Air pressure device for genital edema

By integrating ozone disinfection technology in the air pressure device, the problem of the lack of disinfection function of the existing air pressure device is solved, effective disinfection of the air bag sleeve is achieved, the risk of pathogenic microorganisms transmission and treatment costs are reduced, and the efficiency of the use of the air pressure device is improved.

CN120168305AInactive Publication Date: 2025-06-20THE FIRST AFFILIATED HOSPITAL OF GUANGXI MEDICAL UNIVERSITY
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510317924.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing air pressure devices for genital edema lack disinfection function, which leads to inability to effectively disinfect after use, increasing the risk of pathogenic microorganisms and increasing the treatment cost.

Method used

An air pressure device including a pressure treatment mechanism and a disinfection mechanism is designed. The disinfection mechanism adopts ozone disinfection technology to generate ozone gas through an ozone generator, and the ozone concentration is controlled through a controller and concentration sensor to ensure the effective disinfection of the airbag sleeve.

Benefits of technology

The rapid and effective disinfection of the airbag sleeve after use is achieved, reducing the risk of transmission of pathogenic microorganisms, avoiding additional disinfection equipment and costs, and improving the use efficiency and effect of the air pressure device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120168305A_ABST
    Figure CN120168305A_ABST
Patent Text Reader

Abstract

The invention discloses an air pressure device for genital edema, and relates to the technical field of medical auxiliary instruments, the air pressure device comprises an air pressure treatment mechanism, the air pressure treatment mechanism is provided with a disinfection mechanism, the disinfection mechanism comprises a sealing plate and a placing groove, and the top of a cylindrical block is in threaded connection with a hand screw bolt. An ozone generator is mounted at the bottom of the inner wall of the placement groove, a concentration sensor is in threaded connection with one side of a second rectangular block, an electric valve is mounted at the air outlet end of the other circular pipe, and a controller is mounted on one side of the second rectangular block. According to the air pressure device for genital edema, the used air bag sleeve can be disinfected in time, large-scale spreading of pathogenic microorganisms is avoided, meanwhile, medical workers do not need to additionally prepare disinfection equipment to disinfect the disinfection equipment, cost expenditure is reduced, the using effect of the air pressure device for genital edema is improved, and the working efficiency is improved. And meanwhile, the use efficiency of the air pressure device for genital edema is also improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of medical auxiliary devices, and particularly to a pneumatic device for genital edema. Background Art

[0002] Genital edema is generally caused by trauma, inflammation, after surgery, and lymphatic reflux disorders, etc. It not only brings discomfort to patients, but also affects genital function and reproductive health. When it is necessary to let patients quickly reduce genital edema, improve the patient's condition, and assist the patient to recover quickly, medical staff will use a pneumatic device to assist in treating the patient.

[0003] In the existing technology, in the actual use process of the existing pneumatic device for genital edema, although it can help promote local blood circulation and lymphatic reflux in the patient's genitals, reduce edema symptoms, and accelerate tissue repair, it does not have a disinfection function. When the patient's genitals are assisted in treatment with a pneumatic device, its airbag cover generally carries pathogenic microorganisms such as bacteria, viruses, and fungi. At this time, the pneumatic device without a disinfection function will not be able to disinfect it, but medical staff still have to prepare an additional disinfection device to disinfect it, which increases the cost expenditure. At the same time, if the airbag cover with pathogenic microorganisms is not treated in time, it will also cause a large number of pathogenic microorganisms to spread, which not only reduces the use effect of the pneumatic device for genital edema, but also reduces the use efficiency of the pneumatic device for genital edema.

[0004] Therefore, we have proposed a new pneumatic device for genital edema to solve the problems raised in the above background art. Summary of the Invention

[0005] The purpose of the present invention is to provide a pneumatic device for genital edema to solve the problem that the existing pneumatic device for genital edema does not have a disinfection function. When the patient's genitals are assisted in treatment with a pneumatic device, the pneumatic device without a disinfection function will not be able to disinfect it, but medical staff still have to prepare an additional disinfection device to disinfect it, which increases the cost expenditure. At the same time, if the airbag cover with pathogenic microorganisms is not treated in time, it will also cause a large number of pathogenic microorganisms to spread, thereby reducing the use efficiency of the pneumatic device for genital edema.

