Chemiluminescence immunoassay device
By designing an automated chemiluminescence immunoassay device, the mechanized operation of samples shake, open cover, mix, incubate, separation and detection is realized, which solves the problem of inefficiency in the existing technology, improves work efficiency, and meets the needs of clinical testing.
Patent Information
- Application Number
- CN202421303262.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-07
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-06-07
AI Technical Summary
The existing chemiluminescence immunoassays are inefficient and cannot meet the clinical testing needs, especially when it relies on manual operations for shaking the sample and opening the sample bottle.
A chemiluminescence immunoassay device is designed, including a first shake assembly, an open cover assembly, a reagent assembly, a hopper chamber, a second shake assembly, an incubation assembly, a separation assembly and a detection assembly, and the sample shake, open cover, mix, incubation, separation and detection assembly are automatically completed through mechanized methods.
It improves the working efficiency of chemiluminescence immunoassays, reduces manual operations, and meets the needs of clinical testing.
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Figure CN223217378U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of chemiluminescence detection, and in particular to a chemiluminescence immunoassay device. Background Art
[0002] A chemiluminescent immunoassay instrument is an immunoassay device that uses a chemiluminescent agent to label antigens or antibodies. It is widely used in clinical diagnostic testing due to its high sensitivity, wide linear range, high precision, and ease of automation. The workflow of a chemiluminescent immunoassay instrument mainly includes sample loading, reagent loading, sample and reagent injection, reaction solution mixing, reaction solution incubation, magnetic separation, cleaning and separation, substrate luminescent solution injection, and photometry. In related technologies, when performing luminescent immunoassay on a sample, the staff first shakes the sample solution in the sample bottle, then manually opens the lid of the sample bottle and places the sample solution into the chemiluminescent immunoassay instrument for testing. The luminescent immunoassay instrument has low working efficiency and cannot meet clinical needs. Summary of the Invention
[0003] Based on this, it is necessary to provide a chemiluminescence immunoassay device to address the problem that the existing luminescence immunoassay analyzers have low working efficiency and cannot meet clinical needs.
[0004] A chemiluminescent immunoassay device for performing luminescent immunoassay on a sample liquid in a sample bottle, characterized in that the chemiluminescent immunoassay device comprises:
[0005] A first shaking assembly is used to clamp the sample bottle and drive the sample bottle to move;
[0006] an opening cover assembly, disposed on one side of the first shaking assembly along a first direction, wherein the first direction is a direction of gravity, and the opening cover assembly is used to open the sample bottle;
[0007] A reagent assembly, comprising a reagent bottle for containing a reaction solution;
[0008] A hopper bin, comprising a reaction cup for containing a mixed solution of the sample liquid and the reaction liquid;
[0009] A second shaking component is used to drive the reaction cup to move;
[0010] an incubation component, used for incubating the mixed solution in the reaction cup to cause a chemical reaction to occur in the mixed solution;
[0011] A separation component, used for separating impurities in the mixed solution;
[0012] The detection component is used to detect the mixed solution.
[0013] In one embodiment, the first shaking assembly includes a first power component, a second power component, a third power component and a first clamp;
[0014] The second power component is connected to the power output end of the first power component, the third power component is connected to the power output end of the second power component, and the first clamp is connected to the power output end of the third power component;
[0015] The first power component is used to drive the second power component to move along the first direction, the second power component is used to drive the third power component to move along the second direction, and the third power component is used to drive the first clamp to move, and the second direction is perpendicular to the first direction.
[0016] In one embodiment, the cover opening assembly includes a fourth power component, a fifth power component, a sixth power component and a second clamping claw;
[0017] The fifth power component and the sixth power component are both connected to the power output end of the fourth power component, the power output end of the fifth power component is connected to the second clamping claw, and the power output end of the sixth power component is connected to the second clamping claw;
[0018] The fourth power component drives the fifth power component and the sixth power component to move along the first direction, the fifth power component drives the second clamping jaw to rotate around the axis of the sample bottle, and the sixth power component drives the claw of the second clamping jaw to move radially along the sample bottle.
[0019] In one embodiment, the chemiluminescent immunoassay device further includes a complete machine frame, and the cover opening assembly, the reagent assembly, the hopper bin, the second shaking assembly, the incubation assembly, the separation assembly, and the detection assembly are all connected to the complete machine frame;
[0020] The entire machine frame includes a top frame, a bottom panel, a front frame, a rear frame, a first side frame and a second side frame. The top frame and the bottom panel are arranged at intervals along the first direction, the front frame and the rear frame are arranged at intervals along the second direction, the front frame and the rear frame are both located between the top frame and the bottom panel, the first side frame and the second side frame are arranged at intervals along the third direction, the first side frame and the second side frame are both located between the front frame and the rear frame, and the first direction, the second direction and the third direction are perpendicular to each other.
[0021] In one embodiment, the first shaking assembly is located on one side of the entire machine frame along the second direction and is connected to the front frame;
[0022] The lid opening assembly is located on a side of the first shaking assembly close to the top frame along the first direction and is fixedly connected to the front frame;
[0023] The incubation assembly is fixedly connected to the bottom panel, and the incubation assembly is located on a side of the cover opening assembly close to the second side frame, and is spaced apart on a side of the rear frame close to the front frame along the second direction;
[0024] The detection component, the second shaking component, and the separation component are all fixedly connected to the bottom panel, and are configured to be arranged in sequence along the third direction at intervals on a side of the incubation component away from the second side frame;
[0025] The hopper bin is located on one side of the separation assembly along the first direction and is connected to the top frame;
[0026] The reagent assembly is fixedly connected to the bottom panel, and the reagent assembly is located on a side of the separation assembly close to the front frame along the second direction.
[0027] In one embodiment, the chemiluminescent immunoassay device further includes a first grabbing assembly, the first grabbing assembly being located on a side of the incubation assembly facing away from the bottom panel, the first grabbing assembly being connected to the second side frame, and the first grabbing assembly including a seventh power component, an eighth power component, and a first liquid containing component;
[0028] The eighth power component is connected to the power output end of the seventh power component, and the first liquid container assembly is connected to the power output end of the eighth power component;
[0029] The seventh power component drives the eighth power component to move along the second direction, and the eighth power component drives the first liquid container component to move along the first direction. The first liquid container component is used to inject the sample liquid in the sample bottle into the reaction cup.
[0030] In one embodiment, the chemiluminescent immunoassay device further includes a consumable component, which includes a first pipette needle, the first pipette needle is connected to the inner cavity of the first liquid-containing component, and the sample liquid enters the inner cavity of the first liquid-containing component from the first pipette needle.
