Image diagnosis and reading equipment for radiology department

By designing a radiological imaging diagnostic video reading device that includes cleaning, opening and closing and clamping mechanisms, the problem of dust on the light box glass affecting the clarity of the image film is solved, automatic dust cleaning and glass frame opening and closing is realized, the operation process is simplified, and stable image clipping and protection is provided.

CN120143465AInactive Publication Date: 2025-06-13刘昱希
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Patent Information

Application Number
CN202510501303.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In radiological imaging diagnosis, dust on the glass of the light box will affect the clarity of the image film, resulting in misdiagnosis. The existing technology requires separate cleaning of dust and opening the glass frame, which is cumbersome.

Method used

A radiological imaging diagnostic film reading device is designed, including a cleaning mechanism, an opening and closing mechanism and a clamping mechanism. The cleaning mechanism can automatically sweep dust off and open the glass frame through the cooperation of the slide chute and slider; the opening and closing mechanism can automatically open and close the glass frame through the design of the L-shaped opening and closing rod by squeezing the cleaning rod; the clamping mechanism firmly clamps the image sheet through the movement of the clamping plate, and a rubber pad is provided on the clamping plate to protect the image sheet.

Benefits of technology

It simplifies the operation process without clearing dust and opening the glass frame separately, ensuring the clarity of the image film, avoiding misdiagnosis, and providing more stable image film clamping and protection.

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Abstract

The invention provides radiology department image diagnosis reading equipment, and belongs to the technical field of radiology department image diagnosis. The radiology department image diagnosis reading equipment comprises a lamp box body, a containing cavity is formed in the front side of the lamp box body, a glass frame is hinged to the front side of the lamp box body through hinges, a cleaning mechanism comprises sliding grooves, sliding blocks, cleaning brushes and cleaning soft bristles, the sliding grooves are formed in the front side of the lamp box body, the number of the sliding grooves is two, and the sliding blocks are arranged in the sliding grooves. And sliding blocks are mounted in the two sliding grooves in a sliding manner. The cleaning mechanism is arranged, before the glass frame is opened, a worker manually moves a cleaning brush downwards, cleaning soft bristles on the rear side of the cleaning brush make contact with glass on the glass frame, when the cleaning brush moves downwards, dust on the surface of the glass is swept off by the cleaning soft bristles, and therefore the situation that the glass on the glass frame is contaminated by the dust, and the glass frame is cleaned away is avoided. Therefore, a worker can watch the image film in the accommodating cavity.
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Description

Technical Field

[0001] The present invention relates to the technical field of radiology image diagnosis, and more particularly, to a radiology image diagnosis film viewing device. Background Art

[0002] Radiology images refer to images of the internal structure of the human body obtained through various radiological techniques, mainly realized through X-ray images, CT images, and MRI images. These three techniques are all based on the interaction between external energy and human tissues, and utilize the different responses of tissues to energy to generate images.

[0003] When medical staff view these image films, they usually need the assistance of a light box. The light box can provide uniform background light, enabling the content of the image film to be clearly seen from multiple different perspectives. However, in actual use, dust is likely to adhere to the glass of the device, and these dusts need to be cleaned regularly, otherwise misdiagnosis is likely to occur due to unclear image films. Summary of the Invention

[0004] To make up for the above deficiencies, the present invention provides a radiology image diagnosis film viewing device that overcomes the above technical problems or at least partially solves the above problems.

[0005] The present invention is implemented as follows:

[0006] The present invention provides a radiology image diagnosis film viewing device, including a light box main body. A receiving cavity is opened on the front side of the light box main body, and a glass frame is hinged to the front side of the light box main body through a hinge.

[0007] A cleaning mechanism, the cleaning mechanism includes,

[0008] Sliding grooves, the sliding grooves are opened on the front side of the light box main body. There are two sliding grooves, and sliders are slidably installed inside both of the two sliding grooves.

[0009] A cleaning brush, the cleaning brush is fixedly installed between the two sliders. The cleaning brush and the two sliders are integrally formed, and cleaning soft hairs are installed on the rear side of the cleaning brush.

[0010] An opening and closing mechanism, the opening and closing mechanism is arranged on the front side of the light box main body for opening and closing the glass frame.

