Cystoscope cleaning system and method for urinary surgery
By designing a cystoscopy cleaning system for urology, using multiple split boxes and conductive ports to achieve full-circuit rotation cleaning, the problems of vulnerability to cystoscopy cleaning and water pollution in the prior art are solved, and efficient and continuous cleaning and sterilization process are achieved.
Patent Information
- Application Number
- CN202510282629.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The prior art is prone to damage the mirror element when cleaning the cystoscope, and the mechanized brushing method requires separate passage cleaning, resulting in water pollution and large-scale use of cleaning liquid, affecting continuity.
A cystoscopy cleaning system for urology is designed, including an internal cleaning plate, an overflow plate, an external cleaning plate and a water circulation chamber. It realizes full-circuit rotation cleaning through multiple split chambers and conductors, and combines a spiral liquid extraction tube and a spray gun assembly for internal and external cleaning.
The cystoscopy is fully rotated and cleaned, which reduces the damage rate of the lens body, ensures the continuity of the cleaning process, and achieves efficient washing effect and self-cleaning and sterilization process through the design of circulating water and isolation space.
Smart Images

Figure CN120093202A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of medical surgical instrument cleaning equipment, and in particular to a cystoscope cleaning system and method for urology surgery. Background Art
[0002] A cystoscope is an optical endoscope with a relatively complex structure. There are many types with different structures, but the main components are the sheath, endoscope, intubation mirror, obturator, accessories and other structures. The cystoscope needs to be cleaned after the operation. The operating room commonly uses cleaning fluid and manual washing to separately clean and store the sheath, endoscope and intubation mirror. This method is likely to cause damage to the mirror components during the washing process, resulting in certain economic losses. The more mechanized scrubbing method requires separate cleaning of different tubular components. In order to prevent the water flow of one washing from causing the cleaning effect of subsequent components for the second time, cleaning of separate areas is likely to cause water pollution in the mutual cleaning process. The use of flowing water will lead to the use of a large amount of cleaning fluid, and the wide flowing water tank is not conducive to self-cleaning of the tank, thereby affecting the continuity of multi-component washing.
[0003] To achieve the above objectives, the present invention provides a cystoscope cleaning system and method for urology surgery, which can solve the problems raised in the above background technology. Summary of the invention
[0004] The present invention adopts the following technical solutions to achieve:
[0005] A cystoscope cleaning system for urology surgery, comprising an internal cleaning tray, an overflow tray, an external cleaning tray, and a water circulation box, which are fixed in sequence up and down and are internally connected;
[0006] The overflow tray is provided with a plurality of conducting ports, the water circulation box body includes a plurality of split boxes, and a plurality of cleaning components are provided below the external cleaning tray; the conducting ports correspond to the split boxes one by one, and the axis is in the same position as the rotational cleaning axis of the cleaning component;
[0007] The internal cleaning disk includes a semi-enclosed disk with the same rotation axis as the water circulation box, and a cleaning passage is provided on the semi-enclosed disk. The cleaning passage is sequentially connected with multiple groups of conducting ports with the same axis and the split box during the rotation of the semi-enclosed disk; the cystoscope body is fixed inside the cleaning passage.
[0008] Preferably, the conducting port, the split box and the semi-enclosed disk are all conducting spaces with circular cross-sections; a brushing passage is provided on the center line of the semi-enclosed disk with the center pointing to the center line of the cleaning passage, a closed pipe opening is provided on one side of the brushing passage and is connected to the cleaning passage, and one end of the mirror body is fixed on the closed pipe opening and is connected to the closed pipe opening.
[0009] Preferably, a propulsion cylinder is provided inside the internal cleaning tray on a side away from the cleaning passage, and the protruding end of the propulsion cylinder is connected to a cleaning motor group, one end of the cleaning motor group passes through the brushing passage and is connected to a spiral liquid collection tube, and the spiral liquid collection tube extends into the interior of the mirror body through a closed pipe opening.
[0010] Preferably, the upper portion of the scrubbing passage is provided with a plurality of through holes connected to the overflow tray, the bottom of the scrubbing passage is provided with a screen and a spray gun assembly is connected to the bottom, a water changing pump is provided at the water inlet end of the spray gun assembly, and one end of the water changing pump is connected to the split box and corresponds one to one.
