A multi-functional cell counter
Patent Information
- Application Number
- CN202521190028.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-11
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-06-11
AI Technical Summary
但是现有的多功能细胞计数器均是插嵌式放入细胞计数板,这便使得在需要对多组载有细胞的细胞计数板进行计数检测时步骤十分繁琐,同时有可能因时间紧迫而导致插嵌的细胞计数板发生损坏, 从而使得不能对多组载有细胞的细胞计数板进行持续性的快速装填检测,进而大大降低了细胞计数器在面对多组载有细胞的细胞计数板检测时的检测效率
1、该实用新型可以通过持续夹持输送结构来使得细胞计数器为持续输送式放入细胞计数板,这便使得在需要对多组载有细胞的细胞计数板进行计数检测时步骤十分简便,同时不会因时间紧迫而导致插嵌的细胞计数板发生损坏, 从而使得能对多组载有细胞的细胞计数板进行持续性的快速装填检测,进而大大增加了细胞计数器在面对多组载有细胞的细胞计数板检测时的检测效率。
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Figure CN224788513U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a multifunctional cell counter, and more particularly to a multifunctional cell counter, belonging to the field of cell counting technology. Background Technology
[0002] A cell counter is a scientific instrument used for the precise counting and classification of cells. Its main functions include automatic counting, cell classification, parameter measurement, non-staining counting, and various detection methods. It is primarily used in clinical medicine, biological research, and drug development. Cell counters play a vital role in ensuring experimental accuracy and reproducibility, improving work efficiency, and supporting clinical decision-making and scientific research. With continuous technological advancements, the functionality and accuracy of cell counters are constantly improving, providing more powerful tools for research and applications in related fields. However, existing multifunctional cell counters are all inserted into cell counting chambers, which makes the process very cumbersome when counting multiple cell-loaded chambers. At the same time, due to time constraints, the inserted cell counting chamber may be damaged, thus preventing continuous and rapid loading and detection of multiple cell-loaded chambers. This greatly reduces the detection efficiency of cell counters when dealing with multiple cell-loaded chambers.
[0003] Therefore, there is an urgent need to improve the multifunctional cell counter to solve the above-mentioned problems. Utility Model Content
[0004] The purpose of this invention is to provide a multifunctional cell counter. This device can continuously feed the cell counter into a cell counting plate through a continuous clamping and conveying structure. This simplifies the process when counting multiple cell counting plates containing cells, and prevents damage to the inserted cell counting plates due to time constraints. This enables continuous and rapid loading and detection of multiple cell counting plates, thereby greatly increasing the detection efficiency of the cell counter when dealing with multiple cell counting plates.
[0005] To achieve the above objectives, the main technical solutions adopted by this utility model include: A continuous clamping and conveying structure is mounted on a fixed base and is used to continuously position, clamp, and convey a cell counting plate carrying cells. A cell counting processing module is mounted on a protective housing, which is fitted onto the mounting base. The cell counting processing module is used to detect the number of cells and display the detection results.
[0006] Preferably, the continuous clamping and conveying structure includes two drive wheels, a conveyor belt sleeved on the two drive wheels, a drive motor disposed at both ends of the drive wheels, and a plurality of cell counting plate fixing clamps disposed on the surface of the conveyor belt, wherein the plurality of cell counting plate fixing clamps are disposed at equal and uniform intervals on the surface of the conveyor belt.
[0007] Preferably, the cell counting plate fixing fixture includes a support plate, a first clamping plate assembly symmetrically arranged on the left and right sides of the support plate, and a second clamping plate assembly arranged on the front and rear sides of the support plate.
[0008] Preferably, the first clamping plate assembly includes a first telescopic rod symmetrically embedded and installed on one side of the support placement plate, a side clamping plate installed on the telescopic ends of the two first telescopic rods, and a plurality of first rubber protrusions evenly and equidistantly arranged on the clamping surface of the side clamping plate.
[0009] Preferably, the second clamping plate assembly includes a storage groove symmetrically formed on the surface of the support plate, a second telescopic rod disposed in the storage groove, a clamping slide plate disposed at the telescopic end of the second telescopic rod, and a plurality of second rubber protrusions evenly and equidistantly disposed on the clamping surface of the clamping slide plate.
[0010] Preferably, both sides of the clamping slide are provided with limiting sliders, and both sides of the inner wall of the storage groove are provided with limiting grooves that are adapted to the limiting sliders.
[0011] Preferably, the fixing base includes a support base, a support rotating seat symmetrically embedded in the support base, and a plurality of support rotating rods rotatably embedded in the two support rotating seats. The support rotating seat is symmetrically provided with polygonal locking blocks, and the support base is provided with polygonal locking slots adapted to the polygonal locking blocks.
