CN224203096U - Portable pulse imaging cell identification device - Google Patents
Portable pulse imaging cell identification deviceInfo
- Publication number
- CN224203096U CN224203096U CN202520930075.3U CN202520930075U CN224203096U CN 224203096 U CN224203096 U CN 224203096U CN 202520930075 U CN202520930075 U CN 202520930075U CN 224203096 U CN224203096 U CN 224203096U
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- CN
- China
- Prior art keywords
- wall
- groove
- bottom plate
- plate
- imaging cell
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Abstract
The utility model discloses a portable pulse imaging cell identification device which comprises a bottom plate, wherein a mounting plate is hinged to one side of the bottom plate, a placing groove is formed in the inner wall of the mounting plate, a display operation panel is hinged to the inner wall of the placing groove, a supporting plate is hinged to the outer wall of one side of the display operation panel, a clamping groove in limit fit with the supporting plate is formed in the inner wall of the placing groove, a plurality of slots are formed in the outer wall of the top of the bottom plate, an inserting block is inserted into the inner wall of the slots, a hand-screwed bolt in limit fit with the inserting block is connected to the inner wall of the slots in a threaded mode, a side plate is connected to the top of the inserting block, a convex edge is fixedly connected to the tops of the side plate and the mounting plate, and the outer walls of the convex edge are in sliding fit with the same sealing cover.
Description
Technical Field
The utility model relates to the technical field of cell identification equipment, in particular to a portable pulse imaging cell identification device.
Background
In the detection and analysis research process of human cells, the cell morphology needs to be identified, the cell type or pathological state is determined, and the identification of human cells has important significance for researching disease mechanism, diagnosing diseases and developing new treatment methods, and cell identification equipment is needed in the research process.
Through retrieving, chinese patent publication No. CN219084763U discloses a portable high-speed imaging somatic cell identification equipment, including main body mechanism, detection mechanism and imaging mechanism, detection mechanism is located main body mechanism's upper end, imaging mechanism is located main body mechanism's upper end, detection mechanism is located imaging mechanism's place ahead, main body mechanism includes workstation, support column, microscope base, support and connecting block, support column fixed mounting is at the lower extreme of workstation, microscope base fixed mounting is at the rear of workstation upper end, the support column is located the below of microscope base, detection mechanism includes eyepiece, digital imager, adjusting knob, converter, objective table, circular nail, reflector and spotlight ware
The microscope base and the support are arranged to facilitate the identification of the detection mechanism to the somatic cells, but the detection mechanism and the imaging mechanism need to be carried respectively when moving, so that the movement is inconvenient.
Disclosure of utility model
The utility model aims to solve the defects in the prior art and provides a portable pulse imaging cell identification device.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a portable pulse imaging cell recognition device, includes the bottom plate, bottom plate one side articulates there is the mounting panel, the standing groove has been seted up to the mounting panel inner wall, and the standing groove inner wall articulates there is the display operation panel, and display operation panel one side outer wall articulates there is the backup pad, and the standing groove inner wall has been seted up with backup pad spacing complex draw-in groove, a plurality of slots have been seted up to bottom plate top outer wall, and a plurality of slots and mounting panel are located the different sides of bottom plate, and the slot inner wall peg graft has the inserted block, slot inner wall threaded connection has the bolt of screwing with the spacing complex of inserted block, the inserted block top is connected with the curb plate, the equal fixedly connected with chimb in curb plate and mounting panel top, a plurality of chimb outer wall sliding fit has same closing cap, closing cap and chimb lateral wall all are provided with the screw hole, and screw hole inner wall threaded connection has the hand to twist the bolt.
As a still further proposal of the utility model, the outer wall of the top of the bottom plate is provided with a bearing component, and the outer wall of the top of the bottom plate is fixed with an electron microscope main body positioned above one side of the bearing component through a supporting rod.
As a still further scheme of the utility model, the bearing assembly comprises a groove and a moving block, wherein the groove is formed in the outer wall of the top of the bottom plate, the moving block is in sliding fit with the inner wall of the groove, and the side wall of the top of the moving block is fixedly connected with two connecting frames which are perpendicular to each other.