[0006] To achieve the above purpose, the present invention provides the following technical solution: A pneumatic device for genital edema, including a pneumatic treatment mechanism, and a disinfection mechanism is arranged on the pneumatic treatment mechanism;

[0007] The disinfection mechanism includes a sealing plate and a placement groove. One side of the sealing plate is slidably embedded with a protective plate. At a position near the edge of the inner bottom of the placement groove, a first rectangular block is fixed. A chute is opened at the top of the first rectangular block. A slider is slidably connected inside the chute. A perforated plate is arranged inside the chute. A cylindrical block is fixed at the top of the slider. A cylindrical hole is opened at a position near the top of the outer surface of the cylindrical block. A hanging rod is arranged inside the cylindrical hole. A hand-tightening bolt is threadedly connected to the top of the cylindrical block. A second rectangular block is fixed inside the placement groove. An ozone generator is installed at the inner bottom of the inner wall of the placement groove. Two round tubes are fixedly penetrated through one side of the second rectangular block. A delivery pipe is installed at the intake end of one of the round tubes. A concentration sensor is threadedly connected to one side of the second rectangular block. An electric valve is installed at the outlet end of the other round tube. An exhaust pipe is installed at the outlet end of the electric valve. A controller is installed on one side of the second rectangular block.

[0008] Preferably, the sealing plate is installed at the notch of the placement groove. The protective plate is fixed inside the placement groove by pressing with a first screw. The protective plate is at the notch of the placement groove. The sealing plate is installed with the second rectangular block through a second screw. The front surface of the perforated plate is fixed to the surface of the slider.

[0009] Preferably, the end face of the threaded end of the hand-tightening bolt abuts against the surface of the hanging rod. One side of the first rectangular block is fixed to the surface of the second rectangular block. The detection end of the concentration sensor movably penetrates through one side of the second rectangular block. The outlet end of the exhaust pipe movably penetrates through the inner bottom of the inner wall of the placement groove.

[0010] Preferably, the pneumatic treatment mechanism includes a base. Universal wheels are installed at the four corners of the bottom of the base. An air compressor is installed on the top of the base. A pipe plug is installed at the outlet end port of the air compressor.

[0011] Preferably, a storage groove is opened on the front surface of the base. The placement groove is opened on the rear surface of the base. A cover plate is installed at the notch of the storage groove. Two symmetrically arranged partition plates are fixed inside the storage groove.

[0012] Preferably, a sterile box is placed inside the storage groove. The front surface of the handle end of the sterile box is in contact with the surface of the cover plate. One side of the sterile box is in contact with the surface of one of the partition plates.

[0013] Preferably, an airbag sleeve is placed inside the sterile box. A rectangular plate is fixed between the opposite sides of the two partition plates. The bottom of the rectangular plate is fixed to the inner bottom of the inner wall of the storage groove. A sponge block is arranged between the opposite sides of the two partition plates.

[0014] Preferably, the top of the sponge block is in contact with the top inner wall of the storage groove, the front surface of the sponge block is in contact with the surface of the rectangular plate, a plurality of hoses are arranged inside the storage groove, and the plurality of hoses are arranged in a stack type.

[0015] Preferably, the outer surface of one of the hoses is in contact with the bottom of the sponge block, two concave blocks are placed inside the storage groove, and the two concave blocks are arranged in a stack type, and the front surfaces of the handles of the two concave blocks are both in contact with the surface of the cover plate.

[0016] Preferably, connecting pipes are placed inside the two concave blocks, electromagnetic valves are installed at the large ports of the two connecting pipes, a pressure relief valve is installed at the bottom port of one of the connecting pipes, and a pressure sensor is installed at the bottom port of the other connecting pipe.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] 1. By setting a disinfection mechanism, the present invention can disinfect the used airbag sleeve in time, avoid the large-scale spread of pathogenic microorganisms, and at the same time, there is no need for medical staff to prepare additional disinfection equipment to disinfect it, which not only reduces the cost expenditure, but also improves the use effect and efficiency of the pneumatic device for genital edema. When it is necessary to disinfect the used airbag sleeve, first, the cooperation of the sliding groove and the perforated plate can be used to move the slider and all the components on the top of the slider to the notch position of the placement groove. Then, the cooperation of the hanging rod, the hand-tightening bolt and the cylindrical hole can be used to hang the airbag sleeve to be disinfected on the cylindrical block. Then, the cooperation of the sliding groove and the perforated plate can be used to move the slider and all the components on the top of the slider back to their original positions.

[0019] 2. When the airbag sleeve is hung and the sealing plate is installed back in place, the present invention can directly use the cooperation of the ozone generator, the delivery pipe and one of the round pipes to inhale the air in the environment, produce ozone gas, and deliver it to the space composed of the placement groove, the second rectangular block, the first rectangular block and the sealing plate. At the same time, using the controller, the concentration sensor and the concentration threshold preset by the controller, the amount of ozone delivered to the above space can be controlled. When the airbag sleeve undergoes disinfection operation for a period of time, the cooperation of the controller, the electric valve, the other round pipe and the exhaust pipe can be directly used to discharge a large amount of ozone gas in the above space into the environment, that is, to avoid the high-concentration ozone gas in the above space rushing towards people when the sealing plate is opened, thus protecting the medical staff. Then, the sealing plate is removed, and then the disinfected airbag sleeve is removed from the cylindrical block and placed in a sterile box for storage.

