Ureteroscope flushing device

By designing a ureteroscope flushing device, a multi-step assembly line operation of primary flushing, secondary flushing, soaking and disinfection of the ureteroscope was realized, which solved the problems of poor cleaning effect and poor operability in the existing technology, and improved the cleaning quality and efficiency.

CN121867970APending Publication Date: 2026-04-17张艳涛
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
张艳涛
Filing Date
2023-05-23
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing ureteroscope cleaning devices have poor cleaning effects and poor operability. They cannot achieve a complete process of cleaning, soaking, secondary cleaning and disinfection, and lack the ability to clean multiple ureteroscopes in a streamlined manner.

Method used

A ureteroscope irrigation device was designed, including a conveyor belt, a positioning frame, an irrigation structure, a disinfection box, and a through tube. The ureteroscope is transported by the conveyor belt for primary irrigation, secondary irrigation, and soaking. Disinfection is achieved using the disinfection box and nozzle, forming a multi-step cleaning assembly line operation.

Benefits of technology

This system enables a multi-step cleaning process for ureteroscopes, improving cleaning effectiveness and quality, ensuring the hygiene requirements of ureteroscopes, and offering good operability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of flushing devices, and provides a ureteroscope flushing device which can realize sequential operation of primary cleaning, soaking, secondary cleaning and disinfection links of a ureteroscope, the cleaning steps are relatively complete, the cleaning effect is further improved, and the cleaning quality is also ensured to a certain extent. The ureteroscope cleaning device can achieve assembly line type cleaning operation of a plurality of ureteroscopes, is good in operability and more practical and comprises a box body and a table frame, a mounting table is fixedly connected to the table frame, a conveying belt is mounted on the mounting table, a plurality of mounting rods are hinged to the conveying belt, and positioning frames are fixedly connected to the mounting rods. The mounting table is provided with a plurality of positioning frames, each positioning frame is provided with an opening positioning cavity, each positioning frame is provided with an adjustable positioning structure, the mounting table is connected with a traction rail bar through a plurality of supporting rods, the traction rail bar is connected with a plurality of opening bar rings, each opening bar ring is fixedly connected with a connecting spring, and each connecting spring is fixedly connected with a traction ring.
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Description

Technical Field

[0001] This invention relates to the field of irrigation device technology, and more specifically to a ureteroscope irrigation device. Background Technology

[0002] As is well known, a ureteroscope is a thin instrument consisting of optical fibers, a working channel, and various working accessories for different purposes. It is a medical device used for urological treatment, while a ureteroscope irrigation device is an auxiliary device used to clean the ureteroscope.

[0003] A search revealed that Chinese patent application CN202121908767.6 discloses a controllable flushing device for a flexible ureteroscope. The device generally comprises a housing, with an L-shaped rod fixedly connected to the housing. The L-shaped rod is fixedly connected to a square plate with symmetrical cross grooves. A U-plate is fixedly connected to the square plate, and a water tank is fixedly connected to the U-plate. The water tank is connected to an inlet pipe and a water pump. Two sets of symmetrical vertical rods are fixedly connected to the square plate, each with an arc-shaped rod. A flushing mechanism is also fixedly connected to the square plate. In use, the upper cap of the inlet pipe is unscrewed, clean water is poured into the water tank, the cap is tightened, the flexible ureteroscope is placed into the housing in sequence, and the motor and water pump are turned on. The motor drives the L-shaped rod to rotate simultaneously. Moving along the straight groove, the L-shaped rod drives the connecting rod to swing back and forth, the connecting rod drives the round block to move back and forth, the round block drives the cross block to move back and forth along the cross groove, the cross block drives the hollow rod, square rod, L-shaped rod and square box to move back and forth, the square box drives the ureteroscope to move back and forth, the square rod drives the U-shaped block to move back and forth, the U-shaped block drives the square block to move back and forth along the arc rod, the square block drives the U-shaped block to swing back and forth, the U-shaped block drives the square rod to move back and forth along the hollow rod, the U-shaped block drives the nozzle and spray head to swing back and forth, the water pump draws clean water from the water tank through the water pipe into the nozzle, and sprays it out from the nozzle. The nozzle swings back and forth, spraying clean water onto the ureteroscope. Wastewater falls from the round hole into the box. After the ureteroscope is cleaned, the motor and water pump are turned off, and the ureteroscope is removed.