As a still further scheme of the utility model, one end of each connecting frame is fixedly connected with the same placing frame, the outer wall of the top of each placing frame is fixedly provided with a steel clamp, the side wall of each groove is provided with a sliding groove, and the inner wall of each sliding groove is in sliding fit with a sliding plate.
As a still further scheme of the utility model, the inner walls of the two opposite sliding plates are rotatably connected with the same threaded rod, the threaded rods are in threaded fit with the moving block, the axes of the two threaded rods are mutually vertically staggered, the two threaded rods are positioned on two different planes, and one side of the sliding plate is provided with a motor for driving the threaded rods to rotate.
As a still further scheme of the utility model, the inner wall of the groove is fixedly provided with a light source, the light source is positioned above the top of the moving block, the outer wall of the bottom plate is provided with a light hole positioned above the light source, and the light source is LED pulse.
As a still further scheme of the utility model, a limiting rod is arranged in the middle of the moving block, two moving plates are slidably matched with the inner wall of the groove, and the limiting rod is slidably matched with the inner wall of the moving plate.
Compared with the prior art, the utility model provides a portable pulse imaging cell identification device, which has the following beneficial effects:
1. according to the utility model, the mounting plate, the support plate, the convex edge, the slot, the side plate, the insert block and the closing cover are arranged, so that the electron microscope main body, the bearing assembly and the display operation panel can be folded to form a rectangular whole, and the carrying of the device is facilitated.
2. According to the utility model, the bearing assembly is arranged, so that the position of the cell specimen can be automatically adjusted, the displacement is accurate, and the operation is convenient.
3. According to the utility model, the light source is set as the LED pulse, so that the total illumination time can be reduced, and the phototoxicity can be effectively reduced.
The device has the advantages that the parts which are not involved in the device are the same as or can be realized by adopting the prior art, and the device has a simple structure and is convenient to operate.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a portable pulse imaging cell recognition device according to the present utility model;
FIG. 2 is a schematic diagram of a side plate of a portable pulse imaging cell recognition device according to the present utility model;
FIG. 3 is a schematic diagram of a portable pulse imaging cell identification device closure cap according to the present utility model;
FIG. 4 is a schematic diagram of a portable pulse imaging cell recognition device carrying assembly according to the present utility model;
Fig. 5 is a cross-sectional view of a portable pulse imaging cell recognition device carrier assembly according to the present utility model.
1, A bottom plate, 2, a support rod, 3, an electron microscope main body, 4, a bearing component, 5, a mounting plate, 6, a display operation panel, 7, a support plate, 8, a convex edge, 9, a slot, 10, a side plate, 11, an inserting block, 12, a closing cover, 13, a moving block, 14, a connecting frame, 15, a groove, 16, a placing frame, 17, a moving plate, 18, a threaded rod, 19, a sliding plate, 20, a limiting rod, 21 and a light source.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Example 1
The utility model provides a portable pulse imaging cell recognition device, shown in fig. 1 through 3, includes bottom plate 1, bottom plate 1 top outer wall is provided with and bears subassembly 4, bottom plate 1 top outer wall is fixed with electron microscope main part 3 that is located bearing subassembly 4 one side top through bracing piece 2, electron microscope main part 3 is prior art, and the well-known basic structure and the theory of operation of technical personnel are here not repeated, bottom plate 1 one side articulates there is mounting panel 5, the standing groove has been seted up to mounting panel 5 inner wall, and the standing groove inner wall articulates there is display operation panel 6, and display operation panel 6 one side outer wall articulates there is backup pad 7, and the standing groove inner wall has seted up the draw-in groove with backup pad 7 spacing complex, a plurality of slots 9 have been seted up to bottom plate 1 top outer wall, a plurality of slots 9 and mounting panel 5 are located the different sides of bottom plate 1, and slot 9 inner wall grafting has plug 11, slot 9 inner wall threaded connection has the hand screw bolt with plug 11 spacing complex, plug 11 top is connected with curb plate 10, curb plate 10 and 5 top fixedly connected with chimb 8, a plurality of outer walls 8 sliding fit have a closing cap 12, and screw hole 8 screw hole connection.