[0020] 3. By providing a pneumatic treatment mechanism, the present invention can reduce the discomfort caused by genital edema in patients and assist the patients in recovering quickly. When a patient needs pneumatic device-assisted treatment for genital edema, first remove the cover plate from the notch of the storage groove. In this way, the concave block, the sterile box, and the sponge block can be taken out from the inside of the storage groove, facilitating the medical staff to take out the components in the concave block and the sterile box. At the same time, it is convenient to take out the hose from the inside of the storage groove. Subsequently, with the cooperation of the hose, the air outlet end of the air compressor, the two connecting pipes, the two solenoid valves, and the airbag sleeve can be connected together. Then, with the cooperation of the air compressor, the corresponding hose, the two solenoid valves, the pressure relief valve, the pressure sensor, and one of the opened solenoid valves, air can be inflated and deflated in each airbag of the airbag sleeve, thus realizing the auxiliary treatment operation for the patient's genitals. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a perspective view of a pneumatic device for genital edema according to the present invention;

[0022] Figure 2 is another perspective view of a pneumatic device for genital edema according to the present invention;

[0023] Figure 3 is a perspective structural schematic diagram of the connecting pipes, solenoid valves, and pressure relief valve of a pneumatic device for genital edema according to the present invention;

[0024] Figure 4 is a sectional perspective structural schematic diagram of the sealing plate and the protective plate of a pneumatic device for genital edema according to the present invention;

[0025] Figure 5 is a partial structural schematic diagram of a pneumatic device for genital edema according to the present invention;

[0026] Figure 6 is a perspective view of the airbag sleeve of a pneumatic device for genital edema according to the present invention;

[0027] Figure 7 is a sectional perspective view of the pneumatic treatment mechanism of a pneumatic device for genital edema according to the present invention;

[0028] Figure 8 is a partial perspective view of the disinfection mechanism of a pneumatic device for genital edema according to the present invention;

[0029] Figure 9 is a partial perspective view of a pneumatic device for genital edema according to the present invention;

[0030] Figure 10 is a perspective structural schematic diagram of the sterile box and the airbag sleeve of a pneumatic device for genital edema according to the present invention;

[0031] Figure 11 Another perspective partial three-dimensional view of the pneumatic treatment mechanism of a pneumatic device for genital edema according to the present invention;

[0032] Figure 12 Bottom view partial three-dimensional view of the pneumatic treatment mechanism of a pneumatic device for genital edema according to the present invention.

[0033] In the figure: 1. Pneumatic treatment mechanism; 101. Base; 102. Universal wheel; 103. Air compressor; 104. Pipe plug; 105. Storage tank; 106. Cover plate; 107. Partition; 108. Sterile box; 109. Airbag sleeve; 110. Rectangular plate; 111. Sponge block; 112. Hose; 113. Concave block; 114. Connecting pipe; 115. Solenoid valve; 116. Pressure relief valve; 117. Pressure sensor; 2. Disinfection mechanism; 201. Sealing plate; 202. Placing groove; 203. Protective plate; 204. First rectangular block; 205. Chute; 206. Slide block; 207. Perforated plate; 208. Cylindrical block; 209. Cylindrical hole; 210. Hanging rod; 211. Hand-tightening bolt; 212. Second rectangular block; 213. Ozone generator; 214. Round pipe; 215. Delivery pipe; 216. Concentration sensor; 217. Electric valve; 218. Exhaust pipe; 219. Controller. Specific embodiments

[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in 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 shall fall within the protection scope of the present invention.

[0035] Embodiment 1: Please refer to Figure 1 , Figure 2 , Figures 4 - 6 and Figures 8 - 12 As shown, the present invention provides a technical solution: a pneumatic device for genital edema, including a pneumatic treatment mechanism 1, and a disinfection mechanism 2 is provided on the pneumatic treatment mechanism 1;

[0036] The disinfection mechanism 2 includes a sealing plate 201 and a placement groove 202. One side of the sealing plate 201 is slidably embedded with a protection plate 203. At a position near the edge of the inner bottom wall of the placement groove 202, a first rectangular block 204 is fixed. A chute 205 is opened at the top of the first rectangular block 204. A slider 206 is slidably connected inside the chute 205. A perforated plate 207 is arranged inside the chute 205. A cylindrical block 208 is fixed at the top of the slider 206. A cylindrical hole 209 is opened at a position near the top of the outer surface of the cylindrical block 208. A hanging rod 210 is arranged inside the cylindrical hole 209. A hand-tightening bolt 211 is threadedly connected to the top of the cylindrical block 208. A second rectangular block 212 is fixed inside the placement groove 202. An ozone generator 213 is installed at the inner bottom wall of the placement groove 202. Two round tubes 214 are fixedly penetrated through one side of the second rectangular block 212. A delivery pipe 215 is installed at the intake end of one of the round tubes 214. A concentration sensor 216 is threadedly connected to one side of the second rectangular block 212. An electric valve 217 is installed at the outlet end of the other round tube 214. An exhaust pipe 218 is installed at the outlet end of the electric valve 217. A controller 219 is installed on one side of the second rectangular block 212. The sealing plate 201 is installed at the notch of the placement groove 202. The protection plate 203 is fixed inside the placement groove 202 by being extruded by a first screw. The protection plate 203 is at the notch of the placement groove 202. The sealing plate 201 is installed with the second rectangular block 212 by a second screw. The front surface of the perforated plate 207 is fixed to the surface of the slider 206. The end face of the threaded end of the hand-tightening bolt 211 abuts against the surface of the hanging rod 210. One side of the first rectangular block 204 is fixed to the surface of the second rectangular block 212. The detection end of the concentration sensor 216 movably penetrates through one side of the second rectangular block 212. The outlet end of the exhaust pipe 218 movably penetrates through the inner bottom wall of the placement groove 202. The pneumatic treatment mechanism 1 includes a base 101. A storage groove 105 is opened on the front surface of the base 101. The placement groove 202 is opened on the rear surface of the base 101. A sterile box 108 is placed inside the storage groove 105. An airbag sleeve 109 is placed inside the sterile box 108.

[0037] In this embodiment, when it is necessary to disinfect the airbag cover 109 after use, the protective plate 203 is first removed from the notch of the placement groove 202, and then the controller 219 and the ozone generator 213 are respectively connected to the external power supply through the prepared power cord, and then the controller 219 is turned on, and the concentration threshold is set. Then, the sealing plate 201 is removed from the placement groove 202, and then the slide 205 and the perforated plate 207 are used to move the slider 206 and all the parts on the top of the slider 206 until the slider 206 moves to the appropriate position, and then the hand-tightening bolt 211 is loosened, and the hanging rod 210 is pulled out from the inside of the cylindrical hole 209, and finally the airbag cover 109 is covered on the outer surface of the cylindrical block 208. Then install the hanging rod 210 back into the cylindrical hole 209, and tighten the hand bolt 211 to fix it, so that the airbag cover 109 can be hung up. When the airbag cover 109 completes the hanging operation, the slider 206 is first reset to its original position, and then the sealing plate 201 is installed back to its original position, and then the ozone generator 213 is turned on, and then the start button of the ozone generator 213 is pressed, and the concentration sensor 216 is turned on by the controller 219. After that, the ozone generator 213 will inhale the air in the environment to produce ozone, and then the generated ozone gas is directly transported to the inside of the delivery pipe 215, and then it is transported to the placement groove 202, the second rectangular block 212, the first rectangular block 204 and the sealing block through the circular tube 214 connected thereto. Inside the space formed by the plate 201, when ozone gas is continuously injected into the space, the concentration sensor 216 will also constantly detect the ozone concentration in the space, and transmit the concentration data detected each time to the controller 219 in the form of an electrical signal, and then the controller 219 will compare each concentration data received with the concentration threshold value set in advance by the controller 219. When the concentration data received by the controller 219 is lower than the concentration threshold value set in advance by the controller 219, the screen of the controller 219 will not display the stop of ozone gas injection. When the concentration data received by the controller 219 is the same as the concentration threshold value set in advance by the controller 219, the screen of the controller 219 will display a reminder to turn off the ozone generator 2 13, the medical staff can then turn off the ozone generator 213 and the concentration sensor 216 using the controller 219. When the airbag sleeve 109 inside the above space has been disinfected for a period of time, the medical staff can then use the controller 219 to open the electric valve 217. When the electric valve 217 is opened, the ozone gas inside the above space will be discharged into the environment through the cooperation of the other circular tube 214, the opened electric valve 217 and the exhaust pipe 218. When the exhaust pipe 218 discharges most of the ozone gas inside the above space, the controller 219 is used to close the electric valve 217. At this time, the sealing plate 201 is removed from the placement slot 202, and high-concentration ozone gas will not hit the face.Thereby, it can avoid medical staff from inhaling a large amount of ozone gas, thus protecting the medical staff. Subsequently, the slider 206 is moved to a suitable position. Then, the disinfected airbag sleeve 109 is removed from the hanging rod 210 and placed inside the sterile box 108 for storage.

