Reproductive adjuvant therapy device

By designing a multifunctional reproductive assisted therapy device, the problem that existing equipment cannot fumigate the female at the same time or alone, achieving better therapeutic effects and comfort.

CN120053271AInactive Publication Date: 2025-05-30SHANDONG PROVINCIAL HOSPITAL AFFILIATED TO SHANDONG FIRST MEDICAL UNIVERSITY (SHANDONG PROVINCIAL HOSPITAL)
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Patent Information

Application Number
CN202510120032.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-25
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing reproductive assisted treatment equipment cannot be fumigated on the top and bottom of the woman simultaneously or alone, resulting in poor treatment results.

Method used

A reproductive assisted therapy device is designed, including an adjustable support assembly and a multifunctional fumigation assembly. The fumigation assembly can adjust the distribution path of steam through an electric heating plate, a evaporated liquid storage box, a fumigation rack, a medicine bag storage drawer and a ventilation tank system, so as to achieve simultaneous or separate fumigation of the patient above and below.

Benefits of technology

Flexible fumigation treatment above and below women is achieved, improving the therapeutic effect and comfort, and meeting different treatment needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of reproduction adjuvant therapy, and provides a reproduction adjuvant therapy device. The device comprises a rack, a supporting assembly and a fumigation assembly. The supporting assembly is arranged on the rack, used for supporting a patient to lie down and provided with a mounting groove. The fumigation assembly is installed in the installation groove and comprises an electric heating plate, a to-be-evaporated liquid containing box, a fumigation frame, a medicine bag storage drawer and a gas conveying system. The upper end of the containing box is open, the bottom of the fumigating frame is open, and the top of the fumigating frame is provided with a second vent groove. A gas conveying pipe is arranged above the gas conveying funnel, a top plate is arranged on the gas conveying pipe, a fourth vent groove and a third vent groove are formed in the top plate, and an opening and closing assembly is arranged in the mounting gap. A sliding pipe is arranged on the top plate and slides on the gas conveying pipe in a sealed mode, and the distance between the top plate and the fumigation frame can be adjusted. The problems that in the prior art, only the lower portion of a lying patient can be fumigated, and fumigating equipment cannot be adjusted to fumigate the upper portion and the lower portion of a woman simultaneously or independently are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of reproductive assisted treatment, and specifically, to a reproductive assisted treatment device. Background Art

[0002] At present, infertility in many women is caused by tubal blockage due to pelvic inflammatory disease, resulting in the inability of women to conceive. During clinical assisted treatment, special equipment can be used for drug fumigation to relieve pelvic inflammatory disease and dredge the fallopian tubes. In the past, fumigation and steaming equipment required long-term heating during the steaming process, consumed a lot of energy, and the steam was generated slowly. At the same time, when fumigating female patients, only the lower part of the lying patients can be fumigated, and the fumigation equipment cannot be adjusted to fumigate the upper and lower parts of women simultaneously or separately, so as to achieve a better fumigation treatment effect. Summary of the Invention

[0003] The present invention provides a reproductive assisted treatment device, which solves the problem in the prior art that only the lower part of the lying patients can be fumigated, and the fumigation equipment cannot be adjusted to fumigate the upper and lower parts of women simultaneously or separately.

[0004] The technical solution of the present invention is as follows:

[0005] A reproductive assisted treatment device includes a frame for setting on the ground. The frame is provided with a support assembly for supporting a patient to lie on. The support assembly has an installation groove, and further includes a fumigation assembly arranged in the installation groove on the frame.

[0006] The fumigation assembly includes an electric heating plate arranged on the frame. A liquid to be evaporated storage box is arranged on the electric heating plate for storing the liquid to be evaporated. The upper end of the liquid to be evaporated storage box is open. A fumigation rack is arranged on the liquid to be evaporated storage box. A medicine bag storage drawer is slidably arranged on the fumigation rack for storing medicine bags. The bottom of the medicine bag storage drawer has a first ventilation groove. The bottom of the fumigation rack is open, and the top has a second ventilation groove.

[0007] Air inlet funnels are arranged at both ends of the fumigation rack. A plurality of air inlet pipes are arranged above the air inlet funnels in an array. The air inlet pipes are communicated with the air inlet funnels. A top plate is arranged on the air inlet pipes. The top plate has a plurality of fourth ventilation grooves and a plurality of third ventilation grooves. There is an installation gap between the fourth ventilation grooves and the third ventilation grooves. An opening and closing assembly is arranged in the installation gap for opening or closing the fourth ventilation grooves. The second ventilation groove and the third ventilation groove are arranged correspondingly, and the fourth ventilation groove is located at the top end of the top plate, and the third ventilation groove is located at the bottom end of the top plate.

