A sample analysis apparatus and a sample analysis system
Through the cooperation of interactive and control devices, the automated processing of sample orders and real-time management of the detection channels in the sample analysis equipment are realized, solving the problems of large workload and low detection efficiency caused by manual information entry by users, and improving the intelligence of the sample analysis equipment and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHENZHEN DYMIND BIOTECH
- Filing Date
- 2024-11-29
- Publication Date
- 2026-05-29
AI Technical Summary
In sample analysis equipment, users need to manually enter patient information for multiple samples, which results in a large workload and is prone to errors, affecting testing efficiency and accuracy.
The sample order is displayed through an interactive device, the control device receives the sample order transmitted by the mobile device and controls the detection device to perform the detection. Users can select sample orders on the interactive screen, the detection device updates the channel status and marks it in real time, and provides multiple interfaces to display the detection progress and results, so as to realize the controllability and intelligence of sample detection.
It reduces the workload of users manually entering information, improves the detection and operation efficiency of sample analysis equipment, and enhances the user experience and controllability of sample detection.
Smart Images

Figure CN122117307A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical technology, and in particular to a sample analysis device and sample analysis system. Background Technology
[0002] With the development of medical equipment, sample analysis equipment is increasingly used in hospitals and other settings. However, when users use this equipment for sample testing, different samples may correspond to different patient information and different testing items. Therefore, when faced with multiple samples, users need to input the patient information corresponding to each sample into the sample analysis equipment for subsequent updates to the test results. This involves a significant workload for users and is prone to errors. Summary of the Invention
[0003] To address the aforementioned technical problems, this application provides a sample analysis device, including an interactive device, a detection device, and a control device, wherein the interactive device includes an interactive screen for displaying at least one sample order to be detected;
[0004] The control device is used to receive the target sample order transmitted by the interactive device, and to control the detection device to detect the sample corresponding to the target sample order; wherein the target sample order is selected from the at least one sample order displayed on the interactive screen;
[0005] The control device is further configured to connect to at least one mobile device to receive the sample order transmitted by the at least one mobile device, and transmit the received sample order to the interactive device to control the interactive screen to display the sample order.
[0006] The detection device includes at least one detection channel, which is used to perform corresponding tests on the sample.
[0007] The control device is also used to acquire the status of all the detection channels and transmit the status to the interactive device, and control the interactive screen to display the at least one detection channel and the status of the detection channel;
[0008] The status of the detection channel includes channel busy, channel idle, and channel fault.
[0009] The control device is also used for:
[0010] Obtain the corresponding detection items in the sample order on the interactive screen, obtain the corresponding detection channel and the status of the detection channel based on the detection items, and mark the sample order based on the status of the detection channel.
[0011] The interactive screen includes a first option for switching the display interface, which includes a first interface, a second interface, and a third interface. The first interface is used to display at least one of the sample orders; the second interface is used to display the detection information of the target sample order; and the third interface is used to display the detection progress of the target sample order.
[0012] The control device is used for:
[0013] The system acquires the order information of the target sample order, controls the second interface to display the order information, and controls the second interface to display the detection results of the sample corresponding to the target sample order based on the detection device; simultaneously, it controls the third interface to display the detection progress of the order information.
[0014] The order information of the target sample order includes the user information of the corresponding mobile device, the sample type corresponding to the target sample order, and the detection items.
[0015] The control device is also used for,
[0016] In response to the target sample order's status being switched to paused on the third interface, the detection device is controlled to stop detecting the sample corresponding to the target sample order.
[0017] The control device is also used for:
[0018] After receiving the target sample order transmitted by the interactive device, the interactive screen is controlled to display a fourth interface, which is used to display the order information of the target sample order and an instruction screen;
[0019] The instruction screen includes a guide screen for placing the sample corresponding to the target sample order into the detection device.
[0020] The control device is also used for:
[0021] After the sample is placed into the detection device, the detection device is controlled to detect the placement position of the sample, and in response to the sample being placed correctly, the detection items of the sample are acquired to determine whether the detection items of the sample are the same as the detection items of the target sample order.
[0022] After the sample testing is completed, the control device is further used to:
[0023] The test results of the sample are obtained and compared with the reference range. If at least some values of the test results are not within the reference range, the test results are determined to be abnormal.
[0024] The interactive screen is controlled to display a fifth interface, which is used to display the detection results and abnormal data in the detection results.
[0025] The fifth interface further includes a first option, a second option, and a third option;
[0026] After the control device determines that the detection result is abnormal, the control device is further configured to:
[0027] In response to the first option being triggered, the status of the detection channel in the detection device is obtained; in response to the detection channel of the detection item corresponding to the target sample order being idle, the detection device is controlled to re-inspect the sample corresponding to the target sample order.
[0028] In response to the second option being triggered, the interactive screen is controlled to display the target sample order on the interface that displays the sample orders to be tested;
[0029] In response to the third option being triggered, the detection result is bound to the target sample order, and the status of the target sample order is updated.
[0030] To address the aforementioned technical problems, this application also provides a sample analysis system, including the sample analysis device, server, and at least one mobile device as described above. The at least one mobile device communicates with the sample analysis device through the server. The at least one mobile device is used to create a sample order and transmit the sample order to the sample analysis device. The sample analysis device is used to detect the sample corresponding to the sample order and obtain the detection result of the sample.