[0038] Embodiment 2: According to Figures 1 - 3 , Figures 5 - 7 and Figures 9 - 12 As shown in, the pneumatic treatment mechanism 1 includes a base 101. Universal wheels 102 are installed at the four corners of the bottom of the base 101. An air compressor 103 is installed on the top of the base 101. A pipe plug 104 is installed at the outlet end port of the air compressor 103. A storage groove 105 is formed on the front surface of the base 101. A cover plate 106 is installed at the notch of the storage groove 105. Two symmetrically arranged partition plates 107 are fixed inside the storage groove 105. A sterile box 108 is placed inside the storage groove 105. The front surface of the handle end of the sterile box 108 is in contact with the surface of the cover plate 106. One side of the sterile box 108 is in contact with the surface of one of the partition plates 107. An airbag sleeve 109 is placed inside the sterile box 108. A rectangular plate 110 is fixed between the opposite sides of the two partition plates 107. The bottom of the rectangular plate 110 is fixed to the inner wall bottom of the storage groove 105. A sponge block 111 is arranged between the opposite sides of the two partition plates 107. The top of the sponge block 111 is in contact with the inner wall top of the storage groove 105. The front surface of the sponge block 111 is in contact with the surface of the rectangular plate 110. A plurality of hoses 112 are arranged inside the storage groove 105, and the plurality of hoses 112 are arranged in a stack. The outer surface of one of the hoses 112 is in contact with the bottom of the sponge block 111. Two concave blocks 113 are placed inside the storage groove 105, and the two concave blocks 113 are arranged in a stack. The front surfaces of the handle ends of the two concave blocks 113 are in contact with the surface of the cover plate 106. Connecting pipes 114 are placed inside the two concave blocks 113. Solenoid valves 115 are installed at the large ports of the two connecting pipes 114. A pressure relief valve 116 is installed at the bottom port of one of the connecting pipes 114. A pressure sensor 117 is installed at the bottom port of the other connecting pipe 114.

[0039] In this embodiment, when a patient needs to use a pneumatic device for adjuvant treatment of genital edema, first move the entire pneumatic device to the side of the patient's hospital bed. After the movement is completed, use the universal wheels 102 to fix it. Then, first remove the cover plate 106 from the notch of the storage groove 105, and then connect the air compressor 103 to an external power supply through a power cord. Next, turn on the air compressor 103, set the treatment time, the inflation and deflation time of the airbag sleeve 109, and the pressure threshold. After that, take out the sponge block 111 from the inside of the storage groove 105, and then take out both concave blocks 113 and the sterile box 108 from the inside of the storage groove 105. Then, take out the components inside each of the two concave blocks 113. Finally, take out all the hoses 112 from the inside of the storage groove 105. When all the materials are ready, install a hose 112 on each small port of each connecting pipe 114. Then, open the sterile box 108, put on the prepared sterile gloves, and remove the airbag sleeve 109 from the sterile box 108. After that, connect one end of each hose 112 corresponding to one of the connecting pipes 114 to each air inlet port of the airbag sleeve 109 respectively, and at the same time connect one end of each hose 112 corresponding to the other connecting pipe 114 to each air outlet port of the airbag sleeve 109 respectively. Then, connect the air inlet end of one of the solenoid valves 115 (the air outlet end of the hose 112 corresponding to the connecting pipe 114 it is connected to is connected to the air inlet end of the airbag sleeve 109) to the air outlet end of the remaining hose 112. At the same time, remove the pipe plug 104 at the air outlet end of the air compressor 103. Then, connect the air inlet end of the hose 112 connected to the solenoid valve 115 to the air outlet end of the air compressor 103. Finally, first clean and dry the patient's genitals, and then put the airbag sleeve 109 on the patient's genitals to make contact with the patient's genitals. When the operation of putting the airbag sleeve 109 on the patient's genitals is completed, first use the control panel on the air compressor 103 to turn on one of the solenoid valves 115 and the pressure sensor 117, and set the opening degree of its valve plate. Then, press the start button on the air compressor 103. At this time, the started air compressor 103 will inhale the air in the environment, then compress it, and then discharge it from its air outlet end, and send it into the inside of the connected hose 112. Then, it is sent into one of the opened solenoid valves 115. Then, it is shunted and sent into the inside of each connected hose 112, and finally sent into each airbag of the airbag sleeve 109. When each airbag is inflated, the air pressure in each airbag can act on the patient's genitals. At the same time, the pressure sensor 117 will also continuously monitor the pressure inside the connected connecting pipe 114, and transmit each detected data to the control panel inside the air compressor 103 in the form of an electrical signal. When the control panel receives the pressure data, at this time, the control panel will compare the received pressure data with the previously set pressure threshold,When the pressure data received by the control board is lower than the pressure threshold set in advance by the control board, the control board will not stop delivering compressed air to the airbag sleeve 109 at this time. On the contrary, it will close one of the solenoid valves 115 and stop delivering compressed air to the airbag sleeve 109, and issue an alarm prompt. When the deflation time arrives, the air compressor 103 will stop delivering compressed air to the hose 112 connected to it at this time, and at the same time close one of the solenoid valves 115 and open the other solenoid valve 115. At this time, the compressed air in each airbag of the airbag sleeve 109 will pass through the connected hose 112, gather inside the corresponding connecting pipe 114, and then pass through the opened solenoid valve 115 and be discharged into the environment. When the inflation time arrives, each airbag of the airbag sleeve 109 will be inflated again to act on the patient's genitals. Repeating this process can treat the patient's genitals. When the treatment time arrives, the patient has completed the treatment operation at this time. Then, the air compressor 103, the two solenoid valves 115, and the pressure sensor 117 are turned off. Subsequently, the deflated airbag sleeve 109 is removed from the patient's genitals, and then the patient's genitals can be cleaned.