[0008] A sliding tube corresponding to the gas delivery pipe one by one is arranged on the top plate. The sliding tube is hermetically and slidably arranged on the gas delivery pipe. After the sliding tube slides on the gas delivery pipe, it is used to adjust the distance between the top plate and the fumigation rack. The gas delivery pipe is communicated with the installation gap through the sliding tube;

[0009] The fumigation assembly has two working states. When the distance between the top plate and the fumigation rack is the farthest, the opening and closing assembly closes the fourth ventilation groove. At this time, the patient lies on the support assembly, and the first ventilation groove and the fourth ventilation groove are respectively located at the upper and lower ends of the patient. When the distance between the top plate and the fumigation rack is the closest, the opening and closing assembly opens the fourth ventilation groove, and the top plate is flush with the support assembly. The first ventilation groove, the fourth ventilation groove and the third ventilation groove are all located below the patient.

[0010] As a further technical solution, several guiding sliding grooves corresponding to the fourth ventilation groove one by one are arranged on both sides of the installation gap. An expansion member hinged in the installation gap is further included. The expansion end of the expansion member is hinged to a connecting plate. Several sealing plates are arranged on the connecting plate. Several said sealing plates are slidably arranged in the guiding sliding grooves one by one. After the sealing plates slide in the guiding sliding grooves, they are used to open or close the fourth ventilation groove.

[0011] As a further technical solution, a set of slide rails is arranged on both sides of the fumigation rack. Two racks are slidably arranged on the slide rails. Two sets of first gears meshing with the racks are further included on the fumigation rack. Swing rods are arranged on both sets of first gears. Two sets of first hinge rods with one end hinged to the swing rods and the other end hinged to the top plate are further included. After the racks slide on the slide rails, they are used to drive the first gears to rotate. After the first gears rotate, they are used to drive the swing rods and the first hinge rods to swing and push the top plate to slide on the gas delivery pipe through the sliding tube.

[0012] As a further technical solution, a double-shaft motor fixed on the fumigation rack is further included. Second gears are arranged at both driving ends of the double-shaft motor. The two second gears are respectively meshed with the two racks.

[0013] As a further technical solution, a water outlet is arranged at the bottom of the liquid to be evaporated storage box. A control valve is further arranged at the water outlet. The control valve is used to control the opening or closing of the water outlet.

[0014] As a further technical solution, the support assembly includes two groups of second hinge rods arranged on both sides of the frame. Third hinge rods are hinged at both ends of the second hinge rods, and the third hinge rods are lapped on the frame on the side away from the second hinge rods;

[0015] Support plates are arranged between the second hinge rods and the third hinge rods. The support plates are used to support the patient to lie down, and adjacent support plates form an installation groove;

[0016] Two first cylinders are hinged on the frame. Support rods are symmetrically arranged and hinged on the frame. The support rods have a support end and a hinge end. The telescopic end of the first cylinder is hinged on the hinge end, and the support end is hinged on the third hinge rod. After the first cylinder expands and contracts, it is used to drive the hinge end of the support rod to move and drive the support end to support the support plate to move. After the support plate moves, the third hinge rod swings along the second hinge rod.

[0017] As a further technical solution, several walking wheels are provided at the bottom end of the frame.

[0018] As a further technical solution, a backrest is further arranged on the frame and is located at both ends of the support assembly.

[0019] The working principle and beneficial effects of the present invention are as follows:

