A test device for imaging diagnosis and analysis of biliary diseases

By designing test equipment with scraper, liquid spray head and conveying components, the shortcomings of existing equipment in stage cleaning and disinfection are solved, automatic cleaning and disinfection are achieved, and image clarity and equipment cleanliness are improved.

CN119310728BActive Publication Date: 2025-05-06THE THIRD AFFILIATED HOSPITAL OF PLA NAVAL MEDICAL UNIVERSITY
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Patent Information

Application Number
CN202411844678.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-05-06
Estimated Expiration
2044-12-16

AI Technical Summary

Technical Problem

During use, the existing test equipment for biliary disease imaging diagnosis and analysis is not convenient to automatically clean and disinfect the surface of the stage, resulting in the adsorption of impurities and bacterial growth, affecting the clarity of the image.

Method used

A test equipment including a scraper, a double-outlet motor, a liquid spray head and a conveying assembly was designed. By cooperating with the adjustment assembly and the support plate, the scraper was moved to remove impurities on the stage; through the micro water pump and the conveying hose, the liquid spray head was sprayed with disinfectant for sterilization; air-drying and cleaning were achieved through the cylinder and exhaust holes.

Benefits of technology

It realizes automatic cleaning and disinfection of the carrier stage, avoids the adsorption of impurities and bacterial growth, and improves the clarity of the image and the cleanliness of the equipment.

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Abstract

The present invention belongs to the technical field of medical instruments, and specifically is a test device for imaging diagnosis and analysis of biliary diseases, comprising a bottom plate, a frame body fixedly installed on the top of the bottom plate, a support frame fixedly installed in the frame body, a lens barrel fixedly installed on the support frame, a converter installed on the lens barrel, a stage fixedly installed on the support frame, an adjustment component is arranged inside the strip groove, the adjustment component is connected to a support plate, a strip plate fixedly installed on the support plate, and a scraper fixedly installed on the strip plate. The test device for imaging diagnosis and analysis of biliary diseases is convenient for cleaning the stage surface through the scraper, and when the stage is cleaned, the double-output shaft motor will drive the threaded screw to rotate, and the threaded screw will move the slider when it rotates, and the support plate will drive the synchronous movement, and the scraper will contact the top of the stage, and the impurities above the stage can be removed when the scraper moves, thereby achieving the purpose of cleaning the stage.
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Description

Technical Field

[0001] The invention belongs to the technical field of medical appliances, in particular to a test device for imaging diagnosis and analysis of biliary diseases. Background Art

[0002] When the imaging department performs imaging diagnosis on samples of biliary diseases, doctors can observe subtle changes in the structure of biliary tissues by using specialized imaging diagnostic analysis test equipment for biliary diseases, allowing doctors to make more accurate diagnoses of the disease, thus providing an important basis for the formulation of treatment plans. Through this test equipment, doctors can clearly observe the morphological changes of the biliary mucosa, such as inflammation, erosion, ulcers, and tumors, and can also observe the cell morphology and structure of the mucosal layer to determine the nature and extent of the lesions. In addition, this equipment can also help doctors detect adults or larvae of various parasites, which helps to clarify the diagnosis of parasitic infections in the biliary tract. In the imaging diagnosis of biliary diseases, the test equipment for imaging diagnostic analysis of biliary diseases is of great value, which can help doctors observe subtle changes in biliary tissues and provide an accurate basis for clinical diagnosis and treatment.

[0003] A Chinese patent with publication number CN213689400U discloses a pathological image analysis device, including a base, a workbench, a vertical pole and an adjustment component, wherein the vertical pole is vertically fixed on the top of the base, and the adjustment component is installed at the bottom of the base, and the adjustment component includes a base plate, a screw rod, a nut ring and a fixed convex plate, the base plate is located below the base, and the fixed convex plate is vertically fixed to the left side of the base by screws, the screw rod is vertically installed on the surface of the base plate, and the upper end passes through the fixed convex plate and is exposed to the outside, and a handwheel is fixed at the end, the nut ring is located in the fixed convex plate and is threadedly screwed on the screw rod, and a bearing ring is embedded and installed between the fixed convex plate and the nut ring; the device is provided with an adjustment component, which does not affect the collection and analysis of samples by the entire microscope, and can adjust the height of the microscope according to the needs of the user, so that the eyepiece is in a suitable working position, reducing the probability of fatigue and work intensity caused by height discomfort, and relatively improving the work efficiency and comfort of the user.

