On-site rapid detection and inspection box

By designing an integrated test box, the problem that on-site rapid testing equipment cannot be integrated and carried is solved, the time from sample collection to testing is shortened and the operation is convenient, the testing efficiency and comfort are improved, and the reliability of the test results is ensured.

CN120646366APending Publication Date: 2025-09-16GENERAL HOSPITAL OF SOUTHERN THEATRE COMMAND OF PLA
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Patent Information

Application Number
CN202510909724.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-02
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

Existing on-site rapid testing equipment cannot be integrated and carried, which prolongs the time from sample collection to testing, makes it inconvenient for inspectors to operate, and affects work efficiency and comfort.

Method used

A test box consisting of a box body, a box cover, a scissor-type support assembly and a chassis has been designed. The integrated design can carry complete testing equipment and materials. The height can be adjusted through the scissor-type support assembly to meet the operational needs of inspectors. A control panel is provided on the box cover to realize automated processing.

Benefits of technology

It shortens the time from sample collection to testing, improves testing efficiency and comfort, ensures the reliability of test results and work efficiency, and can quickly enter working status, especially in emergency situations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of rapid detection instruments in clinical laboratories, in particular to an on-site rapid detection inspection box which comprises a box body, a box cover, a shear type supporting assembly and a base plate, the box body and the base plate of the inspection box form a main body structure of the inspection box, the interior of the box body is divided into a plurality of instrument areas through partition plates, and various detection instruments can be placed in the instrument areas in order; and the consumable storage area and the reagent storage area at the top of the chassis are respectively used for storing consumables and reagents required by inspection. By means of the integrated design, the inspection box can carry complete detection equipment and materials, and inspection personnel can conveniently carry the inspection box to hospital wards, emergency treatment areas and other space-limited areas. In practical application, when a patient needs to be subjected to bedside detection, an inspector can quickly take out required instruments, consumables and reagents and does not need to go to a laboratory for taking, so that the time from sample collection to detection is greatly shortened, the detection efficiency is improved, and precious time is won for clinical diagnosis.
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Description

Technical Field

[0001] The invention relates to the technical field of rapid detection equipment for laboratory departments, in particular to an on-site rapid detection box. Background Art

[0002] Traditional testing processes are often limited by sample transportation, complex operations, and time-consuming analysis, making it difficult to meet the urgent needs of critically ill patients for rapid diagnosis. In order to solve the above problems, modern medical laboratories usually use on-site rapid testing equipment to test critically ill patients. By using on-site rapid testing equipment, preliminary test results can be provided in a short time.

[0003] However, the existing on-site rapid testing equipment has certain defects during use. The existing on-site rapid testing equipment and supplies cannot be carried in an integrated manner. When inspectors go to other temporary testing sites in the hospital, they cannot carry the complete testing equipment and supplies at one time. They need to go back and forth to the laboratory to get them, which greatly prolongs the time from sample collection to testing, reduces testing efficiency, and is difficult to meet the urgent time requirements of clinical diagnosis. During on-site testing, the existing on-site rapid testing equipment cannot adjust the working height according to the actual operating needs of the inspectors, which may cause the inspectors to bend over or tiptoe during operation, which affects work comfort and easily causes fatigue, thereby reducing work efficiency and quality. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention provides an on-site rapid detection test box.

[0005] The technical solution adopted by the present invention to solve its technical problems is: an on-site rapid detection test box, including a box body, a box cover, a scissor-type support assembly and a chassis. The box body is fixed with a plurality of partitions, and the interior of the box body is divided into a plurality of instrument areas for placing detection instruments by the plurality of partitions. The box cover is hingedly fitted on one side of the top of the box body. When the box cover is closed, it can effectively protect the detection instruments in the box body from external collisions, dust, liquids and other contaminants. A top cover is fixed to the bottom of the box body. The chassis is horizontally arranged directly below the bottom of the top cover. The chassis and the top cover are connected by two scissor-type support assemblies. The top cover and the chassis are connected by the scissor-type support assembly. The consumables storage area and reagent storage area below the top cover are covered and protected by the top cover. When transporting or not in use, the lift-up cover fits snugly against the chassis, creating a closed space that protects stored consumables and reagents from the outside environment. When the test box arrives on-site and is ready for pre-test setup, the height of the box can be changed by adjusting the scissor-type support assembly, allowing testers to choose the appropriate working height based on actual operational needs, eliminating the need to bend over or stand on tiptoe. As the height is adjusted, the lift-up cover rises, opening the consumable and reagent storage areas at its bottom. This allows testers to quickly access the items they need, allowing them to simultaneously begin pre-test preparations without requiring additional effort.

