Correcting device and automated pathology archive management system
By using a calibration device to level the pathology slide tray, the problem of unstable gripping caused by aging and deformation of the slide tray is solved, ensuring the safety of pathology slides and the reliability of management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN MEGAROBO TECH CO LTD
- Filing Date
- 2025-08-27
- Publication Date
- 2026-08-04
AI Technical Summary
After prolonged use, pathology slide trays are prone to aging, deformation, or warping, causing the slides to lose their horizontal position and easily fall when grasped by mechanical equipment, leading to safety hazards and legal disputes.
A calibration device is designed, including a support platform, a calibration component, and an actuation component. The opposing movement of the calibration component applies a vertically downward force to the edge of the slide disk, correcting it to a horizontal state. Combined with a positioning block, it ensures stable positioning.
This effectively ensures the safe handling of pathology slides, preventing them from falling or breaking, reducing the risk of medical disputes, and improving the security and reliability of pathology record management.
Smart Images

Figure CN224590155U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of pathological sample management, specifically to a calibration device and an automated pathological record management system. Background Technology
[0002] In medical diagnosis, doctors need to observe the morphology and structure of cells under a microscope to help them determine the nature of a disease. Pathology slides are transparent glass slides used to hold human tissue or cell samples for easy observation by doctors.
[0003] After diagnosis, pathology slides need to be preserved long-term for diagnostic purposes or for patient access. Specifically, multiple slides can be placed sequentially on a slide tray, and the tray can be retrieved using mechanical equipment for unified filing and storage. However, slide trays are usually made of plastic, and over time, they are prone to aging, deformation, or warping. This makes it difficult to keep the slides level, and when using mechanical equipment to retrieve them, the slides may fall and break due to a loose grip. This not only affects patient follow-up examinations but can also lead to legal disputes and increase tensions between doctors and patients. Utility Model Content
[0004] In order to at least partially solve the problems existing in the prior art, according to one aspect of the present invention, a calibration device is provided.
[0005] The calibration device includes a support platform, a calibration assembly, and an actuation assembly. The support platform supports the workpiece to be calibrated. The calibration assembly includes a first calibration member and a second calibration member disposed on opposite sides of the support platform. The first and second calibration members are respectively connected to the actuation assembly, and the first and second calibration members are driven to move in opposite directions by the actuation assembly. At least one of the first and second calibration members is provided with a calibration part, which is configured to: when the first and second calibration members approach each other, press against the edge of the workpiece to be calibrated and apply at least a vertically downward force to the workpiece to calibrate the plane containing the workpiece to be calibrated until it is parallel to the horizontal plane.
[0006] The calibration device of this invention, after the workpiece to be calibrated is placed on the support platform, the actuating component can drive the first and second calibration components to move closer together, so that the calibration parts on the first and / or second calibration components can act on the edge of the workpiece to be calibrated, thereby calibrating the edge of the workpiece. When using the calibration device to calibrate a slide tray containing pathology slides, it can ensure that the slide tray is in a horizontal state, so that the mechanical equipment can easily and firmly grasp the pathology slides, effectively ensuring the safety when grasping the pathology slides and avoiding potential legal disputes and conflicts between doctors and patients.
[0007] For example, a plurality of positioning blocks are provided on the support platform, and the plurality of positioning blocks abut against the outer edge of the part to be calibrated to position the part to be calibrated on the support platform.
[0008] For example, the correction part includes a first part and a second part connected to each other. The first part abuts against a first sidewall of the part to be corrected, and the second part abuts against a second sidewall of the part to be corrected. The first sidewall and the second sidewall are adjacent to each other.
[0009] For example, the first part includes a third sidewall and a fourth sidewall connected by an arcuate wall surface, which is used to abut against the edge of the part to be corrected.
[0010] For example, the radius of the arc containing the curved wall is in the range of 1 mm to 2 mm.
