CN113128627A - Test sample uploading method and device - Google Patents

Test sample uploading method and device Download PDF

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Publication number
CN113128627A
CN113128627A CN201911423160.6A CN201911423160A CN113128627A CN 113128627 A CN113128627 A CN 113128627A CN 201911423160 A CN201911423160 A CN 201911423160A CN 113128627 A CN113128627 A CN 113128627A
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China
Prior art keywords
sample
information
tested
test tube
scanning
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Pending
Application number
CN201911423160.6A
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Chinese (zh)
Inventor
张晶鑫
和义军
吴栋扬
李临
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Chemclin Diagnostics Corp
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Chemclin Diagnostics Corp
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Priority to CN201911423160.6A priority Critical patent/CN113128627A/en
Publication of CN113128627A publication Critical patent/CN113128627A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
    • G06K17/0022Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device
    • G06K17/0025Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device the arrangement consisting of a wireless interrogation device in combination with a device for optically marking the record carrier
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures

Abstract

The application provides a test sample uploading method and device. The method comprises the following steps: generating a preset page; determining a sample test tube corresponding to a to-be-tested sample to be uploaded according to the state information of the diagnostic equipment; scanning a test tube label preset on the sample test tube to obtain a scanning result; determining basic sample information corresponding to the sample to be tested according to the scanning result; and automatically generating the basic sample information in the preset page. According to the method and the device, the basic sample information of the sample to be tested is added in the generated page, so that background management and control of the sample to be tested can be realized, personnel do not need to be arranged to manage and control the sample to be tested on the diagnostic equipment, input of human resources can be reduced, and labor cost is saved.

Description

Test sample uploading method and device
Technical Field
The present application relates to the field of medical technology, and in particular, to a method and an apparatus for uploading a test sample.
Background
With the continuous application of the diagnostic equipment, the accuracy and the detection efficiency of the sample test result can be realized.
At present, each process of the diagnostic equipment is controlled by manual management, and each node process needs to be managed by related personnel, which undoubtedly causes waste of human resources and increases labor cost.
Disclosure of Invention
The application provides a test sample uploading method and device, and aims to solve the problems that in the prior art, each node flow needs to be managed by related personnel, so that human resources are wasted, and the labor cost is increased.
In order to solve the above problem, the present application discloses a method for uploading a test sample, which is applied to a diagnostic device or a terminal connected to the diagnostic device, and includes:
generating a preset page;
determining a sample test tube corresponding to a to-be-tested sample to be uploaded according to the state information of the diagnostic equipment;
scanning a test tube label preset on the sample test tube to obtain a scanning result;
determining basic sample information corresponding to the sample to be tested according to the scanning result;
and automatically generating the basic sample information in the preset page.
Optionally, the diagnostic device includes a sample rack module, and the determining, according to the state information of the diagnostic device, a sample tube corresponding to a sample to be tested to be uploaded includes:
and determining the sample test tube corresponding to the sample to be tested according to the state information of the sample test tube placed on the sample rack module.
Optionally, the scanning is performed on a test tube label preset on the sample test tube to obtain a scanning result, and the scanning includes:
and scanning the text information pre-added to the test tube label, and taking the text information as the scanning result.
Optionally, the scanning the image information preset on the sample tube to obtain a scanning result includes:
scanning a bar code which is arranged on the sample test tube in advance to obtain the scanning result.
Optionally, after automatically generating the base sample information in the preset page, the method further includes:
generating a touch button corresponding to the sample to be tested in the preset page;
when a touch instruction corresponding to the touch button is monitored, generating a test instruction corresponding to the sample to be tested;
and sending the test instruction to the diagnostic equipment.
Optionally, the sample basis information includes: at least one of sample tube position information, sample type information, and sample number information.
Optionally, the terminal establishes a connection with the diagnostic device through a controller area network bus.