[0031] The beneficial effects of this application are as follows: Unlike existing technologies, the sample analysis device of this application includes an interactive device, a detection device, and a control device. The interactive device includes an interactive screen for displaying at least one sample order requiring testing. The control device is connected to at least one mobile device to receive sample orders transmitted from the mobile device and transmit the received sample orders to the interactive device, controlling the interactive screen to display the sample orders. Since the sample orders are transmitted from mobile devices, patients can create sample orders using their mobile devices and transmit them to the control device, eliminating the need for manual input of sample order information and reducing user workload. Furthermore, the control device also receives target sample orders transmitted from the interactive device and controls the detection device to test the samples corresponding to the target sample orders. The target sample orders are selected from at least one sample order displayed on the interactive screen. In other words, users can select at least one sample order displayed on the interactive screen and have the sample corresponding to the selected sample order tested. This enables users to control the sample testing of the sample analysis equipment. When the testing channel corresponding to one sample order is busy, users can select another sample order corresponding to an idle testing channel for testing, thereby improving the testing efficiency of the sample analysis equipment, improving the operating efficiency of the sample analysis equipment, and improving the user experience of the sample analysis equipment. Attached Figure Description
[0032] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0033] in:
[0034] Figure 1 This is a schematic diagram of the structure of an embodiment of the sample analysis device of this application;
[0035] Figure 2 This is a schematic diagram of the interface of the first embodiment of the interactive screen of this application;
[0036] Figure 3 This is a schematic diagram of the interface of the second embodiment of the interactive screen of this application;
[0037] Figure 4 This is a schematic diagram of the interface of the third embodiment of the interactive screen of this application;
[0038] Figure 5 This is a schematic diagram of the structure of an embodiment of the sample analysis system of this application.
[0039] Reference numerals: Sample analysis system A; Sample analysis device 1; Interactive device 11; Detection device 12; Control device 13; Mobile device 2; Server 3. Detailed Implementation
[0040] The embodiments of this application will now be described in detail with reference to the accompanying drawings.
[0041] In the following description, specific details such as particular system architectures, interfaces, and technologies are presented for illustrative purposes rather than for limiting purposes, in order to provide a thorough understanding of this application.
[0042] In this application, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0043] In this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A alone, A and B simultaneously, and B alone. Additionally, the character " / " generally indicates that the preceding and following related objects are in an "or" relationship. Furthermore, "many" in this application means two or more. Moreover, the term "at least one" in this application means any combination of at least two of any one or more of a plurality of objects. For example, including at least one of A, B, and C can mean including any one or more elements selected from the set consisting of A, B, and C. Furthermore, the terms "first," "second," and "third" in this application are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features.
[0044] Please see Figure 1 , Figure 1 This is a schematic diagram of the structure of an embodiment of the sample analysis device of this application. The sample analysis device 1 provided in this application embodiment includes an interactive device 11, a detection device 12, and a control device 13. The sample analysis device 1 can be applied in the medical field, such as hospitals and examination centers.
[0045] The control device 13 can be connected to the interaction device 11 and the detection device 12. Specifically, the control device 13 can be electrically connected to the interaction device 11 and the detection device 12, or the control device 13 can be wirelessly connected to the interaction device 11 and the detection device 12. This application does not limit this.
[0046] The interactive device 11 includes an interactive screen for displaying at least one sample order to be tested. After at least one sample order is displayed on the interactive screen, the sample tests required for the samples corresponding to the at least one sample order can be the same or different. The user can select at least one sample order on the interactive screen to trigger the sample order to be tested. Then, the control device 13 defines the triggered sample order as the target sample order. The control device 13 receives the target sample order transmitted by the interactive device 11 and controls the testing device 12 to test the sample corresponding to the target sample order. This enables the sample to be tested immediately after the user selects at least one sample order on the interactive screen. When there are multiple sample orders, the user can control the order in which the samples are tested, realizing the controllability of the sample analysis equipment's sample testing, improving the intelligence of the sample analysis equipment, and enhancing the user's experience with the sample analysis equipment.
[0047] In one embodiment, the interactive screen can display a first sample order and a second sample order (it is understood that both the first and second sample orders are sample orders that need to be tested, and the different names are only for clear description). The sample testing items required for the sample corresponding to the first sample order are different from those required for the sample corresponding to the second sample order. The testing channel required for the sample corresponding to the first sample order is busy, while the testing channel required for the sample corresponding to the second sample order is free. In this case, the user can choose the second sample order for sample testing to avoid choosing the first sample order, which requires a long waiting time and affects the sample testing efficiency, thereby improving the sample testing efficiency and operating efficiency of the sample analysis equipment.
[0048] Before the interactive screen displays at least one sample order, the control device 13 is also connected to at least one mobile device (not shown) to receive the sample order transmitted by the at least one mobile device, and then transmits the sample order to the interactive device 11 to control the interactive screen to display the sample order.
[0049] Specifically, the mobile device can be a mobile phone, tablet, or other mobile device used by the patient (the individual requiring testing). The patient can create a sample order on the mobile device. The order information can include the patient's personal information, such as name, contact information, gender, age, etc., as well as the sample type and the required testing items. By having the patient create the sample order on their mobile device and fill in the order information, the control device 13 can receive the sample order and control the interactive screen to display it. The user can select from the sample orders displayed on the interactive screen, enabling collaboration between the user and the patient. This makes patient information collection more convenient, improves the ease of binding sample and patient information, reduces the user's workload, and improves the operating efficiency of the sample analysis device 1.
[0050] In one embodiment, when creating a sample order on a mobile device, the patient can simply fill in their personal information, and the sample analysis device 1 will automatically generate the sample type and required testing items corresponding to the sample order. The personal information filled in by the patient is then linked to the sample type and required testing items corresponding to the sample order, thereby binding the sample to the patient and improving the convenience of sample order generation.
[0051] In summary, the sample analysis device 1 provided in this embodiment can be used to receive sample orders transmitted by mobile devices, eliminating the need for users to create sample orders, reducing user workload, and improving the sample detection efficiency and operating efficiency of the sample analysis device 1. Furthermore, users can select sample orders on the interactive screen, improving the controllability of sample detection by the sample analysis device 1 and further enhancing its operating efficiency.
[0052] Optionally, the detection device 12 includes at least one detection channel (not shown), which is used to perform corresponding tests on the sample.
[0053] The control device 13 is also used to acquire the status of all detection channels in the detection device 12, and transmit the status of the detection channels to the interactive device 11, controlling the interactive screen to display the detection channels and their status. The status of the detection channels may include channel busy, channel idle, and channel fault.
[0054] Specifically, after the control device 13 displays the sample order on the interactive screen, the control device 13 can also obtain the status of all detection channels in the detection device 12 to determine whether the detection channel is in sample detection. The obtained detection channel status is then transmitted to the interactive device 11, controlling the interactive screen to display the detection channels and their status.
[0055] This can be achieved by dividing the display area of the interactive screen into a sub-area to display the detection channels of the detection device 12. For example, the detection device 12 may include a CBC (Complete Blood Count) detection channel, a fluorescence detection channel, a colloidal gold detection channel, a biochemical detection channel, etc., which can be used to perform multiple tests on the sample. The control device 13 can then control the interactive screen to display the detection channels of the detection device 12 in this sub-area and mark the detection channels displayed on the interactive screen based on the acquired status of the detection channels. Figure 2 As shown, Figure 2 This is a schematic diagram of an embodiment of the interactive screen of this application. At the bottom of the interactive screen's display interface, the detection channels and their status of the detection device 12 can be displayed. Thus, by viewing the interactive screen's display interface, the user can learn about the detection items that the detection device 12 can perform, improving the convenience of using the sample analysis device 1 and enhancing the user experience.
[0056] Furthermore, after the control device 13 obtains the status of the detection channel, it can mark the detection channel icons displayed on the interactive screen. For example, but not limited to, a waiting icon can be marked in the upper left / upper right corner of the detection channel icon indicating that the channel is busy, indicating that waiting is required; a success icon can be marked in the upper left / upper right corner of the detection channel icon indicating that no waiting is required and sample testing can proceed; and a prohibited icon can be marked in the upper left / upper right corner of the detection channel icon indicating that the detection channel is faulty and sample testing cannot proceed. Alternatively, the detection channel icon indicating that the channel is busy can be marked in yellow, indicating that waiting is required; the detection channel icon indicating that the channel is idle can be marked in green, indicating that testing can proceed; and the detection channel icon indicating that the channel is faulty can be marked in red, indicating that testing cannot proceed. By marking the detection channel icons accordingly, the user can directly obtain the status of the detection channel through the interactive screen, and then the user can select the sample order for which the required detection channel is idle, thereby improving the operating efficiency of the sample analysis equipment 1.
[0057] In one embodiment, if a user selects a sample order whose desired detection channel is busy, the control device 13 can also control the interactive screen to display a pop-up window saying "Channel busy, please wait" to remind the user that the detection channel corresponding to the sample order is busy. After a pre-order time, such as 2 seconds, the control device 13 controls the pop-up window to disappear, allowing the user to reselect another sample order. It is understood that if the user selects a sample order whose desired detection channel is faulty, the control device 13 can also control the interactive screen to display a pop-up window saying "Channel faulty, please reselect". In other embodiments, other prompts and prompt formats may also be used, and this application does not limit them.
[0058] In another embodiment, the sample order displayed on the interactive screen may include the patient's personal information and the required tests, so that the user can select the sample order according to the test items and the status of the test channel displayed in the sample order, thereby improving the efficiency of the user's selection of sample orders and improving the operating efficiency of the sample analysis device 1.
[0059] Furthermore, the control device 13 can also be used to acquire the detection items corresponding to the sample orders on the interactive screen, acquire the corresponding detection channels and the status of the detection channels based on the detection items, and mark the sample orders based on the status of the detection channels.
[0060] Specifically, the control device 13 can also acquire the corresponding test items in the sample order and the corresponding test channel. The test items in the sample order can be those filled in by the patient during the sample order creation process. Furthermore, the control device 13 can mark the sample order based on the status of the test channel. For example, but not limited to, if the interactive screen displays a first sample order, a second sample order, and a third sample order, and the test channel corresponding to the test item in the first sample order is busy, the control device 13 can mark a waiting icon in the upper left / upper right corner of the first sample order, indicating that the required test channel for the first sample order is busy and requires waiting. If the test channel corresponding to the test item in the second sample order is faulty, the control device 13 can mark a prohibited passage icon in the upper left / upper right corner of the second sample order, indicating that the required test channel for the second sample order is faulty and requires repair. If the test channel corresponding to the test item in the third sample order is free, the control device 13 can choose not to mark the third sample order, or mark a success icon in the upper left / upper right corner of the third sample order, indicating that the required test channel for the third sample order is free.
[0061] In another embodiment, if the detection channel corresponding to the detection item of the first sample order is busy, the control device 13 controls the background color of the display area of the first sample order to be yellow; if the detection channel corresponding to the detection item of the second sample order is faulty, the control device 13 can control the background color of the display area of the second sample order to be red; if the detection channel corresponding to the detection item of the third sample order is idle, the control device 13 can maintain the background color of the display area of the third sample order as white, or change the background color of the display area of the third sample order to green, etc.