[0011] For example, the arc-shaped wall has a first connecting portion connected to the third side and a second connecting portion connected to the fourth side wall. The first connecting portion and the fourth side wall have a first distance in the vertical direction, and the value of the first distance is in the range of 2 mm to 3 mm. The second connecting portion and the third side wall have a second distance in the horizontal direction, and the value of the second distance is in the range of 1.5 mm to 2.5 mm.
[0012] For example, the actuation component is disposed on the support platform and located at one end of the support platform, and the first end of the first calibration member and the first end of the second calibration member are respectively connected to the actuation component.
[0013] For example, the actuation assembly includes a drive member, a timing belt, and a timing pulley set. The timing belt is sleeved on the outside of the timing pulley set. The first and second alignment members are respectively connected to the timing belt. The drive member is used to drive the timing pulley set to rotate, so as to drive the first and second alignment members to move towards each other through the timing belt.
[0014] For example, the synchronous pulley set includes a driving pulley and a driven pulley. The driving pulley is connected to a driving member. A synchronous belt is sleeved on the outside of the driving pulley and the driven pulley. The synchronous belt has a first belt body and a second belt body connected to each other. A first straightening member is connected to the first belt body, and a second straightening member is connected to the second belt body. When the driving member drives the driving pulley to rotate, the first belt body is used to drive the first straightening member connected to it to move in a first direction, and the second belt body is used to drive the second straightening member connected to it to move in a second direction. The first direction and the second direction are opposite.
[0015] For example, the calibration device further includes a first guide component and a second guide component, both of which are disposed on the support platform. The first guide component is connected to the second end of the first calibration member, and the second guide component is connected to the second end of the second calibration member, so as to guide the first calibration member and the second calibration member to move towards each other under the drive of the actuation component.
[0016] For example, the first guide assembly and / or the second guide assembly includes a slide rail and a slider slidably connected to the slide rail, one of the slide rail and the slider being connected to a support platform, and the other of the slide rail and the slider being connected to the second end of the first correction member and / or the second end of the second correction member, respectively.
[0017] According to another aspect of the present invention, an automated pathology record management system is also provided, including a first transport device, a second transport device, and a calibration device as described above. The items to be calibrated include at least a slide tray. The first transport device is used to transport the slide tray to the support platform of the calibration device so as to calibrate the slide tray by the calibration component. The second transport device is used to transfer the pathological slides on the calibrated slide tray.
[0018] The automated pathology record management system of this utility model includes the correction device as described above. Since the correction device has the beneficial effects described above, the automated pathology record management system including the correction device as described above will also necessarily have the beneficial effects described above.
[0019] The above description is merely an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of this utility model more obvious and understandable, specific embodiments of this utility model are given below. Attached Figure Description
[0020] The above and other objects, features, and advantages of this utility model will become more apparent from the more detailed description of the embodiments thereof in conjunction with the accompanying drawings. The drawings are provided to further illustrate the embodiments of this utility model and form part of the specification. They are used together with the embodiments of this utility model to explain the utility model and do not constitute a limitation thereof. In the drawings, the same reference numerals generally represent the same components or steps.
[0021] Figure 1 A three-dimensional view of a correction device according to an exemplary embodiment of the present invention is shown. Figure 1 ;
[0022] Figure 2 A three-dimensional view of a correction device according to an exemplary embodiment of the present invention is shown. Figure 2 (Including parts to be calibrated);
[0023] Figure 3 A three-dimensional view of a correction device according to an exemplary embodiment of the present invention is shown. Figure 3 (Including parts to be calibrated);
[0024] Figure 4 A three-dimensional view of a correction section according to an exemplary embodiment of the present invention is shown. Figure 1 ;
[0025] Figure 5 A three-dimensional view of a correction section according to an exemplary embodiment of the present invention is shown. Figure 2 ;
[0026] Figure 6 A cross-sectional view of the correction section according to an exemplary embodiment of the present invention is shown;
[0027] Figure 7 A perspective view of an automated pathology record management system according to an exemplary embodiment of the present invention is shown.