[0012] Preferably, the support rotating seat is bolted to the support base, the support base has a running groove, the drive motor is bolted to the edge of the running groove, the protective shell has a working groove, and the protective shell is bolted to the two support rotating seats.
[0013] This utility model has at least the following beneficial effects: 1. This utility model can continuously feed the cell counter into the cell counting plate through a continuous clamping and conveying structure. This simplifies the process when counting and detecting multiple sets of cell counting plates containing cells, and prevents damage to the inserted cell counting plates due to time constraints. This enables continuous and rapid loading and detection of multiple sets of cell counting plates containing cells, thereby greatly increasing the detection efficiency of the cell counter when dealing with multiple sets of cell counting plates containing cells. Attached Figure Description
[0014] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings: Figure 1 This is a schematic diagram of the overall appearance structure of this utility model; Figure 2 This is a schematic diagram of the continuous clamping and conveying structure, the fixing base and the protective shell of this utility model. Figure 3 This is a schematic diagram of the continuous clamping and conveying structure of this utility model; Figure 4 This is an enlarged schematic diagram of point A in this utility model; Figure 5 This is a schematic diagram of the continuous clamping and conveying structure of this utility model.
[0015] In the diagram, 1. Continuous clamping and conveying structure; 2. Fixed base; 3. Cell counting processing module; 4. Protective shell; 5. Drive wheel; 6. Conveyor belt; 7. Drive motor; 8. Cell counting carrier plate fixing fixture; 9. Support placement plate; 10. First clamping plate assembly; 11. Second clamping plate assembly; 12. First telescopic rod; 13. Side clamping plate; 14. First rubber protrusion; 15. Storage groove; 16. Second telescopic rod; 17. Clamping slide plate; 18. Second rubber protrusion; 19. Limiting slider; 20. Limiting groove; 21. Support base; 22. Support rotating seat; 23. Support rotating rod; 24. Polygonal card block; 25. Polygonal card slot; 26. Rotation groove; 27. Working groove. Detailed Implementation
[0016] The following will describe in detail the implementation of this application with reference to the accompanying drawings and embodiments, so that the implementation process of how this application uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.
[0017] like Figures 1-5 As shown, the multifunctional cell counter provided in this embodiment includes: A continuous clamping and conveying structure 1 is mounted on a fixed base 2. The continuous clamping and conveying structure 1 is used to continuously position, clamp, and convey a cell counting plate carrying cells. Cell counting processing module 3 is mounted on protective housing 4, which is fitted onto fixed base 2. Cell counting processing module 3 is used to detect cell count and display detection results. The fixed base 2 facilitates the fixed support of the continuous clamping and conveying structure 1, the protective shell 4, and the cell counting processing module 3. The protective shell 4 facilitates the protection of the continuous clamping and conveying structure 1 and the fixed base 2. The cell counting processing module 3 facilitates the counting and detection of the cell counting plate containing cells directly below the conveyor, and then integrates and summarizes the detection results and process on the display screen. Subsequently, the detection results can also be saved and stored. At the same time, the cell counting processing module 3 facilitates the acceptance of operator instructions and controls the continuous clamping and conveying structure 1 to perform operations according to the instructions. Here, the cell counting processing module 3 is composed of several existing modules, so the operating principle of the cell counting processing module 3 is the existing technology. The continuous clamping and delivery structure 1 enables the cell counter to be continuously delivered into the cell counting chamber. This simplifies the process when multiple cell counting chambers carrying cells need to be counted, and prevents damage to the inserted cell counting chamber due to time constraints. This allows for continuous and rapid loading and detection of multiple cell counting chambers carrying cells, thereby greatly increasing the detection efficiency of the cell counter when dealing with multiple cell counting chambers carrying cells.
[0018] Furthermore, such as Figure 2 , Figure 3 as well as Figure 4 As shown, the continuous clamping and conveying structure 1 includes two drive wheels 5, a conveyor belt 6 sleeved on the two drive wheels 5, drive motors 7 set at both ends of the drive wheels 5, and a plurality of cell counting plate fixing clamps 8 set on the surface of the conveyor belt 6. The plurality of cell counting plate fixing clamps 8 are evenly and equidistantly arranged on the surface of the conveyor belt 6. The two drive wheels 5 facilitate the transmission of the conveyor belt 6, and the conveyor belt 6 facilitates the fixing and support of the plurality of cell counting plate fixing clamps 8, and at the same time facilitates the connection of the two drive wheels 5 together. The four drive motors 7 facilitate the driving force for the rotation of the two drive wheels 5, and the cell counting plate fixing clamps 8 facilitate the positioning, clamping and fixing of the cell counting plate containing cells.