[0011] Preferably, a fixing frame is provided inside the cleaning passage, the mirror body is fixed above the fixing frame, a washing liquid tank is provided above one end of the fixing frame away from the closed pipe mouth, the front end passage of the mirror body is connected to the washing liquid tank, the other end of the washing liquid tank is connected to the liquid replenishing device, and the replenishing liquid is sucked into the interior of the mirror body through the washing liquid tank.
[0012] Preferably, a support frame is provided inside the overflow tray, a reduction gear set and a conversion motor are provided at the top of the axis point of the semi-enclosed tray, the external cleaning tray includes an upper cover, and the output end of the conversion motor passes through the support frame and the upper and lower sides of the center of the upper cover;
[0013] The single rotation angle of the conversion motor is 360 / n degrees (n is the number of the split boxes).
[0014] Preferably, the cleaning assembly includes a cleaning motor fixed above the upper cover, the bottom output end of the cleaning motor is connected to a shield, a hydrophobic sponge is provided at the inner center point of the shield, and the bottom surface of the hydrophobic sponge is located inside the cleaning passage and in contact with the surface of the mirror body.
[0015] Preferably, the shield is movable up and down, and a sealing strip is provided at the bottom of the edge of the shield, and when the shield falls, the surface of the sealing strip is connected to the upper surface of the overflow tray;
[0016] Preferably, an axial motor seat is provided at the inner bottom of the split box, a conical leak plate is provided at the top output end of the axial motor seat, and a plurality of water stirring plates are provided on the conical leak plate;
[0017] A method for cleaning a cystoscope for urology surgery comprises the following steps: S1, self-cleaning and disinfection: using an external cleaning and disinfecting liquid to fill a plurality of split box bodies through the washing liquid tank to the liquid level position of the washing liquid tank, rotating the cleaning assembly and the split box so that the cleaning liquid formed inside is fully rotated and cleaned for 5-8 minutes, and moving the cleaning system to a sterile environment to ensure the cleanliness of the top operating environment;
[0018] S2. Fix the cystoscope: connect one end of the cystoscope body to the closed tube opening and fix the other end inside the washing tank. Use the propulsion cylinder to rotate the spiral liquid collection tube and extend it into the cystoscope body.
[0019] S3, internal scrubbing: At this time, the connecting ports connected to the upper and lower parts of the cleaning passage and the split box are marked as the first connected cleaning interval. The propulsion cylinder is used to rotate and propel it completely into the mirror body. The spiral water outlet end is the closed pipe end and flows to the scrubbing passage. The spiral water inlet end is the open end of the washing liquid tank on the other side of the mirror body. The washing liquid tank is kept filled with cleaning water in real time.
[0020] S4, cleaning of the spiral liquid collection tube: After the mirror body is cleaned, the propulsion cylinder retracts and synchronously drives the spiral liquid collection tube to rotate out. At this time, the rotating section is flushed and cleaned by the action of the spray gun assembly;
[0021] S5, synchronous external brushing: In step S3, the cleaning end of the cleaning component on the upper part of the first connected cleaning space contacts the mirror body and drives the water flow to flush the mirror body, and a separate first connection space is isolated during the synchronous step S4;
[0022] S6, Circular Single-Barrel Cleaning: Rotate the conversion motor to connect the closed first connected cleaning space with the outside, and the overflow cleaning liquid at the scrubbing passage is introduced into the overflow tray and enters the water circulation box. The cleaning passage rotates to the top of the next split box and forms a second connected cleaning space with the next conducting port;
[0023] S7, conduction and slag discharge: conduction of the semi-enclosed disk allows the water inside the overflow disk of the first connected strong attack space to flow into the split box, and the inside of the split box rotates to separate and precipitate, and then the steps S1 to S6 are circulated.