[0006] The lid consists of a cover frame and a cover plate. The cross-section of the cover frame is shaped like a square. The cover plate is fixed to one side of the cover frame. A control panel is fixed in the middle of the cover frame. The control panel on the lid contains a sampling module, a detection module, a data processing module, a result display module, a data storage and communication module, and a power module. These modules work closely together to achieve full automation of the entire process, from sample collection to the output, storage, or transmission of test results.

[0007] Consumables storage areas are located at both ends of the chassis' top, and several reagent storage areas of varying sizes are located between the two consumables storage areas. The test box's main structure consists of the box body and chassis. Partitions divide the box into multiple instrument areas, allowing for the orderly placement of various testing instruments. The consumables storage area and reagent storage area on the top of the chassis are used to store consumables and reagents, respectively. This integrated design allows the test box to carry a complete set of testing equipment and supplies, making it easy for testers to carry it to other temporary testing sites within the hospital.

[0008] Preferably, a plurality of drawers are provided on one side of the box body near the top cover for pulling out. The drawers are connected to the box body by means of slide rails, and a handle is fixed on one end of the outside of the drawers for convenient pulling out. When conducting on-site testing in the hospital laboratory department, the required consumables and reagents can be selected from the chassis according to actual testing needs and placed in the drawers, so that these commonly used items are placed together for quick access by the test personnel, avoiding the scramble caused by searching for items during the testing process. The setting of the slide rails and handles not only makes the opening and closing of the drawers smoother, but the convenient design of the handles also makes it easy for the test personnel to operate.

[0009] Preferably, a lock is installed on the side of the cover frame away from the cover plate, and a lock corresponding to and adapted to the lock is installed near the top of the box body and requires a key to activate. In the hospital laboratory department, the testing instruments, consumables and reagents stored in the test box are often of high value and important. The combination of the lock and the lock can effectively prevent the test box from being opened at will when it is not in working condition.

[0010] Preferably, cushions are fixed to both ends of the lid frame near the box body, and buffer grooves are provided at both ends of the top of the box body, corresponding in position and size to the cushions. When the lid is closed, the cushions fit into the grooves, providing a cushioning and shock-absorbing effect. During routine handling or movement within the hospital laboratory department, the test box is inevitably subject to bumps and collisions. The provision of cushions and buffer grooves effectively reduces the impact force between the lid and the box body.

[0011] Preferably, a pressure sensor is provided in the buffer tank, and the pressure sensor is associated with the switch of the control panel. When the box lid is closed, the buffer pad presses the pressure sensor, and the control panel automatically shuts down after receiving the signal and enters the energy-saving mode; conversely, when the box lid is opened, the pressure sensor detects that the pressure disappears, and the control panel automatically turns on, making it convenient for the inspector to operate immediately.

[0012] Preferably, grooves are provided at both ends of the exterior of the box body, and sliding grooves are provided in the two grooves. Positioning guide plates are intersected and matched at both ends of the cover frame. The two positioning guide plates are horizontally rotated and matched with sliding rods at the ends away from the cover frame. The two sliding rods are respectively slidably matched in the two grooves. Sliders are installed at the ends of the two sliding rods away from the positioning guide plates. The two sliders are respectively slidably matched in the two sliding grooves. The sliders slide in the sliding grooves, which limits the left and right swinging of the box cover and maintains the linearity of the opening and closing process.

[0013] Preferably, the slider is an elongated structure with arc-shaped structures at both ends. The upper and lower widths of the slider are smaller than the upper and lower widths of the chute, and the length of the slider is greater than or equal to the upper and lower widths of the chute. A knob that can drive the slider to rotate is installed on one side of the positioning guide. By turning the knob, the slider can be rotated and can be stuck in the chute. By adjusting the state of the slider by the knob, the angle of the box cover can be fixed, making it convenient for inspectors to adjust the opening and closing angle of the box cover according to actual operational requirements. For example, when performing certain operations that require observation of the control panel, the box cover can be fixed at a suitable angle for easy viewing and operation.