[0004] While the aforementioned existing technical solutions can be used for the cleaning of ureteroscopes, ureteroscopes are medical devices with extremely strict hygiene requirements. In known ureteroscope cleaning operations, to ensure the quality of cleaning, it is necessary to sequentially undergo a primary cleaning, soaking, secondary cleaning, and disinfection process. For example, a webpage with the link https: / / www.taodocs.com / p-72909079.html demonstrates a manual cleaning process for ureteroscopes. It is clear that the cleaning steps of the aforementioned technical solutions are too simple, the cleaning effect needs further improvement, and the operability needs further improvement. Summary of the Invention

[0005] (a) Technical problems to be solved

[0006] To address the shortcomings of existing technologies, this invention provides a ureteroscope irrigation device that can perform sequential cleaning, soaking, secondary cleaning, and disinfection of ureteroscopes. The cleaning steps are relatively complete, the cleaning effect is further improved, and the cleaning quality is guaranteed to a certain extent. At the same time, it can realize the assembly line cleaning operation of multiple ureteroscopes, which has good operability and is more practical.

[0007] (II) Technical Solution

[0008] To achieve the above objectives, the present invention provides the following technical solution: a ureteroscope irrigation device, comprising a housing and a table frame, wherein a mounting platform is fixedly connected to the table frame, a conveyor belt is mounted on the mounting platform, multiple mounting rods are hinged to the conveyor belt, positioning frames are fixedly connected to each of the multiple mounting rods, each of the multiple positioning frames has an open positioning cavity, and each of the multiple positioning frames is equipped with an adjustable positioning structure; traction rails are connected to the mounting platform via multiple support rods, multiple open strip rings are connected to the traction rails, each of the multiple open strip rings is fixedly connected to a connecting spring, and traction rings are fixedly connected to each of the multiple connecting springs; the multiple traction... The rings are connected to multiple mounting rods. The box body is fixedly connected to the table frame, which has two rinsing structures. An extension frame is fixedly connected to the rear end of the table frame, and a disinfection box is fixedly connected to the extension frame. An outer probe plate is fixedly connected to the bottom of the disinfection box, and a sealing mounting strip is rotatably connected to the outer probe plate. Multiple sealing plates and multiple elastic sealing edges are fixedly connected to the sealing mounting strip. The multiple elastic sealing edges and multiple sealing plates are arranged alternately at intervals. The multiple sealing plates are all in sliding fit with the disinfection box. Multiple top holes are opened at the top of the disinfection box, and through pipes are installed in each of the multiple top holes. Spray nozzles are installed at the bottom of each of the multiple through pipes.

[0009] Preferably, both of the rinsing structures include tracks, both tracks are fixedly connected to the table frame, both tracks are connected to vertical frames, both vertical frames are connected to quick-connect liquid supply pipes, both quick-connect liquid supply pipes are detachably connected to a first alignment conical sleeve and a second alignment conical sleeve, both tracks are connected to springs, and both springs are connected to the two vertical frames respectively.

[0010] Furthermore, both tracks are divided into arc-shaped sections and straight sections, and the bottom ends of both vertical frames are fixedly connected to connecting blocks. Both arc-shaped sections are provided with horizontal grooves, which are matched with the two connecting blocks respectively. Both straight sections are provided with sloping grooves, which are also matched with the two connecting blocks respectively.

[0011] Furthermore, each of the two vertical frames is fixedly connected to a receiving box, and the bottom of the two receiving boxes is connected to a drainage pipe.