[0004] The existing test equipment for imaging diagnosis and analysis of biliary diseases is not convenient for automatically cleaning and disinfecting the surface of the stage during use. During the long-term analysis and diagnosis of samples, some impurities are easily adsorbed on the stage. If there are too many impurities adsorbed on the stage, it will affect the clarity of the image and easily lead to the growth of bacteria.

[0005] To this end, the present invention provides a test device for imaging diagnosis and analysis of biliary diseases. Summary of the invention

[0006] In order to make up for the shortcomings of the prior art and solve the problem that it is inconvenient to clean and disinfect the surface of the stage, the present invention proposes a test device for imaging diagnosis and analysis of biliary diseases.

[0007] The technical solution adopted by the present invention to solve its technical problem is: a test device for imaging diagnosis and analysis of biliary diseases described in the present invention comprises a base plate, a frame body is fixedly installed on the top of the base plate, a support frame is fixedly installed in the frame body, a lens barrel is fixedly installed on the support frame, a converter is installed on the lens barrel, a stage is fixedly installed on the support frame, and the stage is located below the converter, a strip groove is provided on one side of the stage, a double-output shaft motor is fixedly installed inside the strip groove, an adjustment component is provided inside the strip groove, the adjustment component is connected to the support plate, and a A strip plate, a scraper is fixedly mounted on the strip plate, and one side of the scraper is in contact with the top of the stage, a guide assembly is arranged on the scraper, a storage assembly is fixedly mounted on the stage, a liquid storage tank is arranged inside the stage, a frame is arranged inside the stage, and the frame is located on one side of the liquid storage tank, a conveying assembly is arranged on the stage, a diversion groove is inlaid inside the strip plate, a liquid spray head is arranged in an array on the diversion groove, a conveying hose is connected to the diversion groove, and the other end of the conveying hose is connected to the conveying assembly, a cleaning plate is fixedly mounted on the strip plate, and the cleaning plate is located on one side of the scraper.

[0008] By adopting the above technical solution, the position of the strip plate can be moved by adjusting the coordination between the component and the support plate, and the movement of the strip plate will drive the scraper to move. The scraper contacts the top of the loading platform, and then the impurities above the loading platform can be cleared when the scraper moves, thereby achieving the purpose of cleaning the loading platform. When the double-output shaft motor moves, the conveying component will move.

[0009] Preferably, a reflector is fixedly mounted on the support frame, and the reflector is located below the stage.

[0010] By adopting the above technical solution, the incident angle and intensity of the light are adjusted through the reflector so as to observe the sample and form a clear image of the sample in the lens barrel.

[0011] Preferably, the adjustment assembly includes a threaded screw and a slider, the threaded screw is rotatably arranged inside the strip groove, and one end of the threaded screw is fixedly connected to the output end of the double-output shaft motor, the slider is arranged inside the strip groove, and the threaded screw is threadedly connected to the slider, and the slider is fixedly connected to the support plate.

[0012] By adopting the above technical solution, when the adjustment component is working, the double-output shaft motor will drive the threaded screw to rotate, and when the threaded screw rotates, the position of the slider will move. When the slider moves, it will drive the support plate to move, and then the position of the strip plate can be adjusted.

[0013] Preferably, the guide assembly includes a connecting plate, a guide rod and a guide block, the connecting plate is fixedly installed below the scraper, the guide block is fixedly installed on the connecting plate, a slide groove is provided inside the loading platform, and the guide rod is fixedly installed inside the slide groove, and the guide rod passes through the guide block.

[0014] By adopting the above technical solution, the scraper will move synchronously when the strip plate moves, and then the guide block will slide on the guide rod through the connecting plate, and then the guide rod and the guide block will cooperate to guide the strip plate, so that the strip plate moves smoothly.

[0015] Preferably, the conveying assembly includes a box body and a micro water pump, the box body is fixedly installed inside the stage and the box body is located on one side of the liquid storage tank, the micro water pump is fixedly installed inside the box body, and the input end of the micro water pump extends into the liquid storage tank, and the other end of the conveying hose is connected to the output end of the micro water pump, a driven wheel is rotatably arranged inside the box body, and the center position of the driven wheel is fixedly connected to the center position of the impeller inside the micro water pump through an axis, the other output end of the double-output shaft motor is fixedly connected to a driving wheel, and the driving wheel and the driven wheel are connected by a belt drive.

[0016] By adopting the above technical solution, the disinfectant in the liquid storage tank can be extracted through the movement of the micro water pump, and the extracted disinfectant can be transferred to the inside of the diversion tank through the delivery hose.