[0024] Compared with the prior art, the present invention has the following beneficial effects:
[0025] The present invention provides multiple separate flowing water bodies to wash the inside and outside of the mirror body at fixed positions, so that when one washing area performs all-round washing of the mirror body, other washing spaces can independently perform self-cleaning and sterilization processes, thereby ensuring that the washing process of the multi-component cystoscope can run continuously;
[0026] By opening and closing the circulating water body separately, it is possible to use non-contaminated washing water to form multiple washing effects on the single component in a single cleaning process. Similarly, by filling the isolated space with washing liquid or disinfectant with different effects, a variety of different washing effects can be achieved, thereby improving the cleaning integrity of the cystoscope cleaning system.
[0027] During the washing process of this system, any tube component of the cystoscope is in the water flow scrubbing rather than manual damage, which can ensure a lower damage rate of the scope;
[0028] The device can quickly isolate waste sediments to the lower isolation space through the vortex effect, and the washing in a single interval still keeps the upper washing space as a clean space, which can enhance the cleaning effect of the internal and external components of the cystoscope components. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is a cross-sectional view of the lateral structure of the present invention;
[0030] Figure 2 This is a schematic top view of the structure of the present invention after removing the upper cover structure;
[0031] Figure 3 It is a structural stereogram of the present invention after removing the upper cover (keeping the protective cover).
[0032] In the figure: 1. Internal cleaning tray; 2. Overflow tray; 3. External cleaning tray; 4. Water circulation box;
[0033] 101, conversion motor; 102, reduction gear set; 103, semi-enclosed disk; 104, cleaning passage; 105, brushing passage; 106, propulsion cylinder; 107, spiral liquid taking pipe; 108, washing liquid tank; 109, closed pipe mouth; 110, fixing frame;
[0034] 201, support frame; 202, conduction port;
[0035] 301, upper cover; 302, cleaning motor; 303, protective cover; 304, hydrophobic sponge;
[0036] 401, split box; 402, axis motor seat; 403, conical leaking plate; 404, stirring plate; 405, water replacement pump; 406, spray gun assembly. DETAILED DESCRIPTION
[0037] To facilitate understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. Several embodiments of the present invention are given in the drawings, but the present invention can be implemented in different forms and is not limited to the embodiments described in the text. On the contrary, these embodiments are provided to make the content disclosed in the present invention more thorough and comprehensive.
[0038] It should be noted that when an element is referred to as being "fixed on" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used in this article are for illustrative purposes only.
[0039] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly connected by technicians in the technical field to which the present invention belongs. The terms used in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used in this article includes any and all combinations of one or more related listed items.
[0040] The present invention is further described in detail below in conjunction with the accompanying drawings.
[0041] In one embodiment of the present invention: Please refer to the attached Figure 1-3 , including an internal cleaning disk 1, an overflow disk 2, an external cleaning disk 3, and a water circulation box 4 which are fixed in sequence and internally connected up and down; the overflow disk 2 is provided with a plurality of conduction ports 202, the water circulation box 4 includes a plurality of split boxes 401, and a plurality of cleaning components are arranged below the external cleaning disk 3; the conduction ports 202 correspond to the split boxes 401 one by one, and the axis is in the same position as the rotational cleaning axis of the cleaning component;
[0042] The internal cleaning disk 1 includes a semi-enclosed disk 103 with the same rotation axis as the water circulation box 4, and a cleaning passage 104 is provided on the semi-enclosed disk 103. The cleaning passage 104 is sequentially connected with multiple groups of the guide ports 202 with the same axis and the split box 401 during the rotation of the semi-enclosed disk 103; the cystoscope body 5 is fixed inside the cleaning passage 104;
[0043] The inner bottom of the split box 401 is provided with an axis motor seat 402, and the top output end of the axis motor seat 402 is provided with a conical leak plate 403, and the conical leak plate 403 is provided with a plurality of water stirring plates 404; the external scrubbing method of the device is formed by the upper hydrophobic sponge 304, and at the same time, the hydrophobic sponge 304 can drive the movement of the surface water flow while rotating, and cooperate with the influence of the water stirring plate 404 at the bottom on the water body to take away the dirt on the surface of the mirror body 5. In addition, when the two rotate in the same direction, they can reversely stir the upper and lower water bodies, bringing another water flow scrubbing effect;
[0044] When applied to different mirror body 5 pipelines, the above-mentioned method for cleaning cystoscopes for urology is used. Steps 1 to 7 are the same, and different calibers of the spiral liquid collection tube 107 can be replaced. When the spiral liquid collection tube 107 is installed, the propulsion cylinder 106 is fully withdrawn, so that the interface at the motor end is fully withdrawn to the position on one side of the closed pipe mouth 109. At this time, the spiral liquid collection tube 107 is connected to the closed pipe mouth 109 and docked to the interface at the output end of the motor. It should be noted that the passage space of the scrubbing passage 105 and the withdrawal space of the motor are piston-type push-in and push-out. The movement between the spiral liquid collection tube 107 and the motor output end provides the scrubbing space of the scrubbing passage 105 in full amount without bringing the scrubbed mixed solid and liquid into the space at one end of the propulsion cylinder 106. The space inside the scrubbing passage 105 is always filled. During the period when the spray gun assembly 406 is turned on, the overflow of sediment is the water flow lifting effect rather than buoyancy.