[0011] A clamping mechanism, the clamping mechanism is arranged inside the receiving cavity for clamping the image film.

[0012] In a preferred embodiment, the opening and closing mechanism includes,

[0013] An opening and closing cavity, the opening and closing cavity is opened on the front side of the light box main body.

[0014] Opening and closing rod, the opening and closing rod is rotatably installed inside the opening and closing cavity, the shape of the opening and closing rod is set as L-shaped, and the length of one end of the opening and closing rod is greater than the length of the other end of the opening and closing rod.

[0015] In a preferred embodiment, the clamping mechanism includes

[0016] Clamping cavity, the clamping cavity is opened on the inner wall of the accommodating cavity;

[0017] Clamping plate, the clamping plate is slidably installed inside the clamping cavity.

[0018] In a preferred embodiment, a torsion spring is installed on the front side of the light box body, a glass is installed on the inner wall of the glass frame, the cleaning soft hairs on the rear side of the cleaning brush are in contact with the glass on the inner wall of the glass frame, a dust collection drawer is slidably installed inside the light box body, a first moving cavity is opened on the inner wall of the chute, a first spring is installed on the inner wall of the first moving cavity, a limiting block is fixedly installed on the side of the first spring close to the slider, the shape of the limiting block is set as semi-circular, and the top of the limiting block is in contact with the bottom of the slider.

[0019] In a preferred embodiment, a guiding groove is opened on the rear side of the glass frame, a guiding block is slidably installed inside the guiding groove, the longer end of the opening and closing rod is rotatably sleeved inside the guiding block, and the shorter end of the opening and closing rod penetrates to the front side of the opening and closing cavity.

[0020] In a preferred embodiment, a driving cavity is opened inside the light box body, the height of the driving cavity in the vertical direction is lower than the height of the opening and closing cavity, the cross-section of the driving cavity and the cross-section of the chute partially overlap, a release rod is fixedly installed on the bottom of the inner wall of the driving cavity, the release rod and the slider are arranged in a dislocation manner, and a driving block is slidably installed inside the driving cavity.

[0021] In a preferred embodiment, a second moving cavity is opened on the side of the driving block close to the release rod, a second spring is installed on the inner wall of the second moving cavity, a wedge block is fixedly installed on the side of the second spring close to the release rod, and the shape of the bottom of the wedge block is set as arc-shaped.

[0022] In a preferred embodiment, a third spring is installed on the bottom of the inner wall of the driving cavity, the top of the third spring is fixedly connected to the bottom of the driving block, a connecting rod is fixedly installed on the top of the driving block, and a direction-changing shaft is fixedly installed on the right side of the connecting rod.

[0023] In a preferred embodiment, a direction-changing cavity is opened inside the light box body, the direction-changing cavity is communicated with the clamping cavity, a direction-changing block is slidably installed inside the direction-changing cavity, and the direction-changing block and the clamping plate are integrally formed.

[0024] In a preferred embodiment, a deflection groove is formed at one end of the deflection block close to the connecting rod, the deflection shaft is slidably sleeved inside the deflection groove, a reset cavity is formed inside the lamp box body, and a fourth spring is installed on the inner wall of the reset cavity. One end of the fourth spring close to the clamping plate is fixedly connected to the rear side of the clamping plate.

[0025] A radiology image diagnosis film reading device provided by the present invention has the following beneficial effects:

[0026] 1. By setting up a cleaning mechanism, before opening the glass frame, the staff manually moves the cleaning brush downward. Since the cleaning soft hairs on the rear side of the cleaning brush are in contact with the glass on the glass frame, when the cleaning brush moves downward, the cleaning soft hairs sweep the dust on the glass surface, thus avoiding the influence on the staff's viewing of the image film inside the accommodation cavity due to the dust on the glass of the glass frame.

[0027] 2. By setting up an opening and closing mechanism, after the cleaning rod moves downward to clean the dust on the glass, it continues to move downward to squeeze the opening and closing rod, causing the opening and closing rod to rotate around the connection points at both ends of itself, so that the opening and closing rod drives the glass frame to move, thereby automatically opening the glass frame, facilitating the staff to place the image film into the accommodation cavity. Compared with the prior art, it does not require the staff to divide the dust cleaning and opening the glass frame into two steps, simplifying the operation process.