[0031] In one embodiment, the chemiluminescent immunoassay device further includes a second grabbing assembly connected to the top frame, the second grabbing assembly including a virtual straight line, a ninth power component, a tenth power component, and a second solution component;
[0032] The virtual straight line passes through the center of the reagent assembly and the center of the incubation assembly, the tenth power component is connected to the power output end of the ninth power component, and the second solution component is connected to the power output end of the tenth power component;
[0033] The ninth power component drives the tenth power component to move in a direction parallel to the virtual straight line. The tenth power component drives the second solution component to move in the first direction. The second solution component is used to inject the reaction solution in the reagent bottle into the reaction cup.
[0034] In one embodiment, the chemiluminescent immunoassay device further includes a third gripping assembly, the third gripping assembly being located on a side of the separation assembly away from the bottom panel along the first direction, the third gripping assembly including an eleventh power component, a twelfth power component, and a third clamping claw;
[0035] The twelfth power component is connected to the power output end of the eleventh power component, and the third clamp is connected to the power output end of the twelfth power component;
[0036] The eleventh power component drives the twelfth power component to move along the third direction, and the twelfth power component drives the third clamping jaw to move along the first direction. The third clamping jaw is used to clamp the reaction cup and drive the reaction cup to move.
[0037] In one embodiment, the chemiluminescence immunoassay device further includes a blood detection component, and the blood detection component is used to detect blood in the sample liquid.
[0038] In this embodiment, when the chemiluminescence immunoassay device is working, first the first shaking component drives the sample bottle to move and shake the sample liquid in the sample bottle, then the cover opening component opens the sample bottle, the staff takes a reaction cup from the hopper bin, and pours the sample liquid in the sample bottle and the reaction liquid in the reagent bottle into a reaction cup at the same time, then the staff places the reaction cup in the second shaking component to mix the sample liquid and the reaction liquid, and when the sample liquid and the reaction liquid are mixed, the reaction cup is placed in the incubation component, and the incubation component incubates the mixed solution of the sample liquid and the reaction liquid in the reaction cup, so that the mixed solution undergoes a chemical reaction, further, the staff separates impurities in the mixed solution through the separation component, and finally, the staff places the reaction cup in the second shaking component again, the second shaking component mixes the mixed solution in the reaction cup, and the detection component detects the mixed solution in the reaction cup. In summary, the above-mentioned chemiluminescence immunoassay device shakes the sample liquid in the sample bottle by setting a first shaking component and opens the sample bottle by a lid opening component, thereby eliminating the need for staff to manually shake the sample liquid in the sample bottle and manually open the sample bottle when performing luminescence immunoassay on the sample. The chemiluminescence immunoassay device has high working efficiency and can meet clinical needs. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the conventional technology, the following briefly introduces the drawings required for use in the embodiments or the conventional technology descriptions. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0040] Figure 1 Schematic diagram of the structure of a chemiluminescence immunoassay device in one embodiment of the present application.
[0041] Figure 2 Schematic diagram of the structure of a chemiluminescence immunoassay device in one embodiment of the present application.
[0042] Figure 3 for Figure 1 Top view of the chemiluminescent immunoassay device shown in .
[0043] Figure 4 for Figure 2 Schematic diagram of the structure of the framework shown in .
[0044] Figure 5 for Figure 1 The structural diagram of the first shaking component is shown in FIG.
[0045] Figure 6 for Figure 5 Left view of the first shaking assembly shown in .
[0046] Figure 7 for Figure 1 The structural diagram of the cover opening assembly is shown in FIG.
[0047] Figure 8 for Figure 1 The front view of the cover opening assembly is shown in FIG.
[0048] Figure 9 for Figure 1 A top view of the reagent assembly is shown in FIG.
[0049] Figure 10 for Figure 3 The front view of the second shaking assembly shown in .
[0050] Figure 11 for Figure 10 The structural diagram of the second shaking component is shown in FIG.
[0051] Figure 12 for Figure 3 Schematic diagram of the structure of the incubation assembly shown in .
[0052] Figure 13 for Figure 12 Front view of the incubation assembly shown in .
[0053] Figure 14 for Figure 1 Schematic diagram of the structure of the separation component shown in.
[0054] Figure 15 for Figure 14 Front view of the separated components shown in .
[0055] Figure 16 for Figure 3 Schematic diagram of the structure of the detection component shown in .
[0056] Figure 17 for Figure 1 Schematic diagram of the structure of the first grabbing component shown in .
[0057] Figure 18 for Figure 1 Schematic diagram of the structure of the consumable components shown in .
[0058] Figure 19 for Figure 3 Schematic diagram of the structure of the second grabbing component shown in .
[0059] Figure 20 for Figure 3 Schematic diagram of the structure of the second grabbing component shown in .
[0060] Figure 21 for Figure 1 Schematic diagram of the structure of the third grabbing component shown in .
[0061] Reference numerals:
[0062] First shaking assembly 100, first power component 110, first support base 111, first driving member 112, first transmission belt 113, first slider 114, first rotating shaft 115, second power component 120, third power component 130, first clamping jaw 140;
[0063] Cover opening assembly 200, fourth power component 210, second support base 211, fourth driving member 212, second rotating shaft 213, second slider 214, fifth power component 220, third support base 221, fifth driving member 222, sixth power component 230, fourth support base 231, sixth driving member 232, second clamping jaw 240, claw piece 241, clamping jaw base 242;
[0064] Reagent assembly 300, reagent disk 310, reagent well 311;
[0065] Hopper bin 400;
[0066] The second shaking assembly 500, the fifth support base 510, the shaking drive member 520, the shaking base 530, and the shaking hole 531;
[0067] Incubation assembly 600, first housing 610, first through slot 611, first turntable 620, incubation hole 621, third rotating shaft 630, first rotating member 640, second conveyor belt 650;
[0068] Separation assembly 700, sixth support base 710, fourth rotating shaft 720, separation disc 730, separation hole 731, second rotating member 740, third transmission belt 750;
[0069] Detection assembly 800, detection hole 810;
[0070] The whole machine frame 900, the top frame 910, the bottom panel 920, the front frame 930, the rear frame 940, the first side frame 950, and the second side frame 960;
[0071] First grabbing assembly 1000, seventh power component 1010, seventh support base 1011, seventh driving member 1012, third slider 1013, eighth power component 1020, eighth driving member 1021, fifth rotating shaft 1022, fourth slider 1023, first liquid containing assembly 1030;
[0072] Consumables assembly 1100, consumables holder 1101, consumables hole 1102;
[0073] Second grabbing assembly 1200, virtual line 1210, ninth power component 1220, eighth support base 1221, ninth driving member 1222, sixth rotating shaft 1223, fourth conveyor belt 1224, fifth slider 1225, tenth power component 1230, tenth driving member 1231, seventh rotating shaft 1232, fifth conveyor belt 1233, sixth slider 1234, second solution assembly 1240;
[0074] The third grabbing assembly 1300, the eleventh power component 1310, the ninth support seat 1311, the eleventh driving component 1312, the eighth rotating shaft 1313, the sixth transmission belt 1314, the seventh slider 1315, the twelfth power component 1320, the third clamp 1330, the thirteenth power component 1340, the thirteenth driving component 1341, the ninth rotating shaft 1342, the seventh transmission belt 1343, and the eighth slider 1344. DETAILED DESCRIPTION
[0075] To make the above-mentioned objects, features, and advantages of the present application more clearly understood, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings. The following description sets forth many specific details to facilitate a full understanding of the present application. However, the present application can be implemented in many other ways than those described herein, and those skilled in the art can make similar improvements without violating the scope of the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.
