Visual lumen type surgical instrument examining and cleaning device and using method thereof
By using high-definition cameras and LED lamp beads in the lumen-like instrument cleaning device for visual inspection, combined with spray and brush components, precise positioning and focus cleaning of the interior of the lumen is achieved, which solves the problems of low cleaning efficiency and inability to monitor in real time in the prior art, and improves the cleaning quality and efficiency.
Patent Information
- Application Number
- CN202510339557.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing lumen-like device cleaning technology lacks visualization functions, resulting in low cleaning efficiency, inability to monitor the brushing situation in real time, and increasing unnecessary wear.
A visual lumen-type surgical instrument inspection and cleaning device is designed, using high-definition cameras and LED lamp beads for internal inspection, combined with spray parts and brush components to achieve accurate positioning and key cleaning of the interior of the lumen.
Through the visualization function of the high-definition camera, it can accurately detect damage or dirt inside the device, ensure thorough cleaning, reduce surgical risks, improve cleaning quality and efficiency, and extend the service life of the device.
Smart Images

Figure CN119950060A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cleaning lumen instruments, and in particular to a visual lumen surgical instrument inspection and cleaning device and a use method thereof. Background Art
[0002] Luminal devices refer to devices that contain a lumen. These devices are usually made of materials such as metal (such as stainless steel), plastic, rubber or glass. They have different shapes and sizes to meet different medical clinical operation needs. Their lumen structure enables them to enter the body cavity or pipe for inspection, surgery or treatment.
[0003] Currently, luminal instruments are repeatedly scrubbed with a long-handled brush. It is impossible to monitor in real time whether they are clean or not, and it is impossible to determine which parts have residual contaminants and need to be scrubbed more carefully. The instruments can only be scrubbed according to steps based on experience and regulatory requirements. Summary of the invention
[0004] In view of the fact that the prior art lumen brush for cleaning lumen instruments has no visualization function and can only perform full lumen brushing based on experience, which is inefficient and increases unnecessary wear, the present invention is proposed.
[0005] Therefore, the purpose of the present invention is to provide a visual tubular luminal surgical instrument inspection and cleaning device, the purpose of which is to: inspect the inside of the tubular luminal instrument under the lens, find the damaged location, and mark the contaminated area; repair and replace the damaged laparoscope in time to avoid surgical risks; focus on brushing the contaminated area to improve the cleaning power while reducing unnecessary wear.
[0006] To solve the above technical problems, the present invention provides the following technical solutions: a visual luminal surgical instrument inspection and cleaning device, comprising a host, and also comprising a touch display screen arranged at one end of the host, a power button arranged at the bottom of one side of one end of the host, a first USB socket arranged at the top of one side of one end of the host, a Type-C socket arranged at the top of one side of one end of the host and located above the first USB socket, a visible component arranged at the front end of the host, a spray component arranged at one side of the host, a code scanning component arranged at one side of one end of the host, and a mounting component arranged at one end of the host away from the touch display screen;
[0007] The visual component includes a second USB socket arranged at the bottom of one end of the host and below the touch display screen, a control box and a stainless steel rod arranged at the front end of the host, a first data cable arranged at one side of the control box, a USB plug arranged at the end of the first data cable away from the control box, and the USB plug extends to the inner cavity of the second USB socket, an output tube arranged at one end of the stainless steel rod, and a second data cable arranged at a side of the control box away from the first data cable, and the end of the second data cable away from the control box passes through the stainless steel rod and extends into the output tube.
[0008] As a preferred solution of the visualized tubular cavity surgical instrument inspection and cleaning device described in the present invention, a high-definition camera is provided at the end of the output tube away from the stainless steel rod, and three groups of LED lamp beads are provided at the end of the output tube away from the stainless steel rod and located below the high-definition camera; the second data line is located at one end of the inner cavity of the output tube and is interconnected with the high-definition camera and the LED lamp beads.
[0009] As a preferred solution of the visualized tubular cavity surgical instrument inspection and cleaning device described in the present invention, the spray component includes a pressure pump arranged on one side of the host close to one end of the touch display screen, a pipe interface arranged on one end of both sides of the control box, a first spray pipe arranged at the output end of the pressure pump, and the end of the first spray pipe away from the pressure pump is interconnected with a group of pipe interfaces on the control box, and a second spray pipe is arranged at one end of the stainless steel rod close to the second data line, and the end of the second spray pipe away from the stainless steel rod is interconnected with another group of pipe interfaces on the control box.
