CN212281753U - Plant surface bacterial plaque disinfection and sterilization device - Google Patents
Plant surface bacterial plaque disinfection and sterilization device Download PDFInfo
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- CN212281753U CN212281753U CN202021433060.XU CN202021433060U CN212281753U CN 212281753 U CN212281753 U CN 212281753U CN 202021433060 U CN202021433060 U CN 202021433060U CN 212281753 U CN212281753 U CN 212281753U
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Abstract
The utility model relates to a disinfection device especially relates to a plant surface bacterial plaque disinfection device. The device comprises a syringe, wherein the outlet of the syringe is connected with one end of a catheter, the other end of the catheter is communicated with the inner cavity of a sleeve, one end of a sleeve wire is connected to the sleeve, the other end of the sleeve wire is connected with one end of a direct-current power supply, the other end of the direct-current power supply is connected with one end of an implant wire, a rubber sleeve is sleeved on the sleeve from the insertion end of the sleeve, and a handle clamping sleeve is sleeved at one end of an opening of the. The utility model has the advantages of effect: plaque on the surface of the implant is cut, disinfected and sterilized through an electrochemical principle, and the implant is thoroughly cleaned, so that the bone can grow on the surface of the implant again. Grow to form new osseointegration. Meanwhile, the foaming function is achieved, and the bottom of the implant surface is cut and cleaned.
Description
Technical Field
The utility model relates to a disinfection and sterilization device especially relates to a device that is used for electrochemistry to clear away, disinfect to planting implant surface dental plaque bacterial biofilm undercut.
Background
Nowadays, as the living standard of common people is improved, more and more patients select dental implants. The dental implant is characterized in that dental plaque biomembranes are attached to the rough surface of the implant body due to poor cleaning or physiological gum atrophy of a patient in the later use process. The implant is different from natural teeth, the periodontal has three blood supplies, the gingival has rich gingival crevicular fluid with more blood supplies and antibodies, the gingival crevicular fluid is difficult to be attached to dental plaque when being washed by gingival crevicular bacteria, and the gingival atrophy is slow even if the periodontal disease is suffered. However, periodontal blood supply to dental implants is of two-fold origin, and gingival crevicular fluid and antibodies are less likely to scour gingival crevicular bacteria and require more careful maintenance, otherwise plaque attachment is more likely to result in peri-implantitis. Because the surface of the implant is rough due to peri-implantitis, once bacteria are attached, the bacteria cannot be removed through undercutting, and the bacteria grow faster. Then the dental plaque grows and breeds rapidly on the surface of the implant to destroy the interface between the implant and the bone, namely, the osseointegration, and the bone can regenerate a new bone-forming interface on the surface of the implant only by completely eliminating dental plaque bacteria biomembranes and replacing the bone powder without destroying the rough surface of the implant. However, at present, no better method is available for sterilizing the surface of the implant, namely, the screw thread, the rough surface and the dental plaque are ground and polished, so that the mechanical strength of the implant is reduced, or the implant is pulled out to form new teeth.
Disclosure of Invention
In order to solve the technical problem the utility model provides a plant surface bacterial plaque disinfection and sterilization device, the purpose is through electric current destruction bacterium cell wall, makes the bacterium cell wall break, and the cell sap leaks outward, leads to the bacterium can't carry out normal physiology metabolism and die.
In order to achieve the purpose, the utility model relates to a plant surface bacterial plaque disinfection and sterilization device, including the syringe, the syringe export is connected with pipe one end, and the other end and the sleeve inner chamber of pipe communicate with each other, and the one end of sleeve wire is connected to the sleeve, and the other end and the one end of DC power supply of sleeve wire are connected, and DC power supply's the other end and the one end of planting body wire are connected, and the rubber sleeve inserts the end cover on the sleeve from the sleeve, and the rubber sleeve opening pot head that overlaps on the sleeve has the handle centre gripping cover.
