Sample review control method and system, medium
By using an automated sample re-inspection control method, a scheduling control system and a data management system are used to identify target re-inspection samples and determine strategies, which solves the problem of low efficiency in manual re-inspection sample selection and realizes an efficient automated re-inspection process.
Patent Information
- Application Number
- CN202110692580.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-06-22
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2041-06-22
AI Technical Summary
In existing technologies, the manual re-examination and re-examination process after blood sample testing is inefficient and increases the difficulty of operation for users.
The system obtains test results through a scheduling and control system, automatically identifies target re-inspection samples according to preset re-inspection rules, determines the sample re-inspection strategy, and sends re-inspection control instructions to the scheduling and control system to achieve automated sample re-inspection.
It improved the efficiency of re-inspection and testing, simplified user operations, and enhanced the user experience.
Smart Images

Figure CN115508570B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical detection instruments, in particular to a sample re-inspection control method and system and a computer readable storage medium. BACKGROUND
[0002] At present, the detection equipment for detecting blood samples has basically developed towards intelligent detection with automatic sample feeding. Through automatic sample feeding detection, manual operation can be greatly reduced, detection efficiency can be improved, and the detection equipment has been widely applied in the medical detection field.
[0003] In order to obtain more accurate detection results of samples, it is usually necessary to re-inspect part of the samples after sample detection. However, at present, the re-inspection samples and the detection equipment for executing the re-inspection detection process are mainly selected and started by manual experience, which is low in detection efficiency and increases the difficulty of user operation. SUMMARY
[0004] To solve the existing technical problems, the present application provides a sample re-inspection control method and system capable of simplifying operation and improving detection efficiency, and a computer readable storage medium.
[0005] To achieve the above purpose, the technical scheme of the embodiment of the present application is as follows:
[0006] A sample re-inspection control method comprises the following steps:
[0007] Obtaining sample results of completed detection from a scheduling control system, and determining target re-inspection samples from the sample results according to a preset re-inspection rule;
[0008] Determining a sample re-inspection strategy of the target re-inspection samples according to detection result information of the target re-inspection samples;
[0009] Issuing a re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system.
[0010] A sample re-inspection control system comprises the following:
[0011] A detection equipment, which reports sample results to a scheduling control system after performing detection on samples;
[0012] A scheduling control system, which obtains sample results reported by the detection equipment and sends the sample results to a data management system;
[0013] A data management system, which is configured to obtain sample results of completed detection from a scheduling control system, determine target re-inspection samples from the sample results according to a preset re-inspection rule, determine a sample re-inspection strategy of the target re-inspection samples according to detection result information of the target re-inspection samples, and issue a re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system.
[0014] A sample re-inspection control system comprises a memory and a processor, the memory stores a computer program, and the processor executes the computer program to perform the sample re-inspection control method of any of the embodiments.
[0015] A computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the sample re-inspection control method of any of the embodiments.
[0016] The sample re-inspection control method and system and the computer readable storage medium provided by the above embodiments, the data management system obtains the sample result of the detection completion from the scheduling control system, determines the target re-inspection sample from the sample result according to the preset re-inspection rule, determines the sample re-inspection strategy of the target re-inspection sample according to the detection result information of the target re-inspection sample, and issues the re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system. In this way, the data management system automatically identifies the sample that needs to be re-inspected according to the measured sample result, determines the target re-inspection strategy corresponding to the sample that needs to be re-inspected according to the preset re-inspection rule of the user, and controls the scheduling control system to perform re-inspection detection on the sample according to the target re-inspection strategy, so as to realize the automatic sample re-inspection function, improve the re-inspection detection efficiency, save the operation time of the user, simplify the operation difficulty, and improve the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The frame diagram of the sample re-inspection control system for the optional application scenario of the sample re-inspection control method in an embodiment;
[0018] Figure 2 The flowchart of the sample re-inspection control method in an embodiment;
[0019] Figure 3 The flowchart of the sample re-inspection control method in another embodiment;
[0020] Figure 4 The flowchart of the sample re-inspection control method in another embodiment;
[0021] Figure 5 The flowchart of the sample re-inspection control method in an optional specific example;
[0022] Figure 6 The timing diagram of the scheduling control system in an embodiment;
[0023] Figure 7 The structural schematic diagram of the scheduling control system in another embodiment;
[0024] Figure 8A structural diagram of a computer readable storage medium. DETAILED DESCRIPTION
[0025] The technical solutions of the present application are further described in detail below in conjunction with the accompanying drawings and specific embodiments of the present application.
[0026] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of implementations of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0027] In the following description, references are made to "some embodiments" which describe a subset of possible embodiments, but it is to be understood that "some embodiments" can be the same subset or different subsets of all possible embodiments, and can be combined with each other as long as there is no conflict.
[0028] Please refer to Figure 1A framework diagram of a sample re-inspection control system in an optional application scenario of a sample re-inspection control method provided by an embodiment of the present application. The sample re-inspection control system includes a scheduling control system (CMS) 10, a data management system (DMS) 20, and a detection device 30. The detection device includes an analyzer 31 and a sample feeding mechanism 32. The scheduling control system 10 and the data management system 20 can communicate with the analyzer 31 and the sample feeding mechanism 32, send setting information or control instructions to the analyzer 31 and the sample feeding mechanism 32, so that the analyzer 31 and the sample feeding mechanism 32 can realize the sample feeding and detection function according to the sent setting information or control instructions, for example, the sample feeding mechanism 32 transfers the sample to the sampling position corresponding to the analyzer 31, and the analyzer 31 sucks the sample from the corresponding sampling position for detection. The data management system 20 can include a client program and a server program facing users. The data management system 20 can provide a re-inspection control page for starting an automatic detection control process for re-inspection samples through the client program. The user can open the client program to operate on the re-inspection control page to set whether the data management system 20 currently starts or closes the automatic re-inspection of the sample, set or modify the re-inspection rules, and the like. The client program can be loaded on any intelligent device with communication and storage functions, such as a smart phone, a desktop computer, a notebook computer, a tablet computer, or other intelligent communication devices with network connection functions. The scheduling control system 10 can realize data transmission between the data management system 20 and the detection device 30, such as receiving the sample results reported by the detection device 30 after detection and transmitting them to the scheduling control system 10; receiving the re-inspection control instructions issued by the scheduling control system 10 for sample re-inspection and detection distribution, and controlling the detection device 30 to complete the re-inspection and detection.
[0029] The data management system 10 and the scheduling control system 20 can be two systems that are physically independent of each other, or two systems that are logically independent of each other but integrated physically, such as a system control center integrated with the analyzer 31 and the sample feeding mechanism 32.
[0030] Please refer to Figure 2 A sample re-inspection control method provided by an embodiment of the present application includes the following steps:
[0031] S101, obtaining the sample results of completed detection from the scheduling control system, and determining the target re-inspection sample from the sample results according to the preset re-inspection rules.
[0032] The target review sample refers to a sample selected for review detection by the detection equipment. The preset review rule refers to one or more conditions that are pre-set to filter sample results to determine that the corresponding sample is a sample that needs to be reviewed. The data management system can provide a rule setting page for the review rule through the client program. The rule setting page can include multiple configuration options, such as a sample detection result value deviating from the average value by more than a certain range, the number of detection items being less than the originally required detection items, the detection items not matching the originally required detection items, and the like. The user can select one or more configuration options in the rule setting page, and the data management system can obtain the preset review rule according to the user's selection operation on the configuration options in the rule setting page. Alternatively, the user can not pre-set the review rule, and the data management system obtains the preset review rule according to the default value pre-set by the system.