[0017] Preferably, a liquid injection tube is installed inside the loading platform, and one end of the liquid injection tube is connected to the liquid storage tank, and the other end of the liquid injection tube extends out of the loading platform.

[0018] By adopting the above technical solution, disinfectant can be easily added into the liquid storage tank through the liquid injection pipe.

[0019] Preferably, a guide rod is fixedly installed inside the frame, a pressure plate is arranged inside the frame, the guide rod passes through the pressure plate, and the other end of the pressure plate is fixedly connected to the slider.

[0020] By adopting the above technical solution, the movement of the slider will drive the pressure plate to move synchronously, and the cooperation of the guide rod will enable the pressure plate to move smoothly.

[0021] Preferably, cylinders are arranged in an array on the stage, and the other ends of the cylinders extend into the interior of the frame, piston blocks are arranged inside the cylinders, a driving rod is fixedly connected to the center position of the piston block, a slat is fixedly connected to the other end of the driving rod, a return spring is installed around the driving rod, and one end of the return spring is fixedly connected to the cylinder, and the other end of the return spring is fixedly connected to the slat, an air collecting pipe is fixedly connected to one end of the cylinder, a shunt pipe is embedded in the strip plate, and the shunt pipe is connected to the air collecting pipe through a hose, and exhaust holes are arranged in an array on the shunt pipe.

[0022] By adopting the above technical solution, the driving rod will push the piston block to move synchronously. When the piston block moves, it will compress the air inside the cylinder, and the compressed air will flow into the air collecting pipe.

[0023] Preferably, the storage assembly includes a storage slot, a feed slot and a sealing plate, the storage slot is fixedly mounted on the loading platform, the feed slot is arranged at the top of the storage slot, the sealing plate is passed through the feed slot, and one end of the sealing plate extends out of the storage slot, and a connecting block is fixedly mounted on the bottom of the sealing plate.

[0024] By adopting the above technical solution, the disinfectant will be pushed into the feed trough by the scraper, and the disinfectant will flow into the receiving trough for collection through the feed trough, and the feed trough can be sealed by the sealing plate.

[0025] Preferably, a square groove is fixedly installed inside the storage groove, a square plate is passed through the inside of the square groove, and one end of the square plate is fixedly connected to the connecting block, a limiting groove is arranged on the square plate, a stopper is arranged inside the limiting groove, and the stopper is fixedly connected to the inner wall of the square groove, a driving spring is fixedly installed on the stopper, and the other end of the driving spring is fixedly connected to the limiting groove, a battery assembly is fixedly installed on the bottom of the loading platform, and the battery assembly is electrically connected to the dual-output shaft motor.

[0026] By adopting the above technical solution, when the square plate moves, the sealing plate will be driven to move through the connecting block. After the sealing plate moves, the feed trough will no longer be sealed, thereby facilitating the disinfectant to be scraped into the interior of the storage trough.

[0027] The beneficial effects of the present invention are as follows:

[0028] 1. The test equipment for imaging diagnosis and analysis of biliary tract diseases described in the present invention facilitates cleaning of the surface of the stage by means of a scraper. When the stage is cleaned, the double-shaft motor drives the threaded screw to rotate, and the rotation of the threaded screw moves the position of the slider, which is driven to move synchronously through the support plate. The scraper contacts the top of the stage, and the impurities above the stage can be removed when the scraper moves, thereby achieving the purpose of cleaning the stage, and realizing automatic cleaning of the test equipment for imaging diagnosis and analysis of biliary tract diseases.

[0029] 2. The test equipment for imaging diagnosis and analysis of biliary diseases described in the present invention can disinfect and sterilize the surface of the stage through the provided spray head. The dual-shaft motor drives the driving wheel to rotate. When the driving wheel rotates, it drives the driven wheel to rotate through the belt, which in turn drives the micro water pump to move. The movement of the micro water pump will extract the disinfectant inside the liquid storage tank, and the extracted disinfectant will be transmitted to the inside of the diversion trough through the delivery hose. The disinfectant will be sprayed onto the surface of the stage through the spray head, and then the surface of the stage can be disinfected and sterilized, thereby achieving the purpose of disinfection and sterilization, avoiding the growth of bacteria, and improving the cleanliness effect of the test equipment for imaging diagnosis and analysis of biliary diseases.