The sleeve is a hollow cylinder, the end part of the other end of the guide pipe is sleeved at one end of the metal pipe, the other end of the metal pipe is inserted on the wall of the sleeve, one end of the sleeve conducting wire is connected to the metal pipe, and the metal pipe and one end of the sleeve conducting wire are fixed on the sleeve by resin.
The center of the bottom of the rubber sleeve is provided with a hole.
The other end of the sleeve wire is connected with the negative electrode of the direct current power supply, and one end of the implant wire is connected with the positive electrode of the direct current power supply.
The handle clamping sleeve is arranged at the end part of the handle.
The handle clamping sleeve is round with an opening, and the inner diameter of the handle clamping sleeve is matched with the outer diameter of the sleeve.
The metal pipe is inserted on the sleeve wall and is close to the sleeve insertion end.
A disinfecting and sterilizing device for the bacterial plaque on the surface of an implant is composed of an injector, a connecting tube, a rubber sleeve, a handle clamping sleeve, a sleeve, an implant, a DC power supply, and a handle holder.
The disinfectant is sodium chloride solution, sodium iodide solution or potassium iodide solution.
The utility model has the advantages of effect: because the rubber sleeve isolates the electrochemical reaction liquid, the liquid can be various disinfectants, the generated harmful substances and gas substances are effectively isolated, a large amount of CL2 and hypochlorous acid are generated on the surface of the anode of the implant, a large amount of bubbles are generated at the cathode, the hypochlorous acid generated by the cell wall of the bacteria simultaneously enters the cytoplasm of the bacteria by the electrochemical principle, meanwhile, the rough surface of the implant is not damaged, and the bottom cutting effect is realized on the bacteria. Therefore, plaque on the surface of the implant is cut, disinfected and sterilized through the electrochemical principle, and the implant is thoroughly cleaned, so that the bone can grow on the surface of the implant again. Grow to form new osseointegration. Meanwhile, the foaming function is achieved, and the bottom of the implant surface is cut and cleaned.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the handle clamping sleeve fixing the rubber sleeve on the sleeve.
Fig. 3 is a schematic view of the sleeve being fitted over the implant.
In the figure: 1. an injector; 2. a conduit; 3. a sleeve; 4. a sleeve wire; 5. a direct current power supply; 6. an implant lead; 7. a rubber sleeve; 8. a handle clamping sleeve; 9. a metal tube; 10. a resin; 11. an aperture; 12. a handle; 13. an implant; 14. and (4) a reaction tank.
Detailed Description
The present invention will be further described with reference to the accompanying drawings, but the described embodiments of the present invention do not limit the scope of the present invention.
As shown in the figure, the utility model relates to a plant surface bacterial plaque disinfection and isolation device, including syringe 1, syringe 1 export is connected with 2 one end of pipe, and the other end and the 3 inner chambers of sleeve of pipe 2 communicate with each other, and the one end of sleeve wire 4 is connected to sleeve 3, and the other end and the one end of DC power supply 5 of sleeve wire 4 are connected, and DC power supply 5's the other end is connected with the one end of planting body wire 6, and rubber sleeve 7 inserts the end cover from the sleeve on sleeve 3, and 7 opening pot heads of rubber sleeve on sleeve 3 have handle grip cover 8.
The sleeve 3 is a hollow cylinder and is made of insulating materials. The other end of the guide tube 2 is sleeved at one end of a metal tube 9, the other end of the metal tube 9 is inserted on the wall of the sleeve 3, one end of the sleeve lead 4 is connected to the metal tube 9, the metal tube 9 and one end of the sleeve lead 4 are sealed and fixed on the sleeve 3 by resin 10, the metal tube 9 is completely sealed by the resin 10, and the metal tube 9 is a copper tube.
The center of the bottom of the rubber sleeve 7 is provided with a hole 11, and the side surface of the rubber sleeve 11 is provided with an opening so that the rubber sleeve can conveniently penetrate through the metal pipe when being sleeved on the sleeve.
The other end of the sleeve lead 4 is connected with the negative pole of the direct current power supply 5, and one end of the implant lead 6 is connected with the positive pole of the direct current power supply 5.