[0020] In the present invention, the frame is made of a sturdy metal material and has an overall rectangular parallelepiped frame structure with feet provided at the bottom. A support assembly is installed on the upper part of the frame for supporting a patient to lie on. The support assembly includes an adjustable-angle lying board made of a medical-grade plastic material, with a smooth surface and easy to clean and disinfect. An installation groove is provided at the middle position of the lying board for installing the fumigation assembly. The fumigation assembly is installed in the installation groove of the frame and mainly includes an electric heating plate, a liquid to be evaporated storage box, a fumigation rack, and a medicine bag storage drawer. The electric heating plate is installed at the bottom of the installation groove of the frame and has good heat conductivity and corrosion resistance. The electric heating plate controls the heating temperature through a temperature control device, and the temperature range can be adjusted between °C and °C to meet the evaporation requirements of different liquid medicines. The liquid to be evaporated storage box is placed on the electric heating plate and is made of transparent glass material for easy observation of the evaporation of the liquid medicine. The upper end of the storage box is open for easy addition and replacement of the liquid medicine. The bottom of the storage box is closely attached to the electric heating plate to ensure efficient heat transfer. The fumigation rack is installed above the liquid to be evaporated storage box and is made of stainless steel material with good high-temperature resistance and corrosion resistance. The bottom of the fumigation rack is open, and a second ventilation groove is provided at the top, which is in a long strip shape for guiding the flow of steam. A medicine bag storage drawer is slidably arranged on the fumigation rack, and a first ventilation groove is provided at the bottom of the drawer, which is in a long strip shape and corresponds to the second ventilation groove for guiding the steam through the medicine bag. Slide rails are provided on both sides of the medicine bag storage drawer and cooperate with the sliding grooves on the fumigation rack to achieve smooth pulling and pushing actions. An air delivery funnel is provided at each end of the fumigation rack, and a number of air delivery pipes are arranged above the air delivery funnel and are made of high-temperature-resistant plastic material and are connected to the air delivery funnel. The upper end of the air delivery pipe is installed with a top plate made of transparent plastic material for easy observation of the flow of steam. A number of fourth ventilation grooves and a number of third ventilation grooves are provided on the top plate, and both the fourth ventilation grooves and the third ventilation grooves are in long strip shapes and are arranged at intervals. An installation gap is provided between the fourth ventilation grooves and the third ventilation grooves, and an opening and closing assembly is arranged in the installation gap for opening or closing the fourth ventilation grooves. A sliding pipe corresponding to the air delivery pipe one by one is also provided on the top plate, and the sliding pipe is hermetically slidably arranged on the air delivery pipe and can be slid up and down on the air delivery pipe by manual adjustment or motor drive. The sliding of the sliding pipe is used to adjust the distance between the top plate and the fumigation rack. The air delivery pipe is connected to the installation gap through the sliding pipe. After the steam is generated in the liquid to be evaporated storage box, it sequentially passes through the second ventilation groove, the air delivery funnel, the air delivery pipe, the sliding pipe, and the installation gap, and finally discharges from the fourth ventilation groove or the third ventilation groove for fumigation treatment of the patient. The fumigation assembly has two working states. The first working state is that the sliding pipe slides up and down on the air delivery pipe, the top plate is flush with the support assembly, a person lies above the support assembly and the fumigation assembly, and by controlling the opening and closing assembly to open the fourth ventilation groove, the steam sequentially passes through the second ventilation groove, the third ventilation groove, and the fourth ventilation groove to fumigate the patient's back.The second working state is to adjust the distance between the top plate and the fumigation rack by a certain distance. The patient lies on the support component. At this time, the top plate and the fumigation rack are located at the upper and lower ends of the patient respectively. At this time, the opening and closing component closes the fourth ventilation groove. After the steam is generated from the liquid to be evaporated storage box, a part of the gas passes through the second ventilation groove, the air delivery funnel, the air delivery pipe, the sliding pipe and the installation gap in sequence, and finally discharges from the third ventilation groove to fumigate and treat the upper part of the patient. Another part of the gas fumigates the patient's back through the second ventilation groove. By adjusting the temperature of the electric heating plate and the ventilation volume of the air delivery system, the temperature and flow rate of the steam can be controlled to achieve the best treatment effect. In this embodiment, through reasonable design and layout, the reproductive assistance treatment device realizes the versatility and flexibility of the fumigation component, can meet different treatment needs, and provides a comfortable treatment experience for the patient. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The present invention will be further described in detail below with reference to the drawings and specific embodiments.

[0022] Figure 1 is the first perspective axonometric structure schematic diagram of the present invention;

[0023] Figure 2 is the first perspective structure schematic diagram of the fumigation component of the present invention;

[0024] Figure 3 is the second perspective structure schematic diagram of the fumigation component of the present invention;

[0025] Figure 4 is the sectional structure schematic diagram of the fumigation component of the present invention;

[0026] Figure 5 is Figure 4 the partial enlarged structure schematic diagram of part A of

[0027] In the figure: 1, frame; 2, support component; 3, installation groove; 4, fumigation component; 5, electric heating plate; 6, liquid to be evaporated storage box; 7, fumigation rack; 8, medicine bag storage drawer; 9, first ventilation groove; 10, second ventilation groove; 11, air delivery funnel; 12, air delivery pipe; 13, top plate; 14, third ventilation groove; 15, installation gap; 16, opening and closing component; 17, sliding pipe; 18, guiding chute; 19, telescopic member; 20, connecting plate; 21, sealing plate; 22, slide rail; 23, rack; 24, first gear; 25, swing rod; 26, first articulated rod; 27, double-shaft motor; 28, second gear; 29, water outlet; 30, control valve; 31, second articulated rod; 32, third articulated rod; 33, support plate; 34, first cylinder; 35, support rod; 36, support end; 37, articulated end; 38, walking wheel; 39, backrest; 40, fourth ventilation groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] The following will describe the technical solutions in the embodiments of the present invention in a clear and complete manner in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.