[0010] As a preferred solution of the visual lumen type surgical instrument inspection and cleaning device of the present invention, the spray component further includes a placement component arranged on one side of the main machine, a liquid storage bottle arranged on the placement component, and a liquid pipette arranged at the input end of the pressure pump, and the end of the liquid pipette away from the pressure pump extends to the inner cavity of the liquid storage bottle, a spray port arranged on the surface of the output tube, and a brush component arranged on the surface of the stainless steel rod;
[0011] The brush assembly includes a positioning sleeve seat arranged on the surface of the stainless steel rod, a positioning sleeve seat arranged on the surface of the stainless steel rod near one end of the output tube, and the end of the positioning sleeve away from the output tube and one side of the positioning sleeve seat are connected to each other, a brush sleeve seat arranged on the surface of the positioning sleeve, a first thread groove arranged on the surface of the positioning sleeve near one end of the positioning sleeve seat, a second thread groove arranged on the inner cavity wall of the brush sleeve near one end of the positioning sleeve seat, and the second thread groove and the first thread groove are threadedly connected to each other, and cleaning bristles arranged on the surface of the brush sleeve.
[0012] As a preferred solution of the visualized tubular cavity surgical instrument inspection and cleaning device described in the present invention, the placement component includes a placement seat arranged on the side of the main machine close to the pressure pump, a placement cavity arranged on the top of the placement seat, and the liquid storage bottle is located in the inner cavity of the placement cavity, two groups of arc-shaped splints arranged in the inner cavity of the placement cavity, and the arc-shaped splints are located on both sides of the surface of the liquid storage bottle, three groups of limit rods arranged at one end of the arc-shaped splint away from the liquid storage bottle, and one end of the limit rod slides and extends to the outside of the placement seat, a blocking block arranged at the end of the limit rod located outside the placement seat, and a spring arranged on the surface of the limit rod and located at one end outside the placement seat, one end of the spring is connected to the surface of the placement seat, and the other end of the spring is connected to the surface of the blocking block close to one end of the limit rod.
[0013] As a preferred solution of the visualized luminal surgical instrument inspection and cleaning device described in the present invention, the code scanning component includes a code scanning gun arranged on the bottom of one end of the host away from the power button, a code scanning button arranged on the bottom of one end of the host close to the code scanning gun, a code scanning gun indicator light arranged on one side of the bottom of one end of the host and above the only code scanning gun, and a code scanning gun buzzer arranged on one side of one end of the host and above the code scanning gun indicator light.
[0014] As a preferred solution of the visualized tubular cavity surgical instrument inspection and cleaning device described in the present invention, the installation component includes two groups of T-shaped limit blocks arranged at the end of the main machine away from the touch display screen, a limit cross plate arranged on the top of the two groups of T-shaped limit blocks, a fixed cross plate arranged at the rear end of the main machine, T-shaped limit grooves arranged on both sides of one end of the top of the fixed cross plate, and the T-shaped limit blocks slide through the T-shaped limit grooves, and fixing bolts arranged on both sides of one end of the fixed cross plate, and the fixing bolts penetrate the fixed cross plate.
[0015] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a method for using a visual lumen type surgical instrument inspection and cleaning device, comprising the following steps:
[0016] S1, first install the fixed horizontal plate to the wall at a suitable position with the fixing bolts, then align the two sets of T-shaped limit blocks on the host and the two sets of T-shaped limit grooves on the fixed horizontal plate and slide them in, install the host on the wall, then plug the power adapter into the power socket, and plug the power cord into the Type-C socket on the host, then add an appropriate amount of cleaning agent to the liquid storage bottle and put it into the placement cavity on the placement seat;
[0017] S2, then insert the USB plug on the first data cable on one side of the control box into the second USB port on the host, and then insert one end of the pipette on the input end of the pressure pump below the liquid level in the liquid storage bottle;
[0018] S3, press the power button, then confirm that the indicator light of the barcode scanner is on, test the normal operation of the pressure pump, the normal display of the touch screen and the picture of the high-definition camera, and then the operator puts on cleaning gloves to prepare to check the cleaning operation;
[0019] S4, then press the scan button to start the scanner, then place the QR code of the lumen instrument to be cleaned close to the scanner area, and the scanner buzzer beeps to indicate successful scanning;
[0020] S5. Hold the stainless steel rod near one end of the second spray pipe, and slowly push the high-definition camera on the output tube into the tube cavity for a distance. Adjust the brightness of the lighting system through the control box until the real-time image on the touch screen is clear and bright. Continue to slowly push the stainless steel rod to check whether there is dirt, damage or foreign matter inside the entire tube cavity. During this period, the inspection results can be recorded by the photo or video button on the control box.