[0012] Furthermore, each of the adjustable positioning structures includes a connecting frame, which is fixedly connected to the positioning frame. Each positioning frame has a slotted hole, and a clamping block is slidably connected within each slotted hole. Each clamping block has a connecting rod and a push-out spring fixedly connected to it. Each push-out spring is sleeved on the connecting rod. Each connecting frame has a threaded hole, and an adjusting cylinder is threadedly connected within each threaded hole. Each connecting rod passes through the adjusting cylinder, and an adjusting frame is rotatably connected to each adjusting cylinder. Each adjusting frame is slidably connected within the connecting frame, and each adjusting frame is connected to the push-out spring.

[0013] Based on the aforementioned scheme, each of the clamping blocks is provided with a gradual slope, which is used to form a relative clamping and positioning relative to the ureteroscope.

[0014] In a preferred embodiment based on the aforementioned scheme, a drive cap is fixedly connected to the adjusting cylinder, an end ball is fixedly connected to the connecting rod, and holes for the connecting rod to pass through are provided on both the drive cap and the adjusting frame.

[0015] Furthermore, based on the aforementioned scheme, two rotating rollers are rotatably connected to the outer probe plate, and the enclosed mounting belt is connected to the two rotating rollers.

[0016] Furthermore, based on the aforementioned solution, a drain plate is fixedly connected to the extended frame. The drain plate is located directly below the enclosed mounting belt, and the bottom end of the drain plate is connected to a guide return pipe.

[0017] Furthermore, based on the aforementioned scheme, the active vertical roller and the driven vertical roller are rotatably connected on the mounting platform, the conveyor belt is driven to connect the active vertical roller and the driven vertical roller, and a servo motor for driving the rotation of the active vertical roller is installed inside the table frame.

[0018] (III) Beneficial Effects

[0019] Compared with the prior art, the present invention provides a ureteroscope irrigation device, which has the following beneficial effects:

[0020] 1. In this invention, the design of the flushing structure enables the formation of a flushing component for the ureteroscope. The cooperation of two flushing structures allows for both primary and secondary flushing of the ureteroscope. The housing facilitates the creation of a immersion space for the ureteroscope. The combination of the disinfection box, the through-tube, and the nozzle creates a disinfection space for the ureteroscope. This ureteroscope flushing device can perform all the steps of primary cleaning, immersion, secondary cleaning, and disinfection of the ureteroscope, resulting in a more complete cleaning process, improved cleaning effect, and guaranteed cleaning quality to a certain extent.

[0021] 2. In this invention, multiple ureteroscope placement points are formed through the cooperation of the conveyor belt, mounting rod, and positioning frame. The ureteroscopes placed at the multiple placement points can move sequentially with the movement of the conveyor belt. With the matching flushing structure, box, and disinfection box, a sequential multi-step cleaning operation of multiple ureteroscopes is formed, which can realize the assembly line cleaning operation of multiple ureteroscopes. Through the design of the adjustable positioning structure, it is convenient to assist in the clamping and positioning of the ureteroscopes in the positioning frame, and the operability is good.

[0022] 3. In this invention, the coordination of the traction rail, the opening strip ring, the connecting spring, and the traction ring forms an adjustment mechanism for multiple mounting rods to move to different cleaning processes, facilitating the orderly cleaning of the ureteroscope. The coordination of the sealing mounting belt, the sealing plate, and the elastic sealing edge allows multiple ureteroscopes to be placed into the disinfection box in sequence, thus forming relatively independent disinfection spaces within the box, which in turn facilitates the orderly disinfection of multiple ureteroscopes and is more practical. Attached Figure Description

[0023] Figure 1 This is a three-dimensional structural diagram of the entire invention;

[0024] Figure 2 For the present invention Figure 1 A magnified schematic diagram of the partial structure at point A in the middle;

[0025] Figure 3 For the present invention Figure 1 A magnified view of the structure at point B in the middle;

[0026] Figure 4 For the present invention Figure 1 A magnified schematic diagram of the local structure at point C;