[0030] 3. The test equipment for imaging diagnosis and analysis of biliary diseases described in the present invention facilitates air drying of the surface of the stage by means of the provided cylinder and exhaust holes. After the pressure plate moves and contacts the slats, it will apply pressure to the slats, thereby pushing the slats to move, and the driving rod will push the piston block to move synchronously. When the piston block moves, it will compress the air inside the cylinder, and the compressed air will flow into the interior of the air collecting pipe. After the air flows into the interior of the air collecting pipe, it will flow into the interior of the diversion pipe through the hose. The air entering the interior of the diversion pipe will flow into the surface of the stage through the exhaust holes, and then the stage can be air-dried and cleaned, thereby improving the cleanliness and avoiding the adsorption of impurities. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] The present invention will be further described below in conjunction with the accompanying drawings.

[0032] Figure 1 is a stereoscopic diagram of a test device for imaging diagnosis and analysis of biliary tract diseases according to the present invention;

[0033] Figure 2 It is a structural schematic diagram of the support frame of the present invention;

[0034] Figure 3 The present invention Figure 1 A schematic diagram of the enlarged structure in the middle;

[0035] Figure 4 It is a schematic diagram of the strip plate structure in the present invention;

[0036] Figure 5 It is a structural schematic diagram of the scraper in the present invention;

[0037] Figure 6 It is a schematic diagram of the structure of the stage in the present invention;

[0038] Figure 7 It is a structural schematic diagram of the framework in the present invention;

[0039] Figure 8It is a structural schematic diagram of the storage tank in the present invention;

[0040] Fig. 9 It is a structural schematic diagram of the sealing plate in the present invention;

[0041] Fig.10 It is a structural schematic diagram of the diverter trough of the present invention.

[0042] In the figure: 1, bottom plate; 2, frame; 3, support frame; 4, reflector; 5, lens barrel; 6, converter; 7, stage; 8, strip groove; 9, double-axis motor; 10, threaded screw; 11, driving wheel; 12, slider; 13, support plate; 14, strip plate; 15, scraper; 16, connecting plate; 17, slide groove; 18, guide rod; 19, guide block; 20, cleaning plate; 21, diverter groove; 22, spray head; 23, delivery hose; 24, liquid storage tank; 25, box body; 2 6. Micro water pump; 27. Driven wheel; 28. Liquid injection pipe; 29. ​​Frame; 30. Pressure plate; 31. Guide rod; 32. Cylinder; 33. Piston block; 34. Drive rod; 35. Slat; 36. Return spring; 37. Gas collecting pipe; 38. Diverter pipe; 39. Exhaust hole; 40. Storage groove; 41. Feed groove; 42. Sealing plate; 43. Connecting block; 44. Square groove; 45. Square plate; 46. Stop block; 47. Limiting groove; 48. Drive spring; 49. Battery assembly. DETAILED DESCRIPTION

[0043] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.

[0044] like Figures 1 to 10As shown, a test device for imaging diagnosis and analysis of bile duct diseases comprises a bottom plate 1, a frame body 2 is fixedly mounted on the top of the bottom plate 1, a support frame 3 is fixedly mounted inside the frame body 2, a lens barrel 5 is fixedly mounted on the support frame 3, a converter 6 is mounted on the lens barrel 5, a stage 7 is fixedly mounted on the support frame 3, and the stage 7 is located below the converter 6, a strip groove 8 is arranged on one side of the stage 7, a double-axis motor 9 is fixedly mounted inside the strip groove 8, an adjustment component is arranged inside the strip groove 8, the adjustment component is connected to a support plate 13, a strip plate 14 is fixedly mounted on the support plate 13, a scraper 15 is fixedly mounted on the strip plate 14, and one side of the scraper 15 is in contact with the carrier The top of the stage 7 is fitted together, a guide component is provided on the scraper 15, a storage component is fixedly installed on the stage 7, a liquid storage tank 24 is provided inside the stage 7, a frame 29 is provided inside the stage 7, and the frame 29 is located on one side of the liquid storage tank 24, a conveying component is provided on the stage 7, a diversion groove 21 is inlaid inside the strip plate 14, a liquid spray head 22 is arranged in an array on the diversion groove 21, a conveying hose 23 is connected to the diversion groove 21, and the other end of the conveying hose 23 is connected to the conveying component, a cleaning plate 20 is fixedly installed on the strip plate 14, and the cleaning plate 20 is located on one side of the scraper 15, and a test device for imaging diagnosis and analysis of biliary diseases is used. When preparing for imaging diagnosis and analysis of bile duct diseases, after placing the collected bile duct samples on a glass slide, after placing the glass slide on the stage 7, the sample can be viewed through the cooperation of the lens barrel 5 and the objective lens on the converter 6, and the image diagnosis and analysis of bile duct diseases can be performed on the sample on the glass slide, thereby achieving the purpose of imaging diagnosis and analysis of the disease. The stage 7 is used to support the glass slide sample. When cleaning the stage 7, the double-output shaft motor 9 is operated to move the adjustment component. The adjustment component cooperates with the support plate 13 to move the position of the strip plate 14, and then the movement of the strip plate 14 drives the scraper 15 to move, and the scraper 15 and the top of the stage 7 are in contact. When the double-output shaft motor 9 moves, the conveying component will move, and the water delivery component will extract the disinfectant inside the liquid storage tank 24, and the disinfectant will enter the diverter trough 21 through the conveying hose 23, and the disinfectant will be sprayed onto the surface of the stage 7 through the spray head 22, so as to disinfect and sterilize the surface of the stage 7, and the disinfectant on the surface of the stage 7 will be scraped off when the scraper 15 moves, and the scraped disinfectant will be stored through the storage component, so as to facilitate the temporary storage of the clean disinfectant.