[0028] 3. By setting up a clamping mechanism, after the glass frame is opened, the two clamping plates move forward and no longer fit against the rear side of the inner wall of the accommodation cavity. The staff places the image film between the two clamping plates and the rear side of the accommodation cavity, and then returns the two clamping plates to their original positions, so that the image film is clamped. Compared with the image film slot in the prior art, the clamping of the image film can be more stable, and rubber soft pads can be provided on the clamping plates to protect the image film and avoid partial scratching of the image film due to the clamping of the clamping plates. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and thus should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0030] Figure 1 is a schematic three-dimensional structure diagram of the whole provided by the embodiment of the present invention;

[0031] Figure 2 is a schematic structure diagram after the glass frame is opened and closed provided by the embodiment of the present invention;

[0032] Figure 3 Exploded views of the glass frame and the opening and closing rod are provided for the embodiments of the present invention;

[0033] Figure 4 Partial cross-sectional views of the light box body are provided for the embodiments of the present invention;

[0034] Figure 5 Provided for the embodiments of the present invention Figure 4 Partial enlarged view at position A in

[0035] Figure 6 Partial cross-sectional views of the first moving cavity are provided for the embodiments of the present invention;

[0036] Figure 7 Provided for the embodiments of the present invention Figure 6 Partial enlarged view at position B in

[0037] Figure 8 Partial cross-sectional views of the driving block are provided for the embodiments of the present invention;

[0038] Figure 9 Partial cross-sectional views of the light box body from a top view are provided for the embodiments of the present invention;

[0039] Figure 10 Partial cross-sectional views of the light box body from a bottom view are provided for the embodiments of the present invention.

[0040] In the figure: 1, light box body; 2, accommodation cavity; 3, glass frame; 401, sliding groove; 402, slider; 403, cleaning brush; 404, cleaning soft hair; 501, opening and closing cavity; 502, opening and closing rod; 601, clamping cavity; 602, clamping plate; 7, torsion spring; 8, dust collection drawer; 9, first moving cavity; 10, first spring; 11, limiting block; 12, guiding groove; 13, guiding block; 14, driving cavity; 15, release rod; 16, driving block; 17, second moving cavity; 18, second spring; 19, wedge block; 20, third spring; 21, connecting rod; 22, steering shaft; 23, steering cavity; 24, steering block; 25, steering groove; 26, reset cavity; 27, fourth spring. Specific embodiments

[0041] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without making creative efforts based on the embodiments of the present invention fall within the scope of protection of the present invention.

[0042] Refer to Figure 1-10, the present invention provides a technical solution: a radiology imaging diagnosis film viewing device, including a light box main body 1. A receiving cavity 2 is provided on the front side of the light box main body 1. A glass frame 3 is hinged to the front side of the light box main body 1 through a hinge. The cleaning mechanism includes a sliding groove 401, a slider 402, a cleaning brush 403 and cleaning soft hairs 404. The sliding groove 401 is provided on the front side of the light box main body 1. There are two sliding grooves 401. Sliders 402 are slidably installed inside both of the two sliding grooves 401. The cleaning brush 403 is fixedly installed between the two sliders 402. The cleaning brush 403 and the two sliders 402 are integrally formed. A cleaning soft hair 404 is installed on the rear side of the cleaning brush 403. The opening and closing mechanism is provided on the front side of the light box main body 1 and is used to open and close the glass frame 3. The clamping mechanism is provided inside the receiving cavity 2 and is used to clamp the imaging film. By setting the cleaning mechanism, before opening the glass frame 3, the staff manually moves the cleaning brush 403 downward. Since the cleaning soft hairs 404 on the rear side of the cleaning brush 403 are in contact with the glass on the glass frame 3, when the cleaning brush 403 is moved downward, the cleaning soft hairs 404 sweep the dust on the glass surface, thereby preventing the glass on the glass frame 3 from being contaminated with dust and affecting the staff's viewing of the imaging film inside the receiving cavity 2. Through the cooperation of the sliding groove 401 and the slider 402, the moving path of the cleaning brush 403 is restricted, so that the cleaning brush 403 can only move in the up and down directions;

