Stem cell resuscitation oscillation device
By designing a stem cell resuscitation oscillation device with an automated vibration mode and a cushioning layer, the problems of uneven manual stirring and excessive oscillation in existing devices are solved, and the stability and ease of operation of the stem cell resuscitation process are achieved.
Patent Information
- Application Number
- CN202421534273.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-01
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-07-01
AI Technical Summary
Existing stem cell oscillation devices require continuous manual stirring during use, which leads to poor management or uneven stirring. In addition, they lack a good buffer device, and excessive oscillation affects the cell recovery effect.
A stem cell recovery oscillation device was designed, which includes a fixed plate, a rotating component, a shock-absorbing layer, and a cryopreservation tube. The device provides an automated vibration mode by rotating the screw. Combined with components such as the shock-absorbing layer and a protective ring, the device structure is optimized, the stability and connection tightness are improved, and the adverse effects of vibration on cells are reduced.
The automation and stability of the stem cell recovery process are achieved, huge shocks are reduced, the stability and flexibility of the device are improved, installation and cleaning are facilitated, and the operating effect is optimized.
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Figure CN223304460U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of oscillation devices, in particular to a stem cell resuscitation oscillation device. Background Art
[0002] In existing technologies, most stem cell oscillation devices require continuous manual stirring during use, resulting in multiple oscillations that may cause poor management or uneven stirring, which is not conducive to stem cell recovery. In addition, the lack of a good buffer device or excessive oscillation during the oscillation process may have adverse effects on stem cell recovery, affecting the operation effect, etc. Utility Model Content
[0003] The purpose of the present utility model is to provide a stem cell resuscitation oscillator device to solve the problems of most of the above-mentioned stem cell resuscitation devices, such as the need for uninterrupted manual repeated stirring during use, resulting in multiple oscillations, which may cause poor management or uneven stirring, which is not conducive to stem cell resuscitation, and the lack of a good buffer device or excessive oscillation during the oscillation process, which may cause adverse effects on stem cell resuscitation and affect the operation effect.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solution: it includes a fixed plate, a first protective wall is fixedly connected to the middle of the top of the fixed plate, a rotating assembly is arranged in the middle of the top of the first protective wall, a fixed column is arranged in the middle of the top of the rotating assembly, a shock-absorbing layer is arranged in the middle of the top of the fixed column, and a freezing tube is arranged in the middle of the top of the shock-absorbing layer.
[0005] As a further solution of the present invention: a first rotating opening is opened through the middle of the top of the rotating component, a rotating screw is provided on the inner wall of the first rotating opening, and a first screw opening is opened through the middle of the top of the rotating screw. The rotating device can provide a partially automated vibration mode for stem cell resuscitation, and generates an oscillating force through slight rotation, thereby facilitating the optimization of the structure of the oscillation device. The top of the rotating screw is connected to the top of the connecting coil through a stable threaded connection, which greatly improves the stability of the device and the tightness of the connection. At the same time, it is easy to install and disassemble, clean, and has strong flexibility.
[0006] As a further solution of the present invention: a stabilizing block is rotatably connected to the middle of the bottom of the rotating assembly, a protective ring is fixedly connected to the middle of the bottom of the stabilizing block, and a connecting line is provided in the middle of the bottom of the protective ring. The protective device can provide stable support for the bottom of the oscillation device.
[0007] As a further solution of the present invention: a connecting screw ring is fixedly connected to the middle of the bottom of the fixed column, a second ring is fixedly connected to the middle of the top of the fixed column, and a second pipe opening is opened through the middle of the top of the second ring. The installation of multiple rings is used to protect the internal components to prevent them from falling off. At the same time, reasonable measurement of the length can be made, which is convenient for controlling the length of devices such as test tubes.
[0008] As a further solution of the present invention: a shock-absorbing layer is provided in the middle of the inner wall of the second pipe opening, a third pipe opening is opened through the middle of the top of the shock-absorbing layer, and a freezing tube is provided in the middle of the top of the third pipe opening. The shock-absorbing layer can reduce the huge shock caused by its automated vibration during operation, so that the device maintains a slight and smooth movement.