[0014] Preferably, storage grooves are provided on both sides of the bottom of the lifting cover and on both sides of the top of the chassis, and a rail groove is provided horizontally in each storage groove. Several positioning card grooves are provided at equal intervals upward in the rail groove of the storage groove at the bottom of the lifting cover, and several positioning card grooves are provided at equal intervals downward in the rail groove of the storage groove at the top of the chassis.

[0015] Preferably, the scissor-type support assembly includes a limiting guide plate and a supporting guide plate. The limiting guide plate and the supporting guide plate are hinged in the middle. The upper and lower ends of the supporting guide plate are respectively hinged and fitted in the storage groove at the bottom of the lifting cover and the storage groove at the top of the chassis. Both sides of the two ends of the limiting guide plate are rotatably fitted with rollers. The top end of the limiting guide plate moves and fits in the storage groove of the lifting cover. The roller at the top of the limiting guide plate rolls and fits in the rail groove of the storage groove at the bottom of the lifting cover. The bottom end of the limiting guide plate moves and fits in the storage groove of the chassis. The roller at the bottom of the limiting guide plate rolls and fits in the rail groove of the storage groove at the top of the chassis. When there is no need to adjust the height of the box, the scissor-type support assembly can be folded and stored in the storage groove, so that the lifting cover and the chassis are completely fitted, ensuring that the upper space of the chassis is closed. In the limited space of the hospital laboratory, this compact storage design makes the test box take up less space, which is convenient for storage and transportation. At the same time, the closed nature of the storage groove can also prevent dust and debris from entering the interior of the scissor-type support assembly. The rail grooves allow the ends of the limit guides in the scissor support assembly to move within them, enabling the assembly to be raised or lowered. The positioning slots allow the rollers at the ends of the limit guides to engage, thereby fixing the height of the scissor support assembly and maintaining the desired height of the box. In actual use in hospital laboratories, laboratory personnel can adjust the scissor support assembly to the appropriate height based on different work surface heights or their own operating habits, and then secure it using the positioning slots to achieve precise height positioning.

[0016] Preferably, both ends of the lifting cover are equipped with snap hook ends, and both ends of the chassis are equipped with snap ring ends that correspond to and match the positions of the snap hook ends. When transporting or storing the test box, the lifting cover can be tightly fixed to the chassis by fastening the snap hook ends with the snap ring ends, ensuring the stability of the entire test box structure and preventing the lifting cover from loosening or falling off due to bumps during movement. In the hospital laboratory, test boxes may need to be frequently transported between different departments. The stable connection between the snap hook ends and the snap ring ends can effectively prevent the internal items from being damaged due to shaking, ensuring the integrity of the test box during transportation, and also facilitating the quick opening and closing of the lifting cover.

[0017] Beneficial effects of the present invention:

[0018] (1) In the present invention, the body and chassis of the test box constitute its main structure. The box body is divided into multiple instrument areas by partitions, and various types of testing instruments can be placed in an orderly manner; the consumables storage area and reagent storage area on the top of the chassis are used to store the consumables and reagents required for testing. This integrated design enables the test box to carry a complete set of testing equipment and supplies, making it convenient for testers to carry it to hospital wards, emergency rooms and other space-constrained areas. In actual applications, when bedside testing is required for patients, testers can quickly take out the required instruments, consumables and reagents without having to go back and forth to the laboratory to get them, greatly shortening the time from sample collection to testing, improving testing efficiency, and gaining valuable time for clinical diagnosis.