[0045] In addition, in step S7, an opening and closing passage can be correspondingly set on the semi-enclosed disk 103, which is suitable for facilitating the material sedimentation in the first cleaning space and the cleaning of the interior of the split box 401 during the cleaning process of the marked second cleaning space; when there is no active opening and closing space, it is also possible to directly open the protective cover 303 to connect the scrubbing passage 105 and the conducting port 202 space, or without using the protective cover 303, the debris flushed out of the scrubbing passage 105 can be directly diverted to the conducting port 202 for simultaneous scrubbing and sedimentation.
[0046] In yet another embodiment of the present invention:
[0047] Please refer to Figure 1-3 The conduction port 202, the split box 401 and the semi-enclosed disk 103 are all conduction spaces with circular cross-sections; a scrubbing passage 105 is provided on the center line of the semi-enclosed disk 103 pointing to the center line of the cleaning passage 104, and a closed pipe port 109 is provided on one side of the scrubbing passage 105 to communicate with the cleaning passage 104, and one end of the mirror body 5 is fixed on the closed pipe port 109 and communicates with the closed pipe port 109;
[0048] A propulsion cylinder 106 is provided inside the internal cleaning tray 1 on the side away from the cleaning passage 104, and a cleaning motor unit is connected to the protruding end of the propulsion cylinder 106. One end of the cleaning motor unit passes through the scrubbing passage 105 and is connected to a spiral liquid collection tube 107. The spiral liquid collection tube 107 extends into the interior of the mirror body 5 through a closed pipe opening 109; please pay special attention to Figure 2A fixing frame 110 is provided inside the cleaning passage 104, and the mirror body 5 is fixed above the fixing frame 110. A washing liquid tank 108 is provided above one end of the fixing frame 110 away from the closed pipe mouth 109. The front end passage of the mirror body 5 is connected with the washing liquid tank 108, and the other end of the washing liquid tank 108 is connected to the liquid replenishing device. The replenishing liquid is sucked into the mirror body 5 through the washing liquid tank 108. The system completes the brushing of the inside of the mirror body 5 in two ways. One is to convey and scrape the internal waste through the spiral liquid collection tube 107 rotating outward and fitting with the inner wall of the mirror body 5, and perform preliminary scraping under the rotation of the motor. The second is to contract the propulsion cylinder 106 during the rotation process so that the cleaning liquid in the end washing liquid tank 108 can be sucked into the device. At this time, the recovery speed of the propulsion cylinder 106 is slow, but the rotation speed of the spiral liquid collection tube 107 is accelerated, achieving a syringe-like extraction effect, so that the cleaning liquid cleans the inside of the mirror body 5.
[0049] Please pay attention to Figure 2 , Figure 3 The upper part of the scrubbing passage 105 is provided with a plurality of through holes connected to the overflow tray 2, the bottom of the scrubbing passage 105 is provided with a screen and a spray gun assembly 406 is connected to the bottom, a water changing pump 405 is provided at the water inlet end of the spray gun assembly 406, and one end of the water changing pump 405 is connected to the split box 401 and corresponds one to one.