[0029] Embodiment

[0030] As Figure 1 、 Figure 2 and Figure 3 shown, a reproductive assistance treatment device includes a frame 1 for being arranged on the ground. The frame 1 is provided with a support assembly 2 for supporting a patient to lie on. The support assembly 2 has a mounting groove 3, and further includes a fumigation assembly 4 arranged in the mounting groove 3 on the frame 1;

[0031] The fumigation assembly 4 includes an electric heating plate 5 arranged on the frame 1. A liquid to be evaporated storage box 6 is arranged on the electric heating plate 5 for storing the liquid to be evaporated. The liquid to be evaporated storage box 6 is open at the upper end. A fumigation rack 7 is arranged on the liquid to be evaporated storage box 6. A medicine bag storage drawer 8 is slidably arranged on the fumigation rack 7 for storing medicine bags. The bottom of the medicine bag storage drawer 8 has a first ventilation groove 9. The bottom of the fumigation rack 7 is open, and the top has a second ventilation groove 10;

[0032] Gas delivery funnels 11 are arranged at both ends of the fumigation rack 7. A plurality of gas delivery pipes 12 are arranged in an array above the gas delivery funnels 11. The gas delivery pipes 12 are communicated with the gas delivery funnels 11. A top plate 13 is arranged on the gas delivery pipes 12. The top plate 13 has a plurality of fourth ventilation grooves 40 and a plurality of third ventilation grooves 14. There is an installation gap 15 between the fourth ventilation grooves 40 and the third ventilation grooves 14. An opening and closing assembly 16 is arranged in the installation gap 15 for opening or closing the fourth ventilation grooves 40. The second ventilation grooves 10 and the third ventilation grooves 14 are arranged corresponding to each other. The fourth ventilation grooves 40 are located at the top end of the top plate 13, and the third ventilation grooves 14 are located at the bottom end of the top plate 13;

[0033] Sliding pipes 17 corresponding to the gas delivery pipes 12 one by one are arranged on the top plate 13. The sliding pipes 17 are hermetically and slidably arranged on the gas delivery pipes 12. After the sliding pipes 17 slide on the gas delivery pipes 12, they are used to adjust the distance between the top plate 13 and the fumigation rack 7. The gas delivery pipes 12 are communicated with the installation gap 15 through the sliding pipes 17;

[0034] The fumigation assembly 4 has two working states. When the top plate 13 and the fumigation rack 7 are at the farthest distance, the opening and closing assembly 16 closes the fourth ventilation slot 40. At this time, the patient lies on the support assembly 2, and the first ventilation slot 9 and the fourth ventilation slot 40 are respectively located at the upper and lower ends of the patient. When the top plate 13 and the fumigation rack 7 are at the closest distance, the opening and closing assembly 16 opens the fourth ventilation slot 40, the top plate 13 is flush with the support assembly 2, and the first ventilation slot 9, the fourth ventilation slot 40 and the third ventilation slot 14 are all located below the patient.

[0035] In this embodiment, the frame 1 is made of a strong metal material and has an overall rectangular frame structure with feet provided at the bottom. A support assembly 2 is installed on the upper part of the frame 1 for supporting a patient to lie on. The support assembly 2 includes an adjustable-angle lying board, which is made of a medical-grade plastic material with a smooth surface and is easy to clean and disinfect. An installation groove 3 is provided at the middle position of the lying board, and the installation groove 3 is used for installing the fumigation assembly 4. The fumigation assembly 4 is installed in the installation groove 3 of the frame 1 and mainly includes an electric heating plate 5, a liquid to be evaporated storage tank 6, a fumigation rack 7, and a medicine bag storage drawer 8. The electric heating plate 5 is installed at the bottom of the installation groove 3 of the frame 1 and has good thermal conductivity and corrosion resistance. The electric heating plate 5 controls the heating temperature through a temperature control device, and the temperature range can be adjusted between 30°C and 90°C to adapt to the evaporation requirements of different liquid medicines. The liquid to be evaporated storage tank 6 is placed on the electric heating plate 5 and is made of transparent glass material for easy observation of the evaporation of the liquid medicine. The upper end of the storage tank is open for easy addition and replacement of the liquid medicine. The bottom of the storage tank is closely attached to the electric heating plate 5 to ensure efficient heat transfer. The fumigation rack 7 is installed above the liquid to be evaporated storage tank 6 and is made of stainless steel material with good high-temperature resistance and corrosion resistance. The bottom of the fumigation rack 7 is open, and a second ventilation groove 10 is provided at the top, which is in a long strip shape for guiding the flow of steam. A medicine bag storage drawer 8 is slidably arranged on the fumigation rack 7. The bottom of the drawer is provided with a first ventilation groove 9, which is in a long strip shape and corresponds to the second ventilation groove 10 for guiding the steam through the medicine bag. Slide rails 22 are provided on both sides of the medicine bag storage drawer 8 and cooperate with the sliding grooves on the fumigation rack 7 to achieve a smooth pulling action. An air delivery funnel 11 is respectively arranged at both ends of the fumigation rack 7. A plurality of air delivery pipes 12 are arranged above the air delivery funnel 11 and are made of high-temperature-resistant plastic material and are communicated with the air delivery funnel 11. The upper end of the air delivery pipe 12 is installed with a top plate 13, which is made of transparent plastic material for easy observation of the flow of steam. A plurality of fourth ventilation grooves 40 and a plurality of third ventilation grooves 14 are provided on the top plate 13. Both the fourth ventilation grooves 40 and the third ventilation grooves 14 are in a long strip shape and are arranged at intervals. An installation gap 15 is provided between the fourth ventilation grooves 40 and the third ventilation grooves 14, and an opening and closing assembly 16 is arranged in the installation gap 15. The opening and closing assembly 16 is used to open or close the fourth ventilation grooves 40. The top plate 13 is also provided with sliding pipes 17 corresponding to the air delivery pipes 12 one by one. The sliding pipes 17 are hermetically slidably arranged on the air delivery pipes 12. Through manual adjustment or motor drive, the sliding pipes 17 can slide up and down on the air delivery pipes 12. After the sliding of the sliding pipes 17, it is used to adjust the distance between the top plate 13 and the fumigation rack 7. The air delivery pipes 12 are communicated with the installation gap 15 through the sliding pipes 17. After the steam is generated from the liquid to be evaporated storage tank 6, it sequentially passes through the second ventilation groove 10, the air delivery funnel 11, the air delivery pipes 12, the sliding pipes 17, and the installation gap 15, and finally is discharged from the fourth ventilation grooves 40 or the third ventilation grooves 14 for fumigation treatment of the patient.The fumigation assembly 4 has two working states. In the first working state, the sliding tube 17 slides down on the gas delivery pipe 12, and the top plate 13 is flush with the support assembly 2. A person lies above the support assembly 2 and the fumigation assembly 4. By controlling the opening and closing assembly 16 to open the fourth ventilation slot 40, the steam sequentially passes through the second ventilation slot 10, the third ventilation slot 14, and the fourth ventilation slot 40 to fumigate the patient's back. In the second working state, the distance between the top plate 13 and the fumigation rack 7 is adjusted by a certain distance. The patient lies on the support assembly 2. At this time, the top plate 13 and the fumigation rack 7 are respectively located at the upper and lower ends of the patient. At this time, the opening and closing assembly 16 closes the fourth ventilation slot 40. After the steam is generated from the liquid to be evaporated storage tank 6, a part of the gas sequentially passes through the second ventilation slot 10, the gas delivery funnel 11, the gas delivery pipe 12, the sliding tube 17, and the installation gap 15, and finally discharges from the third ventilation slot 14 to fumigate the upper part of the patient for treatment. Another part of the gas fumigates the patient's back through the second ventilation slot 10. By adjusting the temperature of the electric heating plate 5 and the ventilation volume of the gas delivery system, the temperature and flow rate of the steam can be controlled to achieve the best treatment effect. In this embodiment, through reasonable design and layout, the reproductive assistance treatment device realizes the versatility and flexibility of the fumigation assembly 4, can meet different treatment requirements, and provides a comfortable treatment experience for patients.