[0009] As a further solution of the present invention: a first ring is fixedly connected to the top of the outer wall of the freezing tube, a connecting ring is fixedly connected to the middle of the top of the first ring, and a first pipe opening is opened in the middle of the top of the first ring at a position matching the connecting ring. The connecting ring can connect other components to the top, and additional parts can be added, which has strong flexibility.
[0010] As a further solution of the present invention: a plurality of first mounting holes are evenly opened around the top of the fixed plate, and a fixing bolt is provided in the middle of the top of the plurality of first mounting holes, which has a strong stabilizing effect on the fixed installation of the bottom, thereby fully maintaining the smooth operation of the device.
[0011] Compared with the prior art, the beneficial effects of the present invention are:
[0012] 1. In the present invention, by installing the rotating device, a partially automated vibration mode can be provided for stem cell resuscitation. The vibration force is generated by slight rotation. By installing multiple protective rings and stabilizing blocks, the structure of the vibration device is optimized. By installing multiple fixing components on the bottom, it has a strong stabilizing effect, thereby fully maintaining the smooth operation of the device.
[0013] 2. In the present invention, by installing a plurality of ferrules, it can be used to protect the internal components and prevent them from falling off. At the same time, reasonable measurement of the length can be made, which is convenient for controlling the length of devices such as test tubes. By installing a shock-absorbing layer, the huge shock caused by the automatic vibration during operation can be reduced, so that the device can maintain a slight and smooth movement with strong stability. By installing a connecting ring, other components can be connected to the top, and additional parts can be added, which has strong flexibility. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is the structural front view of the utility model;
[0015] Figure 2 This is a schematic diagram of the structure of the rotating screw in the present utility model;
[0016] Figure 3 This is a schematic diagram of the structure of the connecting screw in the present utility model;
[0017] Figure 4 For this utility model Figure 1 A magnified schematic diagram of the structure.
[0018] In the figure: 1. Fixed plate; 101. First mounting hole; 102. Fixed bolt; 2. First protective wall; 3. Rotating assembly; 301. First rotating opening; 302. Rotating screw; 303. First screw opening; 304. Stabilizing block; 305. Protective ring; 306. Connecting line; 4. Fixed column; 401. Connecting screw ring; 402. Second ring; 403. Second pipe opening; 5. Shock-absorbing layer; 501. Third pipe opening; 6. Cryopreservation tube; 601. First ring; 602. Connecting ring; 603. First pipe opening. DETAILED DESCRIPTION
[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0020] See also Figures 1 to 4 In an embodiment of the utility model, it includes a fixed disk 1, a first protective wall 2 is fixedly connected to the middle of the top of the fixed disk 1, a rotating component 3 is provided in the middle of the top of the first protective wall 2, a fixed column 4 is provided in the middle of the top of the rotating component 3, a shock-absorbing layer 5 is provided in the middle of the top of the fixed column 4, and a freezing tube 6 is provided in the middle of the top of the shock-absorbing layer 5.
[0021] Among them, a first rotating opening 301 is opened through the middle of the top of the rotating component 3, a rotating screw 302 is provided on the inner wall of the first rotating opening 301, and a first screw opening 303 is opened through the middle of the top of the rotating screw 302. The rotating device can provide an automated vibration mode for stem cell resuscitation, generate an oscillating force through slight rotation, and thus facilitate the optimization of the structure of the oscillation device. The top of the rotating screw 302 and the top of the connecting coil 401 are connected by a stable thread, which greatly improves the stability of the device and the tightness of the connection. At the same time, it is easy to install and disassemble, clean, and has strong flexibility.
[0022] The middle of the bottom of the rotating component 3 is rotatably connected to a stabilizing block 304, the middle of the bottom of the stabilizing block 304 is fixedly connected to a protective ring 305, and the middle of the bottom of the protective ring 305 is provided with a connecting line 306. This protective device can provide stable support for the bottom of the oscillation device.
[0023] A connecting screw ring 401 is fixedly connected to the middle of the bottom of the fixed column 4, and a second ring 402 is fixedly connected to the middle of the top of the fixed column 4. A second pipe opening 403 is opened through the middle of the top of the second ring 402. The installation of multiple rings is used to protect the internal components to prevent them from falling off. At the same time, reasonable measurement of the length can be made, which is convenient for controlling the length of devices such as test tubes.