[0019] (2) In the present invention, the lifting cover is connected to the chassis via a scissor-type support assembly, and the consumables storage area and reagent storage area below the lifting cover are covered and protected by the lifting cover. In the transport or non-use state, the lifting cover can fit tightly against the chassis to form a closed space, preventing the stored consumables and reagents from being affected by the external environment, ensuring their quality and stability, reducing the risk of experimental errors caused by environmental factors, and improving the reliability of the test results. When the test box arrives at the site and is ready for pre-test layout, the height of the box can be changed by adjusting the scissor-type support assembly, so that the test personnel can choose a suitable working height according to actual operation requirements, reducing the inconvenience of bending over or standing on tiptoe, and improving work comfort. While adjusting the height, the lifting cover rises, and the consumables storage area and reagent storage area at its bottom are also opened, making it convenient for the test personnel to quickly access the required items. The pre-test preparation work can be carried out simultaneously without additional operation, which significantly improves the efficiency of on-site testing. In particular, when responding to emergency test tasks, the test personnel can quickly enter the working state and provide strong support for timely diagnosis. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described below with reference to the accompanying drawings and examples.

[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0022] Figure 2 for Figure 1 A magnified view of the details of area A.

[0023] Figure 3 It is a cross-sectional view of the box of the present invention.

[0024] Figure 4 It is a schematic diagram of the box cover structure of the present invention.

[0025] Figure 5 This is a schematic diagram of the positioning guide structure of the present invention.

[0026] Figure 6 for Figure 1 A magnified view of the detail of area B.

[0027] Figure 7 It is a schematic structural diagram of the scissor-type support assembly of the present invention.

[0028] In the figure: 1. Box body; 101. Partition; 102. Buffer tank; 103. Pressure sensor; 104. Lock; 105. Channel; 106. Slide; 2. Box cover; 201. Cover frame; 202. Cover plate; 203. Control panel; 204. Buffer pad; 205. Lock; 3. Positioning guide; 301. Slide bar; 302. Slider; 303. Knob; 4. Drawer; 5. Lifting cover; 501. Buckle hook end; 6. Chassis; 601. Consumables storage area; 602. Reagent storage area; 603. Buckle ring end; 7. Storage slot; 701. Rail groove; 702. Positioning card slot; 8. Scissor support assembly; 801. Limiting guide; 802. Support guide; 803. Roller. DETAILED DESCRIPTION

[0029] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0030] like Figure 1-Figure 7As shown, the on-site rapid detection test box described in the present invention includes a box body 1, a box cover 2, a scissor-type support assembly 8 and a chassis 6. Several partitions 101 are fixed inside the box body 1. The interior of the box body 1 is divided into several instrument areas for placing detection instruments by several partitions 101. The box cover 2 is hinged to the side of the top of the box body 1. When the box cover 2 is closed, it can effectively protect the detection instruments in the box body 1 from external collisions, dust, liquids and other contamination, ensuring the accuracy and service life of the instruments. A top cover 5 is fixed to the bottom of the box body 1. The chassis 6 is horizontally arranged directly below the bottom of the top cover 5. The chassis 6 and the top cover 5 are connected by two scissor-type support assemblies 8. The top cover 5 and the chassis 6 are connected by the scissor-type support assembly 8. The consumables storage area 601 and the reagent storage area 602 below the top cover 5 are covered and protected by the top cover 5. When in transport or non-use, the lifting cover 5 can fit tightly against the chassis 6 to form a closed space, preventing the stored consumables and reagents from being affected by the external environment, such as moisture, light, etc., thereby ensuring their quality and stability, reducing the risk of experimental errors caused by environmental factors, and improving the reliability of test results. When the test box arrives at the site and is ready for pre-test arrangements, the height of the box body 1 can be changed by adjusting the scissor-type support assembly 8, so that the tester can choose a suitable working height according to actual operating needs, reducing inconveniences such as bending over or standing on tiptoe, and improving work comfort. While adjusting the height, the lifting cover 5 rises, and the consumable storage area 601 and reagent storage area 602 at the bottom are also opened, making it convenient for the tester to quickly access the required items. The pre-test preparations can be carried out simultaneously without additional operations, which significantly improves the efficiency of on-site testing. Especially when responding to emergency test tasks, it can quickly enter the working state and provide strong support for timely diagnosis.