The handle clamping sleeve 8 is arranged at the end part of the handle 12.
The handle clamping sleeve 8 is round with an opening, and the inner diameter of the handle clamping sleeve 8 is matched with the outer diameter of the sleeve 3.
The metal tube 9 is inserted on the wall of the sleeve 3 at a position close to the insertion end of the sleeve.
A method for using a device for disinfecting and sterilizing dental plaque on the surface of an implant comprises the steps of sucking a disinfectant into a syringe 1, connecting a catheter 2, sleeving a rubber sleeve 7 on a sleeve 3 from the sleeve insertion end, sleeving a handle clamping sleeve 8 at one end of an opening of the rubber sleeve on the sleeve 3, moving a handle 12 to insert the sleeve onto an implant 13, enabling the implant 13 to penetrate through a hole 11 of the rubber sleeve 7, placing the other end of an implant lead 6 on the implant 13, injecting liquid in the syringe 1 into the sleeve 3, enabling the other end of the implant lead 6 to be in contact with the implant 13, and switching on a direct-current power supply 5. The disinfectant is sodium chloride solution, sodium iodide solution or potassium iodide solution.
The utility model discloses sleeve 3 and 7 bottoms of rubber sleeve form a container reaction tank 14, because rubber sleeve 7 has elasticity, with 11 covers of trompil tight in the planting body of pollution, the planting body passes from hole 11, form between rubber sleeve 7, sleeve 3 and the planting body 13 sealedly, liquid is in this reaction tank, because the tubular metal resonator circular telegram, takes place electrochemical sterilization between liquid circular telegram in the messenger reaction tank and the planting body. Meanwhile, gas and liquid generated in the reaction tank can be sucked away by strong suction in the dental treatment chair, or the syringe can be pumped away.
Claims (7)
1. The utility model provides an implant surface bacterial plaque disinfection and sterilization device which characterized in that includes the syringe, and the syringe export is connected with pipe one end, and the other end of pipe communicates with each other with the sleeve inner chamber, and the one end of sleeve wire is connected to the sleeve, and the other end of sleeve wire is connected with DC power supply's one end, and DC power supply's the other end is connected with the one end of implant wire, and the rubber sleeve is inserted the end cover on the sleeve from the sleeve, and the rubber sleeve opening one end cover that overlaps on the sleeve has the handle centre gripping.
2. The apparatus according to claim 1, wherein the sleeve is a hollow cylinder, the other end of the guide tube is sleeved on one end of a metal tube, the other end of the metal tube is inserted into the wall of the sleeve, one end of the sleeve wire is connected to the metal tube, and one ends of the metal tube and the sleeve wire are fixed to the sleeve by resin.
3. The device according to claim 1, wherein the bottom of the rubber sleeve has a hole at its center.
4. The device according to claim 1, wherein the other end of the wire of the sleeve is connected to the negative pole of the DC power supply, and one end of the wire of the implant is connected to the positive pole of the DC power supply.
5. The device according to claim 1, wherein the handle is clamped at the end of the handle.
6. The device according to claim 5, wherein the handle grip is circular and has an inner diameter matching the outer diameter of the sleeve.
7. The apparatus according to claim 2, wherein the metal tube is inserted into the wall of the sleeve at a position close to the insertion end of the sleeve.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021433060.XU CN212281753U (en) | 2020-07-21 | 2020-07-21 | Plant surface bacterial plaque disinfection and sterilization device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021433060.XU CN212281753U (en) | 2020-07-21 | 2020-07-21 | Plant surface bacterial plaque disinfection and sterilization device |
Publications (1)
Publication Number | Publication Date |
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CN212281753U true CN212281753U (en) | 2021-01-05 |
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CN202021433060.XU Active CN212281753U (en) | 2020-07-21 | 2020-07-21 | Plant surface bacterial plaque disinfection and sterilization device |
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CN (1) | CN212281753U (en) |
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2020
- 2020-07-21 CN CN202021433060.XU patent/CN212281753U/en active Active
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