In order to solve the above problem, the present application discloses an uploading apparatus of a test sample, which is applied to a diagnostic device or a terminal connected to the diagnostic device, and includes:
the preset page generating module is used for generating a preset page;
the sample test tube determining module is used for determining a sample test tube corresponding to a to-be-tested sample to be uploaded according to the state information of the diagnostic equipment;
the scanning result acquisition module is used for scanning test tube labels which are arranged on the sample test tubes in advance to acquire scanning results;
a basic information determining module, configured to determine, according to the scanning result, basic sample information corresponding to the sample to be tested;
and the basic information generating module is used for automatically generating the basic sample information in the preset page.
Optionally, the diagnostic apparatus comprises a sample rack module, the sample tube determination module comprising:
and the sample test tube determining unit is used for determining the sample test tube corresponding to the sample to be tested according to the state information of the sample test tube placed on the sample rack module.
Optionally, the scan result obtaining module includes:
and the first scanning result acquisition unit is used for scanning the text information which is added to the test tube label in advance and taking the text information as the scanning result.
Optionally, the scan result obtaining module includes:
and the second scanning result acquisition unit is used for scanning the bar code which is preset on the sample test tube to obtain the scanning result.
Optionally, the method further comprises:
the touch button generating module is used for generating a touch button corresponding to the sample to be tested in the preset page;
the test instruction generating module is used for generating a test instruction corresponding to the sample to be tested when the touch instruction corresponding to the touch button is monitored;
and the test instruction sending module is used for sending the test instruction to the diagnostic equipment.
Optionally, the sample basis information includes: at least one of sample tube position information, sample type information, and sample number information.
Optionally, the terminal establishes a connection with the diagnostic device through a controller area network bus.
Compared with the prior art, the method has the following advantages:
the embodiment of the application provides an uploading scheme of a test sample, which comprises the steps of determining a sample test tube corresponding to a to-be-tested sample to be uploaded according to state information of a diagnosis device by generating a preset page, scanning a test tube label preset on the sample test tube to obtain a scanning result, determining basic sample information corresponding to the to-be-tested sample according to the scanning result, and automatically generating the basic sample information in the preset page. According to the embodiment of the application, the basic sample information of the sample to be tested is added in the generated page, so that background management and control of the sample to be tested can be realized, personnel do not need to be arranged to manage and control the sample to be tested on the diagnostic equipment, input of human resources can be reduced, and labor cost is saved.
Drawings
Fig. 1 is a schematic structural diagram illustrating a fully automatic laser chemiluminescence detector according to an embodiment of the present disclosure;
FIG. 2 is a schematic structural diagram of a front side of a fully automatic laser chemiluminescence detector provided by an embodiment of the present application after a housing is removed;
FIG. 3 is a schematic view illustrating a structure of a fully automatic laser chemiluminescence detector according to an embodiment of the present disclosure, after a housing is removed;
fig. 4 is a schematic structural diagram illustrating a slat clamping device according to an embodiment of the present disclosure;
fig. 5 is a flowchart illustrating steps of a method for uploading a test sample according to an embodiment of the present application;
FIG. 6 is a diagram illustrating a preset page provided by an embodiment of the present application;
fig. 7 shows a schematic structural diagram of an uploading device for a test sample provided by an embodiment of the present application.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present application more comprehensible, the present application is described in further detail with reference to the accompanying drawings and the detailed description.
The diagnosis device in the embodiment of the present application may be described as follows by taking a fully automatic laser-activated chemiluminescence detector as an example, and then, the structure of the fully automatic laser-activated chemiluminescence detector is described as follows with reference to fig. 1, fig. 2, fig. 3, and fig. 4.
As shown in fig. 1, 2, 3 and 4, the fully automatic light-activated chemiluminescence detector may include: the device comprises a plate taking frame module 83, a pushing device 84, a sample adding arm module 4, a sample adding module 85, a sample frame module 86, an incubation module 87, a reagent module 5 and a detection module 88, wherein the plate strip 3 on the plate taking frame module 83 is pushed to the sample adding module 85 through the pushing device 84, a sample and a reagent are added into a reaction cup on the plate strip on the sample adding module 85 through the sample adding arm module 4, the plate strip on the sample adding module 85 is pushed into the incubation module 87 through the pushing device 84, and the plate strip enters the detection module 88 for detection after the incubation is finished.