[0043] Refer to Figure 1-10 , the opening and closing mechanism includes an opening and closing cavity 501 and an opening and closing rod 502. The opening and closing cavity 501 is provided on the front side of the light box main body 1. The opening and closing rod 502 is rotatably installed inside the opening and closing cavity 501. The shape of the opening and closing rod 502 is set as an L shape. The length of one end of the opening and closing rod 502 is greater than the length of the other end of the opening and closing rod 502. By setting the opening and closing mechanism, after the cleaning rod moves downward to clean the dust on the glass and continues to move downward until the cleaning rod reaches the preset position and causes extrusion on the opening and closing rod 502. Since the shape of the opening and closing rod 502 is an L shape and the connection between the two ends of the opening and closing rod 502 is rotatably connected to the inside of the opening and closing cavity 501 through a rotating shaft, after the cleaning rod extrudes the opening and closing rod 502, the opening and closing rod 502 rotates around the connection of its own two ends, so that the opening and closing rod 502 drives the glass frame 3 to move, thereby automatically opening the glass frame 3, facilitating the staff to place the imaging film into the inside of the receiving cavity 2. Compared with the prior art, it is not necessary for the staff to divide the dust cleaning and opening the glass frame 3 into two steps, simplifying the operation process;

[0044] Refer to Figure 1-10, the clamping mechanism includes a clamping cavity 601 and a clamping plate 602. The clamping cavity 601 is formed in the inner wall of the accommodating cavity 2, and the clamping plate 602 is slidably installed inside the clamping cavity 601. By providing the clamping mechanism, after the glass frame 3 is opened, the two clamping plates 602 move forward and no longer fit against the rear side of the inner wall of the accommodating cavity 2. The staff places the imaging film between the two clamping plates 602 and the rear side of the accommodating cavity 2, and then returns the two clamping plates 602 to their original positions, so that the imaging film is clamped. Compared with the prior art in which the imaging film is inserted into a slot, the clamping of the imaging film can be made more stable, and rubber soft pads can be provided on the clamping plate 602 to protect the imaging film and prevent it from being partially scratched due to the clamping of the clamping plate 602;

[0045] Referring to Figure 1-10 , a torsion spring 7 is installed on the front side of the light box body 1, a glass is installed on the inner wall of the glass frame 3, and the cleaning soft bristles 404 at the rear side of the cleaning brush 403 are in contact with the glass on the inner wall of the glass frame 3. A dust collection drawer 8 is slidably installed inside the light box body 1. A first moving cavity 9 is formed in the inner wall of the chute 401, a first spring 10 is installed on the inner wall of the first moving cavity 9, a limiting block 11 is fixedly installed on the side of the first spring 10 close to the slider 402, the shape of the limiting block 11 is semi-circular, and the top of the limiting block 11 is in contact with the bottom of the slider 402. By providing the limiting block 11, when the slider 402 is at the top of the chute 401, the resilience of the first spring 10 cancels out the gravity of the slider 402 and the cleaning brush 403, and they will not fall down due to their own gravity. At the same time, since the side of the limiting block 11 close to the slider 402 is semi-circular, when needed, the staff can manually apply pressure so that after the slider 402 is squeezed by a force exceeding the elastic force of the first spring 10, the first spring 10 is driven to retract into the first moving cavity 9. Before the cleaning brush 403 moves downward, the dust collection drawer 8 is pulled out to facilitate the collection of the dust swept by the cleaning brush 403 and prevent environmental pollution;

[0046] Referring to Figure 1-10, a guiding groove 12 is provided at the rear side of the glass frame 3, a guiding block 13 is slidably installed inside the guiding groove 12, the longer end of the opening and closing rod 502 is rotatably sleeved inside the guiding block 13, and the shorter end of the opening and closing rod 502 penetrates to the front side of the opening and closing cavity 501. By providing the guiding groove 12 and the guiding block 13, after the opening and closing rod 502 is extruded by the cleaning brush 403, since the extruded end of the opening and closing rod 502 is the shorter end, the rotation stroke of the longer end of the opening and closing rod 502 is increased. Through the rotational connection between the opening and closing rod 502 and the guiding block 13, the opening and closing rod 502 drives the guiding block 13 to rotate. Through the guiding groove 12 provided on the glass frame 3, the guiding block 13 slides inside the guiding groove 12, and through the extrusion of the guiding block 13 on the glass frame 3, the glass frame 3 opens and closes, so as to realize that the glass frame 3 can be automatically opened and closed through the movement of the cleaning brush 403;