[0050] The space inside the scrubbing passage 105 is always filled, and during the period when the spray gun assembly 406 is turned on, the overflow of sediment is the lifting effect of water flow rather than buoyancy; the space inside the scrubbing passage 105 is always filled, and during the period when the spray gun assembly 406 is turned on, the overflow of sediment is the lifting effect of water flow rather than buoyancy; refer to Figure 2 When the motor pipe section is in the pushed-out state, its position is inside the scrubbing passage 105. At this time, the internal flushing channel of the scrubbing passage 105 can be in two states. First, the shielding and filling state, that is, the bottom of the motor and the bottom of the scrubbing passage 105 fit each other, shielding the water outlet position of the spray gun assembly 406; second, the water filling state, that is, the outer shell of the motor is small, and the spray outlet of the spray gun assembly 406 has sufficient separation space, so that the water inside the cavity of the scrubbing passage 105 is continuously pushed upward to the overflow tray 2 and then diverted to the bottom split box 401 for rotation and collection of sedimentation.
[0051] In yet another embodiment of the present invention:
[0052] Please pay attention to Figure 1 , Figure 3The overflow tray 2 is provided with a support frame 201 inside, the semi-enclosed tray 103 is provided with a reduction gear set 102 and a conversion motor 101 at the top of the axis point, the external cleaning tray 3 includes an upper cover 301, and the output end of the conversion motor 101 passes through the upper and lower sides of the center of the support frame 201 and the upper cover 301;
[0053] The single rotation angle of the conversion motor 101 is 360 / n degrees (n is the number of the split boxes 401);
[0054] The cleaning assembly includes a cleaning motor 302 fixed on the upper cover 301, the bottom output end of the cleaning motor 302 is connected to a shield 303, a hydrophobic sponge 304 is provided at the inner center of the shield 303, and the bottom surface of the hydrophobic sponge 304 is located inside the cleaning passage 104 and in contact with the surface of the mirror body 5;
[0055] The shield 303 is movable up and down, and a sealing strip is provided at the bottom of the edge of the shield 303. When the shield 303 falls, the surface of the sealing strip is connected to the upper surface of the overflow tray 2; Figure 1 , Figure 2 As shown, a single rotation of 90 degrees can perform a separate cylinder self-cleaning effect inside the previous cleaning space, and at this time, the bottom connected to the discharge pipe of the split box 401 can be cleaned to remove the sediment waste at the bottom.
[0056] A method for cleaning a cystoscope for urology surgery, please refer to Figure 2 , Figure 3 , including the following steps: S1, self-cleaning and disinfection: use an external cleaning and disinfecting liquid to fill the multiple split boxes 401 to the liquid level of the washing liquid tank 108 through the washing liquid tank 108, rotate the cleaning assembly and the split box 401, so that the cleaning liquid is formed inside and fully rotated for cleaning for 5-8 minutes, and move the cleaning system to a sterile environment to ensure the cleanliness of the top operating environment;
[0057] S2. Fix the cystoscope: dock one end of the cystoscope body 5 with the closed pipe opening 109 and fix the other end inside the washing tank 108, and use the propulsion cylinder 106 to rotate the spiral liquid collection tube 107 and extend it into the cystoscope body 5;
[0058] S3, internal scrubbing: At this time, the connecting port 202 and the split box 401 connected at the upper and lower sides of the cleaning passage 104 are marked as the first connected cleaning interval, and the propulsion cylinder 106 is used to rotate and propel it completely into the mirror body 5. The spiral water outlet end is the end of the closed pipe mouth 109, and flows to the scrubbing passage 105. The spiral water inlet end is the open end of the washing liquid tank 108 on the other side of the mirror body 5. The washing liquid tank 108 is kept filled with cleaning water in real time;
[0059] S4, cleaning of the spiral liquid taking tube 107: After the mirror body 5 is cleaned, the propulsion cylinder 106 retracts and synchronously drives the spiral liquid taking tube 107 to rotate out, and at this time, the rotating section is flushed and cleaned by the action of the spray gun assembly 406;
[0060] S5, synchronous external brushing: In step S3, the cleaning end of the upper cleaning component of the first connected cleaning space contacts the mirror body 5 and drives the water flow to flush the mirror body 5, and a separate first connection space is isolated during the synchronous step S4;
[0061] S6, single-barrel cleaning: Rotate the conversion motor 101 to connect the closed first connected cleaning space to the outside, and the overflow cleaning liquid at the scrubbing passage 105 is introduced into the overflow tray 2 and enters the water circulation box 4. The cleaning passage 104 rotates to the top of the next split box 401 and forms a second connected cleaning space with the next conducting port 202;
[0062] S7, conduction and slag discharge: conduction of the semi-enclosed disk 103 allows the water inside the overflow disk 2 of the first connected strong attack space to flow into the split box 401, and the inside of the split box 401 rotates to separate and precipitate, and then the steps S1 to S6 are circulated.