Get the frame module 83 and locate the front portion of frame 2, be equipped with shell 1 in frame 2 outside, the carousel is located the rear of getting frame module 83, temperature culture module 87 is located carousel one side, sample frame module 86 and reagent module 5 are located the both sides of getting frame module 83 respectively, pusher 84 includes X to push mechanism 6 and Y to push mechanism 7, it pushes to carousel 19 through Y to push mechanism 7 to get the lath on the frame module 83, lath 3 on the carousel 19 passes through X to push mechanism 6 and gets into temperature culture module 87, get into detection module 88 after the temperature culture finishes and detect.
The incubation module 87 comprises an incubation plate 8 and a first slide mechanism by which the incubation plate 8 is slidably connected to the frame 2, the incubation plate 8 being provided with a slat clamping device 90.
The incubation module 87 comprises two incubation plates 8 arranged in parallel, and the two incubation plates are respectively connected with the frame 2 in a sliding manner through a set of first sliding mechanism, the first sliding mechanism comprises a first motor 9 and a first sliding rail 10, the incubation plates 8 are arranged on the first sliding rail 10, the first motor 9 is connected with the incubation plates 8 through a first synchronous belt 11, and the first motor 9 rotates to drive the incubation plates 8 to slide along the first sliding rail 10.
The incubation is divided into two incubation plates 87 to be respectively carried out, different times of incubation can be respectively realized, and the speed of the incubation plate 8 moving back and forth can be determined by the rotation speed of the first motor 9, so that the oscillation mixing in different degrees can be realized, and the operation is more flexible and changeable.
Next, the method for uploading the test sample provided in the present application is described in detail with reference to specific embodiments.
Referring to fig. 5, a flowchart illustrating steps of a method for uploading a test sample provided in an embodiment of the present application is shown, where the method for uploading a test sample may be applied to a terminal connected to a fully-automatic photoluminescence detector, and specifically may include the following steps:
step 101: and generating a preset page.
In this embodiment of the application, the terminal may be a mobile electronic Device such as a mobile phone and a PAD (Portable Android Device), and may also be a Personal Computer (PC) terminal such as a desktop Computer and a notebook Computer, and specifically, may be determined according to a service requirement, which is not limited in this embodiment of the application.
The diagnostic device may be a device used in medical diagnosis or testing, including but not limited to: biochemical analyzer, chemiluminescence immunity analyzer, fluorescence immunity analyzer, immune turbidimetry analyzer, biochemical immunity integrated machine and gene sequencer. This embodiment is described in detail with a fully automatic light-activated chemiluminescent detector.
The communication connection is pre-established between the terminal and the full-automatic light-activated chemiluminescence detector, specifically, the terminal CAN be connected with the full-automatic light-activated chemiluminescence detector through a Controller Area Network (CAN) bus in a communication manner, and the CAN bus is connected through a serial data line through a CAN bus, a sensor, a Controller and an actuator. The network can detect and correct data errors caused by electromagnetic interference in the data transmission process according to the protocol, and the communication protocol of the network is equivalent to a data link layer in an ISO/OSI reference model.
After the terminal and the full-automatic light-activated chemical light-emitting detector are in communication connection through the CAN bus, data interaction between the terminal and the full-automatic light-activated chemical light-emitting detector CAN be realized.
The preset page is a page which is created on the terminal side and used for managing and controlling each module of the full-automatic light-activated chemical light-emitting detector.
The preset page may be an html page or a web page, and specifically, may be determined according to a service requirement, which is not limited in this embodiment of the present application.
When background management control is needed to be performed on a sample to be tested on the full-automatic light-activated chemical luminescence detector, a preset page can be created on the terminal side in advance, and further, related information of the sample to be tested can be added into the preset page.
After a preset page is generated, step 102 is performed.
Step 102: and determining a sample test tube corresponding to the to-be-tested sample to be uploaded according to the state information of the diagnostic equipment.
The state information refers to the state of the fully-automatic light-activated chemiluminescence detector, such as the state of a sample to be tested, the state of the completion of testing all the test samples, and the like.