[0036] As Figure 4 and Figure 5 shown, as a further technical solution, there are a number of guiding chutes 18 on both sides of the installation gap 15 that correspond one-to-one to the fourth ventilation slot 40. It further includes a telescopic member 19 hinged in the installation gap 15. The telescopic end of the telescopic member 19 is hinged to a connecting plate 20. A number of sealing plates 21 are arranged on the connecting plate 20. The number of the sealing plates 21 are slidably arranged in the guiding chutes 18 one-to-one. After the sealing plates 21 slide in the guiding chutes 18, they are used to open or close the fourth ventilation slot 40.

[0037] As a specific implementation manner, a plurality of guiding sliding grooves 18 corresponding to the fourth ventilation grooves 40 one by one are provided on both sides of the installation gap 15. The length direction of the guiding sliding grooves 18 is the same as that of the fourth ventilation grooves 40 and is located on both side walls of the installation gap 15. In addition, a telescopic member 19 is further included. The telescopic member 19 is arranged in the installation gap 15 in a hinged manner, and its telescopic end is connected with a connecting plate 20. A plurality of sealing plates 21 are arranged on the connecting plate 20. The number of the sealing plates 21 is the same as that of the fourth ventilation grooves 40, and each sealing plate 21 is respectively slidably arranged in the corresponding guiding sliding groove 18. When the telescopic member 19 expands and contracts, the connecting plate 20 drives the sealing plates 21 to slide in the guiding sliding grooves 18. The size of the sealing plates 21 matches the size of the fourth ventilation grooves 40 and can closely fit the inner wall of the fourth ventilation grooves 40. When the sealing plates 21 slide to the openings of the fourth ventilation grooves 40, the fourth ventilation grooves 40 can be completely covered and sealed, thereby closing the fourth ventilation grooves 40; when the sealing plates 21 slide to the ends of the guiding sliding grooves 18, the fourth ventilation grooves 40 are completely opened, and steam can be discharged through the ventilation grooves. Through this design, the flexible control of the fourth ventilation grooves 40 is realized, the ventilation function of the fumigation assembly 4 is further optimized, and the usability of the device and the adjustability of the treatment effect are improved.