[0021] S6, scrub the surface normally with a common brush, and then scrub the contaminated areas based on the inspection results of S5;
[0022] Focused scrubbing method: ① Bring the HD camera as close to the contaminated area as possible until the image on the touch screen changes from clear to blurred (the HD camera has a minimum focal length of 2 cm, and the camera is about 2 cm away from the contaminant at this time);
[0023] ② Push the stainless steel rod forward 4cm (the spray port is 2cm away from the camera), adjust the spray port angle, and start the pressure pump for more than 5 seconds;
[0024] ③ Push the stainless steel rod forward 5 cm (the front end of the cleaning brush is 2 cm away from the spray port), and scrub the contaminated area back and forth over a short distance. The scrubbing range and frequency are determined according to the size and degree of contamination of the contaminated area.
[0025] S7, check again and confirm according to S5 to ensure that the contaminants are cleaned;
[0026] S8, after the inspection and cleaning of the lumen instruments, clean the operating part of the equipment according to the use requirements of the cleaning brush, and disinfect it if necessary; rinse the inside of the spray pipe with pure water, disconnect the USB plug on the first data cable from the second USB socket, disconnect the first spray pipe and the suction pipe from the pressure pump, hang them to dry for standby use, and then turn off the power of the host;
[0027] S9, make sure your hands are clean and dry, and use the first USB port to export photos, videos and other data according to the prompts of the touch screen software on the host; and the system software data port is open, so the traceability manufacturer can use the first USB port to obtain and upload data in real time.
[0028] Beneficial effects of the present invention:
[0029] 1. The present invention can achieve precise positioning by utilizing a high-definition camera with the aid of a visualization function, accurately detect problems such as damage, deformation, or foreign body blockage inside the instrument, and promptly repair or process them. It can clearly see the dirt residue inside the lumen, ensure thorough cleaning, reduce the risk of infection, and thus improve the cleaning quality. At the same time, it can target specific parts for cleaning, avoid blind operations, improve cleaning efficiency, reduce unnecessary wear, and ensure the cleanliness and integrity of surgical instruments, which helps to reduce unexpected situations during surgery, and can also improve surgical safety. Effective cleaning and maintenance can extend the service life of surgical instruments, reduce the cost of instrument replacement, and can visually record the cleaning process and results, providing an intuitive basis for quality supervision and evaluation. At the same time, the data storage function makes the inspection and cleaning of the instrument traceable, which is easy to track and manage.
[0030] 2. The present invention utilizes the elastic force of the spring to enable the two sets of arc-shaped clamping plates to clamp and fix the liquid storage bottle, thereby improving the stability and firmness of the liquid storage bottle when placed. At the same time, by utilizing the mutual adaptation of the T-shaped limit block and the T-shaped limit groove, the main unit can be quickly disassembled and assembled from the wall, thereby improving the convenience and practicality of operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative labor. Among them:
[0032] Figure 1 It is a schematic diagram of the overall structure of the visual lumen surgical instrument inspection and cleaning device of the present invention.
[0033] Figure 2 This is a schematic diagram of the overall structure of the visual lumen surgical instrument inspection and cleaning device of the present invention from another perspective.
[0034] Figure 3 It is a schematic diagram of the unfolded three-dimensional structure of the visual lumen surgical instrument inspection and cleaning device of the present invention.
[0035] Figure 4 It is a schematic cross-sectional three-dimensional structure diagram of a placement seat of a visual lumen type surgical instrument inspection and cleaning device according to the present invention.
[0036] Figure 5 It is a schematic diagram of the unfolded three-dimensional structure of the installation components of the visual lumen surgical instrument inspection and cleaning device of the present invention.
[0037] Figure 6It is a schematic diagram of the three-dimensional structure of the output tube of the visual lumen type surgical instrument inspection and cleaning device of the present invention.
[0038] Figure 7 It is a schematic diagram of the three-dimensional unfolded structure of the brush assembly of the visual lumen surgical instrument inspection and cleaning device of the present invention.
[0039] Description of reference numerals:
[0040] 1. Host; 11. Touch screen; 12. Power button; 13. First USB port; 14. Type-C port;
[0041] 2. Visual components; 21. Control box; 22. Second USB port; 23. First data cable; 24. USB plug; 25. Second data cable; 26. Stainless steel rod; 27. Output tube; 28. High-definition camera; 29. LED lamp beads;
[0042] 3. Spraying components; 31. Pressure pump; 32. Liquid storage bottle; 33. First spray pipe; 34. Liquid suction pipe; 35. Pipe interface; 36. Second spray pipe; 37. Brush assembly; 371. Positioning sleeve; 372. Positioning sleeve; 373. Brush sleeve; 374. Cleaning bristles; 375. First thread groove; 376. Second thread groove; 38. Spraying port; 39. Placement assembly; 391. Placement seat; 392. Placement cavity; 393. Limit rod; 394. Arc clamp; 395. Stop block; 396. Spring;
[0043] 4. Scanning parts; 41. Scanning gun; 42. Scanning button; 43. Scanning gun indicator light; 44. Scanning gun buzzer;
[0044] 5. Installation parts; 51. T-shaped limit block; 52. Limiting horizontal plate; 53. Fixing horizontal plate; 54. Fixing bolt; 55. T-shaped limit slot. DETAILED DESCRIPTION
[0045] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below in conjunction with the accompanying drawings.
[0046] In the following description, many specific details are set forth to facilitate a full understanding of the present invention, but the present invention may also be implemented in other ways different from those described herein, and those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0047] Reference Figure 1-7, is an embodiment of the present invention, providing a visual luminal surgical instrument inspection and cleaning device, the visual luminal surgical instrument inspection and cleaning device comprising a host 1, a touch screen 11 installed at one end of the host 1, a power button 12 installed at the bottom of one side of one end of the host 1, a first USB port 13 opened at the top of one side of one end of the host 1, a Type-C port 14 opened at the top of one side of one end of the host 1 and located above the first USB port 13, a visible component 2 arranged at the front end of the host 1, a spray component 3 arranged at one side of the host 1, a code scanning component 4 arranged at one side of one end of the host 1, and a mounting component 5 arranged at the end of the host 1 away from the touch screen 11;
[0048] The visual component 2 includes a second USB socket 22 opened at the bottom of one end of the host 1 and located below the touch display screen 11, a control box 21 and a stainless steel rod 26 arranged at the front end of the host 1, a first data cable 23 connected to one side of the control box 21, a USB plug 24 fixedly installed at the end of the first data cable 23 away from the control box 21, and the USB plug 24 extends to the inner cavity of the second USB socket 22, an output tube 27 connected to one end of the stainless steel rod 26, and a second data cable 25 connected to the side of the control box 21 away from the first data cable 23, and the end of the second data cable 25 away from the control box 21 passes through the stainless steel rod 26 and extends into the output tube 27.
[0049] A high-definition camera 28 is installed at the end of the output tube 27 away from the stainless steel rod 26. The parameters of the high-definition camera 28 are 1080P and the focal length is ≥2cm. It is used to clearly image the inside of tubular cavity instruments. The waterproof level is not less than IP67. There are three groups of LED lamp beads 29 arranged at the end of the output tube 27 away from the stainless steel rod 26 and below the high-definition camera 28. The LED lamp beads 29 can provide sufficient and uniform light. The brightness of 4 levels can be adjusted through the control box 21 to ensure that the high-definition camera 28 obtains high-quality images. The second data line 25 is located at one end of the inner cavity of the output tube 27 and is interconnected with the high-definition camera 28 and the LED lamp beads 29.
[0050] The spray component 3 includes a pressure pump 31 installed on one side of the host 1 near one end of the touch display screen 11, a pipe interface 35 installed on one end of both sides of the control box 21, a first spray pipe 33 connected to the output end of the pressure pump 31, and the end of the first spray pipe 33 away from the pressure pump 31 is connected to a group of pipe interfaces 35 on the control box 21, and a second spray pipe 36 installed on the stainless steel rod 26 near one end of the second data line 25, and the end of the second spray pipe 36 away from the stainless steel rod 26 is connected to another group of pipe interfaces 35 on the control box 21. The spray component 3 also includes a placement component 39 arranged on one side of the host 1, a liquid storage bottle 32 placed on the placement component 39, and a liquid suction pipe 34 arranged at the input end of the pressure pump 31, and the end of the liquid suction pipe 34 away from the pressure pump 31 extends to the inner cavity of the liquid storage bottle 32, a spray port 38 arranged on the surface of the output cylinder 27, and a brush component 37 arranged on the surface of the stainless steel rod 26;
[0051] The brush assembly 37 includes a positioning sleeve 371 disposed on the surface of the stainless steel rod 26, a positioning sleeve 372 disposed on the surface of the stainless steel rod 26 near one end of the output tube 27, and the end of the positioning sleeve 372 away from the output tube 27 is connected to one side of the positioning sleeve 371, a brush sleeve 373 disposed on the surface of the positioning sleeve 372, a first thread groove 375 disposed on the surface of the positioning sleeve 372 near one end of the positioning sleeve 371, and a second thread groove 376 disposed on the inner wall of the brush sleeve 373 near one end of the positioning sleeve 371, and The second thread groove 376 and the first thread groove 375 are threadedly connected to each other, and the cleaning bristles 374 arranged on the surface of the brush sleeve 373 are threadedly connected to each other through the second thread groove 376 and the first thread groove 375. When the brush sleeve 373 is rotated, the second thread groove 376 and the first thread groove 375 can be threadedly operated with each other, and then the brush sleeve 373 can be unfixed from the positioning sleeve 372, and then the brush sleeve 373 can be removed from the positioning sleeve 372, and then the cleaning bristles 374 on the brush sleeve 373 can be cleaned or replaced.
[0052] The placement assembly 39 includes a placement seat 391 fixedly mounted on the side of the main unit 1 close to the pressure pump 31, a placement cavity 392 opened on the top of the placement seat 391, and the liquid storage bottle 32 is located in the inner cavity of the placement cavity 392, two groups of arc-shaped clamping plates 394 are arranged in the inner cavity of the placement cavity 392, and the arc-shaped clamping plates 394 are located on both sides of the surface of the liquid storage bottle 32, three groups of limiting rods 393 are fixedly mounted on the end of the arc-shaped clamping plates 394 away from the liquid storage bottle 32, and one end of the limiting rod 393 slides and extends to the outside of the placement seat 391, and a blocking block 395 is fixedly mounted on the end of the limiting rod 393 located outside the placement seat 391, and the sleeve A spring 396 is provided on the surface of the limiting rod 393 and located at one end outside the placement seat 391, one end of the spring 396 is connected to the surface of the placement seat 391, and the other end of the spring 396 is connected to the surface of the blocking block 395 near one end of the limiting rod 393. When the liquid storage bottle 32 is placed into the inner cavity of the placement cavity 392, the elastic force of the spring 396 is used to pull the blocking block 395 close to the placement seat 391, so that the arc-shaped clamping plate 394 at one end of the limiting rod 393 is close to the surface of the liquid storage bottle 32, thereby clamping and fixing the liquid storage bottle 32, thereby improving the stability of the liquid storage bottle 32 placed in the placement cavity 392.
[0053] The barcode scanning component 4 includes a barcode scanning gun 41 arranged on the side of the bottom of one end of the host 1 away from the power button 12, a barcode scanning button 42 arranged on the side of the bottom of one end of the host 1 close to the barcode scanning gun 41, a barcode scanning gun indicator light 43 arranged on one side of the bottom of one end of the host 1 and above the only barcode scanning gun 41, and a barcode scanning gun buzzer 44 arranged on one side of one end of the host 1 and above the barcode scanning gun indicator light 43. The supporting software is used to realize the QR code generation function. The QR code contains the number of the luminal instrument, the department of use and other information; the QR code is engraved or pasted on the luminal instrument, and the code is scanned and recorded before each inspection or cleaning. The system records the start time, and archives photos and videos according to the code and time.
[0054] The mounting component 5 includes two groups of T-shaped limit blocks 51 arranged at the end of the host 1 away from the touch display screen 11, a limit horizontal plate 52 arranged on the top of the two groups of T-shaped limit blocks 51, a fixed horizontal plate 53 arranged at the rear end of the host 1, T-shaped limit grooves 55 arranged on both sides of one end of the top of the fixed horizontal plate 53, and the T-shaped limit blocks 51 slide through the T-shaped limit grooves 55, and fixing bolts 54 arranged on both sides of one end of the fixed horizontal plate 53, and the fixing bolts 54 penetrate the fixed horizontal plate 53. Through the setting of the fixing bolts 54, the fixed horizontal plate 53 can be fixedly installed on the wall.