When the state of the full-automatic light-activated chemiluminescent detector is determined, whether a sample to be tested exists or not can be determined according to the state of the sample test tubes placed on the sample rack module, and the sample test tubes of the sample to be tested are determined, for example, as shown in fig. 2, 200 sample test tubes can be placed on the sample rack module 86 at the same time, and whether the sample to be tested exists or not can be determined by detecting the state information of the sample test tubes placed on the sample rack module 86, and if all the sample test tubes placed on the sample rack module 86 are in an empty tube state, it indicates that the sample to be tested does not exist; when the test tubes storing the test solution exist in all the sample test tubes placed on the sample rack module 86, it may be further detected whether the test solution in the test tubes has been tested, and when the test is completed, it indicates that there is no sample to be tested, and when there is some or all of the test solution that has not been tested, it indicates that there is a sample to be tested, and further, a sample test tube corresponding to the sample to be tested may be obtained.
It should be understood that the above examples are only examples for better understanding of the technical solutions of the embodiments of the present application, and are not to be taken as the only limitation of the embodiments of the present application.
Of course, a button for triggering to add a sample to be tested may be added in advance in the preset page, for example, referring to fig. 6, a schematic view of the preset page provided in the embodiment of the present application is shown, as shown in fig. 6, a button for "adding a sample" is provided in the preset page, and when the button is triggered, a sample addition instruction may be generated to trigger an addition process of a sample to be tested.
After determining the sample test tube corresponding to the sample to be tested to be uploaded according to the state information of the fully-automatic light-activated chemiluminescence detector, step 103 is executed.
Step 103: and scanning a test tube label preset on the sample test tube to obtain a scanning result.
The test tube label refers to a label preset on a sample test tube, text information of a sample to be tested may be added to the test tube label in advance, or a barcode formed by the sample information of the sample to be tested may be added in advance, and specifically, the test tube label may be determined according to a business requirement, which is not limited in this embodiment of the present application.
The scanning result refers to the result obtained by scanning the test tube label. The scanning result may include a result of successful scanning and a result of failed scanning, and when the scanning is successful, the basic sample information of the sample to be tested may be obtained. When the scanning fails, a mode of scanning the test tube label again can be tried, and when the scanning fails for many times, the user can provide basic sample information of a sample to be tested corresponding to the test tube label.
After determining a sample test tube corresponding to a sample to be tested to be uploaded according to state information of the fully-automatic light-activated chemiluminescence detector, a test tube label on the sample test tube may be scanned to obtain a corresponding scanning result, and specifically, detailed description may be performed in combination with the following specific implementation manner.
In a specific implementation manner of the present application, the step 103 may include:
substep S1: and scanning the text information pre-added to the test tube label, and taking the text information as the scanning result.
In the embodiment of the application, the sample information of the sample to be tested is added to the test tube label in advance, the text information added to the test tube label in advance can be scanned, and the scanned text information is used as a scanning result, for example, the test tube label can be shot by an image acquisition device, so that a label image corresponding to the test tube label is obtained, and the text information on the test tube label is identified by adopting an image identification algorithm, so that the scanning result is obtained.
Substep S2: scanning a bar code which is arranged on the sample test tube in advance to obtain the scanning result.
The test tube label is provided with a bar code corresponding to the sample information of the sample to be tested in advance, and the bar code can be scanned to obtain a scanning result.
It can be understood that the above two ways of obtaining the scanning result are only two ways listed for better understanding of the technical solution of the embodiment of the present application, and in a specific implementation, a person skilled in the art may also scan the test tube label in other ways to obtain the scanning result, and in particular, the scanning result may be determined according to business requirements, and the embodiment of the present application is not limited thereto.
After scanning the test tube labels previously set on the sample test tubes to obtain the scanning result, step 104 is performed.
Step 104: and determining the basic sample information corresponding to the sample to be tested according to the scanning result.
The basic sample information refers to basic information of a sample to be tested, and may include at least one of sample tube position information, sample type information, sample number information, and the like.
The sample tube position information may reflect the position of the sample to be tested, for example, the sample to be tested is located at the third tube position in the second row of the sample rack module 86, or the sample to be tested is located at the sixth tube position in the third row of the sample rack module 86, for example, as shown in fig. 6, each sample to be tested may add its corresponding tube position information in a preset page.
