test result includes: The third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter.
6. The method according to claim 5, wherein, when the third target device is the first sample analyzer, and the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, it includes: The first sample analyzer receives the actual detection result sent by the second sample analyzer; The first sample analyzer corrects the actual detection result according to the actual correction parameter.
7. The method according to claim 5, wherein, when the third target device is the second sample analyzer, and the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, it includes: The second sample analyzer receives the actual correction parameter sent by the first sample analyzer; The second sample analyzer corrects the actual detection result according to the actual correction parameter.
8. The method according to claim 7, wherein, when the second sample analyzer receives the actual correction parameter sent by the first sample analyzer, it includes: The second sample analyzer sends a correction parameter acquisition request to the first sample analyzer according to the actual detection result, and the correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested, so that the first sample analyzer obtains the actual correction parameter according to the identification code in the correction parameter request; The second sample analyzer receives the actual correction parameter sent by the first sample analyzer.
9. The method according to claim 5, wherein, when the sample analysis system includes a data management device or a third sample analyzer, and the third target device is the data management device or the third sample analyzer, then the third target device obtains the actual detection result and / or the actual correction parameter and corrects the actual detection result according to the actual correction parameter, including: The data management device or the third sample analyzer receives the actual detection result sent by the second sample analyzer; The data management device or the third sample analyzer receives the actual correction parameter sent by the first sample analyzer; The data management device or the third sample analyzer corrects the actual detection result according to the actual correction parameter.
10. The method according to claim 9, wherein, when the data management device or the third sample analyzer receives the actual correction parameter sent by the first sample analyzer, it includes: The data management device or the third sample analyzer sends a correction parameter acquisition request to the first sample analyzer according to the actual detection result, and the correction parameter acquisition request includes the identification code corresponding to the whole blood sample to be tested, so that the first sample analyzer obtains the actual correction parameter corresponding to the whole blood sample to be tested according to the identification code in the correction parameter request; The data management device or the third sample analyzer receives the actual correction parameter sent by the first sample analyzer.
11. The method according to claim 5, wherein, the sample analysis system includes a data management device, and the third target device is a laboratory information system, the third target device obtains an actual detection result and / or an actual correction parameter and corrects the actual detection result according to the actual correction parameter, including: the laboratory information system receives the actual correction parameter sent by the first sample analyzer through the data management device; the laboratory information system receives the actual detection result sent by the second sample analyzer through the data management device; the laboratory information system corrects the actual detection result according to the actual correction parameter.
12. The method according to claim 5, wherein, after the third target device corrects the actual detection result, the method further includes: the third target device displays the corrected actual detection result and / or the actual detection result before correction; and / or the third target device sends the corrected actual detection result and / or the actual detection result before correction to a fourth target device, so that the fourth target device displays the corrected actual detection result and / or the actual detection result before correction.
13. The method according to any one of claims 6 to 10, wherein, after the third target device corrects the actual detection result, the method further includes: the third target device displays the corrected actual detection result and / or the actual detection result before correction; and / or the third target device sends the corrected actual detection result and / or the actual detection result before correction to a fourth target device, so that the fourth target device displays the corrected actual detection result and / or the actual detection result before correction.
14. The method according to claim 12, wherein, if the third target device is the first sample analyzer, the third target device sends the corrected actual detection result and / or the actual detection result before correction to a fourth target device, so that the fourth target device displays the corrected actual detection result and / or the actual detection result before correction, including: the first sample analyzer sends the corrected actual detection result and / or the actual detection result before correction to the second sample analyzer, so that the display device of the second sample analyzer displays the corrected actual detection result and / or the actual detection result before correction; and / or the first sample analyzer sends the corrected actual detection result and / or the actual detection result before correction to the data management device and / or the laboratory information system, so that the instrument provided with the data management device and / or the laboratory information system displays the corrected actual detection result and / or the actual detection result before correction.
15. The method according to claim 13, wherein, If the third target device is the first sample analyzer, the third target device sends the corrected actual test result and / or the actual test result before correction to a fourth target device, so that the fourth target device displays the corrected actual test result and / or the actual test result before correction, including: The first sample analyzer sends the corrected actual test result and / or the actual test result before correction to the second sample analyzer, so that the display device of the second sample analyzer displays the corrected actual test result and / or the actual test result before correction; and / or The first sample analyzer sends the corrected actual test result and / or the actual test result before correction to the data management device and / or the laboratory information system, so that the instrument equipped with the data management device and / or the laboratory information system displays the corrected actual test result and / or the actual test result before correction.
16. The method according to claim 12, characterized in that if the third target device is the second sample analyzer, the third target device sends the corrected actual test result and / or the actual test result before correction to a fourth target device, so that the fourth target device displays the corrected actual test result and / or the actual test result before correction, including: The second sample analyzer sends the corrected actual test result and / or the actual test result before correction to the first sample analyzer, so that the display device of the first sample analyzer displays the corrected actual test result and / or the actual test result before correction; and / or The second sample analyzer sends the corrected actual test result and / or the actual test result before correction to the data management device and / or the laboratory information system, so that the instrument equipped with the data management device and / or the laboratory information system displays the corrected actual test result and / or the actual test result before correction.