[0019] Furthermore, such as Figure 3As shown, the cell counting plate fixing fixture 8 includes a support plate 9, first clamping plate assemblies 10 symmetrically arranged on the left and right sides of the support plate 9, and second clamping plate assemblies 11 arranged on the front and rear sides of the support plate 9. The support plate 9 facilitates the support of the cell counting plate containing cells. The two first clamping plate assemblies 10 and the two second clamping plate assemblies 11 cooperate with each other to facilitate the close clamping and fixing of the cell counting plate containing cells around its perimeter.
[0020] Furthermore, such as Figure 4 As shown, the first clamping plate assembly 10 includes first telescopic rods 12 symmetrically embedded and installed on one side of the support placement plate 9, side clamping plates 13 installed on the telescopic ends of the two first telescopic rods 12, and a plurality of first rubber protrusions 14 evenly and equidistantly arranged on the clamping surface of the side clamping plates 13. The two first telescopic rods 12 can easily use their own telescopic properties to drive the two side clamping plates 13 to clamp and fix the left and right sides of the cell counting plate containing cells. The plurality of first rubber protrusions 14 can provide anti-slip protection for the left and right sides of the cell counting plate containing cells.
[0021] Furthermore, such as Figure 4 As shown, the second clamping plate assembly 11 includes a storage groove 15 symmetrically opened on the surface of the support placement plate 9, a second telescopic rod 16 disposed in the storage groove 15, a clamping slide plate 17 disposed at the telescopic end of the second telescopic rod 16, and a plurality of second rubber protrusions 18 evenly and equidistantly disposed on the clamping surface of the clamping slide plate 17. The storage groove 15 facilitates the storage and support of the second telescopic rod 16. The two second telescopic rods 16 can use their own telescopic properties to drive the two clamping slide plates 17 to clamp and fix the front and rear sides of the cell counting plate containing cells. The plurality of second rubber protrusions 18 provide anti-slip protection for the front and rear sides of the cell counting plate containing cells.
[0022] Furthermore, such as Figure 4 As shown, the clamping slide plate 17 is provided with limiting sliders 19 on both sides, and the inner wall of the storage groove 15 is provided with limiting grooves 20 that are adapted to the limiting sliders 19 on both sides. The limiting sliders 19 and the limiting grooves 20 cooperate with each other to allow the clamping slide plate 17 to slide in the storage groove 15 in a limited manner.
[0023] Furthermore, such as Figure 2 and Figure 5As shown, the fixed base 2 includes a support base 21, a support rotating base 22 symmetrically embedded in the support base 21, and a number of support rotating rods 23 rotatably embedded in the two support rotating bases 22. Polygonal locking blocks 24 are symmetrically arranged on the support rotating bases 22, and polygonal slots 25 adapted to the polygonal locking blocks 24 are opened on the support base 21. The support base 21 facilitates the fixed support of the four drive motors 7 and the two support rotating bases 22. The two support rotating bases 22 facilitate the rotational support of the number of support rotating rods 23. The number of support rotating rods 23 are divided into two rows to facilitate the rotational support of the middle part of the conveyor belt 6. The polygonal locking blocks 24 and the polygonal slots 25 cooperate with each other to facilitate the support rotating bases 22 to be embedded in the support base 21.
[0024] Furthermore, such as Figure 2 As shown, the support rotating seat 22 is bolted to the support base 21. The support base 21 has a rotating groove 26. The drive motor 7 is bolted to the edge of the rotating groove 26. The protective shell 4 has a working groove 27. The protective shell 4 is bolted to the two support rotating seats 22. The rotating groove 26 facilitates the normal operation and rotation of the conveyor belt 6 carrying several cell counting plate fixing clamps 8 on the support base 21. The working groove 27 facilitates the normal operation and rotation of the conveyor belt 6 carrying several cell counting plate fixing clamps 8 on the protective shell 4.