[0076] In the description of this application, it should be understood that if the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. appear, the orientation or position relationship indicated by these terms is based on the orientation or position relationship shown in the accompanying drawings, which is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.
[0077] In addition, if the terms "first" or "second" appear, these terms are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include at least one of such features. In the description of this application, if the term "plurality" appears, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.
[0078] In this application, unless otherwise specified or limited, the terms "mounted," "connected," "connected," "fixed," etc., should be interpreted broadly. For example, these terms may refer to fixed connections, removable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediary; and internal communication between two components or interaction between two components, unless otherwise specified. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.
[0079] In this application, unless otherwise expressly specified or limited, if a first feature is described as being "above" or "below" a second feature, or similar descriptions, this may mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. Furthermore, when a first feature is described as being "above," "above," or "above" a second feature, it may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is at a higher level than the second feature. When a first feature is described as being "below," "below," or "below" a second feature, it may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature is at a lower level than the second feature.
[0080] It should be noted that if an element is referred to as being "fixed to" or "disposed on" another element, it may be directly on the other element or there may be an intermediate element. If an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. If any, the terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used in this application are for illustrative purposes only and do not represent the only embodiment.
[0081] See also Figures 1 to 4 , Figure 1A schematic structural diagram of a chemiluminescent immunoassay device in one embodiment of the present application is shown. The chemiluminescent immunoassay device provided in one embodiment of the present application is used to perform luminescent immunoassay on a sample liquid (not shown) in a sample bottle (not shown). The chemiluminescent immunoassay device includes a first shaking component 100, a lid opening component 200, a reagent component 300, a hopper bin 400, a second shaking component 500, an incubation component 600, a separation component 700, and a detection component 800. The first shaking assembly 100 is used to clamp the sample bottle and drive the sample bottle to move. The cover opening assembly 200 is arranged on one side of the first shaking assembly 100 along the first direction, the first direction is the direction of gravity, and the cover opening assembly 200 is used to open the sample bottle. The reagent assembly 300 includes a reagent bottle (not shown) for containing a reaction liquid (not shown). The hopper bin 400 includes a reaction cup (not shown) for containing a mixed solution of the sample liquid and the reaction liquid. The second shaking assembly 500 is used to drive the reaction cup to move. The incubation assembly 600 is used to incubate the mixed solution in the reaction cup so that the mixed solution undergoes a chemical reaction. The separation assembly 700 is used to separate impurities in the mixed solution. The detection assembly 800 is used to detect the mixed solution.
[0082] In this embodiment, when the chemiluminescence immunoassay device is working, first the first shaking component 100 drives the sample bottle to move and shake the sample liquid in the sample bottle, then the lid opening component 200 opens the sample bottle, and the staff takes a reaction cup from the hopper bin 400, and pours the sample liquid in the sample bottle and the reaction liquid in the reagent bottle into a reaction cup at the same time, then the staff places the reaction cup in the second shaking component 500 to mix the sample liquid and the reaction liquid, and when the sample liquid and the reaction liquid are mixed, the reaction cup is placed in the incubation component 600, and the incubation component 600 incubates the mixed solution of the sample liquid and the reaction liquid in the reaction cup, so that the mixed solution undergoes a chemical reaction, further, the staff separates impurities in the mixed solution through the separation component 700, and finally, the staff places the reaction cup in the second shaking component 500 again, and the second shaking component 500 mixes the mixed solution in the reaction cup, and the detection component 800 detects the mixed solution in the reaction cup. In summary, the above-mentioned chemiluminescence immunoassay device shakes the sample liquid in the sample bottle by setting the first shaking component 100 and opens the sample bottle by the lid opening component 200, thereby eliminating the need for staff to manually shake the sample liquid in the sample bottle and manually open the sample bottle when performing luminescent immunoassay on the sample. The chemiluminescence immunoassay device has high working efficiency and can meet clinical needs.
[0083] See also Figure 5 and Figure 6In some embodiments, the first shaking assembly 100 includes a first power component 110, a second power component 120, a third power component 130 and a first clamp 140. The second power component 120 is connected to the power output end of the first power component 110, the third power component 130 is connected to the power output end of the second power component 120, and the first clamp 140 is connected to the power output end of the third power component 130. The first power component 110 is used to drive the second power component 120 to move in a first direction, the second power component 120 is used to drive the third power component 130 to move in a second direction, and the third power component 130 is used to drive the first clamp 140 to move, and the second direction is perpendicular to the first direction.
[0084] In this embodiment, when the chemiluminescent immunoassay device is working, the first power component 110 drives the second power component 120 to approach the sample bottle in the first direction, and the second power component 120 drives the third power component 130 connected thereto to move synchronously. During this process, the second power component 120 outputs movement in the second direction to make the third power component 130 approach the sample bottle in the second direction. When the first clamping jaw 140 clamps the sample bottle, the first power component 110 and the second power component 120 stop moving, and the third power component 130 drives the first clamping jaw 140 to move, and the first clamping jaw 140 drives the sample bottle to move, thereby shaking the sample liquid in the sample bottle. In summary, the above-mentioned chemiluminescent immunoassay device drives the third power component 130 to approach the sample bottle through the first power component 110 and the second power component 120, and the third power component 130 drives the first clamping jaw 140 to shake the sample liquid in the sample bottle, so that the staff saves the operation of manually shaking the sample liquid in the sample bottle when performing luminescent immunoassay on the sample, thereby improving the working efficiency of the chemiluminescent immunoassay device.