[0033] The data management system is in communication connection with the dispatch control system, obtains the sample results of the completed detection from the dispatch control system, and filters the sample results according to the preset review rule to determine the samples that meet the conditions in the preset review rule as the target review samples.
[0034] S103, determining a sample review strategy of the target review sample according to the detection result information of the target review sample.
[0035] The sample result of the completed detection contains detection result information of each sample, and the detection result information of each sample includes sample number, measurement unit, detection item, detection value corresponding to the detection item, and the like. The sample review strategy refers to a strategy for determining the measurement unit and detection item for which the sample performs review detection. In some embodiments, the data management system can determine the sample review strategy of the target review sample according to the detection result information of the target review sample, which can include one of the following: determining whether the measurement unit needs to be replaced and whether the detection item needs to be replaced or added when the sample is reviewed according to the detection result information of the target review sample; for samples that do not need to replace the measurement unit and do not need to replace the detection item, determining the sample review strategy as a first sample review strategy of the original analysis mode native remeasurement; for the original analysis mode remeasurement of the second sample review strategy that needs to replace the measurement unit but does not need to replace the detection item; for the third sample review strategy of the replacement analysis mode that needs to replace the measurement unit and needs to replace the detection item; for the fourth sample review strategy of the additional analysis mode that needs to replace the detection item; and for the fifth sample review strategy of the manual processing that needs manual operation to complete the detection.
[0036] S105, issuing a review control instruction carrying the target review strategy to the dispatch control system.
[0037] The target review strategy is a strategy for determining the determination unit and detection item of the sample to perform review detection. The target review strategy can be determined according to the sample review strategies corresponding to a plurality of samples in the detected sample results. Taking scenario one as an example, the detected sample results include the detection result information of sample A and sample B. According to the detection result information of sample A, the sample review strategy of sample A is determined as the original analysis mode native retest + CD mode. According to the detection result information of sample B, the sample review strategy of sample B is determined as the original analysis mode native retest + CD mode. According to the sample review strategies corresponding to sample A and sample B, the target review strategy is determined as the original analysis mode native retest + CD mode. The data management system issues a review control instruction carrying the target review strategy to the scheduling control system. After receiving the review control instruction, the scheduling control system controls the detection equipment to perform review detection on the target review sample according to the target review strategy.
[0038] In the above embodiment, the data management system obtains the detected sample results, determines the target review sample from the sample results according to the preset review rule, determines the sample review strategy of the target review sample according to the detection result information of the target review sample, and issues a review control instruction carrying the target review strategy to the scheduling control system. In this way, the data management system automatically identifies the sample that needs to be reviewed according to the measured sample results according to the user's preset review rule, determines the target review strategy corresponding to the sample that needs to be reviewed, and controls the scheduling control system to perform review detection on the sample according to the target review strategy, thereby realizing the automatic sample review function, improving the review detection efficiency, saving the user's operation time, simplifying the operation difficulty, and improving the user experience.
[0039] The detection device can include a sample loading mechanism and a determination unit. The sample loading mechanism can load the sample and deliver it to the sample site of the determination unit for sample collection. The sample loading mechanism can include a feeding track and a motor driving the rotation of the feeding track. The feeding track can be a single conveyor belt for receiving the sample rack at the loading site. The motor drives the rotation of the conveyor belt to carry the sample rack from the loading site and follow its movement to sequentially perform the sample loading process of code scanning, distribution, and unloading. The sample rack refers to an article rack for loading the sample to be tested. Taking the blood sample required for medical detection and analysis as an example, the blood sample is usually contained in a test tube, and the sample rack is a test tube rack that can sequentially load multiple test tubes. The feeding track of the sample loading mechanism can load one sample rack at a time, or sequentially load multiple sample racks. When multiple sample racks are sequentially loaded on the sample loading mechanism, the feeding track can first determine whether the feeding track of the conveying assembly is loaded with a sample rack. When the feeding track is loaded with a sample rack, the current position of the sample rack on the feeding track is obtained. When the current position of the previously loaded sample rack meets the specified position requirement, the feeding track is controlled to reset, and another sample rack loaded with a sample to be tested is loaded onto the feeding track, so that multiple sample racks can be continuously loaded and ensured to be adjacent on the feeding track, and synchronous conveying of multiple sample racks can be realized.
[0040] The control of the feeding track to reset refers to the alignment of a set of positioning structures of the feeding track with the loading site. The feeding track is provided with multiple sets of positioning structures corresponding to the sample racks. The number of sets of positioning structures is greater than the number of sample racks synchronously conveyed following the movement of the feeding track. During the sample rack feeding process, when the feeding track includes a previously loaded sample rack, the current position of the previously loaded sample rack is first determined to meet the specified position requirement, and then the feeding track is controlled to reset. This can avoid the need to control the feeding track to reverse the conveying, and the relative positions of multiple sample racks loaded in sequence cannot meet the requirements to support the synchronous conveying of multiple sample racks. Through the optimization of the sample rack feeding process, the reciprocating transportation of the conveying assembly is avoided, the sample loading efficiency is improved, and the overall detection efficiency of the cascade sample analyzer is also improved.
[0041] The measuring unit of the detection equipment can support multiple analysis modes, and different analysis modes can complete detection of different detection items of the sample to be detected. Taking a blood sample as an example, the analysis modes of the measuring unit of the detection equipment for detecting the blood sample usually include CBC mode, DIFF mode and RET mode. Doctors can determine the detection items to be performed for different blood samples according to the detection requirements of different patients. Optionally, the sample results include detection items corresponding to the samples for which detection has been completed, and the target review strategy correspondingly includes whether the review detection of the target review sample is performed by using the original measuring unit and the corresponding detection items. The scheduling control system controls the sample feeding mechanism of the detection equipment to transport the target review sample to the sampling position of the corresponding measuring unit according to the review control instruction issued by the data management system, performs review detection according to the detection items to be performed by the target review sample, obtains the sample results after the review detection is completed, and reports the sample results.
[0042] Optionally, the review control instruction carrying the target review strategy is issued to the scheduling control system, and the review control instruction includes:
[0043] The sample review strategy is processed according to a set strategy rule to determine a target review strategy. The set strategy rule includes at least one of the following: a deduplication processing rule, a maximization processing rule, a summation processing rule, and a maximization and summation processing rule.
[0044] The review control instruction carrying the target review strategy is issued to the scheduling control system.
[0045] The setting policy rule refers to a rule that is set in advance and is determined according to a plurality of sample re-inspection policies corresponding to a plurality of samples in a sample result, and the sample re-inspection policy that can be uniformly adapted to the samples is a target re-inspection policy. The deduplication processing rule refers to selecting one and removing the repeated sample re-inspection policy as the target re-inspection policy in the case that the sample re-inspection policies corresponding to the plurality of samples are the same. The maximization processing rule refers to selecting the sample re-inspection policy with a larger coverage range of detection items as the target re-inspection policy in the case that the sample re-inspection policies corresponding to the plurality of samples exist, and the detection items of one sample re-inspection policy contain the detection items of another sample re-inspection policy. The summation processing rule refers to selecting the sample re-inspection policy that can cover all sample re-inspection policies by superimposing all sample re-inspection policies as the target re-inspection policy in the case that the sample re-inspection policies corresponding to the plurality of samples are different and independent of each other. The maximization and summation processing rule refers to selecting the target re-inspection policy by first maximizing and then summing in the case that the sample re-inspection policies corresponding to the plurality of samples exist, and the detection items of one sample re-inspection policy contain the detection items of another sample re-inspection policy after the maximization processing, and the sample re-inspection policies corresponding to the plurality of samples are different and independent of each other.
[0046] As shown in Table 1, the data management system processes the sample re-inspection policies according to the setting policy rule to determine the target re-inspection policy.
[0047]
[0048]
[0049] In the above embodiment, the data management system determines the sample re-inspection policy corresponding to each sample according to the detection result information of each sample in the sample result, and then processes the sample re-inspection policies corresponding to the samples according to the setting policy rule to determine the target re-inspection policy that can be uniformly applied to the samples, and issues the re-inspection control instruction carrying the target re-inspection policy to the scheduling control system, so that the scheduling control system can control the detection equipment to perform re-inspection detection on the target re-inspection sample according to the target re-inspection policy, ensuring the accuracy of the re-inspection result and realizing the automatic completion of the sample re-inspection function.
[0050] Optionally, the issuing of the re-inspection control instruction carrying the target re-inspection policy to the scheduling control system comprises:
[0051] determine a target re-inspection strategy according to a relationship between the analysis modes involved in the sample re-inspection strategies respectively; the relationship between the analysis modes comprises at least one of the following: the analysis modes are the same, the analysis modes are in a containing relationship, the analysis modes are in an independent relationship, the analysis modes comprise a containing relationship and an independent relationship;
[0052] issue a re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system.
[0053] The data management system determines a target re-inspection strategy according to a relationship between the analysis modes involved in the sample re-inspection strategies respectively. The analysis modes of the determination unit correspond to the detection items of the samples. The data management system determines the relationship between the analysis modes involved in the sample re-inspection strategies of multiple samples according to the sample detection results of the multiple samples in the sample results, processes according to corresponding set strategy rules according to different relationships between the analysis modes, and determines a target re-inspection strategy that can be uniformly applied to the samples. The analysis modes are the same means that the detection items that have been executed for the multiple samples in the sample results are the same. The analysis modes are in a containing relationship means that, among the multiple samples in the sample results, one sample has executed a detection item that contains a detection item executed by another sample. The analysis modes are in an independent relationship means that the detection items that have been executed for the multiple samples in the sample results are different. The analysis modes comprise a containing relationship and an independent relationship means that, among the multiple samples in the sample results, one sample has executed a detection item that contains a detection item executed by another sample, and the detection items that have been executed for the multiple samples are different.
[0054] In the above embodiments, the data management system determines the sample re-inspection strategies corresponding to the samples in the sample results according to the detection result information of each sample, determines a target re-inspection strategy that can be uniformly applied to the samples according to the relationship between the analysis modes involved in the sample re-inspection strategies respectively, and issues a re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system, so that the scheduling control system can control the detection equipment to execute re-inspection detection on the target re-inspection samples according to the target re-inspection strategy, ensure the accuracy of the re-inspection results, and realize automatic completion of the sample re-inspection function.
[0055] Optionally, the determining of the target re-inspection strategy according to the relationship between the analysis modes involved in the sample re-inspection strategies respectively comprises:
[0056] in a case where the analysis modes involved in the sample re-inspection strategies respectively are the same, performing deduplication processing on the sample re-inspection strategies to determine the target re-inspection strategy; and / or,
[0057] in a case where the analysis modes involved in the sample re-inspection strategies respectively are in a containing relationship, performing maximization processing on the sample re-inspection strategies to determine the target re-inspection strategy; and / or,
[0058] In the case that the analysis modes involved in the sample re-inspection strategies respectively include a containing relationship and an independent relationship, the sample re-inspection strategies are maximized and aggregated to determine the target re-inspection strategy.
[0059] In the case that the analysis modes involved in the sample re-inspection strategies respectively include a containing relationship and an independent relationship, the sample re-inspection strategies are maximized and aggregated to determine the target re-inspection strategy.
[0060] The data management system processes according to the corresponding setting strategy rules according to the different relationships between the analysis modes to determine the target re-inspection strategy that can be uniformly applied to the samples. In the case that the analysis modes involved in the sample re-inspection strategies are the same, a de-duplication processing mode of selecting one and removing the other repeated sample re-inspection strategies is adopted; in the case that the analysis modes involved in the sample re-inspection strategies have a containing relationship, a maximization processing mode of selecting a sample re-inspection strategy with a larger detection item coverage range is adopted; in the case that the analysis modes involved in the sample re-inspection strategies have an independent relationship, an aggregation processing mode of selecting a sample re-inspection strategy with detection items that can cover all the sample re-inspection strategies is adopted; in the case that the analysis modes involved in the sample re-inspection strategies include a containing relationship and an independent relationship, a maximization and aggregation processing mode of first maximization processing and then aggregation processing is adopted.
[0061] In the above implementation, the data management system processes according to the corresponding strategy rules according to the relationships between the analysis modes involved in the sample re-inspection strategies to determine the target re-inspection strategy that can be uniformly applied to the samples, and issues a re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system, so that the scheduling control system can control the detection equipment to perform re-inspection detection on the target re-inspection samples according to the target re-inspection strategy, ensuring the accuracy of the re-inspection results and realizing the automatic completion of the sample re-inspection function.
[0062] Please refer to Figure 3 In some embodiments, before the S105, issuing a re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system, includes:
[0063] S104, determining a re-inspection mode according to the sample re-inspection strategies;
[0064] When the re-inspection mode is an automatic re-inspection mode, the S105, issuing a re-inspection control instruction carrying the target re-inspection strategy to the scheduling control system, is executed;
[0065] S1041, when the re-inspection mode is a manual re-inspection mode, re-inspection indication information is displayed in an interface, and issuing a re-inspection control instruction to the scheduling control system is ignored.
[0066] The data management system determines a review mode according to the sample review strategy of each sample in the sample result, and the review mode distinguishes between automatic review and manual review. The automatic review includes native retesting in the original analysis mode, retesting in the original analysis mode on another machine, changing the analysis mode, and additional analysis mode. The manual review includes manual processing and microscopic smear. According to the sample review strategy of each sample in the sample result, the data management system can determine a target review strategy that is uniformly applicable to these samples according to the set strategy rule. If the current review mode is determined to be an automatic review mode, the step of issuing a review control instruction carrying the target review strategy to the scheduling control system is executed. Otherwise, the current review mode is determined to be a manual review mode, and the data management system does not issue a review control instruction. The review instruction information can be displayed through the user interface in the client program. The review instruction information can include basic information of the target review sample that needs manual review and detection items that need to be executed manually, so as to facilitate the user to perform manual review operation according to the review instruction information.
[0067] In the above embodiment, in the process of receiving the sample result, matching the preset review rule for screening to determine the target review sample to execute the automatic review detection, according to the sample review strategy of each sample, the automatic review and the manual review are distinguished. For the target review sample that meets the automatic review condition, the review control instruction is issued to the scheduling control system. For the target review sample that does not meet the automatic review condition, the review instruction information is displayed through the user interface to guide the manual review. The data management system distinguishes between the automatic review and the manual review, which can meet the needs of more application scenarios, without manual selection of samples for retesting, and ensures the efficiency and accuracy of the automatic review detection.
[0068] Optionally, the review mode is determined according to the sample review strategy, including:
[0069] It is judged whether the detection equipment involved in the sample review strategy corresponding to the target review sample is the same;
[0070] If the same, the review mode is determined to be an automatic review mode;
[0071] If different, the review mode is determined to be a manual review mode.
[0072] According to the sample re-inspection strategy corresponding to each target re-inspection sample, the detection equipment used by the target re-inspection sample when performing re-inspection detection can be determined. If the detection equipment used by multiple target re-inspection samples when performing re-inspection detection is different, it is determined that the re-inspection mode is a manual re-inspection mode; otherwise, it is determined that the re-inspection mode is an automatic re-inspection mode. The sample re-inspection strategies corresponding to the target re-inspection samples are processed according to the set strategy rule to determine the target re-inspection strategy. The detection equipment used by multiple target re-inspection samples when performing re-inspection detection can include: different detection equipment and the same analysis mode, different detection equipment and different analysis modes. Taking scenario two as an example, assuming that the sample result includes the detection result information of sample C and sample D, the sample re-inspection strategy of sample C is determined to be the original analysis mode native retest + RET mode according to the detection result information of sample C, and the sample re-inspection strategy of sample D is determined to be the original analysis mode machine change retest + RET mode according to the detection result information of sample D. Therefore, it can be determined that the detection equipment used by sample C and sample D when performing re-inspection detection is different. Taking scenario three as another example, the sample result includes the detection result information of sample E and sample F, the sample re-inspection strategy of sample E is determined to be the original analysis mode native retest + CD mode according to the detection result information of sample E, and the sample re-inspection strategy of sample F is determined to be the original analysis mode machine change retest + RET mode according to the detection result information of sample F. Therefore, it can be determined that the detection equipment used by sample E and sample F when performing re-inspection detection is different.
[0073] In the above embodiment, when the detection equipment used by the data management system for performing re-inspection detection on multiple target re-inspection samples is different, the re-inspection mode is determined to be a manual re-inspection mode. The conditions for performing re-inspection detection on target re-inspection samples are first processed according to whether the detection equipment is the same or different, to ensure the efficiency and accuracy of automatic re-inspection detection.
[0074] In some embodiments, referring to Figure 4 , the sample re-inspection control method further comprises:
[0075] S106, the scheduling control system receives the re-inspection control instruction, and determines a re-inspection allocation strategy of the target re-inspection sample based on the target re-inspection strategy;
[0076] S107, performing re-inspection detection allocation on the target re-inspection sample according to the re-inspection allocation strategy.
[0077] The scheduling control system receives the re-inspection control instruction, determines a re-inspection distribution strategy of the target re-inspection sample according to a determination unit and a detection item used for performing re-inspection detection of the target re-inspection sample in the target re-inspection strategy, and the distribution strategy can be one of the following: random distribution, distribution of non-substations, and distribution of substations. The scheduling control system performs re-inspection detection distribution on the target re-inspection sample according to the re-inspection distribution strategy, distributes the target re-inspection sample to the determination unit of the corresponding detection equipment, and controls the sample feeding mechanism to transfer the target re-inspection sample to the sampling site of the determination unit of the corresponding detection equipment.
[0078] In the above embodiment, the scheduling control system receives the re-inspection control instruction carrying the target re-inspection strategy issued by the data management system, selects the distribution strategy corresponding to the target re-inspection strategy to perform re-inspection detection distribution on the target re-inspection sample, and realizes automatic completion of the sample re-inspection detection function through the interaction of the data management system and the scheduling control system.
[0079] Optionally, the re-inspection detection distribution on the target re-inspection sample according to the re-inspection distribution strategy comprises:
[0080] determining an optional determination unit according to the re-inspection distribution strategy;
[0081] judging whether the optional determination unit supports the detection item of the target re-inspection sample;
[0082] when the optional determination unit does not support the detection item of the target re-inspection sample, skipping the current target re-inspection sample and not performing re-inspection detection;
[0083] when the optional determination unit supports the detection item of the target re-inspection sample, judging whether the optional determination unit is in a detectable state;
[0084] when the optional determination unit is in the detectable state, controlling the sample feeding mechanism to transfer the target re-inspection sample to the sampling site corresponding to the optional determination unit.
[0085] The scheduling control system determines the re-inspection distribution strategy of the target re-inspection sample as random distribution, non-native distribution or native distribution according to the determination unit and detection item used for performing re-inspection detection of the target re-inspection sample in the target re-inspection strategy, and determines the optional determination unit according to the re-inspection distribution strategy. For example, when the re-inspection distribution strategy of the target re-inspection sample is random distribution, all the determination units currently online and under the control of the scheduling control system belong to the optional determination unit; when the re-inspection distribution strategy of the target re-inspection sample is non-native distribution, all the determination units currently online and under the control of the scheduling control system except the original determination unit belong to the optional determination unit; and when the re-inspection distribution strategy of the target re-inspection sample is native distribution, the original determination unit is the optional determination unit. The scheduling control system judges whether the optional determination unit supports the detection item of the target re-inspection sample. If the optional determination unit does not support the detection item of the target re-inspection sample, the current target re-inspection sample is skipped and re-inspection detection is not performed, and the target re-inspection sample is marked as re-inspection failure. If the optional determination unit supports the detection item of the target re-inspection sample, it is judged whether the optional determination unit is currently in a detectable state. According to the optional determination unit being in the detectable state, the target re-inspection sample is distributed to the corresponding determination unit, the sample feeding mechanism is controlled to deliver the target re-inspection sample to the sampling site corresponding to the optional determination unit, and the optional determination unit performs detection on the target re-inspection sample to obtain a re-inspection detection result.
[0086] Optionally, the detectable state refers to a state in which the determination unit can currently suck the sample to be tested from the sampling site thereof to perform counting or quantitative analysis. Taking the sample to be tested as a blood sample as an example, the determination unit in the detectable state includes a state in which the blood sample can be currently counted and classified, or a state in which the hemoglobin concentration / HGB concentration can be currently quantitatively analyzed.
[0087] In the above embodiment, the scheduling control system determines the re-inspection distribution strategy of the target re-inspection sample according to the target re-inspection strategy, and distributes the target re-inspection sample to the corresponding determination unit to perform re-inspection detection according to the re-inspection distribution strategy, so as to cooperatively complete the automatic re-inspection detection function of the sample with the data management system and the detection equipment.
[0088] Optionally, the re-inspection sample control method further comprises:
[0089] When in the undetectable state, it is confirmed whether the re-inspection distribution strategy is the native distribution strategy;
[0090] If the re-inspection distribution strategy is the native distribution strategy, the scheduling control system waits for a next sample distribution request of the optional determination unit, and controls the sample feeding mechanism to deliver the target re-inspection sample to the sampling site corresponding to the optional determination unit based on receiving the next sample distribution request;
[0091] If the retest distribution strategy is a non-distribution local strategy, it is determined whether a sample distribution request sent by another optional measuring unit is received, and based on the received sample distribution request sent by another optional measuring unit, the sample introduction mechanism is controlled to deliver the target retest sample to the sampling position corresponding to the optional measuring unit.
[0092] The scheduling control system determines whether the optional measuring unit is currently in a detectable state, and if the optional measuring unit is in an undetectable state, it is determined whether the retest distribution strategy is a distribution local strategy, and if the retest distribution strategy is a distribution local strategy, it is determined whether the original measuring unit or another optional measuring unit meets the condition of receiving the target retest sample. If the current retest distribution strategy is a distribution local strategy, the scheduling control system waits for the original measuring unit to send a next sample distribution request, and after receiving the next sample distribution request sent by the original measuring unit, the sample introduction mechanism is controlled to deliver the target retest sample to the sampling position of the original measuring unit. If the current retest distribution strategy is a non-distribution local strategy, the scheduling control system determines whether another measuring unit other than the original measuring unit sends a sample distribution request, and after receiving the sample distribution request sent by another measuring unit, the sample introduction mechanism is controlled to deliver the target retest sample to the sampling position of the corresponding measuring unit.
[0093] In the above embodiment, the scheduling control system determines the retest distribution strategy of the target retest sample according to the current idle state of the optional measuring unit and the target retest strategy, distributes the target retest sample to a measuring unit that can meet the retest detection requirements of the target retest sample, and controls the sample introduction mechanism of the detection equipment to deliver the target retest sample to the sampling position of the distributed measuring unit, so as to cooperatively complete the automatic retest detection function of the sample with the detection equipment.