[0055] Reference Figure 1-7 , provides a method for using a visual lumen type surgical instrument inspection and cleaning device, comprising the following steps:
[0056] S1, first install the fixed horizontal plate 53 on the wall at a suitable position by fixing bolts 54, then align and slide the two sets of T-shaped limit blocks 51 on the host 1 and the two sets of T-shaped limit grooves 55 on the fixed horizontal plate 53, install the host 1 on the wall, then insert the power adapter into the power socket, and insert the power cord into the Type-C socket 14 on the host 1, then add a proper amount of cleaning agent to the liquid storage bottle 32 and put it into the placement cavity 392 on the placement seat 391;
[0057] S2, then insert the USB plug 24 on the first data cable 23 on one side of the control box 21 into the second USB socket 22 on the host 1, and then insert one end of the pipette 34 on the input end of the pressure pump 31 below the liquid level in the liquid storage bottle 32;
[0058] S3, press the power button 12, then confirm that the scanner indicator light 43 is on, test the normal operation of the pressure pump 31, the normal display of the touch screen 11 and the picture of the high-definition camera 28, and then the operator puts on the cleaning gloves to prepare to check the cleaning operation;
[0059] S4, then press the code scanning button 42 to start the code scanning gun 41, then place the QR code of the tubular cavity instrument to be cleaned close to the code scanning area of the code scanning gun 41, and after hearing the "beep" sound of the code scanning gun buzzer 44, it indicates that the code scanning is successful (when the machine needs to be cleaned, there will be a manufacturer's QR code, which is connected to the terminal they clean. When the equipment is used for cleaning, it will automatically record and save the cleaning video content, and automatically identify the places that are not cleaned and automatically clean them. The cleaning machine video can be traced back to the manufacturer and the hospital terminal);
[0060] S5, hold the stainless steel rod 26 at one end close to the second spray pipe 36, slowly push the high-definition camera 28 on the output tube 27 into the tube cavity for a distance, adjust the brightness of the lighting system through the control box 21 until the real-time image on the touch screen 11 is clear and bright, continue to slowly push the stainless steel rod 26, and check whether there is dirt, damage or foreign matter inside the entire tube cavity. During this period, the inspection results can be recorded by the photo or video button on the control box 21.
[0061] S6, scrub the surface normally with a common brush, and then scrub the contaminated areas based on the inspection results of S5;
[0062] Focused scrubbing method: ① Move the high-definition camera 28 as close to the contaminated part as possible until the image on the touch screen 11 changes from clear to blurred. The minimum focal length of the high-definition camera 28 is 2 cm, and the camera is about 2 cm away from the contaminant at this time;
[0063] ② Push the stainless steel rod forward 264cm until the spray port 38 is 2cm away from the camera, adjust the angle of the spray port 38, and start the pressure pump for more than 315 seconds;
[0064] ③ Push the stainless steel rod 265cm forward again until the front end of the cleaning brush 374 is 382cm away from the spray port, and scrub the contaminated area back and forth over a short distance. The scrubbing range and frequency are determined according to the size and degree of contamination of the contaminated area;
[0065] S7, check again and confirm according to S5 to ensure that the contaminants are cleaned;
[0066] S8, after the inspection and cleaning of the lumen instruments, clean the operating part of the equipment according to the use requirements of the cleaning bristles 374, and disinfect if necessary; rinse the inside of the spray pipe with pure water, disconnect the USB plug 24 on the first data cable 23 from the second USB socket 22, and disconnect the first spray pipe 33 and the suction pipe 34 from the pressure pump 31, hang them to dry for standby use, and then turn off the power of the host 1;
[0067] S9, make sure your hands are clean and dry, and use the first USB port 13 to export data such as photos and videos according to the software prompts on the touch screen 11 on the host 1; and the system software data port is open, so the traceability manufacturer can use the first USB port 13 to obtain and upload data in real time.
[0068] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.
Claims
1. A visual lumen-type surgical instrument inspection and cleaning device, comprising a main unit (1), characterized in that: It also includes a touch screen (11) arranged at one end of the host (1), a power button (12) arranged at the bottom of one side of one end of the host (1), a first USB socket (13) arranged at the top of one side of one end of the host (1), a Type-C socket (14) arranged at the top of one side of one end of the host (1) and located above the first USB socket (13), a visible component (2) arranged at the front end of the host (1), a spray component (3) arranged at one side of the host (1), a code scanning component (4) arranged at one side of one end of the host (1), and a mounting component (5) arranged at the end of the host (1) away from the touch screen (11); The visual component (2) comprises a second USB socket (22) arranged at the bottom of one end of the host (1) and below the touch display screen (11), a control box (21) and a stainless steel rod (26) arranged at the front end of the host (1), a first data line (23) arranged at one side of the control box (21), a USB plug (24) arranged at the end of the first data line (23) away from the control box (21), and the USB plug (24) extends to the inner cavity of the second USB socket (22), an output tube (27) arranged at one end of the stainless steel rod (26), and a second data line (25) arranged at the side of the control box (21) away from the first data line (23), and the end of the second data line (25) away from the control box (21) passes through the stainless steel rod (26) and extends into the output tube (27).