[0031] Among them, the box cover 2 includes a cover frame 201 and a cover plate 202. The cross section of the cover frame 201 is in the shape of a "mouth". The cover plate 202 is fixed to one side of the cover frame 201. A control panel 203 is fixed in the middle of the cover frame 201. The control panel 203 on the box cover 2 includes a sampling module, a detection module, a data processing module, a result display module, a data storage and communication module, and a power supply module. The modules work closely together to realize the full process automation from sample collection to the output and storage or transmission of test results. The detection module can automatically adapt to the corresponding consumables according to different test items, such as rapid myocardial infarction detection, blood sugar detection, etc., to perform accurate detection; the data processing module quickly analyzes the test data, generates results and displays them intuitively through the result display module, while the data storage module saves the results, and the communication module can transmit the results to the hospital information system for the convenience of doctors to check in time, thus realizing the efficiency, accuracy and convenience of the detection process, reducing the workload of the inspection personnel, and improving the overall work efficiency of the laboratory department;

[0032] Consumables storage areas 601 are provided at both ends of the top of the chassis 6. Several reagent storage areas 602 of varying sizes are provided on the top of the chassis 6 between the two consumables storage areas 601. The body 1 and chassis 6 of the test box constitute its main structure. The body 1 is divided into multiple instrument areas by partitions 101, which can be used to place various types of testing instruments in an orderly manner, such as rapid myocardial infarction detectors, blood glucose meters, etc. At the same time, a test tube rack is provided in the area separated by one of the partitions 101 for convenient placement of test tubes; the consumables storage area 601 and the reagent storage area 602 on the top of the chassis 6 are respectively used to store consumables and reagents required for testing, such as sampling tools, sterile cotton swabs, blood glucose test strips, etc. This integrated design allows the test box to carry a complete set of testing equipment and supplies, making it easy for testers to carry it to other temporary testing sites in the hospital, such as wards, emergency rooms, and other space-constrained areas. In actual applications, when bedside testing is required for patients, testing personnel can quickly retrieve the required instruments, consumables and reagents without having to go back and forth to the laboratory to get them, greatly shortening the time from sample collection to testing, improving testing efficiency, and gaining valuable time for clinical diagnosis.

[0033] A further improvement of this embodiment is that a plurality of drawers 4 are provided on one side of the box body 1 near the top cover 5 for pulling out. Each of the drawers 4 is connected to the box body 1 by means of slide rails. Each of the drawers 4 is fixed with a handle on one end for convenient pulling out. During on-site testing in the hospital laboratory department, the required consumables and reagents can be selected from the chassis 6 and placed in the drawers 4 according to actual testing needs. These commonly used items are centrally placed for easy access by the tester, avoiding the scramble caused by searching for items during the test process and improving the smoothness of the test operation. In actual application, the drawers 4 are designed with a magnetic attraction. When closed, they are magnetically attached to the box body 1, effectively preventing the drawers 4 from sliding out when the test box is moved, protecting the items inside from damage. The provision of slide rails and handles not only makes the opening and closing of the drawers 4 smoother, but the convenient design of the handles makes it easy for the tester to operate, even wearing gloves, and can be easily pulled out and drawn, ensuring that the required items can be quickly obtained in an emergency, providing a strong guarantee for on-site testing.

[0034] A further improvement of this embodiment is that a lock buckle 205 is installed on the side of the cover frame 201 away from the cover plate 202, and a lock head 104 corresponding to and adapted to the lock buckle 205 and requiring a key to activate is installed near the top of the box body 1. In the hospital laboratory department, the testing instruments, consumables and reagents stored in the test box are often of high value and important. The use of the lock buckle 205 and the lock head 104 can effectively prevent the test box from being opened at will when not in operation, avoid the instrument from being stolen or damaged by misoperation by non-professionals, and ensure the safety of testing equipment and materials.

[0035] A further improvement of this embodiment is that cushion pads 204 are fixed to both ends of the cover frame 201 on the side closest to the box body 1. Buffer grooves 102 corresponding in position and size to the cushion pads 204 are provided at both ends of the top of the box body 1. When the box cover 2 is closed, the cushion pads 204 fit into the cushion grooves 102, providing a cushioning and shock-absorbing effect. During routine handling or movement within the hospital laboratory department, the test box is inevitably subject to bumps and collisions. The provision of cushion pads 204 and cushion grooves 102 effectively reduces the impact force between the box cover 2 and the box body 1, protecting the control panel 203 on the box cover 2 and the testing instruments within the box body 1 from vibration damage.