[0024] A shock-absorbing layer 5 is provided in the middle of the inner wall of the second pipe opening 403, a third pipe opening 501 is opened through the middle of the top of the shock-absorbing layer 5, and a freezing tube 6 is provided in the middle of the top of the third pipe opening 501. The shock-absorbing layer 5 can reduce the huge shock caused by its automated vibration during operation, so that the device maintains a slight and smooth movement.
[0025] The top of the outer wall of the freezing tube 6 is fixedly connected to a first ring 601, the middle of the top of the first ring 601 is fixedly connected to a connecting ring 602, and a first pipe opening 603 is provided in the middle of the top of the first ring 601 at a position matching the connecting ring 602. The connecting ring 602 can be used to connect other components to the top, and additional parts can be added, which has strong flexibility.
[0026] A plurality of first mounting holes 101 are evenly arranged around the top of the fixing plate 1, and a fixing bolt 102 is provided in the middle of the top of each of the plurality of first mounting holes 101, which has a strong stabilizing effect on the fixed installation of the bottom, thereby fully maintaining the smooth operation of the device.
[0027] The working principle of the present invention is as follows: in the device, by placing the cryopreservation tube 6 into the fixed column 4, the shock-absorbing layer 5 installed on the outer wall can reduce the vibration pressure while ensuring that the stem cells are revived and complete the vibration process. Among them, the top of the rotating screw 302 and the bottom of the fixed column 4 are connected to the vibration device through a threaded connection, and then the automatic vibration process is completed by rotating the rotating screw. The device has good stability during vibration, is easy to disassemble, and is convenient to operate. It also has a strong protective effect on the cryopreservation tube 6 during operation, which fully optimizes the subsequent recovery by water bath, etc.
[0028] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A stem cell resuscitation oscillating device comprising a fixed plate (1), characterized in that: A first protective wall (2) is fixedly connected to the middle of the top of the fixed disk (1), a rotating assembly (3) is arranged in the middle of the top of the first protective wall (2), a fixed column (4) is arranged in the middle of the top of the rotating assembly (3), a shock-absorbing layer (5) is arranged in the middle of the top of the fixed column (4), and a freezing tube (6) is arranged in the middle of the top of the shock-absorbing layer (5).
2. The stem cell resuscitation oscillation device according to claim 1, characterized in that: A first rotation opening (301) is provided through the middle of the top of the rotation component (3), a rotation screw (302) is provided on the inner wall of the first rotation opening (301), and a first screw opening (303) is provided through the middle of the top of the rotation screw (302).
3. The stem cell resuscitation oscillation device according to claim 1, characterized in that: The middle of the bottom of the rotating assembly (3) is rotatably connected to a stabilizing block (304), the middle of the bottom of the stabilizing block (304) is fixedly connected to a protective ring (305), and the middle of the bottom of the protective ring (305) is provided with a connecting line (306).
4. The stem cell resuscitation oscillation device according to claim 1, characterized in that: A connecting screw ring (401) is fixedly connected to the middle of the bottom of the fixing column (4), a second collar (402) is fixedly connected to the middle of the top of the fixing column (4), and a second pipe opening (403) is opened through the middle of the top of the second collar (402).
5. The stem cell resuscitation oscillation device according to claim 4, characterized in that: A shock-absorbing layer (5) is provided in the middle of the inner wall of the second pipe opening (403), a third pipe opening (501) is provided through the middle of the top of the shock-absorbing layer (5), and a freezing tube (6) is provided in the middle of the top of the third pipe opening (501).
6. The stem cell resuscitation oscillation device according to claim 1, characterized in that: The top of the outer wall of the freezing tube (6) is fixedly connected to a first collar (601), the middle of the top of the first collar (601) is fixedly connected to a connecting ring (602), and a first pipe opening (603) is provided in the middle of the top of the first collar (601) at a position matching the connecting ring (602).
7. The stem cell resuscitation oscillation device according to claim 1, characterized in that: A plurality of first mounting holes (101) are evenly opened on the four sides of the top of the fixing plate (1), and a fixing bolt (102) is provided in the middle of the top of each of the plurality of first mounting holes (101).