[0040] The effect and working principle of the entire mechanism are as follows: when a patient needs an air pressure device for auxiliary treatment of genital edema, the entire air pressure device is first moved to the side of the patient's bed, and after the movement is completed, it is fixed using the universal wheel 102, and then the cover plate 106 is first removed from the notch of the storage tank 105, and then the air compressor 103 is connected to the external power supply through the power cord, and then the air compressor 103 is turned on, and the treatment time, the inflation and deflation time of the airbag sleeve 109 and the pressure threshold are set, and then the sponge block 111 is taken out from the interior of the storage tank 105, and then the two concave blocks 113 and the sterile box 108 are moved out from the interior of the storage tank 105, and then the components inside the two concave blocks 113 are taken out Finally, all the hoses 112 are taken out from the inside of the storage tank 105. When all the materials are ready, each small port of each connecting tube 114 is installed with a hose 112, and then the sterile box 108 is opened. Then, the prepared sterile gloves are put on, and the airbag cover 109 is removed from the sterile box 108. Then, one end of each hose 112 corresponding to one of the connecting tubes 114 is connected to each air inlet port of the airbag cover 109, and one end of each hose 112 corresponding to another connecting tube 114 is connected to each air outlet port of the airbag cover 109, and then one of the solenoid valves 115 (the air outlet end of the corresponding hose 112 on the connecting tube 114 connected to the airbag cover is connected to the airbag cover) is connected. The air inlet end of the air bag sleeve 109 is connected to the air outlet end of the remaining hose 112, and the pipe plug 104 of the air outlet end of the air compressor 103 is removed. Then, the air inlet end of the hose 112 connected with the electromagnetic valve 115 is connected to the air outlet end of the air compressor 103. Finally, the patient's genitals are cleaned and dried, and then the air bag sleeve 109 is put on the patient's genitals to contact the patient's genitals (the part in contact with the genitals is the fitting layer of the air bag sleeve 109, which is made of soft and breathable material. It can ensure the comfort of the patient and ensure good fitting, so that the air pressure entering the air bag sleeve 109 later can evenly act on the patient's treatment part). When the air bag sleeve 109 is completely put on the patient's genitals When operating on the reproductive device, first use the control panel on the air compressor 103 to open one of the solenoid valves 115 and the pressure sensor 117, and set the opening and closing degree of its valve plate, and then press the start button on the air compressor 103. At this time, the started air compressor 103 will suck in the air in the environment, then compress it, and then discharge it from its air outlet end, and transport it to the inside of the hose 112 connected to it, and then transport it to the inside of one of the opened solenoid valves 115, and then divert it to the inside of each hose 112 connected to it, and finally transport it to each airbag in the airbag sleeve 109 (the airbag sleeve 109 has an airbag layer, the airbag layer has multiple airbags, and each airbag is equipped with an inlet and outlet pipe). When each airbag is inflated,At this time, the air pressure in each airbag can act on the patient's genitals. At the same time, the pressure sensor 117 will also continuously monitor the pressure inside the connecting pipe 114 connected to it, and transmit the data detected each time to the control board inside the air compressor 103 in the form of an electrical signal. When the control board receives the pressure data, it will compare the received pressure data with the pressure threshold set in advance. When the pressure data received by the control board is lower than the pressure threshold set in advance by the control board, the control board will not stop delivering compressed air to the airbag sleeve 109. On the contrary, it will close one of the solenoid valves 115 and stop delivering compressed air to the airbag sleeve 109, and issue an alarm prompt. When the deflation time arrives, the air compressor 103 will stop delivering compressed air to the hose 112 connected to it, and at the same time close one of the solenoid valves 115 and open the other solenoid