[0062] In other embodiments, the control device 13 may also mark the sample order in other ways based on the detection items and the status of the detection channel. This can be set according to the user's habits, and this application does not limit it.
[0063] The control device 13 can also acquire the status of the detection channel in real time, and then update the status of the sample orders and detection channel icons on the interactive screen. This prevents the detection channel from changing from idle to busy, and the control device 13 from failing to update the display icons on the interactive screen. At the same time, if the user selects a sample order to be tested using that detection channel, sample retention may occur. By updating the status of the detection channel in real time through the control device 13, the above situation can be effectively avoided, improving the orderliness and operating efficiency of the sample analysis equipment 1.
[0064] Optionally, the interactive screen includes a first option used to switch between display interfaces. These interfaces include a first interface, a second interface, and a third interface, such as... Figure 2 As shown, the first interface is used to display at least one sample order.
[0065] The second interface is used to display the detection information of the target sample order, such as... Figure 3 As shown, Figure 3 This is a schematic diagram of the interface of the second embodiment of the interactive screen of this application. Specifically, the second interface can be divided into a first display area and a second display area. The first display area is used to display detailed information of the test items of the sample order. For example, if the sample order is for CBC testing, the first area can include multiple detailed information items of the test items, such as detailed information of red blood cell test, detailed information of white blood cell test, etc. The control device 13 can obtain the test results of the testing device 12 in real time and update them in the first display area to facilitate the user to obtain the test results. The second display area can be used to display the order information corresponding to the sample order, including patient personal information and sample type, etc.
[0066] In other embodiments, the area may be divided into other display areas or display other information, etc., and this application does not impose any restrictions on this.
[0067] The third interface is used to display the testing progress of the target sample order, such as... Figure 4 As shown, Figure 4 This is a schematic diagram of the interface of the third embodiment of the interactive screen of this application. The corresponding sample order display area in the third interface may include a progress bar. The control device 13 can update the progress bar based on the detection progress of the corresponding sample. Users can obtain the detection progress of the sample order in the third interface, which improves the efficiency of human-computer interaction and enhances the user's experience of using the sample analysis device 1.
[0068] The control device 13 is also used to acquire the order information of the target sample order, control the second interface to display the order information of the target sample order so that users can view the detailed information of the target sample order, and control the second interface to display the test results of the sample based on the test of the sample corresponding to the target sample order by the detection device 12. At the same time, it controls the third interface to display the test progress of the target order information so that users can understand the test progress of the sample and improve the overall user experience of the sample analysis device 1.
[0069] In practical applications, after a user selects a target sample order, the first option can be triggered. When the first option is triggered, the control device 13 can control the interactive screen to switch between displaying the first interface, the second interface, or the third interface, so that the user can understand the information of the sample order and the testing process, thereby improving the user's experience of using the sample analysis device 1.
[0070] In one embodiment, the first option may include three trigger areas: "List of items to be tested", "Current sample", and "Detecting". When the control device 13 responds to the trigger of the "List of items to be tested" area, it controls the interactive screen to switch to display the first interface; if the control device 13 responds to the trigger of the "Current sample" area, it controls the interactive screen to switch to display the second interface; if the control device 13 responds to the trigger of the "Detecting" area, it controls the interactive screen to switch to display the third interface. Through the above settings, the user's response efficiency to the interactive screen triggers is improved, the human-computer interaction efficiency is improved, and the user's experience with the sample analysis device 1 is enhanced.
[0071] When a user switches back to the first interface from the second or third interface, the control device 13 can simultaneously refresh the sample orders on the first interface, displaying the newly transmitted sample orders from the mobile device. It is understood that in this embodiment, the sample orders displayed on the first interface are not refreshed in real time (the control device 13 immediately controls the interactive screen to display a sample order created by a patient on the mobile device). Instead, the sample orders are stored in the control device 13 beforehand, and are only updated and displayed on the first interface when it is refreshed. This avoids accidental touches by the user when they are about to select a sample order, thus improving the accuracy of the user's selection of sample orders on the first interface.
[0072] In one embodiment, a user can pull down the first interface to half of the interactive screen display area to trigger a refresh, and the control device 13 will then refresh the display of sample orders on the first interface. If there are too many sample orders, the user can pull down the first interface to two-thirds of the interactive screen display area to trigger a page turn, and the control device 13 will then control the display of the next page of sample orders. Conversely, if the user needs to switch to the previous page of sample orders, they can swipe up the first interface to one-third of the interactive screen to trigger a page turn, and the control device 13 will then control the interactive screen to display the previous page of sample orders. In other embodiments, the above operations can also be triggered in other ways, depending on the user's operating habits, and this application does not impose any restrictions on this.
[0073] During the process of refreshing the sample orders displayed on the first interface by the control device 13, if the control device 13 responds to the network connection failure of the sample analysis device 1, that is, the control device 13 cannot transmit the sample orders to the interactive screen for display, the control device 13 can control the interactive screen to display a pop-up window "Failed to obtain order, please check network connection!" to remind the user to check the network connection of the sample analysis device 1 until the network connection of the sample analysis device 1 is restored to normal, and then the control device 13 updates and displays the sample orders on the first interface.
[0074] In another embodiment, if the network connection of the sample analysis device 1 is normal, but there are no new sample orders during the time period from the last refresh of the first interface on the control device 13 to the current refresh of the first interface, the control device 13 can control the interactive screen to display a pop-up window of "No new sample orders!" to remind the user, avoid the user from mistakenly thinking that the refresh has failed, improve the intelligence level of the sample analysis device 1, and enhance the user's experience of using the sample analysis device 1.