[0063] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", etc. should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be an indirect connection through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0064] The above contents are merely examples and explanations of the structure of the present invention. The technicians in this technical field may make various modifications or additions to the specific embodiments described or replace them in a similar manner. As long as they do not deviate from the structure of the invention or exceed the scope defined by the claims, they should all fall within the protection scope of the present invention.
Claims
1. A cystoscope cleaning system for urology, characterized in that: It comprises an internal cleaning tray (1), an overflow tray (2), an external cleaning tray (3), and a water circulation box (4) which are fixed in sequence up and down and are internally connected; The overflow tray (2) is provided with a plurality of conducting ports (202); the water circulation box (4) comprises a plurality of split boxes (401); and a plurality of cleaning components are provided below the external cleaning tray (3); the conducting ports (202) correspond to the split boxes (401) one by one and the axes are located at the same position as the rotational cleaning axis of the cleaning components; The internal cleaning disk (1) comprises a semi-enclosed disk (103) having a rotation axis identical to that of the water circulation box (4); a cleaning passage (104) is provided on the semi-enclosed disk (103); the cleaning passage (104) is sequentially connected to a plurality of groups of the conducting ports (202) having the same axis and the split box (401) during the rotation of the semi-enclosed disk (103); the cystoscope body (5) is fixed inside the cleaning passage (104).
2. A cystoscope cleaning system for urology according to claim 1, characterized in that: The conduction port (202), the split box (401) and the semi-enclosed disk (103) are all conduction spaces with circular cross-sections; a scrubbing passage (105) is provided on the center line of the semi-enclosed disk (103) with the center of the circle pointing to the cleaning passage (104); a closed pipe opening (109) is provided on one side of the scrubbing passage (105) and is connected to the cleaning passage (104); one end of the mirror body (5) is fixed on the closed pipe opening (109) and is connected to the closed pipe opening (109).
3. A cystoscope cleaning system for urology according to claim 2, characterized in that: A propulsion cylinder (106) is provided inside the internal cleaning disk (1) on a side away from the cleaning passage (104); the protruding end of the propulsion cylinder (106) is connected to a cleaning motor group; one end of the cleaning motor group passes through the brushing passage (105) and is connected to a spiral liquid collection tube (107); the spiral liquid collection tube (107) extends into the interior of the mirror body (5) through a closed pipe opening (109).
4. A cystoscope cleaning system for urology according to claim 2, characterized in that: The upper part of the scrubbing passage (105) is provided with a plurality of through holes connected to the overflow tray (2); the bottom of the scrubbing passage (105) is provided with a screen and the bottom is connected to a spray gun assembly (406); a water changing pump (405) is provided at the water inlet end of the spray gun assembly (406); one end of the water changing pump (405) is connected to the split box (401) and has a one-to-one correspondence.
5. The urology cystoscope cleaning system according to claim 2, characterized in that: A fixing frame (110) is provided inside the cleaning passage (104), and the mirror body (5) is fixed above the fixing frame (110). A washing liquid tank (108) is provided above one end of the fixing frame (110) away from the closed pipe opening (109). The front end passage of the mirror body (5) is connected to the washing liquid tank (108), and the other end of the washing liquid tank (108) is connected to a liquid replenishing device, so that replenished liquid is sucked into the inside of the mirror body (5) through the washing liquid tank (108).