[0027] Figure 5 This is a three-dimensional structural diagram of the entire invention viewed from below;

[0028] Figure 6 For the present invention Figure 5 A magnified schematic diagram of the local structure at point D;

[0029] Figure 7 This is a rear-view perspective three-dimensional structural diagram of the entire invention;

[0030] Figure 8 For the present invention Figure 7 A magnified schematic diagram of the local structure at point E;

[0031] Figure 9 For the present invention Figure 7 A magnified schematic diagram of the local structure at point F;

[0032] Figure 10 This is a three-dimensional structural diagram showing the intersecting arrangement of the arc-shaped segment, straight segment, and connecting block of the present invention;

[0033] Figure 11 This is a three-dimensional structural diagram of the present invention, showing the interaction and distribution of multiple through-tubes and multiple nozzles.

[0034] In the diagram: 1. Box body; 2. Table frame; 3. Mounting platform; 4. Conveyor belt; 5. Mounting rod; 6. Positioning frame; 7. Opening positioning cavity; 8. Support rod; 9. Traction rail; 10. Opening strip ring; 11. Connecting spring; 12. Traction ring; 13. Outer frame; 14. Disinfection box; 15. Outer probe plate; 16. Enclosed mounting belt; 17. Enclosed plate; 18. Elastic sealing edge; 19. Through pipe; 20. Nozzle; 21. Track; 22. Vertical frame; 23. Quick-connect liquid supply pipe; 24. First alignment conical sleeve. 25. Second alignment cone sleeve; 26. Spring; 27. Arc-shaped section; 28. Straight section; 29. ​​Connecting block; 30. Horizontal groove; 31. Sloping groove; 32. Receiving box; 33. Drainage pipe; 34. Connecting frame; 35. Pressing block; 36. Connecting rod; 37. Push-out spring; 38. Adjusting cylinder; 39. Gradual slope; 40. Drive cap; 41. End ball; 42. Rotating roller; 43. Drain receiving plate; 44. Guide return pipe; 45. Active vertical roller; 46. Driven vertical roller; 47. Adjusting frame. Detailed Implementation

[0035] Example

[0036] Please see the appendix Figure 1 - Appendix Figure 11A ureteroscope irrigation device includes a housing 1 and a table frame 2. A mounting platform 3 is fixedly connected to the table frame 2, and a conveyor belt 4 is mounted on the mounting platform 3. An active vertical roller 45 and a driven vertical roller 46 are rotatably connected to the mounting platform 3. The conveyor belt 4 is driven by the active vertical roller 45 and the driven vertical roller 46. A servo motor for driving the rotation of the active vertical roller 45 is installed inside the table frame 2, forming a specific support and mounting structure for the conveyor belt 4, facilitating the power drive of the conveyor belt 4. Multiple mounting rods 5 are hinged to the conveyor belt 4, and positioning frames 6 are fixedly connected to each mounting rod 5. Multiple positioning frames 6 are each provided with an open positioning cavity 7. Through the cooperation of the conveyor belt 4, mounting rod 5, and positioning frames 6, multiple placement points for ureteroscopes are formed. The ureteroscopes placed at these points can move sequentially along with the conveyor belt 4. Combined with the flushing structure, housing 1, and disinfection box 14, this enables a sequential, multi-step cleaning process for multiple ureteroscopes, allowing for a streamlined cleaning operation. Furthermore, each positioning frame 6 is equipped with an adjustable positioning structure, each including a connecting frame 34, which are respectively fixed... The system is fixedly connected to multiple positioning frames 6, each with a slotted hole. A clamping block 35 is slidably connected within each slotted hole. A connecting rod 36 and a push-out spring 37 are fixedly connected to each clamping block 35. Each push-out spring 37 is sleeved on a connecting rod 36. Multiple connecting frames 34 have threaded holes, each with a threaded adjusting cylinder 38. Multiple connecting rods 36 pass through multiple adjusting cylinders 38. Each adjusting cylinder 38 is rotatably connected to an adjusting frame 47. The adjusting frames 47 are slidably connected within the multiple connecting frames 34. The frame 47 is connected to multiple push-out springs 37. The adjustable positioning structure facilitates the auxiliary clamping and positioning of the ureteroscope within the positioning frame 6, providing good operability. Multiple clamping blocks 35 are provided with a gradient slope 39, which is used to form a relative clamping and positioning with respect to the ureteroscope. A drive cap 40 is fixedly connected to the adjusting cylinder 38, and an end ball 41 is fixedly connected to the connecting rod 36. Holes for the connecting rod 36 to pass through are provided on both the drive cap 40 and the adjusting frame 47, facilitating the rotation adjustment of the adjusting cylinder 38 and the pull adjustment of the connecting rod 36.