[0075] In other embodiments, the control device 13 may also be set with other prompts or other reminder methods, such as reminding the user through voice broadcast, which can be set according to the user's usage habits. This application does not limit this.
[0076] Furthermore, users can also operate on the target sample orders being detected on the third interface. For example, by selecting any target sample order and swiping left on the sample order, a pause option is generated. If the user then triggers the pause option, the status of the target sample order is switched to paused. In response to the target sample order being switched to paused on the third interface, the control device 13 controls the detection device 12 to stop detecting the sample corresponding to the target sample order.
[0077] This allows users to promptly stop testing the target sample order when they no longer wish to continue with the current target sample order, or when they notice a mismatch between the target sample order information and the information of the sample being tested. This avoids wasting testing resources in the sample analysis device 1, improves the fault tolerance rate of the test, and enhances the operating efficiency of the sample analysis device 1.
[0078] Optionally, the control device 13 is further configured to: after receiving the target sample order transmitted by the interaction device 11, control the interaction screen to display a fourth interface, the fourth interface being used to display the order information of the target sample order and an instruction screen, wherein the instruction screen includes a guidance screen for placing the sample corresponding to the target sample order into the detection device 12.
[0079] Specifically, the fourth interface can be divided into a first display area and a second display area arranged horizontally, for example... Figure 3 The structure shown, or the fourth interface, can be divided into a first display area and a second display area arranged vertically. The first display area can display the order information of the target sample order, such as the patient's personal information and sample type corresponding to the target sample order. The second display area can be used to display instruction screens. For example, if the sample test item for the target sample order is a CBC test, the instruction screen can display a schematic video screen showing the placement of the reagent card or kit containing the sample into the corresponding position of the testing device 12, and a schematic video screen showing the addition of samples (auxiliary reagents, such as hemolysants) to the reagent card or kit, so as to instruct the user to correctly place the sample into the testing device 12 and correctly perform the pre-test preparation work, thereby improving the testing efficiency of the sample analysis device 1.
[0080] Specifically, in this process, the fourth interface may first display a schematic video showing the placement of the reagent card or reagent kit into the corresponding position of the detection device 12. The fourth interface also displays a "Next" option. After the user places the sample into the detection device 12 according to the schematic video, the user can trigger the "Next" option. Then, the control device 13 controls the fourth interface to switch to displaying a schematic video showing the addition of the reagent card or reagent kit, providing guidance for further sample addition. At this time, the fourth interface may display a "Start Detection" trigger option and a "Cancel" trigger option. After the user correctly adds reagent to the sample, the user can trigger the "Start Detection" option. The control device 13, in response to the "Start Detection" option being triggered, immediately controls the detection device 12 to detect the sample. If the user triggers the "Cancel" option, it means the user cancels the current sample detection. The user can remove the sample from the detection device 12. The control device 13, in response to the "Cancel" option being triggered, immediately pauses the detection device 12's detection of the sample and controls the interactive screen to switch to display the first interface, controlling the target sample order to reappear on the first interface.
[0081] In one embodiment, while the control device 13 displays a schematic video of adding samples to the reagent card or reagent kit on the interactive screen, the fourth interface can also display a countdown timer for adding samples, such as 20 minutes. If the user has not triggered the "Next" option after the countdown ends, the control device 13 can control the interactive screen to display a pop-up window saying "Sample addition timeout!" to remind the user that the sample addition time is too long. The control device 13 can also further control voice broadcast to remind the user, etc.
[0082] In another embodiment, if the sample can be automatically added inside the detection device 12, or if the test performed on the sample is one that does not require sample addition, the control device 13 can control the fourth interface to only display a schematic video image of placing the reagent card or reagent kit into the corresponding position of the detection device 12. At the same time, there is a "Start Detection" trigger option on the fourth interface. After the user places the sample into the detection device 12, the "Start Detection" option can be triggered. In response to the "Start Detection" being triggered, the control device 13 controls the detection device 12 to perform the test on the sample.
[0083] In other embodiments, there may be other triggering options or other design steps, which can be set according to user operating habits, and this application does not limit them.
[0084] Optionally, the control device 13 is also used to control the detection device 12 to detect the placement position of the sample after the sample is placed into the detection device 12, and to acquire the detection items of the sample after the sample is correctly placed, and to determine whether the detection items of the sample are the same as the detection items of the target sample order.
[0085] Specifically, after the user places the sample into the detection device 12 and triggers the "Start Detection" option on the interactive screen, the control device 13 will control the detection device 12 to first detect the placement position of the sample to determine whether the sample is correctly placed in the detection device 12. The detection device 12 may be equipped with a recognition camera component (not shown) to capture images of the sample placement position in the detection device 12 and identify whether the sample is correctly placed based on the captured images. Correct sample placement includes the sample being placed in the detection device 12 and the sample placement position meeting the placement requirements of the detection device 12.
[0086] In one embodiment, if the control device 13 responds to the fact that there is no sample at the sample placement position in the detection device 12 or the sample placement position does not meet the placement requirements, the control device 13 can control the display of a pop-up window "Sample placement error!" on the interactive screen to remind the user to make adjustments and improve the detection efficiency of the detection device 12 for the sample.
[0087] Furthermore, after the sample is correctly placed in the detection device 12, the control device 13 controls the detection device to acquire the test items of the sample. For example, a QR code is set on the reagent card or kit containing the sample in the device. The QR code can store information on the test items that need to be performed on the sample in the reagent card or kit. The recognition camera component can further capture the QR code and obtain the test item information of the sample by recognizing the QR code. At the same time, since the order information of the target sample order acquired by the control device 13 includes the test items of the target sample order, the control device 13 can compare the test items of the sample in the detection device 12 with the test items of the target sample order to determine whether the test items of the sample in the detection device 12 are the same as the test items of the target sample order. If they are the same, the control device 13 can control the detection device 12 to test the sample.