[0085] In some embodiments, the first power component 110 includes a first support base 111, a first driving member 112, a first transmission belt 113, a first slider 114, and a first rotating shaft 115. The first support base 111 extends along a first direction. The first driving member 112 and the first rotating shaft 115 are spaced apart and arranged on both sides of the first support base 111 along the first direction. The first transmission belt 113 is sleeved between the power output shaft of the first driving member 112 and the first rotating shaft 115.
[0086] The first slider 114 is connected to the first transmission belt 113, the second power component 120 is connected to the first slider 114, the power output shaft of the second power component 120 outputs movement along the second direction, the third power component 130 is connected to the power output shaft of the second power component 120, the power output shaft of the third power component 130 extends along the second direction and can rotate around its own axis, and the first clamp 140 is connected to the power output shaft of the third power component 130.
[0087] See also Figure 7 and Figure 8 In some embodiments, the lid opening assembly 200 includes a fourth power component 210, a fifth power component 220, a sixth power component 230 and a second clamp 240. The fifth power component 220 and the sixth power component 230 are both connected to the power output end of the fourth power component 210, the power output end of the fifth power component 220 is connected to the second clamp 240, and the power output end of the sixth power component 230 is connected to the second clamp 240. The fourth power component 210 drives the fifth power component 220 and the sixth power component 230 to move in the first direction, the fifth power component 220 drives the second clamp 240 to rotate around the axis of the sample bottle, and the sixth power component 230 drives the claw 241 of the second clamp 240 to move radially along the sample bottle.
[0088] In this embodiment, when the chemiluminescence immunoassay device is working, the fourth power component 210 first drives the fifth power component 220 and the sixth power component 230 to approach the sample bottle along the first direction, thereby causing the second clamping jaw 240 connected to the fifth power component 220 to approach the sample bottle along the first direction, and then the sixth power component 230 drives the claw piece 241 of the second clamping jaw 240 to move along the radial direction of the sample bottle, so that the claw piece 241 clamps the lid of the sample bottle (not shown), and finally the fifth power component 220 drives the second clamping jaw 240 to rotate around the axis of the sample bottle, and the second clamping jaw 240 clamps the lid of the sample bottle and rotates around the axis of the sample bottle, thereby opening the sample bottle. To summarize, the above-mentioned chemiluminescent immunoassay device drives the second clamp 240 to approach the sample bottle through the fourth power component 210, the sixth power component 230 drives the claw 241 of the second clamp 240 to clamp the lid of the sample bottle, and the fifth power component 220 drives the second clamp 240 to clamp the lid of the sample bottle and rotate to open the sample bottle, so that when the staff performs luminescent immunoassay on the sample, the operation of manually opening the sample bottle is eliminated, thereby improving the working efficiency of the chemiluminescent immunoassay device.
[0089] In some embodiments, the fourth power component 210 includes a second support base 211, a fourth drive member 212, a second rotating shaft 213, and a second slider 214, the fifth power component 220 includes a third support base 221 and a fifth drive member 222, the sixth power component 230 includes a fourth support base 231 and a sixth drive member 232, the second clamping jaw 240 includes a claw piece 241 and a clamping jaw seat 242, the second support base 211 extends along the first direction, the fourth drive member 212 is connected to the second support base 211, the second rotating shaft 213 is connected to the power output end of the fourth drive member 212, the second rotating shaft 213 extends along the first direction, and can rotate around its own axis under the drive of the fourth drive member 212 The second slider 214 is sleeved on the second rotating shaft 213, and the two are threadedly connected. The third support seat 221 and the fourth support seat 231 are arranged at intervals on both sides of the second slider 214 along the first direction, and are both connected to the second slider 214. The fifth driving member 222 is connected to the third support seat 221, and the sixth driving member 232 is connected to the fourth support seat 231. The power output shaft of the fifth driving member 222 extends along the first direction and can rotate around its own axis. The clamping claw seat 242 is connected to the power output shaft of the fifth driving member 222, and the clamping claw seat 242 is slidably connected with a claw piece 241. The sixth driving member 232 is connected to the claw piece 241 and can drive the claw piece 241 to move radially along the clamping claw seat 242.
[0090] See also Figure 4 In some embodiments, the chemiluminescent immunoassay device further includes a whole machine frame 900, the cover opening assembly 200, the reagent assembly 300, the hopper bin 400, the second shaking assembly 500, the incubation assembly 600, the separation assembly 700 and the detection assembly 800 are all connected to the whole machine frame 900, and the whole machine frame 900 includes a top frame 910, a bottom panel 920, a front frame 930, a rear frame 940, a first side frame 950 and a second side frame 960. The top frame 910 is connected to The bottom panel 920 is arranged at intervals along the first direction, the front frame 930 and the rear frame 940 are arranged at intervals along the second direction, and the front frame 930 and the rear frame 940 are both located between the top frame 910 and the bottom panel 920. The first side frame 950 and the second side frame 960 are arranged at intervals along the third direction, and the first side frame 950 and the second side frame 960 are both located between the front frame 930 and the rear frame 940. The first direction, the second direction and the third direction are perpendicular to each other.
[0091] In this embodiment, when the chemiluminescent immunoassay device is working, the top frame 910, the bottom panel 920, the front frame 930, the rear frame 940, the first side frame 950 and the second side frame 960 are assembled into an overall frame 900, and the cover opening component 200, the reagent component 300, the hopper bin 400, the second shaking component 500, the incubation component 600, the separation component 700 and the detection component 800 are all connected to the overall frame 900, so that the staff only needs to move the overall frame 900 to synchronously move the cover opening component 200, the reagent component 300, the hopper bin 400, the second shaking component 500, the incubation component 600, the separation component 700 and the detection component 800, thereby improving the mobility of the chemiluminescent immunoassay device.
[0092] See also Figures 1 to 4 In some embodiments, the first shaking assembly 100 is located on one side of the entire machine frame 900 along the second direction and is connected to the front frame 930. The cover opening assembly 200 is located on one side of the first shaking assembly 100 close to the top frame 910 along the first direction and is fixedly connected to the front frame 930. The incubation assembly 600 is fixedly connected to the bottom panel 920. The incubation assembly 600 is located on one side of the cover opening assembly 200 close to the second side frame 960 and is spaced apart on the rear frame 940 close to the front frame 93 along the second direction. 0, the detection component 800, the second shaking component 500, and the separation component 700 are all fixedly connected to the bottom panel 920, and are configured to be arranged in sequence along the third direction on the side of the incubation component 600 away from the second side frame 960, the hopper bin 400 is located on the side of the separation component 700 along the first direction and is connected to the top frame 910, the reagent component 300 is fixedly connected to the bottom panel 920, and the reagent component 300 is located on the side of the separation component 700 along the second direction close to the front frame 930.