[0045] like Figure 1 and Figure 2 As shown, a reflector 4 is fixedly mounted on the support frame 3 and is located below the stage 7 . The incident angle and intensity of light are adjusted by the reflector 4 so as to observe the sample and form a clear image of the sample in the lens barrel 5 .

[0046] like Figure 6 As shown, the adjustment component includes a threaded screw 10 and a slider 12. The threaded screw 10 is rotatably arranged inside the strip groove 8, and one end of the threaded screw 10 is fixedly connected to the output end of the double-output shaft motor 9. The slider 12 is arranged inside the strip groove 8, and the threaded screw 10 is threadedly connected to the slider 12. The slider 12 is fixedly connected to the support plate 13. When the adjustment component is working, the double-output shaft motor 9 will drive the threaded screw 10 to rotate. When the threaded screw 10 rotates, the position of the slider 12 will be moved. When the slider 12 moves, it will drive the support plate 13 to move, and then the position of the strip plate 14 can be adjusted.

[0047] like Figure 6 As shown, the guide assembly includes a connecting plate 16, a guide rod 18 and a guide block 19. The connecting plate 16 is fixedly installed below the scraper 15, and the guide block 19 is fixedly installed on the connecting plate 16. A slide groove 17 is provided inside the loading platform 7, and the guide rod 18 is fixedly installed inside the slide groove 17. The guide rod 18 passes through the guide block 19. When the strip plate 14 moves, the scraper 15 will be driven to move synchronously, and then the guide block 19 will be driven to slide on the guide rod 18 through the connecting plate 16, and then the guide rod 18 and the guide block 19 will cooperate to guide the strip plate 14, so that the strip plate 14 moves smoothly.

[0048] like Figure 6 As shown, the conveying assembly includes a box body 25 and a micro water pump 26. The box body 25 is fixedly installed inside the stage 7, and the box body 25 is located on one side of the liquid storage tank 24. The micro water pump 26 is fixedly installed inside the box body 25, and the input end of the micro water pump 26 extends to the inside of the liquid storage tank 24, and the other end of the conveying hose 23 is connected to the output end of the micro water pump 26. A driven wheel 27 is rotatably arranged inside the box body 25, and the center position of the driven wheel 27 is fixedly connected to the center position of the impeller inside the micro water pump 26 through an axis, and a double-output shaft motor The other output end is fixedly connected with a driving wheel 11, and the driving wheel 11 is connected with the driven wheel 27 through a belt transmission. When the double-output shaft motor 9 is working, the driving wheel 11 will be driven to rotate. When the driving wheel 11 rotates, the driven wheel 27 will be driven to rotate through the belt, and then the micro water pump 26 will be driven to move. The movement of the micro water pump 26 will extract the disinfectant inside the liquid storage tank 24, and the extracted disinfectant will be transmitted to the inside of the diversion tank 21 through the delivery hose 23. The double-output shaft motor 9 is equipped with a wireless module, which can remotely control its operation.

[0049] like Figure 6 As shown, a liquid injection tube 28 is installed inside the loading platform 7, and one end of the liquid injection tube 28 is connected to the liquid storage tank 24, and the other end of the liquid injection tube 28 extends out of the loading platform 7, so that disinfectant can be added to the liquid storage tank 24 through the liquid injection tube 28.