[0036] A further improvement of this embodiment is that a pressure sensor 103 is provided in the buffer tank 102, and the pressure sensor 103 is associated with the switch of the control panel 203. When the box lid 2 is closed, the cushion 204 presses against the pressure sensor 103, and the control panel 203 automatically shuts down after receiving the signal, entering energy-saving mode. Conversely, when the box lid 2 is opened, the pressure sensor 103 detects the disappearance of pressure, and the control panel 203 automatically turns on, making it convenient for the inspector to operate immediately. In the fast-paced working environment of the hospital laboratory department, this intelligent switch control greatly improves work efficiency, avoids the tedious manual operation of the inspector to turn the machine on and off, and ensures that the inspection equipment can be on standby at any time. At the same time, the shutdown state can effectively save energy and reduce equipment energy consumption.

[0037] A further improvement of this embodiment is that grooves 105 are provided at both ends of the outside of the box body 1, and slide grooves 106 are provided in the two grooves 105. Positioning guide plates 3 are intersected and matched at both ends of the cover frame 201. The two positioning guide plates 3 are horizontally rotated and matched with slide rods 301 at one end away from the cover frame 201. The two slide rods 301 are respectively slidably matched in the two grooves 105. Slide blocks 302 are installed at one end of the two slide rods 301 away from the positioning guide plates 3. The two slide blocks 302 are respectively slidably matched in the two slide grooves 106. The slide blocks 302 slide in the slide grooves 106, which limits the left and right swinging of the box cover 2 and maintains the linearity of the opening and closing process.

[0038] A further improvement of this embodiment is that the slider 302 is an elongated structure, with both ends of the slider 302 being arc-shaped. The upper and lower widths of the slider 302 are smaller than the upper and lower widths of the chute 106, and the length of the slider 302 is greater than or equal to the upper and lower widths of the chute 106. A knob 303 capable of driving the slide bar 301 to rotate is installed on one side of the positioning guide 3. By turning the knob 303, the slider 302 can be driven to rotate and can be stuck in the chute 106. By adjusting the state of the slider 302 by the knob 303, the angle of the box cover 2 can be fixed, making it convenient for inspectors to adjust the opening and closing angle of the box cover 2 according to actual operational requirements. For example, when performing certain operations that require observing the control panel 203, the box cover 2 can be fixed at a suitable angle for easy viewing and operation, thereby improving ease of use and stability.

[0039] A further improvement of this embodiment is that storage grooves 7 are provided on both sides of the bottom of the lifting cover 5 and on both sides of the top of the chassis 6, and a rail groove 701 is provided horizontally in each storage groove 7. A number of positioning card grooves 702 are provided at equal intervals upward in the rail groove 701 of the storage groove 7 at the bottom of the lifting cover 5, and a number of positioning card grooves 702 are provided at equal intervals downward in the rail groove 701 of the storage groove 7 at the top of the chassis 6.