6. The urology cystoscope cleaning system according to claim 1, characterized in that: A support frame (201) is provided inside the overflow tray (2); a reduction gear set (102) and a conversion motor (101) are provided at the top of the axis of the semi-enclosed tray (103); the external cleaning tray (3) includes an upper cover (301); and the output end of the conversion motor (101) passes through the upper and lower sides of the center of the support frame (201) and the upper cover (301); The single rotation angle of the conversion motor (101) is 360 / n degrees (n is the number of split boxes (401)).
7. A cystoscope cleaning system for urology according to claim 6, characterized in that: The cleaning assembly comprises a cleaning motor (302) fixed above the upper cover (301); the bottom output end of the cleaning motor (302) is connected to a protective cover (303); a hydrophobic sponge (304) is provided at the inner center point of the protective cover (303); the bottom surface of the hydrophobic sponge (304) is located inside the cleaning passage (104) and in contact with the surface of the mirror body (5).
8. A cystoscope cleaning system for urology according to claim 7, characterized in that: The protective cover (303) is movable up and down, and a sealing strip is provided at the bottom of the edge of the protective cover (303). When the protective cover (303) falls, the surface of the sealing strip is connected to the upper surface of the overflow tray (2).
9. A cystoscope cleaning system for urology according to claim 1, characterized in that: An axial motor seat (402) is provided at the inner bottom of the split box (401), a conical leakage plate (403) is provided at the top output end of the axial motor seat (402), and a plurality of water stirring plates (404) are provided on the conical leakage plate (403).
10. A method for cleaning a cystoscope for urology surgery, according to a system for cleaning a cystoscope for urology surgery according to any one of claims 1 to 9, characterized in that: The following steps are involved: S1, self-cleaning and disinfection: using an external cleaning and disinfecting liquid to fill the multiple split boxes (401) to the liquid level of the washing liquid tank (108) through the washing liquid tank (108), rotating the cleaning assembly and the split box (401) so that the cleaning liquid is formed inside and fully rotated for cleaning for 5-8 minutes, and moving the cleaning system to a sterile environment to ensure the cleanliness of the top operating environment; S2. Fixing the cystoscope: docking one end of the cystoscope body (5) on the closed pipe opening (109) and fixing the other end inside the washing liquid tank (108), and using the propulsion cylinder (106) to rotate the spiral liquid collection tube (107) and extend it into the interior of the cystoscope body (5); S3, internal scrubbing: At this time, the conducting port (202) and the split box (401) connected at the upper and lower sides of the cleaning passage (104) are marked as the first connected cleaning interval, and the propulsion cylinder (106) is used to rotate and propel the water completely into the mirror body (5). The spiral water outlet end is the end of the closed pipe mouth (109) and flows to the scrubbing passage (105), and the spiral water inlet end is the open end of the washing liquid tank (108) on the other side of the mirror body (5). The washing liquid tank (108) is kept filled with cleaning water in real time; S4, cleaning of the spiral liquid taking tube (107): After the mirror body (5) is cleaned, the propulsion cylinder (106) retracts and synchronously drives the spiral liquid taking tube (107) to rotate out, and at this time, the rotated out section is flushed and cleaned by the action of the spray gun assembly (406); S5, synchronous external brushing: in step S3, the cleaning end of the cleaning component at the upper part of the first connected cleaning space contacts the mirror body (5) and drives the water flow to flush the mirror body (5), and in the synchronous step S4 time, a separate first connection space is isolated; S6, single-barrel cleaning in circulation: rotating the conversion motor (101) so that the closed first connected cleaning space is connected to the outside, the overflow cleaning liquid at the scrubbing passage (105) is introduced into the overflow tray (2) and enters the interior of the water circulation box (4), and the cleaning passage (104) rotates to the top of the next split box (401) and forms a second connected cleaning space with the next conducting port (202); S7, conduction and slag discharge: conduction of the semi-enclosed disk (103) allows the water inside the overflow disk (2) connected to the first assault space to flow into the split box (401), and the inside of the split box (401) rotates to separate and precipitate, and then the steps S1 to S6 are circulated.