[0093] In this embodiment, when the chemiluminescence immunoassay device is working, the cover opening component 200 is set on the side of the first shaking component 100 close to the top frame 910 along the first direction, and is fixedly connected to the front frame 930, so that after the first shaking component 100 shakes the sample liquid in the sample bottle, the cover opening component 200 can quickly open the sample bottle; by setting the incubation component 600 on the side of the cover opening component 200 close to the second side frame 960, and arranged at intervals on the side of the rear frame 940 close to the front frame 930 along the second direction, the cover opening component 200 opens the sample bottle, and the staff can quickly place the reaction cup on the incubation component 600 after pouring the sample liquid into the reaction cup; through the detection component 800, the second shaking component 500, and the separation component The components 700 are arranged in sequence along the third direction at intervals on the side of the incubation component 600 away from the second side frame 960, so that after the incubation component 600 incubates the mixed solution in the reaction cup, the mixed solution in the reaction cup can be quickly sent to the separation component 700 for impurity removal, the second shaking component 500 for shaking, and the detection component 800 for detection; by arranging the hopper bin 400 on the side of the separation component 700 along the first direction, it is convenient for the staff to replace the reaction cup; by arranging the reagent component 300 on the side of the separation component 700 close to the front frame 930 along the second direction, the distance between the reagent component 300 and the opening component 200 is shortened, and then when the opening component 200 opens the sample bottle, the staff can quickly inject the reaction solution in the reagent bottle into the reaction cup. In summary, through the above-mentioned settings, the spacing between the various parts in the chemiluminescent immunoassay device is reduced, which on the one hand reduces the overall size of the chemiluminescent immunoassay device, and on the other hand improves the working efficiency of the chemiluminescent immunoassay device.
[0094] See also Figure 9 In some embodiments, the reagent assembly 300 includes a reagent tray 310, which is connected to the bottom panel 920. The reagent tray 310 is provided with a plurality of reagent holes 311 on the side away from the bottom panel 920 along the first direction. A reagent bottle is placed in each reagent hole 311, and each reagent bottle contains a reaction liquid.
[0095] See also Figure 10 and Figure 11 In some embodiments, the second shaking assembly 500 includes a fifth support base 510, a shaking drive member 520, and a shaking base 530. The fifth support base 510 is connected to the bottom panel 920. The fifth support base 510 is provided with a shaking drive member 520 on the side away from the bottom panel 920 along the first direction. The power output shaft of the shaking drive member 520 extends along the first direction and can rotate around its own axis. The shaking base 530 is connected to the power output shaft of the shaking drive member 520. A shaking hole 531 is provided on the shaking base 530, and the shaking hole 531 is used to accommodate a reaction cup.
[0096] See also Figure 12 and Figure 13 In some embodiments, the incubation component 600 includes a first shell 610, a first turntable 620, a third rotating shaft 630, a first rotating member 640, and a second conveyor belt 650. The first shell 610 is located on the side of the bottom panel 920 close to the top frame 910 along the first direction and is fixedly connected to the bottom panel 920. A first through groove 611 is provided on the side of the first shell 610 away from the bottom panel 920. The first through groove 611 is connected to the inner cavity (not shown) of the first shell 610. The first turntable 620 is disposed in the inner cavity of the first shell 610. An incubation hole 621 is provided on 620, and the incubation hole 621 is used to hold a reaction cup containing a mixed solution. The third rotating shaft 630 extends into the inner cavity of the first shell 610 along the first direction and is connected to the first turntable 620. The third rotating shaft 630 is rotatably connected to the first shell 610 and can rotate around its own axis. The first rotating member 640 and the third rotating shaft 630 are arranged at intervals. The output shaft of the first rotating member 640 extends along the first direction and can rotate around its own axis. The second transmission belt 650 is sleeved on the power output shaft of the first rotating member 640 and the third rotating shaft 630.
[0097] See also Figure 14 and Figure 15 In some embodiments, the separation assembly 700 includes a sixth support seat 710, a fourth rotating shaft 720, a separation disk 730, a second rotating member 740, and a third conveyor belt 750. The sixth support seat 710 is fixedly connected to the bottom panel 920. The sixth support seat 710 is provided with a fourth rotating shaft 720 on the side away from the bottom panel 920 along the first direction. The fourth rotating shaft 720 extends along the first direction. One end of the fourth rotating shaft 720 is rotatably connected to the sixth support seat 710, and the other end is fixedly connected to the separation disk 730. A separation hole 731 is provided on the separation disk 730. The separation hole 731 is used to carry a reaction cup containing a mixed solution. The second rotating member 740 and the fourth rotating shaft 720 are arranged at intervals. The third conveyor belt 750 is sleeved on the power output shaft of the second rotating member 740 and the fourth rotating shaft 720.
[0098] See also Figure 16 In some embodiments, the detection component 800 is fixedly connected to the bottom panel 920, and a detection hole 810 is provided on the side of the detection component 800 away from the bottom panel 920 along the first direction, and the reaction cup extends into the inner cavity of the detection component 800 through the detection hole 810.
[0099] See also Figure 17In some embodiments, the chemiluminescent immunoassay device further includes a first grabbing assembly 1000, which is located on the side of the incubation assembly 600 away from the bottom panel 920. The first grabbing assembly 1000 is connected to the second side frame 960. The first grabbing assembly 1000 includes a seventh power component 1010, an eighth power component 1020 and a first liquid containing component 1030. The eighth power component 1020 is connected to the power output end of the seventh power component 1010, and the first liquid containing component 1030 is connected to the power output end of the eighth power component 1020. The seventh power component 1010 drives the eighth power component 1020 to move in the second direction, and the eighth power component 1020 drives the first liquid containing component 1030 to move in the first direction. The first liquid containing component 1030 is used to inject the sample liquid in the sample bottle into the reaction cup.