[0040] A further improvement of this embodiment is that the scissor-type support assembly 8 includes a limiting guide plate 801 and a supporting guide plate 802. The limiting guide plate 801 and the supporting guide plate 802 are hinged in the middle, and the upper and lower ends of the supporting guide plate 802 are respectively hinged to fit in the receiving groove 7 at the bottom of the lifting cover 5 and the receiving groove 7 at the top of the chassis 6. Both sides of the two ends of the limiting guide plate 801 are rotated with rollers 803. The top of the limiting guide plate 801 moves and fits in the receiving groove 7 of the lifting cover 5. The roller 803 on the top of the plate 801 rolls and fits in the rail groove 701 of the storage groove 7 at the bottom of the lifting cover 5, and the bottom end of the limiting guide plate 801 moves and fits in the storage groove 7 of the chassis 6. The roller 803 at the bottom of the limiting guide plate 801 rolls and fits in the rail groove 701 of the storage groove 7 at the top of the chassis 6. When there is no need to adjust the height of the box body 1, the scissor-type support assembly 8 can be folded and stored in the storage groove 7, so that the lifting cover 5 and the chassis 6 are completely fitted, ensuring that the upper space of the chassis 6 is closed. In the limited space of the hospital laboratory, this compact storage design makes the test box take up less space and is convenient for storage and transportation. At the same time, the closed nature of the storage groove 7 can also prevent dust and debris from entering the interior of the scissor-type support assembly 8, affecting its performance and service life, ensuring that the test box can be normally unfolded and adjusted when it is used next time, providing reliable equipment support for the inspection work. The setting of the rail groove 701 enables the two ends of the limiting guide plate 801 in the scissor-type support assembly 8 to move therein, thereby realizing the lifting and lowering adjustment of the scissor-type support assembly 8. The setting of the positioning slot 702 enables the roller 803 at the end of the limiting guide plate 801 to be engaged, thereby fixing the height of the scissor-type support assembly 8 and keeping the box body 1 at the required height. In actual use in the hospital laboratory, the inspector can adjust the scissor-type support assembly 8 to the appropriate height and fix it with the positioning slot 702 according to different work surface heights or their own operating habits to achieve precise height positioning. This design not only improves the flexibility of the use of the test box, but also ensures working stability, avoids shaking of the instrument due to height instability during the test process, and affects the accuracy of the test results, provides reliable height adjustment guarantee for the test work, and meets the use requirements in different scenarios.

[0041] A further improvement of this embodiment is that both ends of the lifting cover 5 are equipped with snap hook ends 501, and both ends of the chassis 6 are equipped with snap ring ends 603 corresponding to and compatible with the snap hook ends 501. When transporting or storing the test box, the lifting cover 5 can be tightly fixed to the chassis 6 by fastening the snap hook ends 501 with the snap ring ends 603, ensuring the stability of the entire test box structure, preventing the lifting cover 5 from loosening or falling off due to bumps during movement, and protecting the safety of the instruments, consumables and reagents inside the box. In the hospital laboratory, test boxes may need to be frequently transported between different departments. The stable connection between the snap hook ends 501 and the snap ring ends 603 can effectively prevent the internal items from being damaged due to shaking, ensuring the integrity of the test box during transportation. It also facilitates the rapid opening and closing of the lifting cover 5, improves work efficiency, and provides reliable equipment support for rapid on-site testing.

[0042] The on-site rapid detection test box of the present invention is suitable for a variety of small-scale rapid detection projects. For example, in the rapid detection of myocardial infarction, it is equipped with a rapid myocardial infarction detector and a matching reagent card, and uses immunochromatography technology to quickly detect biomarkers such as myocardial protein, providing a basis for diagnosing heart diseases such as myocardial infarction; when testing blood sugar, the built-in blood glucose meter is combined with blood glucose test strips to quickly detect blood sugar levels and assist in the diagnosis of diabetes and abnormal blood sugar; for sampling and disinfection, disinfection tools and equipment such as sterile cotton swabs and alcohol cotton pads are stored in the box to ensure aseptic operation during the sampling process and prevent cross infection. These small instruments and related tools can be conveniently placed in the test box to meet the needs of on-site rapid detection.

[0043] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above-described embodiments. The above-described embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An on-site rapid detection test box, comprising a box body (1), a box cover (2), a scissor support assembly (8) and a chassis (6), characterized in that: A plurality of partitions (101) are fixed inside the box (1), and a plurality of instrument areas for placing detection instruments are divided inside the box (1) by the plurality of partitions (101). The box cover (2) is hingedly connected to one side of the top of the box (1). A lifting cover (5) is fixed to the bottom of the box (1). The chassis (6) is horizontally arranged directly below the bottom of the lifting cover (5), and the chassis (6) and the lifting cover (5) are connected and matched by two scissor-type support assemblies (8); The box cover (2) comprises a cover frame (201) and a cover plate (202); the cross section of the cover frame (201) is in the shape of a "mouth"; the cover plate (202) is fixed to one side of the cover frame (201); and a control panel (203) is fixed in the middle of the cover frame (201); Both ends of the top of the chassis (6) are provided with consumable material storage areas (601), and a plurality of reagent storage areas (602) of different sizes are provided on the top of the chassis (6) between the two consumable material storage areas (601).