valve 115. At this time, the compressed air in each airbag of the airbag sleeve 109 will pass through the connected hose 112, gather inside the corresponding connecting pipe 114, and then pass through the opened solenoid valve 115 and be discharged into the environment. When the inflation time arrives, each airbag of the airbag sleeve 109 will be inflated again and act on the patient's genitals again. In this way, the patient's genitals can be treated. When the treatment time arrives, the patient has completed the treatment operation. At this time, the air compressor 103, the two solenoid valves 115, and the pressure sensor 117 are turned off. Then, the deflated airbag sleeve 109 is removed from the patient's genitals, and then the patient's genitals can be cleaned. When it is necessary to disinfect the used airbag sleeve 109, first remove the protective plate 203 from the notch of the placement groove 202. Then, connect the controller 219 and the ozone generator 213 to the external power supply through the prepared power cords respectively. Then, turn on the controller 219 and set the concentration threshold (ozone concentration). After that, remove the sealing plate 201 from the placement groove 202. Then, by using the cooperation of the sliding groove 205 and the perforated plate 207, move the slider 206 and all the components on the top of the slider 206 until the slider 206 moves to a suitable position. Then, loosen the hand-tightened bolt 211, pull out the hanging rod 210 from the inside of the cylindrical hole 209. Finally, cover the airbag sleeve 109 on the outer surface of the cylindrical block 208, and at the same time install the hanging rod 210 back into the cylindrical hole 209 and tighten the hand-tightened bolt 211 to fix it, so that the airbag sleeve 109 can be hung up. When the hanging operation of the airbag sleeve 109 is completed, first reset the slider 206 to its original position, then install the sealing plate 201 back to its original position. Then, turn on the ozone generator 213, and then press the start button of the ozone generator 213. At the same time, use the controller 219 to turn on the concentration sensor 216. Then, the ozone generator 213 will inhale the air in the environment to produce ozone. Then, the generated ozone gas will be directly delivered into the inside of the delivery pipe 215. Then, through the cooperation of the connected round pipe 214,It is transported into the space composed of the placement groove 202, the second rectangular block 212, the first rectangular block 204 and the sealing plate 201. When ozone gas is continuously injected into this space (using ozone to disinfect the airbag sleeve 109), at this time, the concentration sensor 216 will also constantly detect the ozone concentration in this space, and transmit the concentration data detected each time to the controller 219 in the form of an electrical signal. Subsequently, the controller 219 will compare each received concentration data with the concentration threshold preset by the controller 219 in advance. When the concentration data received by the controller 219 is lower than the concentration threshold preset by the controller 219 in advance, the controller 219 will not display a stop of ozone gas injection on its screen. When the concentration data received by the controller 219 is the same as the concentration threshold preset by the controller 219 in advance, the controller 219 will display a prompt message on its screen to remind to turn off the ozone generator 213. At this time, the medical staff can turn off the ozone generator 213 and use the controller 219 to turn off the concentration sensor 216. When the airbag sleeve 109 in the above space has been disinfected for a period of time, the medical staff can use the controller 219 to open the electric valve 217. When the electric valve 217 is opened, the ozone gas in the above space will be discharged into the environment (at this time, the space where the device is located needs to be in a ventilated state) through the cooperation of another round tube 214, the opened electric valve 217 and the exhaust pipe 218. When most of the ozone gas in the above space is discharged by the exhaust pipe 218, then use the controller 219 to close the electric valve 217. At this time, remove the sealing plate 201 from the placement groove 202, then move the slider 206 to a suitable position, and then remove the disinfected airbag sleeve 109 from the hanging rod 210 and place it inside the sterile box 108 for storage.,