[0100] In this embodiment, when the chemiluminescent immunoassay device is in operation, the seventh power component 1010 first drives the eighth power component 1020 to approach the sample bottle along the second direction. During this process, the eighth power component 1020 drives the first liquid container assembly 1030 to approach the sample bottle along the first direction accordingly, until the first liquid container assembly 1030 is located on the side of the sample bottle close to the top frame 910 along the first direction. The seventh power component 1010 and the eighth power component 1020 stop moving, and the first liquid container assembly 1030 absorbs the sample liquid in the sample bottle; then the eighth power component 1020 drives the first liquid container assembly 1030 to move away from the sample bottle along the first direction. During this process, the seventh power component 1010 drives the eighth power component 1020 to move away from the sample bottle along the second direction until the first liquid container assembly 1030 returns to its initial position. Finally, the first liquid container assembly 1030 injects the absorbed sample liquid into the reaction cup. To summarize, by setting the seventh power component 1010 to drive the eighth power component 1020 to move along the second direction, the eighth power component 1020 drives the first liquid container component 1030 to move along the first direction, and the first liquid container component 1030 is used to inject the sample liquid in the sample bottle into the reaction cup, thereby eliminating the process of manually aspirating the sample liquid in the sample bottle and injecting it into the reaction cup, thereby improving the working efficiency of the chemiluminescence immunoassay device.
[0101] In some embodiments, the seventh power component 1010 includes a seventh support seat 1011, a seventh driving member 1012, and a third slider 1013. The seventh support seat 1011 is connected to the side of the second side frame 960 away from the bottom panel 920 and extends along the second direction. The seventh driving member 1012 is connected to the seventh support seat 1011. The third slider 1013 is connected to the power output shaft of the seventh driving member 1012 and can move along the second direction under the drive of the seventh driving member 1012. The eighth power component 1020 is connected to the third slider 1013.
[0102] In some embodiments, the eighth power component 1020 includes an eighth driving member 1021, a fifth rotating shaft 1022, and a fourth slider 1023. The eighth driving member 1021 is connected to the third slider 1013, the fifth rotating shaft 1022 is connected to the power output shaft of the eighth driving member 1021, the fifth rotating shaft 1022 extends along the first direction and can rotate around its own axis. The fourth slider 1023 is sleeved on the fifth rotating shaft 1022, and the two are threadedly connected. The first liquid-containing component 1030 is connected to the fourth slider 1023.
[0103] See also Figure 18 In some embodiments, the chemiluminescent immunoassay device further includes a consumable component 1100, which includes a first aspiration needle (not shown). The first aspiration needle is connected to the inner cavity of the first liquid-containing component 1030, and the sample liquid enters the inner cavity of the first liquid-containing component 1030 (not shown) from the first aspiration needle.
[0104] In this embodiment, when the chemiluminescent immunoassay device is in operation, the first liquid aspiration needle is connected to the inner cavity of the first liquid container component 1030. The first liquid aspiration needle aspirates the sample liquid in the sample bottle into the inner cavity of the first liquid container component 1030, and injects the sample liquid in the first liquid container component 1030 into the reaction cup. In summary, by providing the first liquid aspiration needle, it is convenient to aspirate the sample liquid in the sample bottle into the inner cavity of the first liquid container component 1030, thereby improving the working efficiency of the chemiluminescent immunoassay device.
[0105] In some embodiments, the consumable assembly 1100 includes a consumable seat 1101 and a consumable hole 1102. The consumable seat 1101 is connected to the bottom panel 920. A plurality of consumable holes 1102 are provided on the consumable seat 1101. Each consumable hole 1102 contains a first aspiration needle. The first liquid container assembly 1030 replaces a first aspiration needle each time it aspirates sample liquid from a sample bottle to prevent bacterial infection.
[0106] See also Figures 19 to 20In some embodiments, the chemiluminescent immunoassay device further includes a second grabbing assembly 1200, which is connected to the top frame 910. The second grabbing assembly 1200 includes a virtual straight line 1210, a ninth power component 1220, a tenth power component 1230, and a second solution component 1240. The virtual straight line 1210 passes through the center of the reagent component 300 and the center of the incubation component 600. The tenth power component 1230 is connected to the power output end of the ninth power component 1220. The second solution component 1240 is connected to the power output end of the tenth power component 1230. The ninth power component 1220 drives the tenth power component 1230 to move in a direction parallel to the virtual straight line 1210. The tenth power component 1230 drives the second solution component 1240 to move in the first direction. The second solution component 1240 is used to inject the reaction solution in the reagent bottle into the reaction cup.
[0107] In this embodiment, when the chemiluminescent immunoassay device is working, the ninth power component 1220 first drives the tenth power component 1230 to approach the reagent assembly 300 in a direction parallel to the virtual straight line 1210. During this process, the tenth power component 1230 drives the second solution component 1240 to approach the reagent assembly 300 in the first direction until the second solution component 1240 is located on the side of the reagent assembly 300 away from the bottom panel 920 in the first direction. The ninth power component 1220 and the tenth power component 1230 stop moving, and the second solution component 1240 absorbs the reagent in the reagent assembly 300. The reaction liquid in the bottle is then driven by the tenth power component 1230. The tenth power component 1230 drives the second solution component 1240 away from the reagent component 300 in the first direction. During this process, the ninth power component 1220 drives the tenth power component 1230 away from the reagent component 300 in a direction parallel to the virtual straight line 1210 until the second solution component 1240 is located on the side of the incubation component 600 away from the bottom panel 920 in the first direction. The ninth power component 1220 and the tenth power component 1230 stop moving. Finally, the second solution component 1240 injects the absorbed reaction liquid into the reaction cup in the incubation component 600. In summary, by setting the ninth power component 1220 to drive the tenth power component 1230 to move in a direction parallel to the virtual straight line 1210, and the tenth power component 1230 to drive the second solution component 1240 to move in the first direction, the second solution component 1240 is used to inject the reaction liquid in the reagent bottle into the reaction cup, eliminating the process of manually aspirating the reaction liquid in the reagent bottle and injecting it into the reaction cup, thereby improving the working efficiency of the chemiluminescence immunoassay device.
[0108] In some embodiments, the ninth power component 1220 includes an eighth support seat 1221, a ninth driving member 1222, a sixth rotating shaft 1223, a fourth transmission belt 1224, and a fifth slider 1225. The eighth support seat 1221 is fixed to the top frame 910 and extends in a direction parallel to the virtual straight line 1210. The ninth driving member 1222 and the sixth rotating shaft 1223 are arranged at intervals along the virtual straight line 1210 and are both connected to the eighth support seat 1221. The fourth transmission belt 1224 is sleeved on the power output shaft of the ninth driving member 1222 and the sixth rotating shaft 1223. The fifth slider 1225 is connected to the fourth transmission belt 1224. The tenth power component 1230 is connected to the fifth slider 1225.
[0109] In some embodiments, the tenth power component 1230 includes a tenth driving member 1231, a seventh rotating shaft 1232, a fifth transmission belt 1233, and a sixth slider 1234. The tenth driving member 1231 and the seventh rotating shaft 1232 are arranged at intervals along the first direction and are both connected to the fifth slider 1225. The fifth transmission belt 1233 is sleeved on the power output shaft of the tenth driving member 1231 and the seventh rotating shaft 1232. The sixth slider 1234 is connected to the fifth transmission belt 1233. The second solution component 1240 is connected to the sixth slider 1234.