[0050] like Figure 6As shown, a guide rod 31 is fixedly installed inside the frame 29, a pressure plate 30 is arranged inside the frame 29, and the guide rod 31 passes through the pressure plate 30, and the other end of the pressure plate 30 is fixedly connected to the slider 12. When the slider 12 moves, it will drive the pressure plate 30 to move synchronously, and the pressure plate 30 will move smoothly through the cooperation of the guide rod 31.

[0051] like Figure 6 and Figure 7 As shown, cylinders 32 are arranged in an array on the stage 7, and the other end of the cylinders 32 extends into the frame 29, a piston block 33 is arranged inside the cylinder 32, a driving rod 34 is fixedly connected to the center of the piston block 33, a slat 35 is fixedly connected to the other end of the driving rod 34, a return spring 36 is installed around the driving rod 34, and one end of the return spring 36 is fixedly connected to the cylinder 32, and the other end of the return spring 36 is fixedly connected to the slat 35, an air collecting pipe 37 is fixedly connected to one end of the cylinder 32, a shunt pipe 38 is inlaid inside the strip plate 14, and the shunt pipe 38 is connected to the air collecting pipe 37 through a hose, and an array is arranged on the shunt pipe 38 The air hole 39 and the slider 12 move to drive the pressure plate 30 to move. After the pressure plate 30 moves and contacts the slat 35, it will pressurize the slat 35, thereby pushing the slat 35 to move. The driving rod 34 will push the piston block 33 to move synchronously. When the piston block 33 moves, it will compress the air inside the cylinder 32, and the compressed air will flow into the air collecting pipe 37. After the air flows into the air collecting pipe 37, it will flow into the diversion pipe 38 through the hose. The air entering the diversion pipe 38 will flow into the surface of the worktable 7 through the exhaust hole 39, so that the worktable 7 can be air-dried and cleaned.

[0052] like Figure 1 and Figure 7 As shown, the storage assembly includes a storage slot 40, a feed slot 41 and a sealing plate 42. The storage slot 40 is fixedly installed on the stage 7, the feed slot 41 is arranged on the top of the storage slot 40, the sealing plate 42 is penetrated inside the feed slot 41, and one end of the sealing plate 42 extends out of the storage slot 40, and a connecting block 43 is fixedly installed at the bottom of the sealing plate 42. When the scraper 15 moves, the disinfectant on the surface of the stage 7 is scraped off, and at the same time, the scraper 15 will push the disinfectant to move, and the disinfectant will be pushed into the feed slot 41 through the scraper 15, and the disinfectant will flow into the storage slot 40 through the feed slot 41 for collection, and the feed slot 41 can be sealed by the sealing plate 42.

[0053] like Figure 8 and Fig. 9As shown, a square groove 44 is fixedly installed inside the storage groove 40, a square plate 45 is inserted inside the square groove 44, and one end of the square plate 45 is fixedly connected to the connecting block 43, a limiting groove 47 is arranged on the square plate 45, a stopper 46 is arranged inside the limiting groove 47, and the stopper 46 is fixedly connected to the inner wall of the square groove 44, a driving spring 48 is fixedly installed on the stopper 46, and the other end of the driving spring 48 is fixedly connected to the limiting groove 47, a battery assembly 49 is fixedly installed at the bottom of the loading platform 7, and the battery assembly 49 is electrically connected to the double-output shaft motor 9, and when the strip plate 14 moves, the scraper 15 will The connecting plate 16 is driven to move, and the connecting plate 16 moves and contacts one end of the square plate 45, which in turn pushes the square plate 45 to move. When the square plate 45 moves, the sealing plate 42 is driven to move through the connecting block 43. After the sealing plate 42 moves, the feed slot 41 is no longer sealed. When the connecting plate 16 is no longer in contact with the square plate 45, the stop block 46 cooperates with the driving spring 48. The driving spring 48 is reset through the limiting groove 47 to push the square plate 45 to reset. When the square plate 45 is reset, the sealing plate 42 is driven to reset through the connecting block 43, and then the sealing plate 42 seals the feed slot 41.