[0038] As Figure 2 and Figure 3 shown, as a further technical solution, a set of slide rails 22 are provided on both sides of the fumigation rack 7. Two racks 23 are slidably arranged on the slide rails 22. Two sets of first gears 24 meshing with the racks 23 are further included and arranged on the fumigation rack 7. Swing rods 25 are arranged on both sets of the first gears 24. Two sets of first hinge rods 26 with one end hinged to the swing rods 25 and the other end hinged to the top plate 13 are further included. After the racks 23 slide on the slide rails 22, they are used to drive the first gears 24 to rotate. After the first gears 24 rotate, they are used to drive the swing rods 25 and the first hinge rods 26 to swing and push the top plate 13 to slide on the air delivery pipe 12 through the sliding pipe 17.

[0039] As a specific implementation manner, a set of slide rails 22 are respectively arranged on both sides of the fumigation rack 7. The slide rails 22 are arranged along the longitudinal direction of the fumigation rack 7 and are used to support and guide the sliding of the racks 23. Two racks 23 are slidably arranged on each slide rail 22. The length direction of the racks 23 is consistent with the direction of the slide rails 22, and they can slide freely on the slide rails 22. In addition, two sets of first gears 24 are further arranged on the fumigation rack 7. Each set of first gears 24 meshes with two racks 23 respectively. The central axis of the first gear 24 is fixed on the fumigation rack 7 and can rotate freely. A swing rod 25 is connected to each set of first gears 24. One end of the swing rod 25 is fixedly connected to the central axis of the first gear 24, and the other end extends outwards. At the same time, two sets of first hinge rods 26 are also included. One end of each set of first hinge rods 26 is connected to the end of the swing rod 25 by means of hinge, and the other end is hinged to the bottom of the top plate 13. When the racks 23 slide on the slide rails 22, they will drive the first gears 24 meshing with them to rotate. The rotation of the first gear 24 will transmit power through the swing rod 25, causing the swing rod 25 to swing around the central axis. The swing of the swing rod 25 further drives the first hinge rod 26 to swing, thereby pushing the top plate 13 to slide on the air delivery pipe 12 through the sliding pipe 17. Through this mechanical transmission structure, the sliding of the racks 23 can precisely control the distance between the top plate 13 and the fumigation rack 7, and further adjust the ventilation path and steam distribution of the fumigation assembly 4, realizing precise control of the fumigation treatment.

[0040] As Figure 2 shown, as a further technical solution, a dual-axis motor 27 fixed on the fumigation rack 7 is further included. Second gears 28 are arranged at both driving ends of the dual-axis motor 27, and the two second gears 28 respectively mesh with the two racks 23.

[0041] As a specific implementation manner, to achieve automatic driving and precise control of the racks 23, the device further includes a dual-axis motor 27 fixed on the fumigation rack 7. Second gears 28 are respectively installed at both driving ends of the dual-axis motor 27. The sizes and pitches of the two second gears 28 match those of the racks 23 and respectively mesh with the two racks 23. Driven by the dual-axis motor 27, the two second gears 28 can rotate synchronously, and the two racks 23 both slide on the slide rails 22. It not only realizes the automatic control of the racks 23, but also ensures the stability and synchronism of the movement of the racks 23 through the precise driving of the dual-axis motor 27. The driving of the dual-axis motor 27 can further drive the top plate 13 to slide on the air delivery pipe 12 through the sliding pipe 17, thereby realizing the automatic adjustment of the distance between the top plate 13 and the fumigation rack 7. This improvement significantly improves the intelligent level and operation convenience of the device, providing a more precise and efficient fumigation function for reproductive assisted treatment.

[0042] As Figure 3As shown in the figure, as a further technical solution, the bottom of the liquid storage tank 6 to be evaporated has a water outlet 29, and a control valve 30 is further provided at the water outlet 29. The control valve 30 is used to control the opening or closing of the water outlet 29.

[0043] As a specific implementation manner, in order to facilitate the cleaning and maintenance of the liquid storage tank 6 to be evaporated, as well as the recovery or discharge of the remaining liquid medicine during the treatment process, a water outlet 29 is provided at the bottom of the liquid storage tank 6 to be evaporated. The water outlet 29 is located at the central position of the bottom of the storage tank and is made of high-temperature resistant and corrosion-resistant stainless steel. A control valve 30 is installed at the water outlet 29. The control valve 30 is a manual or electric ball valve, which has good sealing performance and reliable switching function. By rotating or remotely controlling, the operator can easily open or close the water outlet 29, so as to realize the discharge of the remaining liquid medicine in the storage tank or the discharge of the cleaning liquid. This improvement not only improves the convenience of use of the device, but also enhances its adaptability in different application scenarios, ensures the cleanliness and hygiene of the device, and meets the use standards of medical equipment.