[0037] It should be further explained that the mounting platform 3 is connected to traction rails 9 via multiple support rods 8. Multiple open strip rings 10 are connected to the traction rails 9, and each open strip ring 10 is fixedly connected to a connecting spring 11. Each connecting spring 11 is fixedly connected to a traction ring 12, which is connected to multiple mounting rods 5. Through the cooperation of the traction rails 9, open strip rings 10, connecting springs 11, and traction rings 12, the mounting rods 5 can be adjusted as they move to different cleaning stages, facilitating the orderly cleaning of the ureteroscope. The housing 1 is fixedly connected to the table frame 2. The housing 1 facilitates the formation of a space for soaking the ureteroscope. Two rinsing structures are installed on the table frame 2, each including a track 21. Both tracks 21 are fixedly connected to the table frame 2. Vertical supports 22 are connected to each track 21, and quick-connect liquid supply pipes 23 are connected to each of the two vertical supports 22. Each quick-connect liquid supply pipe 23 is detachably connected to a first aligning conical sleeve 24 and a second aligning conical sleeve 25. Springs 26 are connected to each track 21, and each spring 26 is connected to one of the two vertical supports 22. Each track 21 is divided into an arc-shaped section 27 and a straight section 28. Connecting blocks 29 are fixedly connected to the bottom ends of each of the two vertical supports 22. Horizontal grooves 30 are provided in each of the two arc-shaped sections 27, and these grooves 30 are matched with the two connecting blocks 29. Sloping grooves 31 are provided in each of the two straight sections 28, and these grooves 31 are also matched with the two connecting blocks 29. Through the design of the rinsing structure, the desired effect is achieved... The ureteroscope is formed by a flushing structure, and through the cooperation of two flushing structures, a primary flushing operation and a secondary flushing operation can be performed on the ureteroscope. A receiving box 32 is fixedly connected to each of the two vertical frames 22. Drainage tubes 33 are connected to the bottom ends of the two receiving boxes 32 to facilitate the recovery and drainage of the flushing fluid after use. An extension frame 13 is fixedly connected to the rear end of the table frame 2. A disinfection box 14 is fixedly connected to the extension frame 13. An external probe plate 15 is fixedly connected to the bottom end of the disinfection box 14. A sealing mounting belt 16 is rotatably connected to the external probe plate 15. Two rotating rollers 42 are rotatably connected to the external probe plate 15. The sealing mounting belt 16 is drivenly connected to the two rotating rollers 42. Multiple sealing plates 17 and multiple elastic seals are fixedly connected to the sealing mounting belt 16. Multiple elastic sealing edges 18 and multiple sealing plates 17 are arranged alternately at intervals. Through the cooperation of the sealing installation belt 16, the sealing plates 17 and the elastic sealing edges 18, it is convenient for multiple ureteroscopes to enter the disinfection box 14 in sequence, so that multiple ureteroscopes form relatively independent disinfection spaces within the disinfection box 14. This facilitates the orderly disinfection of multiple ureteroscopes and is more practical. A drain tray 43 is fixedly connected to the extension frame 13. The drain tray 43 is located directly below the sealing installation belt 16, and the bottom end of the drain tray 43 is connected to a guide return pipe 44 for receiving the used disinfectant and guiding the return of the used disinfectant. Multiple sealing plates 17 are slidably engaged with the disinfection box 14, and multiple top holes are opened at the top of the disinfection box 14.Multiple through-tubes 19 are installed in the top holes, and nozzles 20 are installed at the bottom ends of the through-tubes 19. Through the cooperation of the disinfection box 14, the through-tubes 19, and the nozzles 20, a disinfection working space is formed for the ureteroscope. This allows the ureteroscope flushing device to complete the entire process of primary cleaning, soaking, secondary cleaning, and disinfection of the ureteroscope. The cleaning steps are relatively complete, the cleaning effect is further improved, and the cleaning quality is guaranteed to a certain extent.