[0025] like Figures 1-5 As shown, the principle of the multifunctional cell counter provided in this embodiment is as follows: When using the device, the size of the cell counter with technical detection should first be input into the cell counting processing module 3, and then the cell counting detection program should be set. After that, the detection operator can operate the cell counting processing module 3 to start operation. At this point, the operator can pick up an uncounted cell counting plate with their left hand and place it on the support plate 9. Then, the four first telescopic rods 12 retract simultaneously, pushing the side clamps 13 to clamp and fix the cell counting plate with cells on both sides. Subsequently, the two second telescopic rods 16 retract simultaneously, pushing the clamping slide 17 to clamp and fix the cell counting plate with cells on both sides. At this point, the drive motor 7 starts working, and then the two drive wheels 5, along with the conveyor belt 6, begin to rotate intermittently. The cell counting plate filled with cells will be continuously transported to the cell counting processing module 3. At this time, the operator should pick up another cell counting plate filled with cells that has not yet been counted and placed it on the next support plate 9. Then, the four first telescopic rods 12 on this support plate 9 retract simultaneously. The four retracting first telescopic rods 12 push the side clamping plates 13 to clamp and fix the cell counting plate on the left and right sides. Subsequently, the two second telescopic rods 16 on this support plate 9 retract simultaneously. The two retracting second telescopic rods 16 push the clamping slide plate 17 to clamp and fix the cell counting plate on the front and rear sides. Then, the conveyor belt 6 will begin to continuously transport the cell counting plate filled with cells to the cell counting processing module 3. When the cell counting plate carrying cells is transported to the cell counting processing module 3, the drive wheel 5 will stop working. Then the cell counting processing module 3 can count the cells on the cell counting plate, integrate the detection results, and display the integrated results on the display screen on the cell counting processing module 3. At this time, the cell counting processing module 3 will save and store the detection results. When a cell counting plate containing cells is transported to the outside after being processed by the cell counting module 3, an undetected cell counting plate will quickly fill the detection position directly below the cell counting module 3. After detection, the cell counting plate will move away from the cell counting module 3 until it is detached from the cell counting module 3. Then, the four first telescopic rods 12 on the support plate 9 extend simultaneously, pulling the side clamps 13 away from the left and right sides of the cell counting plate containing cells, thus releasing the clamping and fixing state of the first clamp assembly 10. Subsequently, the two second telescopic rods 16 on the support plate 9 extend simultaneously, pulling the clamping slides 17 away from the front and rear sides of the cell counting plate containing cells, thus releasing the clamping and fixing state of the second clamp assembly 11. At this time, the detection operator can remove the cell counting plate containing cells from the support plate 9 after the counting and detection is completed by using their right hand. This allows the device to continuously load and count cells sequentially using the operator's left hand, and simultaneously unload the cell-loaded counting chambers after testing using the operator's right hand. This continuous loading and unloading of the cell counter simplifies the process when multiple cell-loaded counting chambers need to be tested, preventing damage to the inserted counting chambers due to time constraints. This enables continuous and rapid loading and testing of multiple cell-loaded counting chambers, significantly increasing the detection efficiency of the cell counter when dealing with multiple cell-loaded counting chambers.
[0026] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.
Claims
1. A multifunctional cell counter, characterized in that, include: A continuous clamping and conveying structure (1) is mounted on a fixed base (2) and is used to continuously position and clamp the cell counting plate carrying cells. Cell counting processing module (3), the cell counting processing module (3) is installed on the protective shell (4), the protective shell (4) is sleeved on the fixed base (2), the cell counting processing module (3) is used to detect the number of cells and display the detection results; The continuous clamping and conveying structure (1) includes two drive wheels (5), a conveyor belt (6) sleeved on the two drive wheels (5), a drive motor (7) set at both ends of the drive wheels (5), and a plurality of cell counting plate fixing clamps (8) set on the surface of the conveyor belt (6). The plurality of cell counting plate fixing clamps (8) are evenly and equidistantly set on the surface of the conveyor belt (6). The cell counting plate fixing fixture (8) includes a support plate (9), a first clamping plate assembly (10) symmetrically arranged on the left and right sides of the support plate (9), and a second clamping plate assembly (11) arranged on the front and rear sides of the support plate (9).
2. The multifunctional cell counter according to claim 1, characterized in that: The first clamping plate assembly (10) includes a first telescopic rod (12) symmetrically embedded and installed on one side of the support placement plate (9), a side clamping plate (13) installed on the telescopic ends of the two first telescopic rods (12), and a plurality of first rubber protrusions (14) evenly and equidistantly arranged on the clamping surface of the side clamping plate (13).
3. A multifunctional cell counter according to claim 2, characterized in that: The second clamping plate assembly (11) includes a storage groove (15) symmetrically opened on the surface of the support placement plate (9), a second telescopic rod (16) disposed in the storage groove (15), a clamping slide plate (17) disposed at the telescopic end of the second telescopic rod (16), and a plurality of second rubber protrusions (18) evenly and equidistantly disposed on the clamping surface of the clamping slide plate (17).
4. A multifunctional cell counter according to claim 3, characterized in that: The clamping slide (17) is provided with limiting sliders (19) on both sides, and the inner wall of the storage groove (15) is provided with limiting grooves (20) that are adapted to the limiting sliders (19) on both sides.
5. A multifunctional cell counter according to claim 1, characterized in that: The fixed base (2) includes a support base (21), a support rotating base (22) symmetrically embedded in the support base (21), and a plurality of support rotating rods (23) rotatably embedded in the two support rotating bases (22). The support rotating base (22) is symmetrically provided with polygonal locking blocks (24), and the support base (21) is provided with polygonal slots (25) adapted to the polygonal locking blocks (24).
6. A multifunctional cell counter according to claim 5, characterized in that: The support rotating seat (22) is bolted to the support base (21). The support base (21) has a running groove (26). The drive motor (7) is bolted to the edge of the running groove (26). The protective shell (4) has a working groove (27). The protective shell (4) is bolted to the two support rotating seats (22).