[0044] As Figure 1 As shown in the figure, as a further technical solution, the support assembly 2 includes two groups of second hinge rods 31 arranged on both sides of the frame 1. Both ends of the second hinge rod 31 are hinged with a third hinge rod 32. The third hinge rod 32 is lapped on the frame 1 on the side away from the second hinge rod 31;

[0045] A support plate 33 is arranged between the second hinge rod 31 and the third hinge rod 32. The support plate 33 is used to support the patient to lie down. Adjacent support plates 33 form an installation groove 3;

[0046] Two first cylinders 34 are hinged on the frame 1. Symmetrically arranged support rods 35 are hinged on the frame 1. The support rod 35 has a support end 36 and a hinge end 37. The telescopic end of the first cylinder 34 is hinged on the hinge end 37. The support end 36 is hinged on the third hinge rod 32. After the first cylinder 34 expands and contracts, it is used to drive the hinge end 37 of the support rod 35 to move and drive the support end 36 to support the support plate 33 to move. After the support plate 33 moves, the third hinge rod 32 swings along the second hinge rod 31.

[0047] As a specific implementation manner, the support assembly 2 is designed with a flexible hinge structure to achieve the adjustability of the support plate 33 and meet different treatment requirements. Specifically, the support assembly 2 includes two groups of second hinge rods 31 arranged on both sides of the frame 1. At both ends of each group of second hinge rods 31, third hinge rods 32 are hingedly arranged. One end of the third hinge rod 32 away from the second hinge rod 31 is lapped on the frame 1. The second hinge rod 31 and the third hinge rod 32 are connected by a support plate 33. The support plate 33 is used to support the patient to lie down. An installation groove 3 is formed between adjacent support plates 33 for installing the fumigation assembly 4.

[0048] As a specific implementation manner, in order to achieve the lifting adjustment of the support plate 33, two first cylinders 34 are hingedly arranged on the frame 1. At the same time, support rods 35 are symmetrically arranged on the frame 1. The support rod 35 has a support end 36 and a hinge end 37. The telescopic end of the first cylinder 34 is hinged to the hinge end 37 of the support rod 35, and the support end 36 of the support rod 35 is hinged to the third hinge rod 32. When the first cylinder 34 expands and contracts, it will drive the hinge end 37 of the support rod 35 to move, and then push the third hinge rod 32 to swing along the second hinge rod 31 through the support end 36. This structure enables the support plate 33 to be height-adjusted according to the patient's body shape and treatment requirements, ensuring that the patient can maintain a comfortable lying posture during the treatment. At the same time, the adjustability of the support plate 33 also provides convenience for the installation and use of the fumigation assembly 4, further improving the practicality and flexibility of the device. And in this solution, the top and tail of the support plate 33 can be adjusted by the expansion and contraction of the first cylinder 34. Because raising the patient's legs during the fumigation process has a better fumigation effect, the head and tail of this solution can be adjusted by two first cylinders 34 respectively, so that this solution has a better fumigation effect.

[0049] As Figure 1 shown, as a further technical solution, the bottom end of the frame 1 is provided with a plurality of walking wheels 38.

[0050] As a further technical solution, a backrest 39 is also arranged on the frame 1 at both ends of the support assembly 2.

[0051] As a specific implementation, in order to improve the mobility and convenience of use of the device, a number of walking wheels 38 are provided at the bottom end of the frame 1. These walking wheels 38 are made of high-strength wear-resistant materials, and each walking wheel 38 is equipped with an independent braking device, which can ensure the stability and safety of the device during movement. They are distributed at the four corners of the bottom of the frame 1, enabling the entire device to move easily between different sites, and at the same time facilitating rapid adjustment and positioning by medical staff as needed. The walking wheels 38 of this device are off-the-shelf components. A backrest 39 is also provided on the frame 1. The backrest 39 is located at both ends of the support assembly 2 and is used to provide additional support and comfort for the patient.