[0110] See also Figure 21 In some embodiments, the chemiluminescent immunoassay device further includes a third grabbing assembly 1300, which is located on a side of the separation assembly 700 away from the bottom panel 920 along the first direction. The third grabbing assembly 1300 includes an eleventh power component 1310, a twelfth power component 1320 and a third clamping jaw 1330. The twelfth power component 1320 is connected to the power output end of the eleventh power component 1310, and the third clamping jaw 1330 is connected to the power output end of the twelfth power component 1320. The eleventh power component 1310 drives the twelfth power component 1320 to move along the third direction, and the twelfth power component 1320 drives the third clamping jaw 1330 to move along the first direction. The third clamping jaw 1330 is used to clamp the reaction cup and drive the reaction cup to move.
[0111] In this embodiment, when the chemiluminescent immunoassay device is working, the eleventh power component 1310 first drives the twelfth power component 1320 to approach the incubation component 600 along the third direction. During this process, the twelfth power component 1320 drives the third clamping jaw 1330 to approach the incubation component 600 along the first direction until the third clamping jaw 1330 is located on the side of the incubation component 600 away from the bottom panel 920 along the first direction. The eleventh power component 1310 and the twelfth power component 1320 stop moving, and the third clamping jaw 1330 stops moving. The reaction cup in the incubation component 600 is clamped; then the twelfth power component 1320 drives the third clamping jaw 1330 to move away from the incubation component 600 along the first direction. During this process, the eleventh power component 1310 drives the twelfth power component 1320 to move away from the incubation component 600 along the third direction until the reaction cup clamped by the third clamping jaw 1330 moves to the side of the separation component 700 away from the bottom panel 920 along the first direction. The eleventh power component 1310 stops moving, and the twelfth power component 1320 drives the third clamping jaw 1330 to move away from the incubation component 600 along the third direction. 30 approaches the separation assembly 700 along the first direction until the reaction cup clamped by the third clamping claw 1330 enters the separation hole 731 of the separation disk 730, the twelfth power component 1320 stops moving, and the third clamping claw 1330 releases the reaction cup; further, when the separation assembly 700 has separated the impurities in the mixed solution in the reaction cup, the third clamping claw 1330 clamps the reaction cup, and the twelfth power component 1320 drives the third clamping claw 1330 to move away from the separation assembly 700 along the first direction. In this process, the eleventh power component 1310 drives The twelfth power component 1320 moves away from the separation component 700 along the third direction until the reaction cup clamped by the third clamping jaw 1330 moves to the side of the detection hole 810 of the detection component 800 along the first direction, and the eleventh power component 1310 stops moving; finally, the twelfth power component 1320 drives the third clamping jaw 1330 to approach the detection hole 810 along the first direction, so that the reaction cup clamped by the third clamping jaw 1330 extends from the detection hole 810 into the detection component 800, thereby facilitating the detection component 800 to detect the mixed solution in the reaction cup. To sum up, by setting the eleventh power component 1310 to drive the twelfth power component 1320 to move along the third direction, the twelfth power component 1320 drives the third clamp 1330 to move along the first direction, and the third clamp 1330 is used to clamp the reaction cup and drive the reaction cup to move, the staff is saved from manually removing the reaction cup in the incubation component 600 and placing it into the separation component 700, as well as removing the reaction cup from the separation component 700 and placing it into the detection component 800, thereby improving the working efficiency of the chemiluminescence immunoassay device.
[0112] In some embodiments, the eleventh power component 1310 includes a ninth support seat 1311, an eleventh driving member 1312, an eighth rotating shaft 1313, a sixth transmission belt 1314, and a seventh slider 1315. The ninth support seat 1311 is connected to the side of the rear frame 940 away from the bottom panel 920 along the first direction. The ninth support seat 1311 extends along the third direction. The eleventh driving member 1312 and the eighth rotating shaft 1313 are arranged at intervals along the third direction and are both connected to the ninth support seat 1311. The sixth transmission belt 1314 is mounted on the eleventh driving member 1312 and the eighth rotating shaft 1313. The seventh slider 1315 is connected to the sixth transmission belt 1314. The twelfth power component 1320 is connected to the seventh slider 1315.
[0113] In some embodiments, the third grasping assembly 1300 also includes a thirteenth power component 1340, the thirteenth power component 1340 includes a thirteenth driving member 1341, a ninth rotating shaft 1342, a seventh transmission belt 1343, and an eighth slider 1344, the thirteenth driving member 1341 and the ninth rotating shaft 1342 are arranged at intervals along the first direction, and are both connected to the seventh slider 1315, the seventh transmission belt 1343 is mounted on the thirteenth driving member 1341 and the ninth rotating shaft 1342, the eighth slider 1344 is connected to the seventh transmission belt 1343, and the twelfth power component 1320 is connected to the eighth slider 1344.
[0114] In some embodiments, the third clamp 1330 includes two rotatably connected clamps (not shown), and the power output shaft of the twelfth power component 1320 is connected to the rotating shaft (not shown) of the clamp to drive the two clamps to rotate relative to each other to clamp the reaction cup.
[0115] In some embodiments, the chemiluminescent immunoassay device further includes a blood detection component (not shown), which is used to detect blood in the sample fluid.
[0116] In this embodiment, when the chemiluminescence immunoassay device is in operation, a blood detection component is provided to detect blood in the sample liquid, thereby improving the function of the chemiluminescence immunoassay device.
[0117] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0118] The above-described embodiments merely represent several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the spirit of the present application, and these modifications and improvements fall within the scope of protection of the present application. Therefore, the scope of protection of the present patent application shall be determined by the appended claims.
Claims
1. A chemiluminescent immunoassay device for performing luminescent immunoassay on a sample solution in a sample bottle, characterized in that: The chemiluminescent immunoassay device comprises: A first shaking assembly (100) is used to clamp the sample bottle and drive the sample bottle to move; a cover opening assembly (200), arranged on one side of the first shaking assembly (100) along a first direction, the first direction being a direction of gravity, and the cover opening assembly (200) is used to open the sample bottle; A reagent assembly (300), comprising a reagent bottle for containing a reaction solution; A hopper bin (400) includes a reaction cup for containing a mixed solution of the sample liquid and the reaction liquid; A second shaking component (500) is used to drive the reaction cup to move; an incubation component (600), used for incubating the mixed solution in the reaction cup to cause a chemical reaction to occur in the mixed solution; A separation component (700) for separating impurities from the mixed solution; The detection component (800) is used to detect the mixed solution.