[0038] The servo motor in this embodiment is a conventional device known to those skilled in the art and available on the market. In this patent, we are simply using it without making any improvements to its structure or function. For those skilled in the art, the setting method, installation method, and electrical connection method can be easily determined by following the instructions for use, and will not be described in detail here.

[0039] In summary, the working process of this ureteroscope irrigation device is as follows: First, place the device at the desired location. Then, fill the housing 1 with soaking solution. Connect the two quick-connect supply tubes 23 to the external irrigation solution supply lines, and connect the multiple through-tubes 19 to the external disinfectant supply lines. To facilitate the synchronous connection of the multiple through-tubes 19, a synchronous liquid tank is connected to the top of each tube. Connect the external disinfectant supply lines to the synchronous liquid tank. Finally, connect the servo motor to the corresponding circuit according to the instruction manual to complete the preparation work before cleaning the ureteroscope. When cleaning the ureteroscope is required, start the servo motor. The servo motor operates by driving the active vertical roller 45. Conveyor belt 4 moves, driving multiple mounting rods 5 to move, which in turn drives multiple positioning frames 6 to move. The right side of the ureteroscope irrigation device is designated as the insertion position for the ureteroscope. To insert the ureteroscope, simply insert it into the rightmost opening positioning cavity 7 of the positioning frames 6. As the ureteroscope is inserted into the opening positioning cavity 7, the clamping block 35 on the positioning frame 6 is first pulled to the left relative to the positioning frame 6, causing the clamping block 35 to exit the opening positioning cavity 7. Once the ureteroscope is positioned within the opening positioning cavity 7, the pulling force on the clamping block 35 is released. Under the action of the push-out spring 37, the clamping block 35 is pushed to the right, achieving the desired position of the ureteroscope within the opening positioning cavity. The auxiliary clamping and positioning within 7, after positioning, the servo motor's phased operation enables the sequential driving of multiple positioning frames 6. As the multiple positioning frames 6 sequentially pass through the rightmost insertion station, multiple ureteroscopes are sequentially placed into the multiple positioning frames 6. The ureteroscopes installed in the multiple positioning frames 6 move synchronously with the movement of the positioning frames 6. As the ureteroscope moves closer to the first alignment conical sleeve 24, the flushing fluid flowing from the quick-connect supply tube 23 through the first alignment conical sleeve 24 flushes the ureteroscope. After the ureteroscope and the first alignment conical sleeve 24 come into contact and form a certain interaction force, the first alignment conical sleeve 24 guides the ureteroscope and aligns the quick-connect supply tube 23 with the inner lumen of the ureteroscope until... The two are connected, and under the action of the interaction force, the moving ureteroscope drives the first alignment conical sleeve 24 to move synchronously. The vertical frame 22, which is matched with the first alignment conical sleeve 24, will also overcome the corresponding elasticity and move relative to the ureteroscope within the corresponding track 21. When the connecting block 29, which moves with the vertical frame 22, moves from the horizontal groove 30 to the slope groove 31, the first alignment conical sleeve 24 is pushed up relative to the ureteroscope under the action of the interaction force between the slope groove 31 and the connecting block 29. Until the first alignment conical sleeve 24 and the ureteroscope are separated in height, the mutual pushing action between the two becomes invalid, the ureteroscope passes over the first alignment conical sleeve 24, and the first alignment conical sleeve 24 returns to its original position under the action of the aforementioned stretched push-out spring 37.The ureteroscope, having passed the first alignment conical sleeve 24, is lowered and immersed in the housing 1 by the traction rail 9, forming a soaking zone.