[0028] The components indicated by the reference numerals in the figures are as follows:
[0029] 1. Calibration device; 10. Support platform; 110. Positioning block; 11. Calibration assembly; 111. First calibration component; 112. Second calibration component; 113. Calibration section; 1131. First part; 1131a. Third side wall; 1131b. Fourth side wall; 1131c. Arc-shaped wall surface; 1131d. First connecting part; 1131e. Second connecting part; 1132. Second part; 12. Actuation assembly; 121. Drive component; 122. Synchronous belt; 1221. First belt body; 1222. Second belt body; 123. Synchronous pulley set; 1231. Driven pulley; 13. First guide assembly; 14. Second guide assembly; 131. Slide rail; 132. Slider; 2. Automated pathology record management system; 20. First transport device; 21. Second transport device; 3. Item to be calibrated; 30. First side wall; 31. Second side wall. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of this utility model more apparent, exemplary embodiments according to this utility model will be described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are merely some embodiments of this utility model, and not all embodiments of this utility model. It should be understood that this utility model is not limited to the exemplary embodiments described herein. Based on the embodiments of this utility model described herein, all other embodiments obtained by those skilled in the art without inventive effort should fall within the protection scope of this utility model.
[0031] In the following description, numerous details are provided to enable a thorough understanding of the present invention. However, those skilled in the art will appreciate that the following description merely illustrates preferred embodiments of the present invention, which may be practiced without one or more of these details. Furthermore, to avoid confusion with the present invention, some technical features well-known in the art have not been described in detail.
[0032] To fully understand the embodiments of this utility model, a detailed structure will be presented in the following description. Obviously, the implementation of the embodiments of this utility model is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of this utility model are described in detail below; however, in addition to these detailed descriptions, this utility model may have other embodiments.
[0033] One embodiment of this utility model provides a correction device 1, which can apply at least a vertically downward force to the part 3 to be corrected, so as to correct the plane on which the part 3 is located to be corrected to be parallel to the horizontal plane. The correction device 1 according to an embodiment of this utility model will be described in detail below with reference to the accompanying drawings.
[0034] like Figures 1 to 3 As shown, the calibration device 1 includes a support platform 10, a calibration assembly 11, and an actuation assembly 12. The support platform 10 is used to support the workpiece 3 to be calibrated. The calibration assembly 11 includes a first calibration member 111 and a second calibration member 112 disposed on opposite sides of the support platform 10. The first calibration member 111 and the second calibration member 112 are respectively connected to the actuation assembly 12, and the first calibration member 111 and the second calibration member 112 are driven to move towards each other by the actuation assembly 12. At least one of the first calibration member 111 and the second calibration member 112 is provided with a calibration part 113, which is configured to: when the first calibration member 111 and the second calibration member 112 approach each other, press against the edge of the workpiece 3 to apply at least a vertically downward force to the workpiece 3 to calibrate the plane containing the workpiece 3 to be parallel to the horizontal plane.
[0035] The aforementioned support platform 10 can be plate-shaped, and the part to be calibrated 3 can be placed on the plate-shaped support platform 10, so as to support the part to be calibrated 3 while reducing the volume of the calibration device 1 and reducing the volume occupied by the calibration device 1.
[0036] like Figure 4 and Figure 5 As shown, the first correction member 111 and the second correction member 112 can be elongated. The size of the elongated first correction member 111 and the second correction member 112 can be adapted to the edge of the part 3 to be corrected, so that the force can be applied evenly to the part 3 to be corrected.
[0037] Figure 3 A perspective view is shown of a bent or warped workpiece 3 placed on a support platform 10, as follows. Figure 3 As shown, the actuation assembly 12 can drive the first corrector 111 and the second corrector 112 to move away from or towards each other. The correcting part 113 can be disposed on the side of the first corrector 111 and / or the second corrector 112 near the support platform 10. When the first corrector 111 and the second corrector 112 move away from each other, the bent or warped piece 3 to be corrected can be placed on the support platform 10. When the first corrector 111 and the second corrector 112 move towards each other, the correcting part 113 can abut against the edge of the piece 3 to be corrected and apply at least a vertically downward force to the piece 3 to be corrected, thereby smoothing the bent or warped piece 3 and bringing it to a horizontal position.