[0094] Optionally, the determination of whether the optional measuring unit is in a detectable state comprises:
[0095] It is determined whether the optional measuring unit meets at least one of the following conditions: an abnormal power supply state, an abnormal network connection state, a fault state, a manual measurement mode state, a cleaning and maintenance state, a detection execution state, and a hibernation state.
[0096] If the condition is met, the optional measuring unit is in an undetectable state.
[0097] If the condition is not met, the optional measuring unit is in a detectable state.
[0098] The scheduling control system determines whether the optional measurement unit is in a detectable state according to whether the optional measurement unit meets preset conditions. When the measurement unit is in an abnormal network connection state, a fault state, a manual measurement mode state, a cleaning and maintenance state, an execution detection state, or a hibernation state, it indicates that the measurement unit is currently in an undetectable state; otherwise, it indicates that the corresponding measurement unit is in a detectable state. In some optional embodiments, when the scheduling control system determines that the optional measurement unit is in an undetectable state, it further displays the reason why the optional measurement unit is in an undetectable state on the user interface and / or displays guidance operation information on how to contact the undetectable optional measurement unit on the user interface.
[0099] In the above embodiments, the user can preset the conditions for determining whether the measurement unit is in a detectable state, the scheduling control system determines whether the optional measurement unit is in a detectable state according to whether the optional measurement unit meets the preset conditions, and according to the detectable state of the measurement unit, the target recheck sample is allocated to the measurement unit that can meet the recheck detection requirements of the target recheck sample, and the sampling mechanism of the detection equipment is controlled to deliver the target recheck sample to the sampling position of the allocated measurement unit, so as to cooperatively complete the automatic recheck detection function of the sample with the detection equipment.
[0100] In some embodiments, the sample result of the completed detection is obtained from the scheduling control system, and the target recheck sample is determined from the sample result according to a preset recheck rule, including:
[0101] The sample result of the completed detection is obtained from the scheduling control system, and the sample result is screened according to a preset recheck rule.
[0102] When the sample result meets the preset recheck rule, it is determined whether the sample result is the detection result of a sample that has been rechecked.
[0103] If it is the detection result of a sample that has been rechecked, the corresponding sample is determined as a retest sample.
[0104] If it is the detection result of a sample that has not been rechecked, the corresponding sample is determined as a target recheck sample.
[0105] After the detection equipment performs the sample detection, the sample result obtained after the detection is reported to the dispatch control system. After the data management system obtains the sample result from the dispatch control system, the sample result is still screened according to the preset recheck rule. For the sample satisfying the preset recheck rule, it is judged whether the corresponding sample has been subjected to recheck detection. If the recheck detection has been performed, for example, it is determined according to the detection result information of the corresponding sample that the current sample is a third test sample, then the retest processing is performed. If the recheck detection has not been performed, for example, it is determined according to the detection result information of the corresponding sample that the current sample is a second test sample, then the recheck processing is performed. In this way, it is ensured that the sample recheck result is two groups of detection data combination, and each sample can be rechecked only once, and more than that is regarded as retest.
[0106] In the above embodiment, the data management system automatically identifies the target recheck sample from the sample result detected by the detection equipment, processes the sample to be detected whose detection times exceed twice as retest, ensures that each sample can be rechecked only once, and the recheck is two groups of data combination, and ensures the efficiency and effectiveness of the recheck detection.
[0107] Optionally, the sample recheck strategy of the target recheck sample is determined according to the detection result information of the target recheck sample, and the sample recheck strategy of the target recheck sample includes the following one:
[0108] According to the detection result information of the target recheck sample, the deviation between the detection result information and the detection target is determined, and the sample recheck strategy of the target recheck sample is one of the following: a first sample recheck strategy of original analysis mode local retest, a second sample recheck strategy of original analysis mode machine retest, a third sample recheck strategy of changing analysis mode, a fourth sample recheck strategy of adding analysis mode, and a fifth sample recheck strategy of manual processing.
[0109] The detection target refers to an expected target to be achieved by performing detection on the sample. For example, the detection target can include detection items to be performed by the sample, accuracy targets of data values of the detection items, detection accuracy of the measuring unit, and the like. The data management system compares the detection result information of each sample in the sample result with the corresponding detection target. For example, when the detection items of the sample meet the detection items to be performed by the sample in the detection target, the data values of the detection items of the sample do not meet the corresponding accuracy targets in the detection target, and the detection accuracy of the measuring unit meets the requirements, the sample re-inspection strategy of the corresponding sample can be determined as the first sample re-inspection strategy of the original analysis mode local re-measurement. When the detection items of the sample meet the detection items to be performed by the sample in the detection target, the data values of the detection items of the sample do not meet the corresponding accuracy targets in the detection target, and the detection accuracy of the measuring unit does not meet the requirements, the sample re-inspection strategy of the corresponding sample can be determined as the second sample re-inspection strategy of the original analysis mode machine replacement re-measurement. When the detection items of the sample do not meet the detection items to be performed by the sample in the detection target, the sample re-inspection strategy of the corresponding sample can be determined as the third sample re-inspection strategy of the analysis mode replacement. When the detection items of the sample are less than the detection items to be performed by the sample in the detection target, the sample re-inspection strategy of the corresponding sample can be determined as the fourth sample re-inspection strategy of the analysis mode addition. When the measuring units required by multiple samples to perform re-inspection are different, the initial inspection of the multiple samples is completed by manual detection, or there is another situation that requires manual execution to complete sample detection, the sample re-inspection strategy of the corresponding sample can be determined as the fifth sample re-inspection strategy of manual processing.
[0110] In the above embodiment, the data management system determines the sample re-inspection strategy of each target re-inspection sample according to the deviation of the detection result information of the target re-inspection sample from the detection target, processes the sample re-inspection strategies of multiple target re-inspection samples according to the set strategy rule, determines a target sample strategy that can be uniformly adapted to the samples, and issues the target sample strategy to the scheduling control system. The scheduling control system determines the re-inspection allocation strategy of the target re-inspection sample according to the target re-inspection strategy, and allocates the target re-inspection sample to the corresponding measuring unit to perform re-inspection detection allocation on the target re-inspection sample, so as to cooperatively complete the automatic sample re-inspection detection function with the data management system and the detection equipment.