2. The on-site rapid detection test box according to claim 1, characterized in that: A plurality of drawers (4) are provided on one side of the box body (1) near the top cover (5) for pulling out and cooperating. The drawers (4) are all coupled with the box body (1) by means of slide rails. A handle for convenient pulling out is fixed on one end of the outside of the drawers (4).

3. The on-site rapid detection test box according to claim 1, characterized in that: A lock catch (205) is installed on one side of the cover frame (201) away from the cover plate (202), and a lock head (104) corresponding to and adapted to the lock catch (205) and requiring a key to be activated is installed near the top of the box body (1).

4. The on-site rapid detection test box according to claim 1, characterized in that: Buffer pads (204) are fixed at both ends of the cover frame (201) on the side close to the box body (1), and buffer grooves (102) corresponding to the positions of the buffer pads (204) and having sizes suitable for the buffer pads (204) are provided at both ends of the top of the box body (1).

5. The on-site rapid detection test box according to claim 4, characterized in that: A pressure sensor (103) is provided in the buffer tank (102), and the pressure sensor (103) is associated with a switch of the control panel (203).

6. The on-site rapid detection test box according to claim 1, characterized in that: Both ends of the outer portion of the box body (1) are provided with grooves (105), and both ends of the two grooves (105) are provided with sliding grooves (106). Both ends of the cover frame (201) are intersected and matched with positioning guide plates (3). The ends of the two positioning guide plates (3) away from the cover frame (201) are horizontally rotated and matched with sliding rods (301). The two sliding rods (301) are respectively slidably matched in the two grooves (105). The ends of the two sliding rods (301) away from the positioning guide plates (3) are both installed with sliders (302), and the two sliders (302) are respectively slidably matched in the two sliding grooves (106).

7. The on-site rapid detection test box according to claim 6, characterized in that: The slider (302) is a long strip structure, and both ends of the slider (302) are arc-shaped structures. The upper and lower widths of the slider (302) are smaller than the upper and lower widths of the slide groove (106), and the length of the slider (302) is greater than or equal to the upper and lower widths of the slide groove (106). A knob (303) capable of driving the slide rod (301) to rotate is installed on one side of the positioning guide plate (3). By rotating the knob (303), the slider (302) can be driven to rotate and the slider (302) can be stuck in the slide groove (106).

8. The on-site rapid detection test box according to claim 1, characterized in that: Both sides of the bottom of the lifting cover (5) and both sides of the top of the chassis (6) are provided with receiving grooves (7), and a rail groove (701) is horizontally provided in each receiving groove (7). A plurality of positioning slots (702) are provided upwardly at equal intervals in the rail groove (701) of the receiving groove (7) at the bottom of the lifting cover (5), and a plurality of positioning slots (702) are provided downwardly at equal intervals in the rail groove (701) of the receiving groove (7) at the top of the chassis (6).

9. The on-site rapid detection test box according to claim 1, characterized in that: The scissor-type support assembly (8) includes a limiting guide plate (801) and a supporting guide plate (802). The limiting guide plate (801) and the supporting guide plate (802) are hinged in the middle. The upper and lower ends of the supporting guide plate (802) are respectively hinged and matched in the receiving groove (7) at the bottom of the top cover (5) and the receiving groove (7) at the top of the chassis (6). Both sides of the two ends of the limiting guide plate (801) are rotatably matched with rollers (803). The limiting guide plate (801) The top end of the position limiting guide plate (801) is movably engaged in the receiving groove (7) of the lifting cover (5), the roller (803) at the top of the position limiting guide plate (801) is rolling engaged in the rail groove (701) of the receiving groove (7) at the bottom of the lifting cover (5), the bottom end of the position limiting guide plate (801) is movably engaged in the receiving groove (7) of the chassis (6), and the roller (803) at the bottom of the position limiting guide plate (801) is rolling engaged in the rail groove (701) of the receiving groove (7) at the top of the chassis (6).

10. The on-site rapid detection test box according to claim 1, characterized in that: Both ends of the lifting cover (5) are equipped with buckle hook ends (501), and both ends of the chassis (6) are equipped with buckle ring ends (603) corresponding to and matching the buckle hook ends (501).