[0047] Refer to Figure 1-10 , a driving cavity 14 is provided inside the light box body 1, the height of the driving cavity 14 in the vertical direction is lower than the height of the opening and closing cavity 501, the cross-section of the driving cavity 14 and the cross-section of the sliding groove 401 partially overlap, a release rod 15 is fixedly installed at the bottom of the inner wall of the driving cavity 14, the release rod 15 and the slider 402 are arranged in a staggered manner, a driving block 16 is slidably installed inside the driving cavity 14, a second moving cavity 17 is provided on the side of the driving block 16 close to the release rod 15, a second spring 18 is installed on the inner wall of the second moving cavity 17, a wedge block 19 is fixedly installed on the side of the second spring 18 close to the release rod 15, and the shape of the bottom of the wedge block 19 is set to be arc-shaped. By providing the driving block 16 and the wedge block 19, when the cleaning brush 403 drives the opening and closing rod 502 to open the glass frame 3, and then the cleaning brush 403 is moved downward continuously, the opening and closing angle of the glass frame 3 is made larger, which is convenient for the staff to put the image film into the accommodating cavity 2. When the cleaning brush 403 moves downward to a preset position, since the cross-section of the driving cavity 14 and the cross-section of the sliding groove 401 partially overlap, the slider 402 extrudes the top of the wedge block 19, so that the wedge block 19 drives the driving block 16 to move downward until the bottom of the wedge block 19 is extruded by the release rod 15. Due to the arc-shaped setting of the bottom of the wedge block 19, the wedge block 19 retracts into the second moving cavity 17, and the driving block 16 returns to its original position through the resilience of the third spring 20. Since the slider 402 and the release rod 15 are arranged in a staggered manner, the collision between the slider 402 and the release rod 15 is avoided. Also because of the arc-shaped setting of the bottom of the wedge block 19, when the slider 402 moves upward, the wedge block 19 can automatically retract into the second moving cavity 17 and will not hinder the movement of the slider 402;

[0048] Refer to Figure 1-10, a third spring 20 is installed at the bottom of the inner wall of the driving cavity 14. The top of the third spring 20 is fixedly connected to the bottom of the driving block 16. A connecting rod 21 is fixedly installed at the top of the driving block 16. A deflecting shaft 22 is fixedly installed on the right side of the connecting rod 21. A deflecting cavity 23 is formed inside the lamp box body 1. The deflecting cavity 23 communicates with the clamping cavity 601. A deflecting block 24 is slidably installed inside the deflecting cavity 23. The deflecting block 24 and the clamping plate 602 are integrally formed. A deflecting groove 25 is formed at one end of the deflecting block 24 close to the connecting rod 21. The deflecting shaft 22 is slidably sleeved inside the deflecting groove 25. A reset cavity 26 is formed inside the lamp box body 1. A fourth spring 27 is installed on the inner wall of the reset cavity 26. One end of the fourth spring 27 close to the clamping plate 602 is fixedly connected to the rear side of the clamping plate 602. By providing the connecting rod 21, when the slider 402 drives the driving block 16 to move downward, the deflecting shaft 22 is driven to move downward through the connecting rod 21. Due to the extrusion of the inner wall of the deflecting groove 25 by the deflecting shaft 22 and the inclined setting of the inner wall of the deflecting groove 25, the deflecting block 24 drives the clamping plate 602 to move forward, so that a gap is formed between the clamping plate 602 and the rear wall of the accommodating cavity 2, facilitating the staff to insert the imaging film. After the imaging film is inserted into the preset position, at this time, the slider 402 continues to move downward, so that the release rod 15 squeezes the wedge block 19, and then the driving block 16 returns to its original position by the resilience of the third spring 20. Similarly, the connecting rod 21 returns to its original position. By the resilience of the fourth spring 27, the clamping plate 602 completes the clamping. At this time, the staff moves the cleaning brush 403 upward again. After losing the extrusion on the opening and closing rod 502, since the two ends of the torsion spring 7 are respectively connected to the lamp box body 1 and the glass frame 3, by the resilience of the torsion spring 7, the opening and closing rod 502 and the glass frame 3 return to their original positions. The staff returns the cleaning brush 403 to its original position, and the slider 402 is supported by the limiting block 11.