The sample type information may reflect a type corresponding to the sample to be tested, such as a blood sample or a urine sample.
The sample number information refers to the number of the sample test tube in which the sample to be tested is stored, and as shown in fig. 6, the number of the sample to be tested may be set as: test 0001, test 0002, …, test 0015, etc.
Of course, without being limited thereto, the basic sample information may also be other information of the sample to be tested, and specifically, may be determined according to business requirements, which is not limited in this embodiment of the present application.
In this application, the user may be a manager of the full-automatic light-activated chemical light-emitting detector, or may be a page manager of a preset page, specifically, the user may be determined according to a business requirement, and this is not limited in this embodiment of the present application.
When the scanning result of the sample to be tested is the result of successful scanning, the scanned sample information can be used as the sample basic information.
After determining the basic sample information corresponding to the sample to be tested according to the scanning result, step 105 is performed.
Step 105: and automatically generating the basic sample information in the preset page.
For example, as shown in fig. 6, when the user clicks a "add sample" button, the test tube labels corresponding to the samples a, B, and C may be automatically and sequentially scanned to sequentially obtain the basic sample information corresponding to the samples a, B, and C, and after obtaining the basic sample information of the sample a, the basic sample information of the sample a may be automatically added in the preset page, then the basic sample information of the sample B is automatically added in the preset page, and finally, the basic sample information of the sample C is automatically added in the preset page. It should be understood that the above examples are only examples for better understanding of the technical solutions of the embodiments of the present application, and are not to be taken as the only limitation of the embodiments of the present application.
Of course, after the basic sample information of the sample to be tested is added in the preset page, a touch button corresponding to the test instruction corresponding to the sample to be tested can be generated in the preset page, and the issuing of the test instruction can be realized by triggering the touch button, and specifically, the following specific implementation manner can be combined for detailed description.
In a specific implementation manner of the present application, after the step 105, the method may further include:
step M1: and generating a touch button corresponding to the sample to be tested in the preset page.
In the embodiment of the present application, the touch button is a button for triggering a test instruction corresponding to a sample to be tested, for example, as shown in fig. 6, the added sample to be tested includes: samples 1, …, sample 15, may generate one touch button (not shown) after each sample.
After the basic sample information of the sample to be tested is added to the preset page, the touch button corresponding to the sample to be tested can be generated in the preset page.
After the touch button is generated, step M2 is performed.
Step M2: and generating a test instruction corresponding to the sample to be tested when the trigger operation corresponding to the touch button is monitored.
The test instruction refers to an instruction for testing a sample to be tested.
After the touch buttons corresponding to the samples to be tested are generated in the preset page, when the samples to be tested need to be tested, a page manager can click the touch buttons, so that test instructions corresponding to the test instructions can be generated, as shown in fig. 6, touch buttons corresponding to the samples 1, … and the sample 15 are generated in the preset page, and when the sample 1 needs to be tested, the touch button corresponding to the sample 1 can be clicked, so that the test instruction corresponding to the sample 1 is generated; when the sample 2 needs to be tested, the touch button corresponding to the sample 2 may be clicked to generate a test instruction and the like corresponding to the sample 2.
It should be understood that the above examples are only examples for better understanding of the technical solutions of the embodiments of the present application, and are not to be taken as the only limitation of the embodiments of the present application.
Certainly, in the terminal system, a monitoring program may be preset, and the monitoring program may be used to implement real-time monitoring on the touch button so as to determine whether the trigger operation corresponding to the touch button is received.
Without being limited to this, in a specific implementation, the triggering operation of the touch button may also be monitored in other manners, and specifically, the triggering operation may be determined according to a service requirement, which is not limited in this embodiment of the application.
When the trigger operation corresponding to the touch button is monitored, after the test instruction corresponding to the sample to be tested is generated, step M3 is executed.
Step M3: and sending the test instruction to the diagnostic equipment.
After the test instruction corresponding to the sample to be tested is generated, the test instruction of the sample to be tested CAN be sent to the full-automatic light-activated chemical light-emitting detector through the CAN bus by the terminal, so that the test flow of the sample to be tested is realized.