[0088] In one embodiment, if the control device 13 responds to whether the detection items of the sample in the detection device 12 are different from the detection items of the target sample order, the control device 13 can further control the interactive screen to display a pop-up window of "Mismatch with detection items!" to remind the user that the sample in the detection device 12 is not the sample corresponding to the target sample order, and the user needs to replace the sample in the detection device 12, thereby improving the intelligence level of the sample analysis device 1 and enhancing the user's experience of using the sample analysis device 1.
[0089] In other embodiments, the control device 13 may also be configured to remind the user in other forms, which can be set according to the user's operating habits, and this application does not impose any restrictions on this.
[0090] By judging whether the sample is placed correctly and whether the test items of the sample are the same as the test items of the target sample order, it is ensured that the sample in the testing device 12 is placed correctly and is the correct sample, reducing the occurrence of incorrect test results due to misplaced samples, reducing the waste of testing resources in the sample analysis equipment 1, improving the efficiency of sample testing by the testing device 12, and improving the operating efficiency of the sample analysis equipment 1.
[0091] Furthermore, after the control device 13 determines whether the testing items of the sample in the testing device 12 are the same as the testing items of the target sample order, the control device 13 can also control the testing device 12 to perform a self-test, including checking the remaining amount of reagents used in the testing device 12. If it is determined that the remaining amount of reagents used in the testing device 12 is sufficient to test the sample, the control device 13 then controls the testing device 12 to test the sample. This avoids the situation where insufficient auxiliary reagents in the testing device 12 cause a pause in the sample testing process, thus improving the operating efficiency of the sample analysis equipment 1.
[0092] In one embodiment, if the remaining amount of reagents used in the detection device 12 is insufficient, the control device 13 can control the display of a "Reagents Insufficient!" pop-up window on the interactive screen to remind the user to replenish the reagents in the detection device 12. This improves the intelligence level of the sample analysis device 1 and enhances the user experience.
[0093] In another embodiment, the control device 13 can also control the detection device 12 to detect the state of the sample. For example, if the sample needs to be incubated, the control device 13 can control the detection device 12 to detect the incubation status of the sample. Only after determining that the sample incubation operation is completed will the control device 13 control the detection device 12 to detect the sample.
[0094] In other embodiments, the detection device 12 may also detect other detection conditions of itself, such as determining the expiration date of the reagents in the detection device 12, or determining whether the auxiliary reagents in the detection device 12 have expired. This application does not impose any restrictions on this.
[0095] During the process of the detection device 12 detecting the sample, the control device 13 can obtain the status of the corresponding detection channel and update the detection channel icon on the interactive screen, thereby improving the response efficiency of the sample analysis device 1.
[0096] Alternatively, before the user places the sample into the detection device 12, the detection device 12 may first detect the remaining amount of reagents inside the detection device 12. After the control device 13 responds to the fact that the detection conditions in the detection device 12 are sufficient, it may then control the interactive screen to display an instruction screen to guide the user to place the sample into the detection device 12. This avoids the situation where the detection device 12 prompts that the detection conditions are insufficient after the user has placed the sample into the detection device 12, thus saving the user's workload. This improves the intelligence level of the sample analysis device 1 and enhances the user's experience with the sample analysis device 1.
[0097] Optionally, after the detection device 12 detects the sample, the control device 13 is further configured to: acquire the detection results of the sample and compare the detection results with the reference range; in response to at least some values of the detection results not being within the reference range, determine that the detection results are abnormal; and control the interactive screen to display a fifth interface, which is used to display the detection results and abnormal data in the detection results.
[0098] Specifically, after the detection device 12 completes the detection of the sample, the control device 13 can acquire the detection results of the sample and update the corresponding target sample order. Furthermore, the detection device 12 will compare the detection results with a reference range, and if at least some data in the detection results are not within the reference range—for example, normally the lymphocyte percentage is 20-50%, but the lymphocyte percentage in the detection result is 70%—then the lymphocyte percentage is abnormal, and the detection result is determined to be abnormal.
[0099] When the test result is abnormal, the control device 13 will control the interactive screen to display the fifth interface to show the test result and the abnormal data in the test result, so as to remind the user that the test result of the sample is abnormal, so as to facilitate the user's judgment of the test result of the sample and improve the user experience. Among them, the abnormal data in the test result can be highlighted in red to facilitate the user's acquisition of abnormal data. In other embodiments, other forms of marking can also be used, and this application does not limit them.
[0100] Furthermore, the fifth interface also includes a first option, a second option, and a third option. After the control device 13 determines that the detection result is abnormal, the control device 13 is also used to:
[0101] In response to the first option being triggered, the status of the detection channel in the detection device 12 is obtained. In response to the detection channel of the detection item corresponding to the target sample order being idle, the detection device 12 is controlled to re-inspect the sample of the target sample order. In response to the second option being triggered, the interactive screen is controlled to display the target sample order on the interface that displays the sample orders to be tested. In response to the third option being triggered, the test results are bound to the target sample order, and the status of the target sample order is updated.
[0102] Specifically, the first option can be a "retest" trigger, the second option can be a "retest later" trigger, and the third option can be a "accept result" trigger. When the user triggers the first option, that is, issues an instruction to immediately retest the sample with abnormal test results, the control device 13, in response to the first option being triggered, that is, when the sample needs to be retested immediately, acquires the detection channel on the detection device 12. As mentioned above, the sample can be tested immediately only when the detection channel is idle; if the detection channel is busy, it must wait. When the control device 13 acquires the status of the detection channel, and in response to the detection channel corresponding to the detection item of the target sample order being idle, the control device 12 is controlled to retest the sample of the target sample order.