[0049] Specifically, the working process or principle of this radiology imaging diagnosis film-reading device is as follows: When in use, pull out the dust collection drawer 8. The staff manually moves the cleaning brush 403 downward. Since the cleaning soft bristles 404 at the rear of the cleaning brush 403 are in contact with the glass on the glass frame 3, when the cleaning brush 403 is moved downward, the cleaning soft bristles 404 sweep the dust on the glass surface. Continue to move downward until the cleaning rod reaches the preset position and squeezes the opening and closing rod 502. Since the shape of the opening and closing rod 502 is L-shaped and the two ends of the opening and closing rod 502 are rotatably connected to the inside of the opening and closing cavity 501 through a rotating shaft, after the cleaning rod squeezes the opening and closing rod 502, the opening and closing rod 502 rotates around its two ends' connection points. Through the rotating connection between the opening and closing rod 502 and the guiding block 13, the opening and closing rod 502 drives the guiding block 13 to rotate. Through the guiding groove 12 opened on the glass frame 3, the guiding block 13 slides inside the guiding groove 12, and through the extrusion of the guiding block 13 on the glass frame 3, the glass frame 3 opens and closes. Continue to move the cleaning brush 403 downward to make the opening and closing angle of the glass frame 3 larger, facilitating the staff to put the imaging film into the accommodating cavity 2. When the cleaning brush 403 moves downward to the preset position, since the cross-section of the driving cavity 14 partially coincides with the cross-section of the sliding groove 401, the slider 402 squeezes the top of the wedge block 19, causing the wedge block 19 to drive the driving block 16 to move downward. The driving block 16 drives the steering shaft 22 to move downward through the connecting rod 21. Through the extrusion of the steering shaft 22 on the inner wall of the steering groove 25 and the inclined setting of the inner wall of the steering groove 25, the steering block 24 drives the clamping plate 602 to move forward, so that there is a gap between the clamping plate 602 and the rear wall of the accommodating cavity 2, facilitating the staff to insert the imaging film. After inserting the imaging film to the preset position, continue to move the slider 402 downward at this time, so that the release rod 15 squeezes the wedge block 19. Due to the arc-shaped setting at the bottom of the wedge block 19, the wedge block 19 retracts into the second moving cavity 17. The driving block 16 returns to its original position through the resilience of the third spring 20. Similarly, the connecting rod 21 returns to its original position. Through the resilience of the fourth spring 27, the clamping plate 602 completes the clamping. At this time, the staff moves the cleaning brush 403 upward again. Because of the arc-shaped setting at the bottom of the wedge block 19, when the slider 402 moves upward, the wedge block 19 can automatically retract into the second moving cavity 17 without hindering the movement of the slider 402. After losing the extrusion on the opening and closing rod 502, through the resilience of the torsion spring 7, the opening and closing rod 502 and the glass frame 3 return to their original positions. The staff returns the cleaning brush 403 to its original position, and the slider 402 is supported by the limiting block 11.

Claims

1. A radiology imaging diagnostic reading device, comprising a light box body (1), a receiving cavity (2) is provided on the front side of the light box body (1), a glass frame (3) is hingedly connected to the front side of the light box body (1) by a hinge, and is characterized in that: A cleaning mechanism, the cleaning mechanism comprising: A slide groove (401), wherein the slide groove (401) is provided on the front side of the light box body (1), and two slide grooves (401) are provided, and a slider (402) is slidably installed inside the two slide grooves (401); A cleaning brush (403), the cleaning brush (403) is fixedly installed between the two sliders (402), the cleaning brush (403) and the two sliders (402) are integrally formed, and a cleaning bristle (404) is installed on the rear side of the cleaning brush (403); An opening and closing mechanism, which is arranged on the front side of the light box body (1) and is used to open and close the glass frame (3); A clamping mechanism is arranged inside the accommodating cavity (2) and is used for clamping the image film.