[0038] The calibration device 1 of this invention, after the workpiece 3 to be calibrated is placed on the support platform 10, the actuation component 12 can drive the first calibration component 111 and the second calibration component 112 to move closer together, so that the calibration part 113 on the first calibration component 111 and / or the second calibration component 112 can act on the edge of the workpiece 3 to calibrate it. When using the calibration device 1 to calibrate a slide tray containing pathological slides, it can ensure that the slide tray is in a horizontal state, so that the mechanical equipment can easily and firmly grasp the pathological slides, effectively ensuring the safety when grasping the pathological slides and avoiding potential legal disputes and conflicts between doctors and patients.
[0039] In some embodiments, such as Figure 1 and Figure 2 As shown, a plurality of positioning blocks 110 are provided on the support platform 10. The plurality of positioning blocks 110 abut against the outer edge of the part 3 to be corrected in order to position the part 3 to be corrected on the support platform 10.
[0040] The positioning block 110 can be elongated. Multiple elongated positioning blocks 110 can be arranged along the outer edge of the upper surface of the support platform 10. The space enclosed by the multiple positioning blocks 110 can be adapted to the outer contour of the part 3 to be corrected. When the part 3 to be corrected is placed on the support platform 10, the outer wall of the part 3 to be corrected can abut against the positioning block 110, thereby firmly fixing the part 3 to be corrected on the support platform 10.
[0041] In the above embodiments, the positioning block 110 can play a good limiting role for the calibrated part 3, preventing the calibrated part 3 from shifting position or falling off when the calibrating component 11 is calibrating it, thus effectively ensuring the calibration effect of the calibrating component 11, as well as the safety and reliability of the calibration device 1.
[0042] In some embodiments, such as Figures 3 to 5As shown, the correction part 113 includes a first part 1131 and a second part 1132 connected to each other. The first part 1131 abuts against the first side wall 30 of the part 3 to be corrected, and the second part 1132 abuts against the second side wall 31 of the part 3 to be corrected. The first side wall 30 and the second side wall 31 are adjacent to each other.
[0043] The first sidewall 30 can be specifically referred to as the upper wall surface of the part 3 to be corrected, and the second sidewall 31 can be specifically referred to as the sidewall surface of the part 3 to be corrected.
[0044] The first correction member 111 and / or the second correction member 112 facing the support platform 10 can be recessed inward to form the correction part 113. The first part 1131 and the second part 1132 can be adjacent inner sidewalls of the correction part 113. The first part 1131 can be used to apply a vertically downward force to the upper wall surface of the part 3 to be corrected, and the second part 1132 can be used to apply a horizontal force to the side wall surface of the part 3 to be corrected.
[0045] In the above embodiment, the first part 1131 of the correction part 113 can act on the first side wall 30 of the part 3 to be corrected, and the second part 1132 of the correction part 113 can act on the second side wall 31 of the part 3 to be corrected. In this way, the correction part can apply force to both side walls of the part 3 to be corrected at the same time, so as to avoid the part 3 to be corrected from undergoing secondary deformation due to uneven force during the correction process, effectively improving the stability of the correction part during the correction process, and also improving the correction effect.
[0046] In some embodiments, such as Figure 6 As shown, the first part 1131 includes a third sidewall 1131a and a fourth sidewall 1131b, which are connected by an arc-shaped wall surface 1131c, which is used to abut against the edge of the part 3 to be corrected.
[0047] The third sidewall 1131a can be constructed as a vertical wall, and the fourth sidewall 1131b can be constructed as a horizontal wall. The third sidewall 1131a and the fourth sidewall 1131b can be connected by an arc-shaped wall 1131c.
[0048] In the above embodiment, when the correction part 113 moves toward the part 3 to be corrected, the arc-shaped wall surface 1131c can not only apply force to the edge of the part 3 to be corrected, but also guide the edge of the part 3 to be corrected to move toward the fourth wall surface, so that there is a large contact area between the part 3 to be corrected and the correction part 113, thereby ensuring the correction effect of the correction component 11.