[0041] Among them, the two solenoid valves 115 and the pressure sensor 117 are both connected to the control board of the air compressor 103 (medical grade), and the concentration sensor 216 and the electric valve 217 are both electrically connected to the controller 219.

[0042] Among them, the pressure relief valve 116 is mainly used to release the air inside the airbag in the airbag sleeve 109 to prevent the air pressure inside the airbag from being too large and causing damage to the patient's genitals. Generally, when the pressure sensor 117 detects that the pressure data is not within the pressure threshold range preset by the control board in the air compressor 103, it releases pressure in time. When the air compressor 103 issues an alarm prompt, it generally means that the pressure relief valve 116 cannot be used normally and needs to be repaired.

[0043] Among them, the air compressor 103, the airbag sleeve 109, the solenoid valve 115, the pressure relief valve 116, the pressure sensor 117, the ozone generator 213, the concentration sensor 216, the electric valve 217 and the controller 219 are all existing technologies, and their models can be selected according to the actual situation and will not be explained in detail here.

[0044] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A pneumatic device for treating genital edema, comprising a pneumatic treatment mechanism (1), characterized in that: The air pressure treatment mechanism (1) is provided with a disinfection mechanism (2); The disinfection mechanism (2) comprises a sealing plate (201) and a placement groove (202), a protective plate (203) is slidably embedded on one side of the sealing plate (201), a first rectangular block (204) is fixed at a position near the edge of the inner wall bottom of the placement groove (202), a sliding groove (205) is provided at the top of the first rectangular block (204), a sliding block (206) is slidably connected inside the sliding groove (205), a perforated plate (207) is provided inside the sliding groove (205), a cylindrical block (208) is fixed at the top of the sliding block (206), a cylindrical hole (209) is provided on the outer surface of the cylindrical block (208) near the top, a hanging rod (210) is provided inside the cylindrical hole (209), and the cylindrical The top of the block (208) is threadedly connected with a hand-tightened bolt (211), a second rectangular block (212) is fixed inside the placement groove (202), an ozone generator (213) is installed at the bottom of the inner wall of the placement groove (202), one side of the second rectangular block (212) is fixed with two round tubes (214), one of the round tubes (214) is installed with a delivery pipe (215) at the air inlet end, one side of the second rectangular block (212) is threadedly connected with a concentration sensor (216), the other round tube (214) is installed with an electric valve (217) at the air outlet end, the electric valve (217) is installed with an exhaust pipe (218) at the air outlet end, and a controller (219) is installed on one side of the second rectangular block (212).

2. The air pressure device for genital edema according to claim 1, characterized in that: The sealing plate (201) is installed at the notch of the placement groove (202), the protective plate (203) is squeezed and fixed inside the placement groove (202) by a first screw, the protective plate (203) is located at the notch of the placement groove (202), the sealing plate (201) is installed with the second rectangular block (212) by a second screw, and the front surface of the perforated plate (207) is fixed to the surface of the slider (206).

3. The air pressure device for genital edema according to claim 1, characterized in that: The threaded end surface of the hand-tightening bolt (211) is in contact with the surface of the hanging rod (210), one side of the first rectangular block (204) is fixed to the surface of the second rectangular block (212), the detection end of the concentration sensor (216) movably penetrates one side of the second rectangular block (212), and the outlet end of the exhaust pipe (218) movably penetrates the bottom of the inner wall of the placement groove (202).

4. The air pressure device for genital edema according to claim 1, characterized in that: The pneumatic therapy mechanism (1) comprises a base (101), the four bottom corners of the base (101) are each provided with universal wheels (102), the top of the base (101) is provided with an air compressor (103), and the air outlet port of the air compressor (103) is provided with a pipe plug (104).

5. The air pressure device for genital edema according to claim 4, characterized in that: The front surface of the base (101) is provided with a storage slot (105), the placement slot (202) is provided on the rear surface of the base (101), a cover plate (106) is installed at the slot of the storage slot (105), and two symmetrical partition plates (107) are fixed inside the storage slot (105).

6. The air pressure device for genital edema according to claim 5, characterized in that: A sterile box (108) is placed inside the storage tank (105), the handle end surface of the sterile box (108) contacts the surface of the cover plate (106), and one side of the sterile box (108) contacts the surface of one of the partitions (107).

7. The air pressure device for genital edema according to claim 6, characterized in that: An airbag cover (109) is placed inside the sterile box (108), a rectangular plate (110) is fixed between opposite sides of the two partitions (107), the bottom of the rectangular plate (110) is fixed to the bottom of the inner wall of the storage tank (105), and a sponge block (111) is arranged between opposite sides of the two partitions (107).

8. The air pressure device for treating genital edema according to claim 7, characterized in that: The top of the sponge block (111) contacts the top of the inner wall of the storage tank (105), the front surface of the sponge block (111) contacts the surface of the rectangular plate (110), and a plurality of hoses (112) are arranged inside the storage tank (105), and the plurality of hoses (112) are arranged in a stacking manner.

9. The air pressure device for genital edema according to claim 8, characterized in that: The outer surface of one of the hoses (112) contacts the bottom of the sponge block (111), two concave blocks (113) are placed inside the storage tank (105), and the two concave blocks (113) are arranged in a stacking manner, and the handle end surfaces of the two concave blocks (113) are in contact with the surface of the cover plate (106).

10. The air pressure device for genital edema according to claim 9, characterized in that: A connecting pipe (114) is placed inside the two concave blocks (113), and a solenoid valve (115) is installed at the large ports of the two connecting pipes (114), a pressure relief valve (116) is installed at the bottom port of one of the connecting pipes (114), and a pressure sensor (117) is installed at the bottom port of the other connecting pipe (114).