[0052] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A reproductive assisted treatment device, characterized in that: The invention comprises a frame (1) for being arranged on the ground, the frame (1) having a support assembly (2), the support assembly (2) being used to support a patient lying down, the support assembly (2) having a mounting groove (3), and further comprising a fumigation assembly (4) arranged on the frame (1) and located in the mounting groove (3); The fumigation assembly (4) comprises an electric heating plate (5) arranged on the frame (1), the electric heating plate (5) is provided with a liquid storage box (6) for evaporating, the liquid storage box (6) for evaporating is used to store the liquid, the upper end of the liquid storage box (6) for evaporating is open, a fumigation rack (7) is provided on the liquid storage box (6), a medicine bag storage drawer (8) is slidably provided on the fumigation rack (7), the medicine bag storage drawer (8) is used to store medicine bags, and the bottom of the medicine bag storage drawer (8) has a first ventilation groove (9), the bottom of the fumigation rack (7) is open, and the top has a second ventilation groove (10); A gas delivery funnel (11) is arranged at both ends of the fumigation rack (7), and a plurality of gas delivery pipes (12) are arranged above the gas delivery funnel (11), and the gas delivery pipes (12) are connected to the gas delivery funnel (11). A top plate (13) is arranged on the gas delivery pipe (12), and the top plate (13) has a plurality of fourth ventilation grooves (40) and a plurality of third ventilation grooves (14). An installation gap (15) is provided between the fourth ventilation groove (40) and the third ventilation groove (14), and an opening and closing component (16) is provided in the installation gap (15), and the opening and closing component (16) is used to open or close the fourth ventilation groove (40), and the second ventilation groove (10) and the third ventilation groove (14) are arranged correspondingly, and the fourth ventilation groove (40) is located at the top end of the top plate (13), and the third ventilation groove (14) is located at the bottom end of the top plate (13); The top plate (13) is provided with a sliding tube (17) arranged one-to-one with the gas pipe (12); the sliding tube (17) is sealingly and slidably arranged on the gas pipe (12); after the sliding tube (17) slides on the gas pipe (12), it is used to adjust the distance between the top plate (13) and the fumigation rack (7); the gas pipe (12) is connected to the installation gap (15) through the sliding tube (17); The fumigation assembly (4) has two working states. When the distance between the top plate (13) and the fumigation frame (7) is the farthest, the opening and closing assembly (16) closes the fourth ventilation groove (40). At this time, the patient lies on the support assembly (2). The first ventilation groove (9) and the fourth ventilation groove (40) are respectively located at the upper and lower ends of the patient. When the distance between the top plate (13) and the fumigation frame (7) is the shortest, the opening and closing assembly (16) opens the fourth ventilation groove (40). The top plate (13) and the support assembly (2) are flush with each other. The first ventilation groove (9), the fourth ventilation groove (40) and the third ventilation groove (14) are all located below the patient.

2. A reproductive assistance treatment device according to claim 1, characterized in that: The installation gap (15) has a plurality of guide slots (18) on both sides thereof corresponding to the fourth ventilation slot (40), and also includes a telescopic member (19) hingedly arranged in the installation gap (15), the telescopic end of the telescopic member (19) being hingedly arranged on a connecting plate (20), the connecting plate (20) being provided with a plurality of sealing plates (21), the plurality of sealing plates (21) being slidably arranged in the guide slots (18) in a one-to-one manner, and the sealing plates (21) being used to open or close the fourth ventilation slot (40) after sliding in the guide slots (18).

3. A reproductive assistance treatment device according to claim 1, characterized in that: A group of slide rails (22) are arranged on both sides of the fumigation rack (7), two racks (23) are slidably arranged on the slide rails (22), and two groups of first gears (24) are arranged on the fumigation rack (7) and meshed with the racks (23), and swing rods (25) are arranged on the two groups of the first gears (24), and two groups of first hinge rods (26) are also included, one end of which is hinged on the swing rod (25) and the other end is hinged on the top plate (13). After the racks (23) slide on the slide rails (22), they are used to drive the first gears (24) to rotate, and after the first gears (24) rotate, they are used to drive the swing rod (25) and the first hinge rod (26) to swing and push the top plate (13) to slide on the gas pipe (12) through the sliding pipe (17).

4. A reproductive assistance treatment device according to claim 3, characterized in that: It also includes a double-shaft motor (27) fixed on the fumigation frame (7), and the two driving ends of the double-shaft motor (27) are both provided with a second gear (28), and the two second gears (28) are respectively meshed with the two racks (23).

5. The reproductive assistance treatment device according to claim 1, characterized in that: The bottom of the to-be-evaporated liquid storage box (6) is provided with a water outlet (29), and a control valve (30) is also provided at the water outlet (29). The control valve (30) is used to control the water outlet (29) to be opened or closed.

6. The reproductive assistance treatment device according to claim 1, characterized in that: The support assembly (2) comprises two groups of second hinged rods (31) arranged on both sides of the frame (1), and third hinged rods (32) are hingedly arranged at both ends of the second hinged rods (31), and the third hinged rods (32) are overlapped and arranged on the frame (1) at a side away from the second hinged rods (31); A support plate (33) is provided between the second hinge rod (31) and the third hinge rod (32), the support plate (33) being used to support a patient lying down, and adjacent support plates (33) forming a mounting groove (3); Two first cylinders (34) are hingedly arranged on the frame (1), and symmetrically arranged support rods (35) are hingedly arranged on the frame (1), and the support rods (35) have a support end (36) and a hinge end (37). The telescopic end of the first cylinder (34) is hingedly arranged on the hinge end (37), and the support end (36) is hingedly arranged on the third hinge rod (32). After the first cylinder (34) is extended and retracted, it is used to drive the hinge end (37) of the support rod (35) to move and drive the support end (36) to support the support plate (33) to move. After the support plate (33) moves, the third hinge rod (32) swings along the second hinge rod (31).

7. The reproductive assistance treatment device according to claim 1, characterized in that: The bottom end of the frame (1) is provided with a plurality of running wheels (38).

8. The reproductive assistance treatment device according to claim 1, characterized in that: The frame (1) is also provided with a backing plate (39) located at both ends of the support assembly (2).