[0054] Working principle: First, when using the test equipment for imaging diagnosis and analysis of bile duct diseases to perform imaging diagnosis and analysis of bile duct diseases, the collected bile duct samples are placed on a glass slide, and the glass slide is placed on the stage 7. Through the cooperation of the lens barrel 5 and the objective lens on the converter 6, the sample can be viewed, and the sample on the glass slide can be used for imaging diagnosis and analysis of bile duct diseases, thereby achieving the purpose of imaging diagnosis and analysis of the disease. The stage 7 is used to support the glass slide sample. When cleaning the stage 7, the double-output shaft motor 9 will drive the threaded screw 10 to rotate. When the threaded screw 10 rotates, the slider 12 will move. When the slider 12 moves, it will drive the support plate 13 to move, and then the position of the strip plate 14 can be adjusted. Adjustment, at the same time, the double-output shaft motor 9 drives the driving wheel 11 to rotate, and when the driving wheel 11 rotates, it will drive the driven wheel 27 to rotate through the belt, and then drive the micro water pump 26 to move, and the movement of the micro water pump 26 will extract the disinfectant inside the liquid storage tank 24, and the extracted disinfectant will be transmitted to the inside of the diverter trough 21 through the delivery hose 23, and the disinfectant will be sprayed onto the surface of the stage 7 through the spray head 22, so that the surface of the stage 7 can be disinfected and sterilized, and the movement of the strip plate 14 will drive the scraper 15 to move, and the scraper 15 will contact with the top of the stage 7, and then when the scraper 15 moves, the impurities and disinfectant above the stage 7 can be removed, so as to achieve the purpose of cleaning and disinfecting the stage 7. When the scraper 15 moves, it will drive the connecting plate 16 to move. The connecting plate 16 moves and contacts one end of the square plate 45, thereby pushing the square plate 45 to move. When the square plate 45 moves, it will drive the sealing plate 42 to move through the connecting block 43. After the sealing plate 42 moves, the feed slot 41 will no longer be sealed. The disinfectant will be pushed into the feed slot 41 through the scraper 15. The disinfectant will flow into the storage slot 40 through the feed slot 41 for collection. The movement of the slider 12 drives the pressure plate 30 to move. After the pressure plate 30 moves and contacts the slat 35, it will press the slat 35, thereby pushing the slat 35 to move. The driving rod 34 will push the piston block 33 to move synchronously. When the piston block 33 moves The air inside the cylinder 32 will be compressed, and the compressed air will flow into the air collecting pipe 37. After the air flows into the air collecting pipe 37, it will flow into the diversion pipe 38 through the hose. The air entering the diversion pipe 38 will flow into the surface of the stage 7 through the exhaust hole 39, so that the stage 7 can be air-dried and cleaned. When the connecting plate 16 is no longer in contact with the square plate 45, the stop block 46 cooperates with the driving spring 48, and the driving spring 48 is reset through the limit groove 47 to push the square plate 45 to reset. When the square plate 45 is reset, the sealing plate 42 will be driven to reset through the connecting block 43, and then the sealing plate 42 will seal the feed slot 41.

[0055] The above shows and describes the basic principles, main features and advantages of the present invention. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only for explaining the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention. The scope of protection of the present invention is defined by the attached claims and their equivalents.

Claims

1. A test device for imaging diagnosis and analysis of biliary diseases, characterized in that: The invention comprises a bottom plate (1), a frame body (2) is fixedly mounted on the top of the bottom plate (1), a support frame (3) is fixedly mounted inside the frame body (2), a lens barrel (5) is fixedly mounted on the support frame (3), a converter (6) is mounted on the lens barrel (5), a stage (7) is fixedly mounted on the support frame (3), and the stage (7) is located below the converter (6), a strip groove (8) is provided on one side of the stage (7), a double-output shaft motor (9) is fixedly mounted inside the strip groove (8), an adjustment component is provided inside the strip groove (8), the adjustment component is connected to a support plate (13), a strip plate (14) is fixedly mounted on the support plate (13), a scraper (15) is fixedly mounted on the strip plate (14), and the scraper (15) is provided with a plurality of strip grooves (8). The side of the scraper (15) is in contact with the top of the stage (7), the scraper (15) is provided with a guide component, the stage (7) is fixedly provided with a storage component, the stage (7) is provided with a liquid storage tank (24), the stage (7) is provided with a frame (29), and the frame (29) is located on one side of the liquid storage tank (24), the stage (7) is provided with a conveying component, the strip plate (14) is inlaid with a diverter groove (21), the diverter groove (21) is provided with a liquid spray head (22) in an array, the diverter groove (21) is connected to a conveying hose (23), and the other end of the conveying hose (23) is connected to the conveying component, and the strip plate (14) is fixedly provided with a cleaning plate (20), and the cleaning plate (20) is located on one side of the scraper (15); The adjustment assembly comprises a threaded screw (10) and a slider (12); the threaded screw (10) is rotatably arranged inside the strip groove (8), and one end of the threaded screw (10) is fixedly connected to the output end of the double-output shaft motor (9); the slider (12) is arranged inside the strip groove (8), and the threaded screw (10) is threadably connected to the slider (12); and the slider (12) is fixedly connected to the support plate (13); The stage (7) is provided with cylinders (32) in an array, and the other end of the cylinders (32) extends into the interior of the frame (29). A piston block (33) is provided inside the cylinder (32). A driving rod (34) is fixedly connected to the center of the piston block (33). The other end of the driving rod (34) is fixedly connected to a slat (35). A return spring (36) is installed around the driving rod (34). One end of the return spring (36) is fixedly connected to the cylinder (32), and the other end of the return spring (36) is fixedly connected to the slat (35). One end of the cylinder (32) is fixedly connected to an air collecting pipe (37). A shunt pipe (38) is embedded inside the strip plate (14), and the shunt pipe (38) is connected to the air collecting pipe (37) through a hose. An array of exhaust holes (39) are provided on the shunt pipe (38).