[0049] In some embodiments, the radius of the arc containing the curved wall 1131c ranges from 1 mm to 2 mm.
[0050] The radius of the arc on which the curved wall 1131c is located ranges from 1 mm to 2 mm, for example, 1 mm, 1.2 mm, 1.5 mm, 1.8 mm, 2 mm, etc., preferably 1.5 mm.
[0051] In the above embodiments, the arc-shaped wall surface 1131c with the above-mentioned value range can be applied to the parts 3 to be corrected with different degrees of deformation, effectively improving the practicality and applicability of the correction device 1.
[0052] In some embodiments, such as Figure 6 As shown, the arc-shaped wall 1131c has a first connecting portion 1131d connected to the third side wall 1131a and a second connecting portion 1131e connected to the fourth side wall 1131b. The first connecting portion 1131d and the fourth side wall 1131b have a first distance in the vertical direction, and the value of the first distance is in the range of 2 mm to 3 mm. The second connecting portion 1131e and the third side wall 1131a have a second distance in the horizontal direction, and the value of the second distance is in the range of 1.5 mm to 2.5 mm.
[0053] The first connecting part 1131d can be specifically represented as the connection between the arc-shaped wall 1131c and the third side wall 1131a. Similarly, the second connecting part 1131e can be specifically represented as the connection between the arc-shaped wall 1131c and the fourth side wall 1131b.
[0054] The value of the first distance mentioned above ranges from 2 mm to 3 mm, for example, 2 mm, 2.3 mm, 2.5 mm, 2.8 mm, 3 mm, etc., preferably 2.5 mm.
[0055] The value of the second distance mentioned above ranges from 1.5 mm to 2.5 mm, for example, 1.5 mm, 1.8 mm, 2 mm, 2.3 mm, 2.5 mm, etc., preferably 1.5 mm.
[0056] In the above embodiments, the first distance and the second distance having the above-mentioned value range can make the correction part 113 applicable to the workpiece 3 to be corrected with different degrees of deformation, further improving the practicality and applicability of the correction device 1.
[0057] In some embodiments, such as Figure 1 and Figure 2 As shown, the actuation assembly 12 is disposed on the support platform 10 and located at one end of the support platform 10. The first end of the first correction member 111 and the first end of the second correction member 112 are respectively connected to the actuation assembly 12.
[0058] In the above embodiment, the actuation component 12 can be disposed at one end of the support platform 10 and connected to the first correction component 111 and the second correction component 112 respectively. In this way, while ensuring that the actuation component 12 can drive the first correction component 111 and the second correction component 112 to move towards each other, the connection structure of the correction device 1 is also optimized, avoiding interference from the setting position of the actuation component 12 on the movement of the correction component 11 and the correction of the component to be corrected 3, and further improving the practicality of the correction device 1.
[0059] In some embodiments, such as Figure 1 and Figure 2 As shown, the actuation assembly 12 includes a drive member 121, a timing belt 122, and a timing pulley set 123. The timing belt 122 is sleeved on the outside of the timing pulley set 123. The first correction member 111 and the second correction member 112 are respectively connected to the timing belt 122. The drive member 121 is used to drive the timing pulley set 123 to rotate, so as to drive the first correction member 111 and the second correction member 112 to move towards each other through the timing belt 122.
[0060] In the above embodiment, the timing belt 122 can be sleeved on the outside of the timing pulley set 123. When the driving member 121 drives the timing pulley set 123 to rotate, the circumferential rotation of the timing pulley set 123 can be converted into the linear motion of the timing belt 122, thereby driving the first correction member 111 and the second correction member 112 to move towards each other. In this way, the first correction member 111 and the second correction member 112 can be driven to move synchronously by one driving member 121, which simplifies the connection structure of the correction device 1 and reduces the manufacturing difficulty and manufacturing cost of the correction device 1.