[0040] Furthermore, since the traction rail 9 has a downward section at the position matching the housing 1, under the combined action of the opening ring 10, connecting spring 11, and traction ring 12, the ureteroscope moving to the corresponding position on the housing 1 will be immersed in the housing 1 by its downward swing, and with the movement of the conveyor belt 4, the ureteroscope is lifted by the traction rail 9 just before it is about to contact the inner left wall of the housing 1. Then the ureteroscope enters the rinsing operation area of ​​the second alignment conical sleeve 25. The cleaning operation principle of the second alignment conical sleeve 25 is the same as... The cleaning principle of the first alignment conical sleeve 24 is roughly the same, so it will not be repeated. After being rinsed by the second alignment conical sleeve 25, the ureteroscope will gradually move into the working area of ​​the sterilization box 14. At the position matching the sterilization box 14, the traction rail 9 is provided with an upward pushing section. The upward pushing section can push the mounting rod 5 upward, thereby raising the ureteroscope to that position. After being raised, the ureteroscope will enter the sterilization box 14 under the action of the conveyor belt 4. Since both ends of the sterilization box 14 are open structures, Therefore, the ureteroscope can be sequentially inserted into the disinfection box 14, and after contacting the sealing plates 17 on the sealing installation belt 16, the interaction force between the two forms a synchronous drive of multiple sealing plates 17. These multiple sealing plates 17 move synchronously with the movement of the ureteroscope, thus forming a disinfection space that moves synchronously with the movement of the ureteroscope, in conjunction with the disinfection box 14. The nozzle 20 sprays disinfectant into the disinfection space, providing auxiliary disinfection for the ureteroscope. To ensure the sequential cleaning of multiple ureteroscopes, the soaking solution inside the box 1 will... The ureteroscope is replaced in the gap between the forward-moving ureteroscope and the backward-moving ureteroscope. The self-cleaning of the first and second conical sleeves 25 of the first and second conical sleeves 24 is achieved by the continuous flow of flushing fluid. The disinfection box 14 is kept clean by the continuous spraying of disinfectant from the nozzle 20. At the same time, the multiple sealing plates 17 that move synchronously with the disinfection box 14 will also scrape and clean the inner wall of the disinfection box 14 to ensure the continuous cleaning of the ureteroscope flushing device.

Claims

1. A ureteroscope irrigation device, comprising a housing (1), characterized in that, It also includes a table frame (2), on which a mounting platform (3) is fixedly connected. A conveyor belt (4) is mounted on the mounting platform (3). Multiple mounting rods (5) are hinged to the conveyor belt (4). Positioning frames (6) are fixedly connected to each of the multiple mounting rods (5). Each of the multiple positioning frames (6) has an open positioning cavity (7), and each of the multiple positioning frames (6) is equipped with an adjustable positioning structure. A traction rail (9) is connected to the mounting platform (3) via multiple support rods (8). Multiple open strip rings (10) are connected to the traction rails (9). A connecting spring (11) is fixedly connected to each of the multiple open strip rings (10). A traction ring (12) is fixedly connected to each of the multiple connecting springs (11). The multiple traction rings (12) are respectively connected to the multiple mounting rods (5). The box body (1) is fixedly connected to... The table is attached to a table frame (2), which has two rinsing structures. An extension frame (13) is fixedly connected to the rear end of the table frame (2). A disinfection box (14) is fixedly connected to the extension frame (13). An outer probe plate (15) is fixedly connected to the bottom end of the disinfection box (14). A sealing mounting strip (16) is rotatably connected to the outer probe plate (15). Multiple sealing plates (17) and multiple elastic sealing edges (18) are fixedly connected to the sealing mounting strip (16). The multiple elastic sealing edges (18) and the multiple sealing plates (17) are arranged alternately at intervals. The multiple sealing plates (17) are all in sliding fit with the disinfection box (14). Multiple top holes are opened at the top of the disinfection box (14). A through pipe (19) is installed in each of the multiple top holes. A nozzle (20) is installed at the bottom end of each of the multiple through pipes (19).