2. The chemiluminescent immunoassay device according to claim 1, characterized in that: The first shaking assembly (100) comprises a first power component (110), a second power component (120), a third power component (130), and a first clamp (140); The second power component (120) is connected to the power output end of the first power component (110), the third power component (130) is connected to the power output end of the second power component (120), and the first clamp (140) is connected to the power output end of the third power component (130); The first power component (110) is used to drive the second power component (120) to move along the first direction, the second power component (120) is used to drive the third power component (130) to move along the second direction, and the third power component (130) is used to drive the first clamp (140) to move, and the second direction is perpendicular to the first direction.
3. The chemiluminescent immunoassay device according to claim 2, characterized in that: The cover opening assembly (200) comprises a fourth power component (210), a fifth power component (220), a sixth power component (230), and a second clamping claw (240); The fifth power component (220) and the sixth power component (230) are both connected to the power output end of the fourth power component (210), the power output end of the fifth power component (220) is connected to the second clamping claw (240), and the power output end of the sixth power component (230) is connected to the second clamping claw (240); The fourth power component (210) drives the fifth power component (220) and the sixth power component (230) to move along the first direction, the fifth power component (220) drives the second clamping jaw (240) to rotate around the axis of the sample bottle, and the sixth power component (230) drives the claw piece (241) of the second clamping jaw (240) to move along the radial direction of the sample bottle.
4. The chemiluminescent immunoassay device according to claim 3, characterized in that: The chemiluminescence immunoassay device further comprises an entire machine frame (900), and the cover opening assembly (200), the reagent assembly (300), the hopper bin (400), the second shaking assembly (500), the incubation assembly (600), the separation assembly (700), and the detection assembly (800) are all connected to the entire machine frame (900); The whole machine frame (900) includes a top frame (910), a bottom panel (920), a front frame (930), a rear frame (940), a first side frame (950) and a second side frame (960), wherein the top frame (910) and the bottom panel (920) are arranged at intervals along the first direction, the front frame (930) and the rear frame (940) are arranged at intervals along the second direction, and the front frame (930) and the rear frame (940) are both located between the top frame (910) and the bottom panel (920), the first side frame (950) and the second side frame (960) are arranged at intervals along the third direction, and the first side frame (950) and the second side frame (960) are both located between the front frame (930) and the rear frame (940). The first direction, the second direction and the third direction are perpendicular to each other.
5. The chemiluminescent immunoassay device according to claim 4, characterized in that: The first shaking component (100) is located on one side of the entire machine frame (900) along the second direction and is connected to the front frame (930); The lid opening assembly (200) is located on a side of the first shaking assembly (100) close to the top frame (910) along the first direction, and is fixedly connected to the front frame (930); The incubation assembly (600) is fixedly connected to the bottom panel (920), and the incubation assembly (600) is located on a side of the cover opening assembly (200) close to the second side frame (960), and is spaced apart on a side of the rear frame (940) close to the front frame (930) along the second direction; The detection component (800), the second shaking component (500), and the separation component (700) are all fixedly connected to the bottom panel (920), and are configured to be arranged in sequence along the third direction at intervals on a side of the incubation component (600) away from the second side frame (960); The hopper bin (400) is located on one side of the separation assembly (700) along the first direction and is connected to the top frame (910); The reagent assembly (300) is fixedly connected to the bottom panel (920), and the reagent assembly (300) is located on a side of the separation assembly (700) close to the front frame (930) along the second direction.
6. The chemiluminescent immunoassay device according to claim 5, characterized in that: The chemiluminescent immunoassay device further comprises a first grabbing assembly (1000), the first grabbing assembly (1000) being located on a side of the incubation assembly (600) facing away from the bottom panel (920), the first grabbing assembly (1000) being connected to the second side frame (960), and the first grabbing assembly (1000) comprising a seventh power component (1010), an eighth power component (1020) and a first liquid containing assembly (1030); The eighth power component (1020) is connected to the power output end of the seventh power component (1010), and the first liquid container component (1030) is connected to the power output end of the eighth power component (1020); The seventh power component (1010) drives the eighth power component (1020) to move along the second direction, and the eighth power component (1020) drives the first liquid container component (1030) to move along the first direction. The first liquid container component (1030) is used to inject the sample liquid in the sample bottle into the reaction cup.
7. The chemiluminescent immunoassay device according to claim 6, characterized in that: The chemiluminescence immunoassay device further includes a consumable component (1100), wherein the consumable component (1100) includes a first aspiration needle, wherein the first aspiration needle is connected to the inner cavity of the first liquid containing component (1030), and the sample liquid enters the inner cavity of the first liquid containing component (1030) from the first aspiration needle.
8. The chemiluminescent immunoassay device according to claim 5, characterized in that: The chemiluminescence immunoassay device further includes a second grabbing assembly (1200), the second grabbing assembly (1200) being connected to the top frame (910), the second grabbing assembly (1200) including a virtual straight line (1210), a ninth power component (1220), a tenth power component (1230), and a second solution component (1240); The virtual straight line (1210) passes through the center of the reagent component (300) and the center of the incubation component (600), the tenth power component (1230) is connected to the power output end of the ninth power component (1220), and the second solution component (1240) is connected to the power output end of the tenth power component (1230); The ninth power component (1220) drives the tenth power component (1230) to move in a direction parallel to the virtual straight line (1210), and the tenth power component (1230) drives the second solution component (1240) to move in the first direction, and the second solution component (1240) is used to inject the reaction solution in the reagent bottle into the reaction cup.
9. The chemiluminescent immunoassay device according to claim 5, characterized in that: The chemiluminescent immunoassay device further comprises a third grabbing assembly (1300), the third grabbing assembly (1300) being located on a side of the separation assembly (700) away from the bottom panel (920) along the first direction, the third grabbing assembly (1300) comprising an eleventh power component (1310), a twelfth power component (1320) and a third clamping claw (1330); The twelfth power component (1320) is connected to the power output end of the eleventh power component (1310), and the third clamping jaw (1330) is connected to the power output end of the twelfth power component (1320); The eleventh power component (1310) drives the twelfth power component (1320) to move along the third direction, and the twelfth power component (1320) drives the third clamp (1330) to move along the first direction. The third clamp (1330) is used to clamp the reaction cup and drive the reaction cup to move.
10. The chemiluminescence immunoassay device according to claim 1, characterized in that: The chemiluminescence immunoassay device further includes a blood detection component, which is used to detect blood in the sample liquid.