[0061] In some embodiments, such as Figure 1 and Figure 2 As shown, the synchronous pulley set 123 includes a driving pulley (not shown) and a driven pulley 1231. The driving pulley is connected to the driving member 121. The synchronous belt 122 is sleeved on the outside of the driving pulley and the driven pulley 1231. The synchronous belt 122 has a first belt body 1221 and a second belt body 1222 connected to each other. A first straightening member 111 is connected to the first belt body 1221, and a second straightening member 112 is connected to the second belt body 1222. When the driving member 121 drives the driving pulley to rotate, the first belt body 1221 is used to drive the first straightening member 111 connected to it to move in a first direction, and the second belt body 1222 is used to drive the second straightening member 112 connected to it to move in a second direction. The first direction and the second direction are opposite.
[0062] The output shaft of the aforementioned drive component 121 can be connected to the drive wheel to drive the drive wheel to rotate in a clockwise or counterclockwise direction, and drive the driven wheel 1231 to rotate synchronously through the synchronous belt 122.
[0063] The first and second directions mentioned above can be represented as opposite directions of motion along the X-axis in a Cartesian coordinate system. For example, when the first direction is specifically represented as a rightward motion, the second direction can be represented as a leftward motion. It is understood that when the first direction can be specifically represented as a leftward motion, the second direction can be represented as a rightward motion.
[0064] The first calibration element 111 can be connected to the first portion 1131 of the timing belt 122, and the second calibration element 112 can be connected to the second portion 1132 of the timing belt 122. Specifically, as shown... Figure 1 As shown, when the driving member 121 drives the driving wheel to rotate clockwise, the first part 1131 can move to the left under the influence of the driving wheel and the driven wheel 1231, while the second part 1132 can move to the right under the influence of the driving wheel and the driven wheel 1231. Conversely, when the driving member 121 drives the driving wheel to rotate clockwise, the first part 1131 can move to the right under the influence of the driving wheel and the driven wheel 1231, while the second part 1132 can move to the left under the influence of the driving wheel and the driven wheel 1231. In this way, the first correction member 111 and the second correction member 112, which are respectively connected to the first part 1131 and the second part 1132, are moved away from or closer to each other.
[0065] In the above embodiment, the circumferential rotation of the driving wheel and the driven wheel 1231 can be converted into the linear motion of the synchronous belt 122. Then, the synchronous belt 122 can drive the first correction member 111 and the second correction member 112 connected to it to move closer to each other or further away from each other, which further simplifies the connection structure of the correction device 1 and reduces the manufacturing difficulty and manufacturing cost of the correction device 1.
[0066] In some embodiments, such as Figure 1 and Figure 2 As shown, the correction device 1 also includes a first guide component 13 and a second guide component 14. Both the first guide component 13 and the second guide component 14 are disposed on the support platform 10. The first guide component 13 is connected to the second end of the first correction component 111, and the second guide component 14 is connected to the second end of the second correction component 112, so as to guide the first correction component 111 and the second correction component 112 to move towards each other under the drive of the actuation component 12.
[0067] When the driving member 121 is connected to the first end of the first correction member 111 and the first end of the second correction member 112 respectively, so as to drive the first correction member 111 and the second correction member 112 to move towards each other, the second end of the first correction member 111 and the second end of the second correction member 112 are far away from the driving member 121, which may easily lead to insufficient driving force during the movement. Therefore, the first guide component 13 can guide the movement of the second end of the first correction member 111, and the second guide component 14 can guide the movement of the second end of the second correction member 112. Furthermore, the first guide component 13 and the second guide component 14 can both be disposed on the support platform 10 and disposed opposite to the actuation component 12, which can optimize the connection structure of the correction device 1 and avoid the first guide component 13 and the second guide component 14 occupying additional space in the space occupied by the correction component 11.
[0068] In the above embodiments, when the driving member 121 drives the first corrector 111 and the second corrector 112 to move toward each other, the first guide component 13 can apply a force to the second force-receiving end of the first corrector 111, and the second guide component 14 can apply a force to the second force-receiving end of the second corrector 112, so that the driving force received by the second force-receiving end of the first corrector 111 and the second force-receiving end of the second corrector 112 can be equivalent to the driving force received by the first force-receiving end of the first corrector 111 and the first force-receiving end of the second corrector 112. This avoids the situation where the correction effect of the correction component 11 is poor due to insufficient driving force received by the second force-receiving end of the first corrector 111 and the second force-receiving end of the second corrector 112, and effectively improves the correction effect of the correction device 1.