2. The visual lumen surgical instrument inspection and cleaning device according to claim 1, characterized in that: A high-definition camera (28) is arranged at one end of the output tube (27) away from the stainless steel rod (26), and three groups of LED lamp beads (29) are arranged at the end of the output tube (27) away from the stainless steel rod (26) and located below the high-definition camera (28); and the second data line (25) is located at one end of the inner cavity of the output tube (27) and is connected to the high-definition camera (28) and the LED lamp beads (29).
3. The visual lumen surgical instrument inspection and cleaning device according to claim 2, characterized in that: The spray component (3) comprises a pressure pump (31) arranged on one side of the host (1) near one end of the touch display screen (11), a pipe interface (35) arranged on one end of both sides of the control box (21), a first spray pipe (33) arranged at the output end of the pressure pump (31), and the end of the first spray pipe (33) away from the pressure pump (31) is connected to a group of pipe interfaces (35) on the control box (21), and a second spray pipe (36) is arranged at one end of the stainless steel rod (26) near the second data line (25), and the end of the second spray pipe (36) away from the stainless steel rod (26) is connected to another group of pipe interfaces (35) on the control box (21).
4. The visual lumen surgical instrument inspection and cleaning device according to claim 3, characterized in that: The spraying component (3) further comprises a placement component (39) arranged on one side of the main machine (1), a liquid storage bottle (32) arranged on the placement component (39), and a liquid suction pipe (34) arranged at the input end of the pressure pump (31), wherein one end of the liquid suction pipe (34) away from the pressure pump (31) extends to the inner cavity of the liquid storage bottle (32), a spraying port (38) arranged on the surface of the output cylinder (27), and a brush component (37) arranged on the surface of the stainless steel rod (26); The brush assembly (37) comprises a positioning sleeve (371) arranged on the surface of the stainless steel rod (26), a positioning sleeve (372) arranged on the surface of the stainless steel rod (26) near one end of the output tube (27), and the end of the positioning sleeve (372) away from the output tube (27) and one side of the positioning sleeve (371) are connected to each other, a brush sleeve (373) arranged on the surface of the positioning sleeve (372), a first thread groove (375) arranged on the surface of the positioning sleeve (372) near one end of the positioning sleeve (371), a second thread groove (376) arranged on the inner cavity wall of the brush sleeve (373) near one end of the positioning sleeve (371), and the second thread groove (376) and the first thread groove (375) are threadedly connected to each other, and cleaning bristles (374) arranged on the surface of the brush sleeve (373).
5. The visual lumen surgical instrument inspection and cleaning device according to claim 4, characterized in that: The placement assembly (39) comprises a placement seat (391) arranged on a side of the main machine (1) close to the pressure pump (31), a placement cavity (392) arranged on the top of the placement seat (391), and the liquid storage bottle (32) is located in the inner cavity of the placement cavity (392), two groups of arc-shaped clamping plates (394) arranged in the inner cavity of the placement cavity (392), and the arc-shaped clamping plates (394) are located on both sides of the surface of the liquid storage bottle (32), and three groups of limit rods (394) are arranged at one end of the arc-shaped clamping plates (394) away from the liquid storage bottle (32). 3), and one end of the limiting rod (393) slides and extends to the outside of the placement seat (391), a blocking block (395) is arranged on the end of the limiting rod (393) located outside the placement seat (391), and a spring (396) is arranged on the surface of the limiting rod (393) and located outside the placement seat (391), one end of the spring (396) and the surface of the placement seat (391) are connected to each other, and the other end of the spring (396) and the surface of the blocking block (395) close to one end of the limiting rod (393) are connected to each other.
6. The visual lumen surgical instrument inspection and cleaning device according to claim 1, characterized in that: The code scanning component (4) comprises a code scanning gun (41) arranged at a side of the bottom of one end of the host (1) away from the power button (12), a code scanning button (42) arranged at a side of the bottom of one end of the host (1) close to the code scanning gun (41), a code scanning gun indicator light (43) arranged at a side of the bottom of one end of the host (1) and above the only code scanning gun (41), and a code scanning gun buzzer (44) arranged at a side of one end of the host (1) and above the code scanning gun indicator light (43).