When the device is used, the bottom plate 1 is placed on a working table, the hand-screwed bolts are dismounted, the closing cover 12 and the side plates 10 are sequentially taken down, then the convex edge 8 is unfolded to one side, the display operation panel 6 is pulled out from the convex edge 8, the clamping groove is clamped into one end of the supporting plate 7 to support the display operation panel 6, the device is reversely operated to form a rectangular whole during carrying, when cells are imaged, the cell specimen is fixedly placed on the top of the bearing assembly 4, the electron microscope main body 3 is regulated, the shot image is transmitted to the display operation panel 6 by the electron microscope main body 3 for displaying, then the position of the cell specimen is regulated by the bearing assembly 4, and the microscopic imaging position is changed.
Through being provided with mounting panel 5, backup pad 7, chimb 8, slot 9, curb plate 10, inserted block 11 and closing cap 12, can be with electron microscope main part 3, bear subassembly 4 and show that operating panel 6 fold and form a rectangle whole, be convenient for the transport to the device.
Example 2
The embodiment is based on embodiment 1 and improves the following, as shown in fig. 3 to 4, the bearing component 4 includes a groove 15 and a moving block 13, the groove 15 is formed on the top outer wall of the bottom plate 1, the moving block 13 is slidably matched with the inner wall of the groove 15, two connecting frames 14 which are perpendicular to each other are fixedly connected to the top side wall of the moving block 13, one end of each connecting frame 14 is fixedly connected with a same placing frame 16, a steel clamp is fixedly arranged on the top outer wall of each placing frame 16, a sliding groove is formed on the side wall of the groove 15, a sliding plate 19 is slidably matched on the inner wall of the sliding groove, the same threaded rod 18 is rotatably connected with the inner wall of the corresponding two sliding plates 19, the threaded rod 18 is in threaded fit with the moving block 13, the axes of the two threaded rods 18 are vertically staggered, the two threaded rods 18 are located on two different planes, a motor for driving the threaded rod 18 to rotate is installed on one side of the sliding plate 19, a light source 21 is fixedly installed on the inner wall of the groove 15, the light source 21 is located above the top of the moving block 13, a pulse hole 21 is formed in the outer wall of the bottom plate 1, a light source 21 is located above the light source 21, a pulse hole 21 is formed in the middle of the inner wall of the bottom plate 1, the light source 21 is arranged on the inner wall of the light source 21, and the light source is matched with the light source 20, and the light source 20 is arranged on the middle wall of the light source 17.
During adjustment, one sliding plate 19 drives the threaded rod 18 to move, so that the moving block 13 moves along the threaded rod 18 and the moving plate 17 to drive the placement frame 16 to change the image position, the movement of the X axis and the y axis is realized through the two sliding plates 19, the light source 21 illuminates through the light holes, and meanwhile, the total illumination time can be reduced due to the fact that the light source 21 is an LED pulse, and phototoxicity is effectively reduced.
Through being provided with bearing assembly 4, can adjust the position of cell specimen voluntarily, the displacement is accurate, convenient operation.
By setting the light source 21 as an LED pulse, the total illumination time can be reduced, effectively reducing phototoxicity.
When the device is used, the bottom plate 1 is placed on a working table, the hand-screwed bolts are removed, the sealing cover 12 and the side plates 10 are sequentially removed, then the convex edge 8 is unfolded to one side, the display operation panel 6 is pulled out of the convex edge 8, one end of the supporting plate 7 is clamped into the clamping groove to support the display operation panel 6, the device is formed into a rectangular whole by reverse operation during carrying, a cell specimen is fixedly placed on the top of the bearing component 4 during cell imaging, the electron microscope main body 3 is regulated, the electron microscope main body 3 transmits a shot image to the display operation panel 6 for display, then the sliding plate 19 drives the threaded rod 18 to move, the moving block 13 moves along the threaded rod 18 and the moving plate 17 to drive the placing frame 16 to change the image position, the X-axis and the y-axis are moved through the two sliding plates 19, the light source 21 illuminates through the light transmission holes, meanwhile, the total illumination time can be reduced, and phototoxicity is effectively reduced due to the fact that the light source 21 is an LED pulse.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.