According to the embodiment of the application, the background management and control are carried out on the sample to be tested, so that field management and control personnel for the sample to be tested on the full-automatic light-activated chemical luminescence detector are reduced, and manpower is saved.
According to the method for uploading the test sample, the sample test tube corresponding to the to-be-tested sample to be uploaded is determined according to the state information of the diagnostic equipment by generating the preset page, the test tube label preset on the sample test tube is scanned to obtain the scanning result, the basic sample information corresponding to the to-be-tested sample is determined according to the scanning result, and the basic sample information is automatically generated in the preset page. According to the embodiment of the application, the basic sample information of the sample to be tested is added in the generated page, so that background management and control of the sample to be tested can be realized, personnel do not need to be arranged to manage and control the sample to be tested on the diagnostic equipment, input of human resources can be reduced, and labor cost is saved.
While, for purposes of simplicity of explanation, the foregoing method embodiments have been described as a series of acts or combination of acts, it will be appreciated by those skilled in the art that the present application is not limited by the order of acts or acts described, as some steps may occur in other orders or concurrently with other steps in accordance with the application. Further, those skilled in the art should also appreciate that the embodiments described in the specification are preferred embodiments and that the acts and modules referred to are not necessarily required in this application.
Referring to fig. 7, a schematic structural diagram of an uploading apparatus of a test sample provided in an embodiment of the present application is shown, where the uploading apparatus of a test sample may be applied to a diagnostic device or a terminal connected to the diagnostic device, and specifically may include the following modules:
the preset page generating module 210 is configured to generate a preset page;
a sample tube determining module 220, configured to determine, according to the state information of the diagnostic device, a sample tube corresponding to a sample to be uploaded;
a scanning result obtaining module 230, configured to scan a test tube label preset on the sample test tube, and obtain a scanning result;
a basic information determining module 240, configured to determine, according to the scanning result, basic sample information corresponding to the sample to be tested;
a basic information generating module 250, configured to automatically generate the basic sample information within the preset page.
Optionally, the diagnostic apparatus comprises a sample rack module, and the sample tube determination module 220 comprises:
and the sample test tube determining unit is used for determining the sample test tube corresponding to the sample to be tested according to the state information of the sample test tube placed on the sample rack module.
Optionally, the scan result obtaining module 230 includes:
and the first scanning result acquisition unit is used for scanning the text information which is added to the test tube label in advance and taking the text information as the scanning result.
Optionally, the scan result obtaining module 230 includes:
and the second scanning result acquisition unit is used for scanning the bar code which is preset on the sample test tube to obtain the scanning result.
Optionally, the method further comprises:
the touch button generating module is used for generating a touch button corresponding to the sample to be tested in the preset page;
the test instruction generating module is used for generating a test instruction corresponding to the sample to be tested when the touch instruction corresponding to the touch button is monitored;
and the test instruction sending module is used for sending the test instruction to the diagnostic equipment.
Optionally, the sample basis information includes: at least one of sample tube position information, sample type information, and sample number information.
Optionally, the terminal establishes a connection with the diagnostic device through a controller area network bus.
The uploading device of the test sample provided by the embodiment of the application determines the sample test tube corresponding to the to-be-tested sample to be uploaded according to the state information of the diagnostic equipment by generating a preset page, scans the test tube label preset on the sample test tube, acquires the scanning result, determines the basic sample information corresponding to the to-be-tested sample according to the scanning result, and automatically generates the basic sample information in the preset page. According to the embodiment of the application, the basic sample information of the sample to be tested is added in the generated page, so that background management and control of the sample to be tested can be realized, personnel do not need to be arranged to manage and control the sample to be tested on the diagnostic equipment, input of human resources can be reduced, and labor cost is saved.
Additionally, an embodiment of the present application further provides an electronic device, including: a processor, a memory and a computer program stored on the memory and executable on the processor, the processor implementing the above-mentioned test sample uploading method when executing the program.
The embodiment of the application also provides a computer readable storage medium, on which a computer program is stored, and when the program is executed by a processor, the method for uploading the test sample is realized.
The embodiments in the present specification are described in a progressive manner, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other.
Finally, it should also be noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation 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 but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises the element.
The method and the device for uploading the test sample provided by the present application are introduced in detail, and a specific example is applied to illustrate the principle and the implementation manner of the present application, and the description of the above embodiment is only used to help understand the method and the core idea of the present application; meanwhile, for a person skilled in the art, according to the idea of the present application, there may be variations in the specific embodiments and the application scope, and in summary, the content of the present specification should not be construed as a limitation to the present application.

Claims (10)

1. A test sample uploading method is applied to a diagnostic device or a terminal connected with the diagnostic device, and is characterized by comprising the following steps:
generating a preset page;
determining a sample test tube corresponding to a to-be-tested sample to be uploaded according to the state information of the diagnostic equipment;
scanning a test tube label preset on the sample test tube to obtain a scanning result;
determining basic sample information corresponding to the sample to be tested according to the scanning result;
and automatically generating the basic sample information in the preset page.
2. The method of claim 1, wherein the diagnostic device comprises a sample rack module, and the determining the sample test tube corresponding to the sample to be tested to be uploaded according to the status information of the diagnostic device comprises:
and determining the sample test tube corresponding to the sample to be tested according to the state information of the sample test tube placed on the sample rack module.
3. The method according to claim 1, wherein the scanning of the test tube labels previously arranged on the sample test tubes, obtaining the scanning result, comprises:
and scanning the text information pre-added to the test tube label, and taking the text information as the scanning result.
4. The method of claim 1, wherein the scanning image information previously disposed on the sample tube to obtain a scanning result comprises:
scanning a bar code which is arranged on the sample test tube in advance to obtain the scanning result.
5. The method of claim 1, further comprising, after automatically generating the base sample information within the pre-set page:
generating a touch button corresponding to the sample to be tested in the preset page;
when a touch instruction corresponding to the touch button is monitored, generating a test instruction corresponding to the sample to be tested;
and sending the test instruction to the diagnostic equipment.
6. The method according to any one of claims 1 to 5, wherein the sample basis information comprises: at least one of sample tube position information, sample type information, and sample number information.
7. The method of claim 1, wherein the terminal establishes a connection with the diagnostic device through a controller area network bus.
8. An uploading device of a test sample, which is applied to a diagnostic device or a terminal connected with the diagnostic device, is characterized by comprising:
the preset page generating module is used for generating a preset page;
the sample test tube determining module is used for determining a sample test tube corresponding to a to-be-tested sample to be uploaded according to the state information of the diagnostic equipment;
the scanning result acquisition module is used for scanning test tube labels which are arranged on the sample test tubes in advance to acquire scanning results;
a basic information determining module, configured to determine, according to the scanning result, basic sample information corresponding to the sample to be tested;
and the basic information generating module is used for automatically generating the basic sample information in the preset page.
9. The apparatus of claim 8, wherein the diagnostic device comprises a sample rack module, the sample tube determination module comprising:
and the sample test tube determining unit is used for determining the sample test tube corresponding to the sample to be tested according to the state information of the sample test tube placed on the sample rack module.
10. The apparatus of claim 8, wherein the scan result obtaining module comprises:
and the first scanning result acquisition unit is used for scanning the text information which is added to the test tube label in advance and taking the text information as the scanning result.
CN201911423160.6A 2019-12-31 2019-12-31 Test sample uploading method and device Pending CN113128627A (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101520462A (en) * 2008-02-29 2009-09-02 希森美康株式会社 Sample analysis apparatus, sample analysis method, and computer program product
CN102735861A (en) * 2011-04-15 2012-10-17 深圳迈瑞生物医疗电子股份有限公司 Method and device for monitoring sample frame, and body fluid work station
CN106461690A (en) * 2014-03-20 2017-02-22 贝克曼考尔特公司 Instrument interface with presentation unit display

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101520462A (en) * 2008-02-29 2009-09-02 希森美康株式会社 Sample analysis apparatus, sample analysis method, and computer program product
CN102735861A (en) * 2011-04-15 2012-10-17 深圳迈瑞生物医疗电子股份有限公司 Method and device for monitoring sample frame, and body fluid work station
CN106461690A (en) * 2014-03-20 2017-02-22 贝克曼考尔特公司 Instrument interface with presentation unit display

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