[0111] In order to have a more overall understanding of the sample re-inspection control method provided by the embodiments of the present application, please refer to Figure 5 The sample re-inspection control method of the embodiments of the present application will be exemplarily described below by taking a full-automatic detection equipment for detecting blood samples as an example. The sample re-inspection control method includes the following steps:
[0112] S11, the detection equipment completes sample detection and reports the sample result of the completed detection to the scheduling control system;
[0113] S12, the scheduling control system sends the sample result to the data management system;
[0114] S13, the data management system acquires the sample result from the scheduling control system;
[0115] S131, the sample result is screened according to a preset recheck rule to determine whether it is a recheck sample; if not, S132 is executed, and if yes, S1331-S1335 are executed;
[0116] S132, recheck is not performed, and the process ends;
[0117] S1331, according to the detection result information of the sample, the sample recheck strategy of each sample is determined as original mode retest (local machine), S1341 is executed, and a recheck control instruction carrying a target recheck strategy is issued; wherein the target recheck strategy includes sample number, recheck identifier, determination unit as local machine, detection item and the like;
[0118] S1332, according to the detection result information of the sample, the sample recheck strategy of each sample is determined as original mode retest (machine change), S1342 is executed, and a recheck control instruction carrying a target recheck strategy is issued; wherein the target recheck strategy includes sample number, recheck identifier, determination unit as machine change, detection item and the like;
[0119] S1333, according to the detection result information of the sample, the sample recheck strategy is determined as a replacement mode, S1343 is executed, and a recheck control instruction carrying a target recheck strategy is issued; wherein the target recheck strategy includes sample number, recheck identifier, determination unit as random, detection item and the like;
[0120] S1334, according to the detection result information of the sample, the sample recheck strategy is determined as an additional mode, S1343 is executed, and a recheck control instruction carrying a target recheck strategy is issued; wherein the target recheck strategy includes sample number, recheck identifier, determination unit as random, detection item and the like;
[0121] S1335, according to the detection result information of the sample, the sample recheck strategy is determined as manual processing / microscopic examination of smear, S1345 is executed, the recheck identifier is added, and S132 is executed;
[0122] The scheduling control system receives the recheck control instruction issued by the data management system, and determines a recheck distribution mode according to the recheck control instruction, including:
[0123] S1411, the recheck distribution mode is determined as random distribution;
[0124] S1412, the recheck distribution mode is determined as non-local distribution;
[0125] S1413, determine that the review allocation mode is to allocate the local machine;
[0126] S142, the scheduling control system determines whether the measurement unit supports the detection item of the target review sample; if not, perform S143; if yes, perform S144;
[0127] S143, skip and do not perform review detection;
[0128] S144, determine whether the measurement unit is in a detectable state; if not, perform S1451-S1455; if yes, perform S146;
[0129] S1451, determine whether the review allocation mode is to allocate the local machine; if yes, perform S1452; if not, perform S1454;
[0130] S1452, wait for the original measurement unit to issue a next sample request;
[0131] S1453, determine whether a sample rack unloading instruction is received; if yes, perform S143; if not, perform S1454;
[0132] S1454, receive a sample request issued by another measurement unit;
[0133] S146, allocate the target review sample to the corresponding measurement unit;
[0134] S15, the sample feeding mechanism of the detection device transmits the target review sample to the sampling position of the corresponding measurement unit according to the review sample detection allocation result of the scheduling control system;
[0135] S16, the measurement unit samples from the sampling position, performs review detection, and obtains a sample result;
[0136] Optionally, the detection device reports the sample result obtained after performing review detection to the scheduling control system, and the scheduling control system transmits the sample result to the data management system;
[0137] S17, the data management system receives the sample result of the retest, filters the sample result according to a preset review rule, and confirms the execution of the retest process for the sample that meets the review rule and has already performed review.
[0138] In the above embodiment, the data management system receives the sample result detected by the measurement unit, filters the sample result according to the user preset review rule, and if the user set rule and the sample review strategy are met, issues an instruction to the scheduling control system, determines the sample review countermeasure to distinguish between automatic review and manual review, and the data management system issues a review control instruction of the measurement unit and analysis item required for performing sample review. For multiple trigger sample review strategies existing at the same time, the set strategy rule is used to remove duplicates, maximize or totalize to determine the target review strategy.
[0139] The scheduling control system receives the data management system review command, reassigns the review sample to the determination unit, and for the case of assigning the local machine, if the local machine itself does not support the detection mode, it is skipped and not reviewed; if the local machine is in an undetectable state, multiple attempts are made to request allocation before the test tube rack is unloaded, and if the test tube rack has entered the preparation for unloading, the local determination unit is still in an undetectable state, it is skipped and not reviewed; Note: The undetectable state includes but is not limited to power failure, network failure, determination unit failure, manual measurement mode, determination unit cleaning and maintenance, hibernation, etc.; For the case of assigning a non-local, random machine, allocation is made according to the nearest principle, and if all determination units themselves do not support the detection mode, it is skipped and not reviewed, and if any determination unit is in a detectable state, it is assigned for detection; if they are all in an undetectable state, wait for the determination unit to request allocation.
[0140] The detection equipment receives the allocation instruction of the scheduling control system, performs sample detection, obtains sample results, and performs data return. The data return path is that after the detection equipment completes the detection and obtains the sample detection results, the data with the instrument identifier is returned.
[0141] In this way, automatic review is realized, manual selection of review samples is not required, user operation time is saved, and review efficiency is improved.
[0142] Another aspect of the present application, please refer to Figure 6 A sample review control system is also provided, comprising: a detection equipment 30, which reports sample results to a scheduling control system after performing detection on samples; the scheduling control system 10, which obtains sample results reported by the detection equipment and sends them to a data management system; the data management system 20, which is used to obtain sample results of completed detection from the scheduling control system, determine target review samples from the sample results according to a preset review rule, determine a sample review strategy of the target review sample according to detection result information of the target review sample, and issue a review control instruction carrying the target review strategy to the scheduling control system.
[0143] The data management system 20 is specifically configured to process the sample review strategy according to a set strategy rule to determine a target review strategy, and the set strategy rule includes at least one of the following: a deduplication processing rule, a maximization processing rule, a summation processing rule, and a maximization and summation processing rule; and the data management system 20 issues a review control instruction carrying the target review strategy to the scheduling control system.
[0144] The data management system 20 is specifically configured to determine a target review strategy according to relationships between analysis modes respectively involved in the sample review strategies; the relationships between the analysis modes include at least one of the following: the analysis modes are the same, the analysis modes are in a containing relationship, the analysis modes are in an independent relationship, or the analysis modes include both the containing relationship and the independent relationship; and the data management system 20 is further configured to issue a review control instruction carrying the target review strategy to the scheduling control system.
[0145] The data management system 20 is specifically configured to determine a target review strategy by performing a deduplication process on the sample review strategies in a case where the analysis modes respectively involved in the sample review strategies are the same, or by performing a maximization process on the sample review strategies in a case where the analysis modes respectively involved in the sample review strategies are in a containing relationship, or by performing a summation process on the sample review strategies in a case where the analysis modes respectively involved in the sample review strategies are in an independent relationship, or by performing a maximization process and a summation process on the sample review strategies in a case where the analysis modes respectively involved in the sample review strategies include both the containing relationship and the independent relationship.
[0146] The data management system 20 is further configured to determine a review mode according to the sample review strategies; when the review mode is an automatic review mode, the data management system 20 is configured to execute the step of issuing the review control instruction carrying the target review strategy to the scheduling control system; and when the review mode is a manual review mode, the data management system 20 is configured to display review instruction information in an interface and ignore the review control instruction issued to the scheduling control system.
[0147] The data management system 20 is specifically configured to determine whether detection equipment respectively involved in the sample review strategies corresponding to the target review sample is the same; if the detection equipment is the same, the data management system 20 is configured to determine that the review mode is an automatic review mode; and if the detection equipment is different, the data management system 20 is configured to determine that the review mode is a manual review mode.
[0148] The scheduling control system 10 is further configured to receive the review control instruction, determine a review allocation strategy of the target review sample based on the target review strategy, and perform review detection allocation on the target review sample according to the review allocation strategy.
[0149] Specifically, the scheduling and control system 10 is used to determine the optional measurement unit according to the re-inspection allocation strategy; determine whether the optional measurement unit supports the detection items of the target re-inspection sample; if the target re-inspection sample does not support the detection items, skip the current target re-inspection sample and do not perform re-inspection; if the target re-inspection sample supports the detection items, determine whether the optional measurement unit is in a detectable state; if it is in a detectable state, control the sample injection mechanism to transmit the target re-inspection sample to the sampling position corresponding to the optional measurement unit.