7. The visual lumen surgical instrument inspection and cleaning device according to claim 6, characterized in that: The mounting component (5) comprises two groups of T-shaped limit blocks (51) arranged at one end of the host (1) away from the touch display screen (11), a limit horizontal plate (52) arranged on the top of the two groups of T-shaped limit blocks (51), a fixed horizontal plate (53) arranged at the rear end of the host (1), T-shaped limit grooves (55) arranged on both sides of one end of the top of the fixed horizontal plate (53), and the T-shaped limit blocks (51) slide through the T-shaped limit grooves (55), and fixing bolts (54) arranged on both sides of one end of the fixed horizontal plate (53), and the fixing bolts (54) penetrate the fixed horizontal plate (53).
8. A method for using a visual lumen type surgical instrument inspection and cleaning device, which is applied to the visual lumen type surgical instrument inspection and cleaning device as claimed in claim 7, characterized in that: The following steps are included: S1, first install the fixed horizontal plate (53) on the wall at a suitable position by fixing bolts (54), then align and slide the two sets of T-shaped limit blocks (51) on the main unit (1) and the two sets of T-shaped limit grooves (55) on the fixed horizontal plate (53), install the main unit (1) on the wall, then insert the power adapter into the power socket, and insert the power cord into the Type-C socket (14) on the main unit (1), then add a proper amount of cleaning agent into the liquid storage bottle (32) and place it into the placement cavity (392) on the placement seat (391); S2, then insert the USB plug (24) on the first data cable (23) on one side of the control box (21) into the second USB socket (22) on the host (1), and then insert one end of the pipette (34) on the input end of the pressure pump (31) below the liquid level in the liquid storage bottle (32); S3, press the power button (12), then confirm that the indicator light (43) of the barcode scanner is on, test the normal operation of the pressure pump (31), the normal display of the touch screen (11) and the picture of the high-definition camera (28), and then the operator puts on cleaning gloves to prepare to check the cleaning operation; S4, then press the code scanning button (42) to start the code scanning gun (41), then place the QR code of the tubular device to be cleaned close to the code scanning area of the code scanning gun (41), and a "beep" sound is heard from the code scanning gun buzzer (44) indicating that the code scanning is successful; S5, hold the stainless steel rod (26) at one end close to the second spray pipe (36), slowly push the high-definition camera (28) on the output tube (27) into the tube cavity for a certain distance, adjust the brightness of the lighting system through the control box (21), until the real-time image on the touch screen (11) is clear and bright, continue to slowly push the stainless steel rod (26), and check whether there is dirt, damage or foreign matter inside the entire tube cavity. During this period, the inspection results can be recorded by the camera or video button on the control box (21). S6, scrub the surface normally with a common brush, and then scrub the contaminated areas based on the inspection results of S5; Focused scrubbing method: ① Move the high-definition camera (28) as close to the contaminated area as possible until the image on the touch screen (11) changes from clear to blurred (the minimum focal length of the high-definition camera (28) is 2 cm, and the camera is about 2 cm away from the contaminant at this time); ② Push the stainless steel rod (26) forward 4 cm (the spray port (38) is 2 cm away from the camera), adjust the angle of the spray port (38), and start the pressure pump (31) for more than 5 seconds; ③ Push the stainless steel rod (26) forward by 5 cm (the front end of the cleaning bristles (374) is 2 cm away from the spray port (38)), and scrub the contaminated area back and forth over a short distance. The scrubbing range and frequency are determined according to the size of the contaminated area and the degree of contamination; S7, check again and confirm according to S5 to ensure that the contaminants are cleaned; S8, after the inspection and cleaning of the lumen instruments is completed, the operating part of the equipment is cleaned according to the use requirements of the cleaning bristles (374), and disinfected if necessary; the inside of the spray pipe is rinsed with pure water, the USB plug (24) on the first data line (23) is disconnected from the second USB socket (22), and the first spray pipe (33) and the suction pipe (34) are disconnected from the pressure pump (31) and hung to dry for standby use, and then the power supply of the host (1) is turned off; S9, ensuring that both hands are clean and dry, use the first USB port (13) to export data such as photos and videos according to the software prompts on the touch screen (11) on the host (1); and the system software data port is open, so that the traceability manufacturer can use the first USB port (13) to obtain and upload data in real time.