2. A test device for imaging diagnosis and analysis of biliary diseases according to claim 1, characterized in that: A reflector (4) is fixedly mounted on the support frame (3), and the reflector (4) is located below the object platform (7).

3. The test equipment for imaging diagnosis and analysis of biliary diseases according to claim 1, characterized in that: The guide assembly comprises a connecting plate (16), a guide rod (18) and a guide block (19); the connecting plate (16) is fixedly mounted below the scraper (15); the guide block (19) is fixedly mounted on the connecting plate (16); a slide groove (17) is provided inside the loading platform (7); the guide rod (18) is fixedly mounted inside the slide groove (17); and the guide rod (18) passes through the guide block (19).

4. A test device for imaging diagnosis and analysis of biliary diseases according to claim 1, characterized in that: The conveying assembly comprises a box body (25) and a micro water pump (26); the box body (25) is fixedly mounted inside the stage (7), and the box body (25) is located on one side of the liquid storage tank (24); the micro water pump (26) is fixedly mounted inside the box body (25), and the input end of the micro water pump (26) extends into the liquid storage tank (24); the other end of the conveying hose (23) is connected to the output end of the micro water pump (26); a driven wheel (27) is rotatably arranged inside the box body (25); the center position of the driven wheel (27) is fixedly connected to the center position of the impeller inside the micro water pump (26) via a shaft; the other output end of the double-output shaft motor (9) is fixedly connected to a driving wheel (11), and the driving wheel (11) and the driven wheel (27) are connected via a belt drive.

5. A test device for imaging diagnosis and analysis of biliary diseases according to claim 4, characterized in that: A liquid injection tube (28) is installed inside the loading platform (7), and one end of the liquid injection tube (28) is connected to the liquid storage tank (24), while the other end of the liquid injection tube (28) extends out of the loading platform (7).

6. A test device for imaging diagnosis and analysis of biliary diseases according to claim 1, characterized in that: A guide rod (31) is fixedly installed inside the frame (29), a pressure plate (30) is arranged inside the frame (29), the guide rod (31) passes through the pressure plate (30), and the other end of the pressure plate (30) is fixedly connected to the slider (12).

7. The test equipment for imaging diagnosis and analysis of biliary diseases according to claim 1, characterized in that: The storage assembly comprises a storage slot (40), a feed slot (41) and a sealing plate (42); the storage slot (40) is fixedly mounted on the stage (7); the feed slot (41) is arranged at the top of the storage slot (40); the sealing plate (42) is inserted into the feed slot (41), and one end of the sealing plate (42) extends out of the storage slot (40); and a connecting block (43) is fixedly mounted at the bottom of the sealing plate (42).

8. The test equipment for imaging diagnosis and analysis of biliary diseases according to claim 7, characterized in that: A square groove (44) is fixedly installed inside the storage groove (40), a square plate (45) is inserted inside the square groove (44), and one end of the square plate (45) is fixedly connected to the connecting block (43), a limiting groove (47) is provided on the square plate (45), a stopper (46) is provided inside the limiting groove (47), and the stopper (46) is fixedly connected to the inner wall of the square groove (44), a driving spring (48) is fixedly installed on the stopper (46), and the other end of the driving spring (48) is fixedly connected to the limiting groove (47), and a battery assembly (49) is fixedly installed on the bottom of the loading platform (7), and the battery assembly (49) is electrically connected to the double-output shaft motor (9).

Citation Information

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