[0150] The scheduling and control system 10 is further configured to, when in an undetectable state, confirm whether the retest allocation strategy is a local allocation strategy; if it is a local allocation strategy, wait for the next sample allocation request from the optional measurement unit, and based on receiving the next sample allocation request, control the sample injection mechanism to transmit the target retest sample to the sampling position corresponding to the optional measurement unit; if it is not a local allocation strategy, determine whether it can receive sample allocation requests sent by other optional measurement units, and based on receiving sample allocation requests sent by other optional measurement units, control the sample injection mechanism to transmit the target retest sample to the sampling position corresponding to the corresponding optional measurement unit.
[0151] The scheduling and control system 10 is further configured to, if it is not a local allocation strategy, wait for the next sample allocation request from the optional measurement unit; before receiving the sample rack unloading command, based on receiving the next sample allocation request, control the sample injection mechanism to transfer the target retest sample to the sampling position corresponding to the optional measurement unit; if the next sample allocation request is not received before receiving the sample rack unloading command, skip the current target retest sample and do not perform retesting.
[0152] The scheduling and control system 10 is further configured to determine whether the optional measurement unit meets at least one of the following conditions: abnormal power supply state, abnormal network connection state, fault state, manual measurement mode state, cleaning and maintenance state, execution detection state, and sleep state; if the condition is met, the optional measurement unit is in an undetectable state; if the condition is not met, the optional measurement unit is in a detectable state.
[0153] The data management system 20 is further configured to obtain the completed sample results from the scheduling and control system, and filter the sample results according to preset re-inspection rules; when the sample results meet the preset re-inspection rules, it is determined whether the sample results are the test results of samples that have already undergone re-inspection; if they are the test results of samples that have already undergone re-inspection, the corresponding sample is determined as a retest sample; if they are the test results of samples that have not undergone re-inspection, the corresponding sample is determined as a target re-inspection sample.
[0154] The data management system 20 is further configured to determine, according to the detection result information of the target review sample, a sample review strategy of the target review sample according to a deviation between the detection result information and a detection target, the sample review strategy being one of a first sample review strategy of native re-measurement in a previous analysis mode, a second sample review strategy of re-measurement in the previous analysis mode in a different machine, a third sample review strategy of changing an analysis mode, a fourth sample review strategy of adding an analysis mode, and a fifth sample review strategy of manual processing.
[0155] It should be noted that the sample review control system provided in the above embodiments is only used for illustrating the division of the above-mentioned subsystem program modules during detection of the review sample. In actual applications, the above-mentioned processing can be completed by different subsystem program modules according to needs, that is, the internal structure of the sample review control system can be divided into different subsystems or integrated into a whole system, or the internal structure of the sample review control system can be divided into other subsystems in addition to the data management system and the scheduling control system to complete all or part of the above-mentioned processing. In addition, the sample review control system provided in the present embodiment and the above-mentioned sample review control method embodiments belong to the same concept, and the specific implementation process is described above in the method embodiments, which will not be repeated here.
[0156] In another aspect of the embodiments of the present application, please refer to Figure 7 The present application also provides a sample review control system, which comprises a memory 112 and a processor 113, the memory 112 stores a computer program, and the processor 113 executes the computer program to perform the steps of the sample review control method according to any one of the embodiments of the present application and achieve the same technical effects. To avoid repetition, details are not repeated here.
[0157] In another aspect of the embodiments of the present application, a computer readable storage medium is also provided, for example, a memory comprising an executable program, the executable program is executed by a processor to complete the steps of the sample review control method according to any one of the embodiments of the present application and achieve the same technical effects. To avoid repetition, details are not repeated here. The computer readable storage medium is, for example, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk. Figure 8A structural block diagram of a computer readable storage medium 800 provided by an embodiment of the present application is provided. The computer readable storage medium 800 stores program codes, which can be invoked by a processor to execute the smart home control method provided by the embodiment of the present application. The computer readable storage medium 800 can be an electronic storage such as a flash memory, an EEPROM (Electrically Erasable Programmable Read-Only Memory), an EPROM, a hard disk or a ROM. Alternatively, the computer readable storage medium 800 includes a non-transitory computer readable medium. The computer readable storage medium 800 has a storage space of program codes 810 for executing any method step of the above method. These program codes can be read from or written into one or more computer program products. The program codes 810 can be compressed in a suitable form, for example.
[0158] It should be noted that, in this document, the terms "comprising", "containing", or any other variant thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements recited, but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without more limitations, the element defined by the statement "comprising" does not exclude the presence of additional identical elements in the process, method, article, or apparatus that includes the element.
[0159] From the above description of the embodiments, those skilled in the art can clearly understand that the above embodiment methods can be realized by means of software plus a necessary general hardware platform, and of course can also be realized by hardware, but in many cases the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product, which is stored in a storage medium (such as a ROM / RAM, a magnetic disk, or an optical disk) and includes a plurality of instructions for causing a terminal (which can be a computer, a server, an analyzer, a sampling mechanism, or a network device) to execute the methods described in the various embodiments of the present application.
[0160] The above description is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A sample re-inspection control method, characterized in that, include: The system obtains the completed sample results from the scheduling and control system, and determines the target re-inspection sample from the sample results according to the preset re-inspection rules. Based on the detection results of the target retest sample, determine the sample retesting strategy for the target retest sample; Sending a re-inspection control instruction carrying a target re-inspection strategy to the scheduling and control system, wherein sending the re-inspection control instruction carrying a target re-inspection strategy to the scheduling and control system includes: determining the target re-inspection strategy based on the relationship between the analysis modes involved in the sample re-inspection strategies, wherein the relationship between the analysis modes includes at least one of the following: the analysis modes are the same, the analysis modes are contained, the analysis modes are independent, and the analysis modes include both contained and independent relationships, and different relationships between analysis modes correspond to different target re-inspection strategies; The sample re-inspection strategy is processed according to the set strategy rules to determine the target re-inspection strategy. The set strategy rules include at least one of the following: deduplication rule, maximization rule, summation rule, and maximization and summation rule. A re-inspection control command carrying the target re-inspection strategy is issued to the scheduling and control system. The deduplication rule means that when multiple samples have the same sample re-inspection strategy, the sample re-inspection strategy corresponding to one of the multiple samples is selected and the duplicate sample re-inspection strategy is removed as the target re-inspection strategy. The maximization rule means that for multiple samples, there exists a sample re-inspection strategy whose detection item includes the re-inspection of another sample. In the case of detection items for a strategy, the sample retesting strategy with a wider coverage of detection items is selected as the target retesting strategy; the summation processing rule refers to the case where multiple samples have different and independent sample retesting strategies, and the sample retesting strategy whose coverage can cover all sample retesting strategies is selected as the target retesting strategy; the maximization and summation processing rule refers to the case where multiple samples have sample retesting strategies, and there is a case where one sample retesting strategy's detection items include the detection items of another sample retesting strategy, and after maximization processing, there are still multiple samples with different and independent sample retesting strategies. When the analysis modes involved in the sample re-examination strategies are the same, the sample re-examination strategies are deduplicated to determine the target re-examination strategy; when the analysis modes involved in the sample re-examination strategies are inclusive, the sample re-examination strategies are maximized to determine the target re-examination strategy; when the analysis modes involved in the sample re-examination strategies are independent, the sample re-examination strategies are summed to determine the target re-examination strategy; when the analysis modes involved in the sample re-examination strategies include both inclusive and independent relationships, the sample re-examination strategies are maximized and summed to determine the target re-examination strategy.