2. The radiology imaging diagnostic reading device according to claim 1, characterized in that: The opening and closing mechanism comprises: An opening and closing cavity (501), wherein the opening and closing cavity (501) is opened on the front side of the light box body (1); An opening and closing rod (502) is rotatably mounted inside the opening and closing cavity (501), the opening and closing rod (502) is L-shaped, and the length of one end of the opening and closing rod (502) is greater than the length of the other end of the opening and closing rod (502).

3. The radiology imaging diagnostic reading device according to claim 2, characterized in that: The clamping mechanism comprises: A clamping cavity (601), wherein the clamping cavity (601) is formed on the inner wall of the accommodating cavity (2); A clamping plate (602) is slidably mounted inside the clamping cavity (601).

4. The radiology imaging diagnostic reading device according to claim 1, characterized in that: A torsion spring (7) is installed on the front side of the light box body (1), glass is installed on the inner wall of the glass frame (3), the cleaning bristles (404) on the rear side of the cleaning brush (403) are in contact with the glass on the inner wall of the glass frame (3), a dust collection drawer (8) is slidably installed inside the light box body (1), a first movable cavity (9) is provided on the inner wall of the slide groove (401), a first spring (10) is installed on the inner wall of the first movable cavity (9), a limit block (11) is fixedly installed on one side of the first spring (10) close to the slider (402), the shape of the limit block (11) is set to be semicircular, and the top of the limit block (11) is in contact with the bottom of the slider (402).

5. The radiology imaging diagnostic reading device according to claim 2, characterized in that: A guide groove (12) is provided on the rear side of the glass frame (3), a guide block (13) is slidably mounted inside the guide groove (12), a longer end of the opening and closing rod (502) is rotatably sleeved inside the guide block (13), and a shorter end of the opening and closing rod (502) passes through the front side of the opening and closing cavity (501).

6. The radiology imaging diagnostic reading device according to claim 3, characterized in that: A driving cavity (14) is provided inside the light box body (1), the height of the driving cavity (14) in the vertical direction is lower than the height of the opening and closing cavity (501), the cross section of the driving cavity (14) and the cross section of the slide groove (401) partially overlap, a release rod (15) is fixedly installed at the bottom of the inner wall of the driving cavity (14), the release rod (15) and the slide block (402) are staggered, and a driving block (16) is slidably installed inside the driving cavity (14).

7. The radiology imaging diagnostic reading device according to claim 6, characterized in that: A second movable cavity (17) is provided on a side of the driving block (16) close to the release rod (15); a second spring (18) is installed on the inner wall of the second movable cavity (17); a wedge block (19) is fixedly installed on a side of the second spring (18) close to the release rod (15); and the shape of the bottom of the wedge block (19) is set to be an arc.

8. The radiology imaging diagnostic reading device according to claim 6, characterized in that: A third spring (20) is installed at the bottom of the inner wall of the driving chamber (14), the top of the third spring (20) is fixedly connected to the bottom of the driving block (16), a connecting rod (21) is fixedly installed on the top of the driving block (16), and a direction-changing shaft (22) is fixedly installed on the right side of the connecting rod (21).

9. The radiology image diagnosis and reading device according to claim 8, characterized in that: A direction-changing cavity (23) is provided inside the light box body (1), the direction-changing cavity (23) is communicated with the clamping cavity (601), a direction-changing block (24) is slidably installed inside the direction-changing cavity (23), and the direction-changing block (24) and the clamping plate (602) are integrally formed.

10. The radiology imaging diagnostic reading device according to claim 9, characterized in that: The deflection block (24) is provided with a deflection groove (25) at one end close to the connecting rod (21), and the deflection shaft (22) is slidably sleeved inside the deflection groove (25). A reset cavity (26) is provided inside the light box body (1), and a fourth spring (27) is installed on the inner wall of the reset cavity (26). The fourth spring (27) is fixedly connected to one end close to the clamping plate (602) and the rear side of the clamping plate (602).