[0103] If the detection channel of the target sample order is busy, the control device 13 can control the interactive screen to display a "Channel Busy!" pop-up and transmit the target sample order to the first interface of the interactive screen for display. That is, the sample order displayed on the first interface can be a sample order to be tested created by the mobile device user, or a sample order to be re-inspected. In one embodiment, the control device 13 can also mark the sample orders to be re-inspected on the first interface to remind the user that the order sample is a sample to be re-inspected, thereby improving the intelligence level of the sample analysis device 1 and enhancing the user's experience with the sample analysis device 1.
[0104] When the user triggers the second option, i.e., not to immediately re-inspect the target sample order with abnormal detection results, the control device 13 can, in response to the triggering of the second option, not save the current detection result, but re-transmit the target sample order to the interaction device 11 and control the first interface to display the target sample order. In another embodiment, the control device 13 can also save the detection result of the target sample order for the first time, so that the user can compare the re-inspection result of the target sample order with the detection result of the first detection. Specific settings can be configured according to user needs, and this application does not impose any limitations on this.
[0105] When the user triggers the third option, that is, when the user accepts the abnormal result and does not re-inspect the target sample order, the control device 13 responds to the triggering of the third option by controlling the detection device 12 to end the detection of the target sample order, binding the detection result with the target sample order, and updating the status of the target sample order, for example, updating the status of the target sample order to "detected". When the user views the sample order, the user can also view the detection result of the sample order.
[0106] In summary, users can use their experience to determine whether to retest sample orders with abnormal test results, thereby reducing sample test abnormalities caused by improper testing operations, improving the interaction between sample analysis device 1 and users, and enhancing the user experience of sample analysis device 1.
[0107] Since the first interface can display sample orders awaiting re-inspection, meaning that even after a sample order has undergone at least one sample test, it can still be returned to the list of orders to be tested, in order to prevent the control device 13 from mistakenly transmitting sample orders with a status of "tested" to the interactive device 11 and then having them selected by the user again, thus wasting testing resources, when the user selects a sample order displayed on the interactive screen, the control device 13 can first determine the status of the sample order selected by the user. Only after determining that the sample order is untested will subsequent operations be performed, so as to avoid repeatedly testing the same sample, wasting the testing resources of the sample analysis device 1, and improving the intelligence level of the sample analysis device 1.
[0108] In one embodiment, after the control device 13 controls the detection device 12 to finish testing the sample order, the control device 13 can further control the detection device 12 to check the remaining amount of reagents used in the test. When the remaining amount of reagents is insufficient, the control device 13 can control the interactive screen to display a pop-up window saying "Insufficient reagents!" to remind the user to replenish the reagents in the detection device 12 in time, so as to avoid insufficient reagents during the test process, which may affect the test process or even the results, thereby improving the practicality of the sample analysis device 1 and enhancing the user's experience with the sample analysis device 1.
[0109] In summary, the sample analysis device 1 provided in this application includes an interactive device 11, a detection device 12, and a control device 13. The interactive device 11 includes an interactive screen for displaying at least one sample order requiring testing. The control device 13 is connected to at least one mobile device to receive sample orders transmitted from the mobile device and transmit the received sample orders to the interactive device 11, controlling the interactive screen to display the sample orders. Since the sample orders are transmitted from mobile devices, patients can create sample orders using their mobile devices and transmit them to the control device 13, eliminating the need for manual input of sample order information and reducing user workload. Furthermore, the control device 13 also receives target sample orders transmitted from the interactive device 11 and controls the detection device 12 to test the samples corresponding to the target sample orders, wherein the target sample orders are selected from at least one sample order displayed on the interactive screen. In other words, users can select at least one sample order displayed on the interactive screen and perform testing on the sample corresponding to the selected sample order. This enables users to control the sample testing of the sample analysis device 1. When the testing channel corresponding to a sample order is busy, users can select another sample order corresponding to an idle testing channel for testing, thereby improving the testing efficiency of the sample analysis device 1, improving the operating efficiency of the sample analysis device 1, and improving the user's experience with the sample analysis device 1.
[0110] Furthermore, the control device 13 can also control the display of sample orders, sample order detection information, and sample order detection progress on the interactive screen, facilitating user access to sample order information. Simultaneously, the control device 13 can also control the display of detection channel icons of the detection device 12 on the interactive screen, and mark the detection channel icons based on their status. It can also mark sample orders based on the detection items and the status of the detection channels, allowing users to intuitively understand the status of the required detection channels for each sample order. Users can then select sample orders with available channels for execution, improving the detection efficiency of the sample analysis device 1 and its overall operating efficiency. Moreover, users can manually pause the detection process of ongoing sample orders, enhancing the user's control over the sample analysis device 1 and its operability, thus improving the user experience.
[0111] Next, after the user selects any sample order on the interactive screen, the control device 13 can control the interactive screen to display an instruction screen for placing the sample into the detection device 12 corresponding to that sample order. This guides the user to place the sample into the detection device 12, avoiding sample detection failures caused by user placement errors and improving the reliability of the sample analysis device 1. Furthermore, after the detection device 12 completes the sample detection, the user can also choose to re-inspect sample orders with abnormal test results or end the testing process. This reduces sample test abnormalities caused by improper testing operations, improves the interactivity between the sample analysis device 1 and the user, further enhances the operability of the sample analysis device 1, and improves the user experience of the sample analysis device 1.