2. The sample re-inspection control method as described in claim 1, characterized in that, Before issuing the re-inspection control command carrying the target re-inspection strategy to the scheduling and control system, the following steps are included: The retesting mode is determined based on the aforementioned sample retesting strategy; When the re-inspection mode is automatic re-inspection mode, the step of sending a re-inspection control command carrying the target re-inspection strategy to the scheduling and control system is executed. When the re-inspection mode is manual re-inspection mode, the re-inspection instruction information is displayed on the interface, and the re-inspection control command is ignored when it is sent to the scheduling and control system.
3. The sample re-inspection control method as described in claim 2, characterized in that, The step of determining the retesting mode according to the sample retesting strategy includes: Determine whether the detection equipment involved in the sample re-inspection strategies corresponding to the target re-inspection samples is the same; If they are the same, then the re-inspection mode is set to automatic re-inspection mode; If they are different, then the re-inspection mode is determined to be the manual re-inspection mode.
4. The sample re-inspection control method according to any one of claims 1 to 3, characterized in that, Also includes: The scheduling and control system receives the re-inspection control command and determines the re-inspection allocation strategy for the target re-inspection sample based on the target re-inspection strategy. The target re-examination samples are re-examined and allocated according to the re-examination allocation strategy.
5. The sample re-inspection control method as described in claim 4, characterized in that, The step of allocating the target retest samples according to the retest allocation strategy includes: The selectable measurement units are determined according to the aforementioned re-inspection allocation strategy; Determine whether the optional measurement unit supports the detection items of the target retest sample; If the detection items of the target re-examination sample are not supported, the re-examination of the current target re-examination sample will be skipped and no re-examination will be performed. When the target retest sample is supported for the detection items, determine whether the optional measurement unit is in a detectable state; When the sample is in a detectable state, the sample injection mechanism is controlled to transfer the target retest sample to the sampling position corresponding to the optional measurement unit.
6. The sample re-inspection control method as described in claim 5, characterized in that, Also includes; When in an undetectable state, confirm whether the re-inspection allocation strategy is the local allocation strategy; If the local allocation strategy is to wait for the next sample allocation request from the optional measurement unit, and based on the receipt of the next sample allocation request, control the sample injection mechanism to transmit the target retest sample to the sampling position corresponding to the optional measurement unit; If the non-local allocation strategy is adopted, it is determined whether a sample allocation request sent by other optional measurement units can be received. If a sample allocation request sent by other optional measurement units is received, the sample injection mechanism is controlled to transmit the target retest sample to the sampling position corresponding to the corresponding optional measurement unit.
7. The sample re-inspection control method as described in claim 6, characterized in that, If the allocation strategy is local, wait for the next sample allocation request from the optional measurement unit, and based on receiving the next sample allocation request, control the sample injection mechanism to transmit the target retest sample to the sampling position corresponding to the optional measurement unit, including: If the local allocation strategy is not used, wait for the next sample allocation request from the optional measurement unit; Before receiving the sample rack unloading command, based on the received next sample allocation request, the sample injection mechanism is controlled to transfer the target retest sample to the sampling position corresponding to the optional measurement unit; If the next sample allocation request is not received before the sample rack unloading instruction is received, the current target re-inspection sample is skipped and the re-inspection test is not performed.
8. The sample re-inspection control method as described in claim 5, characterized in that, The step of determining whether the optional measuring unit is in a detectable state includes: Determine whether the optional measurement unit meets at least one of the following conditions: abnormal power supply state, abnormal network connection state, fault state, manual measurement mode state, cleaning and maintenance state, execution of detection state, and sleep state; If the condition is met, the optional measuring unit is in an undetectable state; If the conditions are not met, the optional measurement unit is in a detectable state.
9. The sample re-inspection control method according to any one of claims 1 to 3, characterized in that, The system retrieves the completed sample results from the scheduling and control system, and determines the target re-inspection sample from the sample results according to preset re-inspection rules, including: The system obtains the results of the completed tests from the scheduling and control system, and filters the results according to the preset retesting rules. If the sample result meets the preset re-inspection rules, determine whether the sample result is the test result of a sample that has already undergone re-inspection; If the test result is for a sample that has already undergone retesting, then the corresponding sample will be designated as the retest sample. If the test result is for a sample that has not undergone retesting, then the corresponding sample will be designated as the target retest sample.
10. The sample re-inspection control method according to any one of claims 1 to 3, characterized in that, The step of determining the sample retesting strategy for the target retesting sample based on the detection result information of the target retesting sample includes: Based on the detection result information of the target retest sample, and based on the deviation between the detection result information and the detection target, the sample retest strategy for the target retest sample is determined to be one of the following: the first sample retest strategy of retesting the original analysis mode on the same machine, the second sample retest strategy of retesting the original analysis mode on a different machine, the third sample retest strategy of changing the analysis mode, the fourth sample retest strategy of adding an analysis mode, and the fifth sample retest strategy of manual processing.
11. A sample re-inspection control system, characterized in that, include: After performing tests on the samples, the testing equipment reports the sample results to the scheduling and control system. The scheduling and control system acquires the sample results reported by the testing equipment and sends them to the data management system. A data management system is used to acquire the sample results of completed testing from the scheduling and control system, determine the target re-inspection sample from the sample results according to the preset re-inspection rules, determine the sample re-inspection strategy of the target re-inspection sample according to the test result information of the target re-inspection sample, and issue a re-inspection control instruction carrying the target re-inspection strategy to the scheduling and control system. The issuance of the re-inspection control instruction carrying the target re-inspection strategy to the scheduling and control system includes: determining the target re-inspection strategy according to the relationship between the analysis modes involved in the sample re-inspection strategy. The relationship between the analysis modes includes at least one of the following: identical analysis modes, inclusion relationship between analysis modes, independent relationship between analysis modes, inclusion-inclusion relationship and independent relationship between analysis modes, and different relationships between analysis modes correspond to different target re-inspection strategies. The data management system is also used to process the sample re-inspection strategy according to the set strategy rules to determine the target re-inspection strategy; the set strategy rules include at least one of the following: deduplication rule, maximization rule, summation rule, and maximization and summation rule; and to issue a re-inspection control command carrying the target re-inspection strategy to the scheduling control system. The deduplication rule means that when multiple samples have the same sample re-inspection strategy, the sample re-inspection strategy corresponding to one of the multiple samples is selected and the duplicate sample re-inspection strategy is removed as the target re-inspection strategy; the maximization rule means that for multiple samples, there exists a sample re-inspection strategy whose detection item includes another sample re-inspection strategy. When considering the detection items of a sample retesting strategy, the target retesting strategy is selected based on the detection items with a wider coverage. The summation rule refers to selecting the target retesting strategy when multiple samples have different and independent retesting strategies, and the strategy whose coverage includes all retesting strategies. The maximization and summation rule refers to situations where, for multiple samples, one retesting strategy includes the detection items of another, and after maximization, multiple samples still have different and independent retesting strategies. When the analysis modes involved in the sample re-examination strategies are the same, the sample re-examination strategies are deduplicated to determine the target re-examination strategy; when the analysis modes involved in the sample re-examination strategies are inclusive, the sample re-examination strategies are maximized to determine the target re-examination strategy; when the analysis modes involved in the sample re-examination strategies are independent, the sample re-examination strategies are summed to determine the target re-examination strategy; when the analysis modes involved in the sample re-examination strategies include both inclusive and independent relationships, the sample re-examination strategies are maximized and summed to determine the target re-examination strategy.
12. A sample re-inspection control system, characterized in that, It includes a memory and a processor, wherein the memory stores a computer program, and when the processor runs the computer program, it executes the sample re-inspection control method according to any one of claims 1 to 10.
13. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program, which, when executed by a processor, is used to implement the sample re-inspection control method as described in any one of claims 1 to 10.
Citation Information
Patent Citations
Automatic biochemical analyzer
CN108957018A