[0069] In some embodiments, such as Figure 1 and Figure 2 As shown, the first guide assembly 13 and / or the second guide assembly 14 include a slide rail 131 and a slider 132 slidably connected to the slide rail 131. One of the slide rail 131 and the slider 132 is connected to the support platform 10, and the other of the slide rail 131 and the slider 132 is respectively connected to the second end of the first correction member 111 and / or the second end of the second correction member 112.
[0070] The slide rail 131 can be mounted on the support platform 10 along the first direction or the second direction, and the slider 132 can be slidably connected to the slide rail 131.
[0071] The slide rail 131 and the support platform 10 can be detachably connected or integrally formed. Detachable connections can include plug-in connections or adhesive connections, etc., which are not specifically limited in this application. Similarly, the slider 132 can also be detachably connected or integrally formed with the second end of the first correction member 111 and / or the second end of the second correction member 112, which will not be elaborated further here.
[0072] In the above embodiment, when the driving member 121 drives the first correction member 111 and the second correction member 112 to move towards each other, the slider 132 can slide smoothly along the slide rail 131 and drive the second end of the first correction member 111 and / or the second end of the second correction member 112 to move synchronously. While improving the overall stability of the correction component 11 during movement, it also ensures that the second force-bearing end of the first correction member 111 and the second force-bearing end of the second correction member 112 can receive sufficient driving force, thereby improving the correction effect of the correction device 1.
[0073] According to another aspect of this utility model, such as Figure 7 As shown, an automated pathology record management system 2 is also provided, including a first transport device 20, a second transport device 21, and a calibration device 1 as described above. The item to be calibrated 3 includes at least a slide tray. The first transport device 20 is used to transport the slide tray to the support platform 10 of the calibration device 1 so as to calibrate the slide tray by the calibration component 11. The second transport device 21 is used to transfer the pathological slides on the calibrated slide tray.
[0074] The slide trays mentioned above can be used to store pathological slides. In order to reduce the manufacturing and daily maintenance costs of the slide trays, they are usually made of plastic. However, during long-term use, the slide trays are prone to aging and deformation, which causes the pathological slides on them to be unable to maintain a horizontal position. As a result, when the second handling device 21 grabs the pathological slides, it is easy for the slides to fall and break due to the inability to hold them firmly.
[0075] The first transport device 20 can transfer the slide tray to the support platform 10 of the correction device 1. The correction device 1 can correct the deformed and warped slide tray, thereby ensuring that the pathological slide on it is in a horizontal state. Then, the second transport device 21 can be used to firmly and stably clamp the pathological slide.
[0076] The automated pathology record management system 2 of this utility model includes the correction device 1 as described above. Since the correction device 1 has the beneficial effects described above, the automated pathology record management system 2 including the correction device 1 as described above will also necessarily have the beneficial effects described above.
[0077] Although exemplary embodiments have been described herein with reference to the accompanying drawings, it should be understood that the above exemplary embodiments are merely illustrative and are not intended to limit the scope of the invention. Various changes and modifications can be made therein by those skilled in the art without departing from the scope and spirit of the invention. All such changes and modifications are intended to be included within the scope of the invention as claimed in the appended claims.
[0078] For ease of description, the term "connection" may be used herein to describe the relationship between one or more elements or features shown in the figure and other elements or features. It should be understood that "connection" may include direct connections or indirect connections via other elements or features, and this document is intended to encompass all such cases.
[0079] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, parts, components, and / or combinations thereof.
[0080] It should be noted that the terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in sequences other than those illustrated or described herein.