2. The ureteroscope irrigation device according to claim 1, characterized in that, Both of the flushing structures include a track (21), both of the tracks (21) are fixedly connected to the table frame (2), both of the tracks (21) are connected to a vertical frame (22), both of the vertical frames (22) are connected to a quick-connect liquid supply pipe (23), both of the quick-connect liquid supply pipes (23) are detachably connected to a first alignment conical sleeve (24) and a second alignment conical sleeve (25), both of the tracks (21) are connected to a spring (26), and both of the springs (26) are connected to the two vertical frames (22) respectively.

3. The ureteroscope irrigation device according to claim 2, characterized in that, Both tracks (21) are divided into arc-shaped sections (27) and straight sections (28). The bottom ends of both vertical frames (22) are fixedly connected to connecting blocks (29). Both arc-shaped sections (27) are provided with horizontal grooves (30), which are matched with the two connecting blocks (29) respectively. Both straight sections (28) are provided with slope grooves (31), which are also matched with the two connecting blocks (29) respectively.

4. A ureteroscope irrigation device according to claim 3, characterized in that, Each of the two vertical frames (22) is fixedly connected to a receiving box (32), and the bottom of the two receiving boxes (32) is connected to a drainage pipe (33).

5. A ureteroscope irrigation device according to claim 4, characterized in that, Each of the adjustable positioning structures includes a connecting frame (34), which is fixedly connected to a positioning frame (6). Each positioning frame (6) has a slot, and a pressing block (35) is slidably connected in each slot. Each pressing block (35) has a connecting rod (36) and a push-out spring (37) fixedly connected to it. Each push-out spring (37) is sleeved on the connecting rod (36). Each connecting frame (34) has a threaded hole, and an adjusting cylinder (38) is threadedly connected in each threaded hole. Each connecting rod (36) passes through the adjusting cylinder (38). Each adjusting cylinder (38) is rotatably connected to an adjusting frame (47). Each adjusting frame (47) is slidably connected in the connecting frame (34). Each adjusting frame (47) is connected to the push-out spring (37).

6. A ureteroscope irrigation device according to claim 5, characterized in that, Each of the clamping blocks (35) is provided with a gradient slope (39), which is used to form a relative clamping position relative to a ureteroscope.

7. A ureteroscope irrigation device according to claim 6, characterized in that, A drive cap (40) is fixedly connected to the adjusting cylinder (38), and an end ball (41) is fixedly connected to the connecting rod (36). Holes for the connecting rod (36) to pass through are provided on both the drive cap (40) and the adjusting frame (47).

8. A ureteroscope irrigation device according to claim 7, characterized in that, Two rotating rollers (42) are rotatably connected to the outer probe plate (15), and the closed mounting belt (16) is drivenly connected to the two rotating rollers (42).

9. A ureteroscope irrigation device according to claim 8, characterized in that, A drain plate (43) is fixedly connected to the extension frame (13). The drain plate (43) is located directly below the closed mounting belt (16), and the bottom end of the drain plate (43) is connected to a guide return pipe (44).

10. A ureteroscope irrigation device according to claim 9, characterized in that, The mounting platform (3) is rotatably connected to the active vertical roller (45) and the driven vertical roller (46), the conveyor belt (4) is driven to the active vertical roller (45) and the driven vertical roller (46), and the table frame (2) is equipped with a servo motor for driving the rotation of the active vertical roller (45).

Citation Information

Patent Citations

  • Controllable flushing device for medical flexible ureteroscope

    CN215227433U