17. The method according to claim 13, characterized in that if the third target device is the second sample analyzer, the third target device sends the corrected actual test result and / or the actual test result before correction to a fourth target device, so that the fourth target device displays the corrected actual test result and / or the actual test result before correction, including: The second sample analyzer sends the corrected actual test result and / or the actual test result before correction to the first sample analyzer, so that the display device of the first sample analyzer displays the corrected actual test result and / or the actual test result before correction; and / or The second sample analyzer sends the corrected actual test result and / or the actual test result before correction to the data management device and / or the laboratory information system, so that the instrument equipped with the data management device and / or the laboratory information system displays the corrected actual test result and / or the actual test result before correction.
18. The method according to claim 12, wherein, if the first target device is a data management device or a third sample analyzer, the third target device sends the corrected actual test result and / or the actual test result before correction to a fourth target device, so that the fourth target device displays the corrected actual test result and / or the actual test result before correction, including: the data management device or the third sample analyzer sends the corrected actual test result and / or the actual test result before correction to the first sample analyzer, so that the display device of the first sample analyzer displays the corrected actual test result and / or the actual test result before correction; and / or the data management device or the third sample analyzer sends the corrected actual test result and / or the actual test result before correction to the second sample analyzer, so that the display device of the second sample analyzer displays the corrected actual test result and / or the actual test result before correction; and / or the data management device or the third sample analyzer sends the corrected actual test result and / or the actual test result before correction to the laboratory information system, so that the instrument provided with the laboratory information system displays the corrected actual test result and / or the actual test result before correction.
19. The method according to claim 13, wherein, if the first target device is a data management device or a third sample analyzer, the third target device sends the corrected actual test result and / or the actual test result before correction to a fourth target device, so that the fourth target device displays the corrected actual test result and / or the actual test result before correction, including: the data management device or the third sample analyzer sends the corrected actual test result and / or the actual test result before correction to the first sample analyzer, so that the display device of the first sample analyzer displays the corrected actual test result and / or the actual test result before correction; and / or the data management device or the third sample analyzer sends the corrected actual test result and / or the actual test result before correction to the second sample analyzer, so that the display device of the second sample analyzer displays the corrected actual test result and / or the actual test result before correction; and / or the data management device or the third sample analyzer sends the corrected actual test result and / or the actual test result before correction to the laboratory information system, so that the instrument provided with the laboratory information system displays the corrected actual test result and / or the actual test result before correction.
20. The method according to claim 1, wherein, the second sample analyzer is a specific protein analyzer, a glycated hemoglobin analyzer, a blood coagulation analyzer, an erythrocyte sedimentation rate analyzer, or a flow cytometer.
21. The method according to claim 1, wherein, The actual correction parameter is hematocrit HCT or packed cell volume BCV.
22. A sample analysis system, characterized in that it includes: a first sample analyzer, a second sample analyzer, and a sample transport device; the first sample analyzer is communicatively connected to the second sample analyzer; the sample transport device is configured to transport a whole blood sample to be tested to the first sample analyzer and the second sample analyzer respectively for detection; the first sample analyzer is a hematology analyzer for detecting the whole blood sample to be tested to obtain blood routine parameters, and the second sample analyzer is an analyzer for detecting the whole blood sample to be tested to obtain corresponding detection results, the sample analysis system is configured to obtain first detection data of the whole blood sample to be tested on the first sample analyzer and second detection data on the second sample analyzer; a default correction parameter is set in the second sample analyzer; the second detection data is the result after being corrected by the default correction parameter by the second sample analyzer; obtain the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data; obtain the actual detection result corresponding to the whole blood sample to be tested according to the second detection data, wherein the second detection data is the default detection result after being corrected by the default correction parameter, and according to the default detection result and the default correction parameter, inversely calculate to obtain the actual detection result of the whole blood sample to be tested on the second sample analyzer; and correct the actual detection result of the whole blood sample to be tested according to the actual correction parameter.
23. The sample analysis system according to claim 22, characterized in that the first sample analyzer in the sample analysis system is configured to obtain the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data; or the first target device in the sample analysis system is configured to receive the first detection data sent by the first sample analyzer, and obtain the actual correction parameter corresponding to the whole blood sample to be tested according to the first detection data.
24. The sample analysis system according to claim 22 or 23, characterized in that the second sample analyzer in the sample analysis system is configured to obtain the actual detection result corresponding to the whole blood sample to be tested according to the second detection data; or the second target device in the sample analysis system is configured to receive the second detection data sent by the second sample analyzer, and obtain the actual detection result corresponding to the whole blood sample to be tested according to the second detection data.
25. The sample analysis system according to claim 22 or 23, characterized in that the third target device in the sample analysis system is configured to obtain the actual detection result and / or the actual correction parameter and correct the actual detection result according to the actual correction parameter.
26. The sample analysis system according to claim 22 or 23, characterized in that the third target device in the sample analysis system is configured to display the corrected actual detection result; The third target device in the sample analysis system is further configured to send the corrected actual detection result to a fourth target device, so that the fourth target device displays the corrected actual detection result.
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