[0081] This utility model has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit the utility model to the described embodiments. Furthermore, those skilled in the art will understand that this utility model is not limited to the above embodiments, and many more variations and modifications can be made based on the teachings of this utility model, all of which fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A calibration device, characterized in that, include; A support platform, used to support the part to be calibrated; The correction assembly includes a first correction element and a second correction element disposed on opposite sides of the support platform; as well as An actuation assembly is provided, wherein the first correction member and the second correction member are respectively connected to the actuation assembly, and the first correction member and the second correction member are driven to move in opposite directions by the actuation assembly; The first and second correcting members are provided with a correcting part, which is configured to: when the first and second correcting members are close to each other, abut against the edge of the member to be corrected and apply at least a vertically downward force to the member to be corrected, so as to correct the plane on which the member to be corrected is located to be parallel to the horizontal plane.
2. The calibration device according to claim 1, characterized in that, The support platform is provided with multiple positioning blocks, which abut against the outer edge of the part to be calibrated to position the part to be calibrated on the support platform.
3. The calibration device according to claim 1, characterized in that, The correction section includes a first part and a second part connected to each other. The first part abuts against a first sidewall of the part to be corrected, and the second part abuts against a second sidewall of the part to be corrected. The first sidewall and the second sidewall are adjacent to each other.
4. The calibration device according to claim 3, characterized in that, The first part includes a third sidewall and a fourth sidewall, which are connected by an arc-shaped wall surface, which is used to abut against the edge of the part to be corrected.
5. The calibration device according to claim 4, characterized in that, The radius R of the arc containing the arc-shaped wall is in the range of 1 mm to 2 mm.
6. The calibration device according to claim 4, characterized in that, The arc-shaped wall has a first connecting portion connected to the third side wall and a second connecting portion connected to the fourth side wall. The first connecting portion and the fourth side wall have a first distance H1 in the vertical direction, and the value of the first distance H1 ranges from 2 mm to 3 mm. The second connecting portion and the third side wall have a second distance H2 in the horizontal direction, and the value of the second distance H2 ranges from 1.5 mm to 2.5 mm.
7. The calibration device according to claim 1, characterized in that, The actuation component is disposed on the support platform and located at one end of the support platform. The first end of the first calibration member and the first end of the second calibration member are respectively connected to the actuation component.
8. The calibration device according to claim 1, characterized in that, The actuation assembly includes a drive member, a timing belt, and a timing pulley set. The timing belt is sleeved on the outside of the timing pulley set. The first correction member and the second correction member are respectively connected to the timing belt. The drive member is used to drive the timing pulley set to rotate, so as to drive the first correction member and the second correction member to move towards each other through the timing belt.
9. The calibration device according to claim 8, characterized in that, The synchronous pulley set includes a driving pulley and a driven pulley. The driving pulley is connected to the driving member. The synchronous belt is sleeved on the outside of the driving pulley and the driven pulley. The synchronous belt has a first belt body and a second belt body connected to each other. A first correction member is connected to the first belt body, and a second correction member is connected to the second belt body. When the driving member drives the driving pulley to rotate, the first belt body is used to drive the first correction member connected to it to move in a first direction, and the second belt body is used to drive the second correction member connected to it to move in a second direction. The first direction and the second direction are opposite.
10. The calibration device according to claim 1, characterized in that, The correction device further includes a first guide component and a second guide component, both of which are disposed on the support platform. The first guide component is connected to the second end of the first correction component, and the second guide component is connected to the second end of the second correction component, so as to guide the first correction component and the second correction component to move towards each other under the drive of the actuation component.
11. The calibration device according to claim 10, characterized in that, The first guide assembly and / or the second guide assembly includes a slide rail and a slider slidably connected to the slide rail. One of the slide rail and the slider is connected to the support platform, and the other of the slide rail and the slider is respectively connected to the second end of the first correction member and / or the second correction member.
12. An automated pathology record management system, characterized in that, The device includes a first transport device, a second transport device, and a calibration device as described in any one of claims 1 to 11, wherein the item to be calibrated includes at least a slide disk, the first transport device is used to transport the slide disk to the support stage of the calibration device for calibration of the slide disk by the calibration assembly, and the second transport device is used to transfer pathological slides on the calibrated slide disk.