[0112] This application also provides a sample analysis system, such as Figure 5 As shown, Figure 5 This is a schematic diagram of the structure of an embodiment of the sample analysis system of this application. The sample analysis system A includes a sample analysis device 1, at least one mobile device 2, and a server 3. The mobile device 2 can be a mobile phone, tablet computer, or other device used by the patient.
[0113] At least one mobile device 2 communicates with the sample analysis device 1 through the server 3. The mobile device 2 can be wirelessly connected to the server 3, and the sample analysis device 1 is also wirelessly connected to the server 3. At least one mobile device 2 is used to create a sample order and transmit the sample order to the server 3. The server 3 will transmit the sample order to the sample analysis device 1 according to the request of the sample analysis device 1. Then, the sample analysis device 1 will test the sample corresponding to the sample order and obtain the test result of the sample.
[0114] Specifically, patients can create sample orders through mobile device 2. During the creation process, patients can fill in their personal information, sample type, test type, etc. Mobile device 2 then transmits the sample order, which includes personal information, sample type, and test type, to sample analysis device 1. Without the user of sample analysis device 1 needing to enter the patient's personal information, the patient can bind their personal information with the sample type, effectively reducing the user's workload and improving the user experience of sample analysis system A.
[0115] After receiving the sample order transmitted by the mobile device 2, the sample analysis device 1 can test the sample corresponding to the sample order and obtain the test results. Furthermore, the sample analysis device 1 can also synchronize the test results to the corresponding mobile device 2, so that the patient can view the test results, which further improves the patient's user experience of the sample analysis system A.
[0116] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.
Claims
1. A sample analysis device, characterized in that, It includes an interactive device, a detection device, and a control device, wherein the interactive device includes an interactive screen for displaying at least one sample order that needs to be detected; The control device is used to receive the target sample order transmitted by the interactive device, and to control the detection device to detect the sample corresponding to the target sample order; wherein the target sample order is selected from the at least one sample order displayed on the interactive screen; The control device is further configured to connect to at least one mobile device to receive the sample order transmitted by the at least one mobile device, and transmit the received sample order to the interactive device to control the interactive screen to display the sample order.
2. The sample analysis device according to claim 1, characterized in that, The detection device includes at least one detection channel, which is used to perform corresponding tests on the sample. The control device is also used to acquire the status of all the detection channels and transmit the status to the interactive device, and control the interactive screen to display the at least one detection channel and the status of the detection channel; The status of the detection channel includes channel busy, channel idle, and channel fault.
3. The sample analysis device according to claim 2, characterized in that, The control device is also used for: Obtain the corresponding detection items in the sample order on the interactive screen, obtain the corresponding detection channel and the status of the detection channel based on the detection items, and mark the sample order based on the status of the detection channel.
4. The sample analysis device according to claim 1, characterized in that, The interactive screen includes a first option for switching the display interface, which includes a first interface, a second interface, and a third interface. The first interface is used to display at least one of the sample orders. The second interface is used to display the detection information of the target sample order. The third interface is used to display the detection progress of the target sample order. The control device is used for: The system acquires the order information of the target sample order, controls the second interface to display the order information, and controls the second interface to display the detection results of the sample corresponding to the target sample order based on the detection device; simultaneously, it controls the third interface to display the detection progress of the order information. The order information of the target sample order includes the user information of the corresponding mobile device, the sample type corresponding to the target sample order, and the detection items.
5. The sample analysis device according to claim 4, characterized in that, The control device is also used for, In response to the target sample order's status being switched to paused on the third interface, the detection device is controlled to stop detecting the sample corresponding to the target sample order.
6. The sample analysis device according to claim 1, characterized in that, The control device is also used for: After receiving the target sample order transmitted by the interactive device, the interactive screen is controlled to display a fourth interface, which is used to display the order information of the target sample order and an instruction screen; The instruction screen includes a guide screen for placing the sample corresponding to the target sample order into the detection device.
7. The sample analysis device according to claim 6, characterized in that, The control device is also used for: After the sample is placed into the detection device, the detection device is controlled to detect the placement position of the sample, and in response to the sample being placed correctly, the detection items of the sample are acquired to determine whether the detection items of the sample are the same as the detection items of the target sample order.
8. The sample analysis device according to claim 1, characterized in that, After the sample testing is completed, the control device is further configured to: The test results of the sample are obtained and compared with the reference range. If at least some values of the test results are not within the reference range, the test results are determined to be abnormal. The interactive screen is controlled to display a fifth interface, which is used to display the detection results and abnormal data in the detection results.
9. The sample analysis device according to claim 8, characterized in that, The fifth interface also includes a first option, a second option, and a third option; After the control device determines that the detection result is abnormal, the control device is further configured to: In response to the first option being triggered, the status of the detection channel in the detection device is obtained; in response to the detection channel of the detection item corresponding to the target sample order being idle, the detection device is controlled to re-inspect the sample corresponding to the target sample order. In response to the second option being triggered, the interactive screen is controlled to display the target sample order on the interface that displays the sample orders to be tested; In response to the third option being triggered, the detection result is bound to the target sample order, and the status of the target sample order is updated.
10. A sample analysis system, characterized in that, The device includes a sample analysis device as described in any one of claims 1-9, a server, and at least one mobile device, wherein the at least one mobile device communicates with the sample analysis device through the server, the at least one mobile device is used to create a sample order and transmit the sample order to the sample analysis device, and the sample analysis device is used to detect the sample corresponding to the sample order and obtain the detection result of the sample.