Claims (7)
1. The utility model provides a portable pulse imaging cell recognition device, includes bottom plate (1), its characterized in that, bottom plate (1) one side articulates there is mounting panel (5), the standing groove has been seted up to mounting panel (5) inner wall, and the standing groove inner wall articulates there is display operation panel (6), and display operation panel (6) one side outer wall articulates there is backup pad (7), and standing groove inner wall seted up with backup pad (7) spacing complex draw-in groove, a plurality of slots (9) have been seted up to bottom plate (1) top outer wall, a plurality of slots (9) and mounting panel (5) are located the different sides of bottom plate (1), and slot (9) inner wall grafting has insert block (11), insert block (9) inner wall threaded connection has with insert block (11) spacing complex hand screw bolt, insert block (11) top is connected with curb plate (10), equal fixedly connected with chimb (8) in curb plate (10) and mounting panel (5) top, a plurality of chimb (8) outer wall sliding fit has same closing cap (12), closing cap (12) and chimb (8) lateral wall all are provided with the screw hole, screw hole threaded connection.
2. The portable pulse imaging cell identification device according to claim 1, wherein the top outer wall of the bottom plate (1) is provided with a bearing component (4), and the top outer wall of the bottom plate (1) is fixed with an electron microscope main body (3) above one side of the bearing component (4) through a supporting rod (2).
3. The portable pulse imaging cell identification device according to claim 2, wherein the bearing assembly (4) comprises a groove (15) and a moving block (13), the groove (15) is formed in the outer wall of the top of the bottom plate (1), the moving block (13) is slidably matched with the inner wall of the groove (15), and two connecting frames (14) perpendicular to each other are fixedly connected to the side wall of the top of the moving block (13).
4. A portable pulse imaging cell identification device according to claim 3, characterized in that one end of each of the two connecting frames (14) is fixedly connected with the same placing frame (16), a steel clamp is fixed on the outer wall of the top of the placing frame (16), a sliding groove is formed in the side wall of the groove (15), and a sliding plate (19) is slidably matched with the inner wall of the sliding groove.
5. The portable pulse imaging cell identification device according to claim 4, wherein the same threaded rod (18) is rotatably connected to the inner walls of the two opposite sliding plates (19), the threaded rods (18) are in threaded fit with the moving block (13), the axes of the two threaded rods (18) are mutually vertically staggered, the two threaded rods (18) are located on two different planes, and a motor for driving the threaded rods (18) to rotate is installed on one side of the sliding plates (19).
6. A portable pulse imaging cell identification device according to claim 3, characterized in that the inner wall of the groove (15) is fixedly provided with a light source (21), the light source (21) is positioned above the top of the moving block (13), the outer wall of the bottom plate (1) is provided with a light hole positioned above the light source (21), and the light source (21) is an LED pulse.
7. A portable pulse imaging cell identification device according to claim 3, characterized in that a limit rod (20) is arranged in the middle of the moving block (13), two moving plates (17) are slidably matched with the inner wall of the groove (15), and the limit rod (20) is slidably matched with the inner wall of the moving plate (17).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520930075.3U CN224203096U (en) | 2025-05-13 | 2025-05-13 | Portable pulse imaging cell identification device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520930075.3U CN224203096U (en) | 2025-05-13 | 2025-05-13 | Portable pulse imaging cell identification device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN224203096U true CN224203096U (en) | 2026-05-05 |
Family
ID=99615807
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520930075.3U Active CN224203096U (en) | 2025-05-13 | 2025-05-13 | Portable pulse imaging cell identification device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN224203096U (en) |
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2025
- 2025-05-13 CN CN202520930075.3U patent/CN224203096U/en active Active
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant |