Traditional Chinese medicine tumor local thermal therapy equipment

By designing a combination of thermoelectric refrigeration tablets and semicircular copper covers for local thermal therapy equipment in traditional Chinese medicine, the sealing and cold compress functions are realized, solving the problems of external pollutants entering and discomfort in thermal therapy, and improving the effect of thermal therapy and patient comfort.

CN120284585AInactive Publication Date: 2025-07-11JIAMUSI TRADITIONAL CHINESE MEDICINE HOSPITAL
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Patent Information

Application Number
CN202510589784.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-07-11
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing local tumor thermal therapy equipment does not have the ability to seal the patient's thermal therapy area, causing bacteria, viruses or other contaminants in the external environment to enter the treatment area, reducing the effect of thermal therapy, and the patient will feel discomfort after thermal therapy, and traditional equipment cannot relieve the discomfort.

Method used

A local thermal therapy device for tumors in traditional Chinese medicine is designed, including a local ring plate, a fixed insulation cover, a thermal radiation treatment mechanism and a cold compress relief mechanism. The combination of thermoelectric refrigeration sheet and a semicircular copper cover is adopted to achieve sealing and cold compress functions. Thermal therapy is performed by heating the thermal conductor sheet by thermoelectric refrigeration sheet. The semicircular copper cover cools down and prevents leakage, the water-absorbing cotton layer absorbs sweat, the disassembly plate and elastic band fixes, and the semicircular copper cover flips over to relieve discomfort.

Benefits of technology

Performing thermal therapy in a relatively sealed environment reduces the risk of external pollutants entering, improves the effect of thermal therapy, and relieves patients' discomfort through cold compresses, improving the efficiency of thermal therapy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of medical instruments, and particularly relates to traditional Chinese medicine tumor local thermal therapy equipment. Comprising a local annular plate, a fixed heat preservation cover, a heat radiation treatment mechanism and a cold compress type relieving mechanism, the fixed heat preservation cover is arranged on the upper wall of the local annular plate in a penetrating mode, the heat radiation treatment mechanism is arranged on the inner wall of the local annular plate, and the cold compress type relieving mechanism is arranged on the side wall of the local annular plate. The thermal radiation treatment mechanism comprises a heat source mechanism, a cold insulation mechanism and a water blocking mechanism. According to the traditional Chinese medicine tumor local thermal therapy equipment, bacteria, viruses or other pollutants in the external environment can be prevented from entering a treatment area, the infection risk is reduced, and cold compress relieving can be conducted on the portion, subjected to thermal therapy, of a patient.
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Description

Technical Field

[0001] The present invention belongs to the technical field of medical devices, and specifically refers to a traditional Chinese medicine tumor local hyperthermia device. Background Art

[0002] In tumor treatment, using a chemo-hyperthermia device to perform chemo-hyperthermia on the diseased part of a patient is one of the common treatment plans. Chemo-hyperthermia refers to a new therapy that combines chemotherapy and hyperthermia to treat tumors. Its principle is to use physical energy to heat chemotherapy drugs with good hyperthermic effects, so that the temperature of the tumor tissue rises to an effective treatment temperature and is maintained for a certain period of time. By utilizing the difference in temperature tolerance between normal tissues and tumor cells, the treatment purpose of enabling tumor cells to apoptosis without damaging normal tissues can be achieved.

[0003] Currently, the existing tumor local hyperthermia devices have the following problems: The existing local hyperthermia devices do not have the function of sealing the hyperthermia part of the patient, resulting in bacteria, viruses or other pollutants in the external environment entering the treatment area during the hyperthermia process of the patient, reducing the hyperthermia effect on the patient. Secondly, the hyperthermia part of the patient will feel uncomfortable after hyperthermia, and the traditional hyperthermia devices do not have the function of relieving the discomfort of the hyperthermia part of the patient. Summary of the Invention

[0004] In view of the above situation, to overcome the defects of the prior art, this solution provides a traditional Chinese medicine tumor local hyperthermia device that can prevent bacteria, viruses or other pollutants in the external environment from entering the treatment area, reduce the risk of infection, and can perform cold compress relief on the part of the patient after hyperthermia.

[0005] The technical solution adopted in this solution is as follows: A traditional Chinese medicine tumor local hyperthermia device proposed in this solution includes a local ring plate, a fixed heat preservation cover, a heat radiation treatment mechanism and a cold compress type relief mechanism. The fixed heat preservation cover is arranged on the upper wall of the local ring plate. The fixed heat preservation cover is provided with a through hole. The heat radiation treatment mechanism is arranged on the inner wall of the local ring plate. The cold compress type relief mechanism is arranged on the side wall of the local ring plate. The heat radiation treatment mechanism includes a heat source mechanism, a cold preservation mechanism and a water blocking mechanism. The heat source mechanism is arranged on the inner wall of the local ring plate. The cold preservation mechanism is arranged on the heat source mechanism. The water blocking mechanism is arranged on the bottom wall of the local ring plate. The cold compress type relief mechanism includes a disassembly cover mechanism and a binding mechanism. The disassembly cover mechanism is arranged on the upper wall of the fixed heat preservation cover. The binding mechanism is arranged on the upper wall of the disassembly cover mechanism.

[0006] As a further optimization of the solution of this case, the heat source mechanism includes a heat insulation plate, a heat source port, a thermoelectric cooler and a heat conduction plate. The heat insulation plate is arranged on the inner wall of the local ring plate. A plurality of groups of the heat source ports are arranged on the upper wall. The thermoelectric cooler is arranged on the inner wall of the heat source port. The heat conduction plate is arranged on the heating end of the thermoelectric cooler. The cold insulation mechanism includes a cold conduction plate and a semi-circular copper cover. The cold conduction plate is arranged on the cooling end of the thermoelectric cooler. The semi-circular copper cover is arranged on the upper wall of the local ring plate inside the fixed heat insulation cover. The water blocking mechanism includes a sealing gasket, a cooling port, a cooling copper rod, a water absorption cotton layer and a heat insulation coating. The sealing gasket is arranged on the bottom wall of the local ring plate. A plurality of groups of the cooling ports are arranged on the bottom wall of the sealing gasket. The cooling copper rod penetrates through the local ring plate and the fixed heat insulation cover and is arranged between the cooling port and the semi-circular copper cover. The water absorption cotton layer is arranged on the bottom wall of the local ring plate inside the sealing gasket. The heat insulation coating is arranged on the outer side of the cooling copper rod.

[0007] During use, the local ring plate drives the sealing gasket to fit with the local part of the patient to be heat-treated. The thermoelectric cooler heats the heat conduction plate through the heating end. After the temperature of the heat conduction plate rises, it performs heat treatment on the local part of the patient. The cooling end of the thermoelectric cooler cools the semi-circular copper cover through the cold conduction plate. The temperature of the semi-circular copper cover decreases and cools the cooling copper rod. The cooling copper rod cools the part of the patient in contact with the sealing gasket, preventing sweat from being generated on the part of the patient's skin in contact with the sealing gasket. The infiltration of moisture will cause the sealing performance of the sealing gasket to decline, resulting in leakage or seepage. Furthermore, it can effectively prevent bacteria, viruses or other pollutants in the external environment from entering the treatment area and reduce the risk of infection. The water absorption cotton layer surrounds the heat treatment area. When the sweat generated by the heat treatment area flows around, it can be adsorbed by the water absorption cotton layer, thereby ensuring the sealing degree of the contact part between the sealing gasket and the patient's skin.

[0008] Preferably, the cover removal mechanism includes a detachable heat insulation cover, a removal plate and a fixing bolt. The detachable heat insulation cover is arranged at one end of the semi-circular copper cover away from the fixed heat insulation cover. The detachable heat insulation cover is snap-fitted on the upper wall of the semi-circular copper cover. The removal plate is arranged on the upper wall of the detachable heat insulation cover. The fixing bolt penetrates through the detachable heat insulation cover and is arranged on the upper wall of the removal plate. The end of the fixing bolt away from the removal plate is arranged inside the semi-circular copper cover. The fixing bolt is threadedly connected to the semi-circular copper cover. The binding mechanism includes a fixing block and an elastic band. The fixing blocks are symmetrically arranged on both sides of the removal plate. The fixing blocks are threadedly connected to the removal plate. The elastic band is arranged between the fixing blocks.

[0009] During use, rotate the fixed block at one end of the disassembly plate. The fixed block is unscrewed from the side wall of the disassembly plate. The fixed block winds around the patient's body through the elastic deformation of the elastic band. The wound fixed block is then screwed into the side wall of the disassembly plate again. Through the elasticity of the elastic band, the local ring plate can be fixed on the part of the patient to be thermally treated. When the patient has completed thermotherapy, rotate the fixing bolt, and the fixing bolt is unscrewed from the inside of the semi-circular copper cover. The disassembly plate drives the detachable heat insulation cover away from the upper wall of the semi-circular copper cover. Subsequently, the medical staff flips the local ring plate, and the local ring plate drives the semi-circular copper cover to come into contact with the part of the patient where thermotherapy has been performed, alleviating the discomfort caused by thermotherapy.

[0010] Specifically, a controller is provided on the upper wall of the local ring plate.

[0011] Among them, the controller is electrically connected to the thermoelectric cooler.

[0012] Preferably, the model of the thermoelectric cooler is TEC1-03104.

[0013] The beneficial effects achieved by this solution with the above structure are as follows: Compared with the prior art, this solution adopts the methods of cold sealing and cold alleviation. Through the provided thermal radiation treatment mechanism and cold compress type alleviation mechanism, with the coordinated use of the heat source mechanism, cold insulation mechanism, water blocking mechanism, cover removal mechanism, and binding mechanism, the local thermotherapy of the patient can be carried out in a relatively sealed environment, reducing the probability of bacteria in the external environment entering the thermotherapy area of the patient, ensuring the effect of thermotherapy, and through the disassembly of the detachable heat insulation cover and flipping the semi-circular copper cover to come into contact with the thermotherapy part of the patient, it can alleviate the discomfort of the patient during thermotherapy, thereby improving the local thermotherapy efficiency of the patient to a certain extent. Description of the Drawings

[0014] Figure 1 is the overall structural schematic diagram of this solution; Figure 2 is the bottom perspective view of this solution; Figure 3 is the front view of this solution; Figure 4 is the top view of this solution; Figure 5 is the bottom view of this solution; Figure 6 is Figure 4 the sectional view of part A-A of Figure 7 is Figure 2 the enlarged structural view of part I of

[0015] Among them, 1. Local ring plate, 2. Fixed heat insulation cover, 3. Controller, 4. Thermal radiation therapy mechanism, 5. Heat source mechanism, 6. Heat insulation plate, 7. Heat source port, 8. Thermoelectric cooler, 9. Heat conducting sheet, 10. Cold preservation mechanism, 11. Cold conducting sheet, 12. Semi-circular copper cover, 13. Water blocking mechanism, 14. Sealing gasket, 15. Cooling port, 16. Cooling copper rod, 17. Absorbent cotton layer, 18. Heat insulation coating, 19. Cold compress type relief mechanism, 20. Cover removal mechanism, 21. Removable heat insulation cover, 22. Removable plate, 23. Fixed bolt, 24. Binding mechanism, 25. Fixed block, 26. Elastic band.

[0016] The attached drawings are used to provide a further understanding of the solution and constitute a part of the description. Together with the embodiments of the solution, they are used to explain the solution and do not constitute a limitation to the solution. Detailed implementation manners

[0017] Next, the technical solutions in the embodiments of the solution will be clearly and completely described in conjunction with the attached drawings in the embodiments of the solution. Obviously, the described embodiments are only a part of the embodiments of the solution, rather than all the embodiments; based on the embodiments in the solution, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the solution.

[0018] In the description of the solution, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. indicating the orientation or position relationship are based on the orientation or position relationship shown in the attached drawings, and are only for the convenience of describing the solution and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the solution.

[0019] As Figures 1-7 shown, a traditional Chinese medicine tumor local hyperthermia device proposed by the solution includes a local ring plate 1, a fixed heat insulation cover 2, a thermal radiation therapy mechanism 4 and a cold compress type relief mechanism 19. The fixed heat insulation cover 2 is arranged on the upper wall of the local ring plate 1, the fixed heat insulation cover 2 is arranged in a through manner, the thermal radiation therapy mechanism 4 is arranged on the inner wall of the local ring plate 1, the cold compress type relief mechanism 19 is arranged on the side wall of the local ring plate 1, the thermal radiation therapy mechanism 4 includes a heat source mechanism 5, a cold preservation mechanism 10 and a water blocking mechanism 13. The heat source mechanism 5 is arranged on the inner wall of the local ring plate 1, the cold preservation mechanism 10 is arranged on the heat source mechanism 5, the water blocking mechanism 13 is arranged on the bottom wall of the local ring plate 1, the cold compress type relief mechanism 19 includes a cover removal mechanism 20 and a binding mechanism 24. The cover removal mechanism 20 is arranged on the upper wall of the fixed heat insulation cover 2, and the binding mechanism 24 is arranged on the upper wall of the cover removal mechanism 20.

[0020] The heat source mechanism 5 includes a heat insulation plate 6, a heat source port 7, a thermoelectric cooler 8, and a heat conducting plate 9. The heat insulation plate 6 is arranged on the inner wall of the local ring plate 1. A plurality of groups of the heat source ports 7 are arranged on the upper wall. The thermoelectric cooler 8 is arranged on the inner wall of the heat source port 7. The heat conducting plate 9 is arranged at the heating end of the thermoelectric cooler 8. The cold preservation mechanism 10 includes a cold conducting plate 11 and a semi-circular copper cover 12. The cold conducting plate 11 is arranged at the cooling end of the thermoelectric cooler 8. The semi-circular copper cover 12 is arranged on the upper wall of the local ring plate 1 inside the fixed heat preservation cover 2. The water blocking mechanism 13 includes a sealing gasket 14, a cooling port 15, a cooling copper rod 16, a water absorbing cotton layer 17, and a heat preservation coating 18. The sealing gasket 14 is arranged on the bottom wall of the local ring plate 1. A plurality of groups of the cooling ports 15 are arranged on the bottom wall of the sealing gasket 14. The cooling copper rod 16 penetrates through the local ring plate 1 and the fixed heat preservation cover 2 and is arranged between the cooling port 15 and the semi-circular copper cover 12. The water absorbing cotton layer 17 is arranged on the bottom wall of the local ring plate 1 inside the sealing gasket 14. The heat preservation coating 18 is arranged on the outer side of the cooling copper rod 16.

[0021] The cover removing mechanism 20 includes a detachable heat preservation cover 21, a dismounting plate 22, and a fixing bolt 23. The detachable heat preservation cover 21 is arranged at one end of the semi-circular copper cover 12 away from the fixed heat preservation cover 2. The detachable heat preservation cover 21 is snap-fitted on the upper wall of the semi-circular copper cover 12. The dismounting plate 22 is arranged on the upper wall of the detachable heat preservation cover 21. The fixing bolt 23 penetrates through the detachable heat preservation cover 21 and is arranged on the upper wall of the dismounting plate 22. The end of the fixing bolt 23 away from the dismounting plate 22 is arranged inside the semi-circular copper cover 12. The fixing bolt 23 is threadedly connected with the semi-circular copper cover 12. The binding mechanism 24 includes a fixing block 25 and an elastic band 26. The fixing blocks 25 are symmetrically arranged on both sides of the dismounting plate 22. The fixing blocks 25 are threadedly connected with the dismounting plate 22. The elastic band 26 is arranged between the fixing blocks 25.

[0022] A controller 3 is arranged on the upper wall of the local ring plate 1.

[0023] The controller 3 is electrically connected with the thermoelectric cooler 8.

[0024] The model of the thermoelectric cooler 8 is TEC1-03104.

[0025] During specific use, when local heat therapy operation needs to be performed on a patient, manually rotate the fixing block 25 at one end of the dismounting plate 22. The fixing block 25 is unscrewed from the side wall of the dismounting plate 22, stretch the elastic band 26, and the fixing block 25 winds around the patient's body through the elastic deformation of the elastic band 26. Then, screw the fixing block 25 after winding around the patient's body back into the side wall of the dismounting plate 22. Through the elasticity of the elastic band 26, the local ring plate 1 is fixed on the part of the patient to be heat-treated. The local ring plate 1 drives the gasket 14 to fit with the local part of the patient to be thermally treated. The controller 3 controls the thermoelectric cooler 8 to start. The thermoelectric cooler 8 heats the heat conducting plate 9 through the heating end. After the temperature of the heat conducting plate 9 rises, it performs thermotherapy on the local part of the patient. Since the infiltration of moisture will cause the sealing performance of the gasket 14 to decline, resulting in leakage or seepage, the cooling end of the thermoelectric cooler 8 cools the semi-circular copper cover 12 through the cold conducting plate 11. The temperature of the semi-circular copper cover 12 decreases and cools the cooling copper rod 16. The cooling copper rod 16 cools the part of the patient in contact with the gasket 14, preventing sweat from being generated on the part of the patient's skin in contact with the gasket 14. Furthermore, it can effectively prevent bacteria, viruses or other pollutants in the external environment from entering the treatment area and reduce the risk of infection. The water-absorbing cotton layer 17 surrounds the thermotherapy part. When the sweat generated by the thermotherapy part flows around, it can be adsorbed by the water-absorbing cotton layer 17, thereby ensuring the sealing degree of the contact part between the gasket 14 and the patient's skin; After the patient's thermotherapy, manually rotate the fixing bolt 23. The fixing bolt 23 is screwed out from the inside of the semi-circular copper cover 12. The disassembly plate 22 drives the detachable heat insulation cover 21 away from the upper wall of the semi-circular copper cover 12. Subsequently, the medical staff flips the local ring plate 1, and the local ring plate 1 drives the semi-circular copper cover 12 to contact the thermotherapy part of the patient, relieving the discomfort caused by thermotherapy; Just repeat the above operations when using it next time.

[0026] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0027] The above describes the present solution and its implementation manners. This description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present solution, and the actual structure is not limited thereto. All in all, if those of ordinary skill in the art are inspired by it and design similar structural manners and embodiments without creative work without departing from the creative purpose of the present solution, they should all fall within the protection scope of the present solution.

Claims

1. A local hyperthermia device for traditional Chinese medicine tumors, comprising a local ring plate and a fixed heat preservation cover, characterized in that: It also includes a thermal radiation treatment mechanism and a cold compress type relief mechanism. The fixed heat preservation cover is arranged on the upper wall of the local ring plate, and the fixed heat preservation cover is arranged in a through manner; The thermal radiation treatment mechanism includes a heat source mechanism, a cold preservation mechanism and a water blocking mechanism; The heat source mechanism is arranged on the inner wall of the local ring plate, the cold preservation mechanism is arranged on the heat source mechanism, and the water blocking mechanism is arranged on the bottom wall of the local ring plate; The cold compress type relief mechanism includes a cover removing mechanism and a binding mechanism; The cover removing mechanism is arranged on the upper wall of the fixed heat preservation cover, and the binding mechanism is arranged on the upper wall of the cover removing mechanism; The cold preservation mechanism includes a semi-circular copper cover, and the semi-circular copper cover is arranged on the upper wall of the local ring plate inside the fixed heat preservation cover; The water blocking mechanism includes a sealing gasket, a cooling port, a cooling copper rod, a water absorption cotton layer and a heat preservation coating; The sealing gasket is arranged on the bottom wall of the local ring plate, multiple groups of the cooling ports are arranged on the bottom wall of the sealing gasket, the cooling copper rod penetrates through the local ring plate and the fixed heat preservation cover and is arranged between the cooling port and the semi-circular copper cover, the water absorption cotton layer is arranged on the bottom wall of the local ring plate inside the sealing gasket, and the heat preservation coating is arranged on the outer side of the cooling copper rod.

2. The local hyperthermia device for traditional Chinese medicine tumor according to claim 1, characterized in that: The heat source mechanism includes a heat insulation plate, a heat source port, a thermoelectric cooling sheet and a heat conducting sheet. The heat insulation plate is arranged on the inner wall of the local ring plate, multiple groups of the heat source ports are arranged on the upper wall, the thermoelectric cooling sheet is arranged on the inner wall of the heat source port, and the heat conducting sheet is arranged on the heating end of the thermoelectric cooling sheet.

3. The local hyperthermia device for traditional Chinese medicine tumor according to claim 2, wherein: The cold preservation mechanism further includes a cold conducting sheet, and the cold conducting sheet is arranged on the cooling end of the thermoelectric cooling sheet.

4. The local hyperthermia device for traditional Chinese medicine tumor according to claim 1, characterized in that: The cover removing mechanism includes a detachable heat preservation cover, a disassembly plate and a fixing bolt. The detachable heat preservation cover is arranged at one end of the semi-circular copper cover away from the fixed heat preservation cover, and the detachable heat preservation cover is snap-fitted on the upper wall of the semi-circular copper cover.

5. The local hyperthermia device for traditional Chinese medicine tumor according to claim 4, characterized in that: The disassembly plate is arranged on the upper wall of the detachable heat preservation cover, the fixing bolt penetrates through the detachable heat preservation cover and is arranged on the upper wall of the disassembly plate, and the end of the fixing bolt away from the disassembly plate is arranged inside the semi-circular copper cover. The fixing bolt is threadedly connected with the semi-circular copper cover.

6. The local hyperthermia device for traditional Chinese medicine tumor according to claim 4, characterized in that: The binding mechanism includes a fixing block and an elastic band. The fixing blocks are symmetrically arranged on both sides of the disassembly plate, the fixing blocks are threadedly connected with the disassembly plate, and the elastic band is arranged between the fixing blocks.

7. A local hyperthermia device for traditional Chinese medicine tumors according to claim 1, characterized in that: A controller is arranged on the upper wall of the local ring plate.

8. The local hyperthermia device for traditional Chinese medicine tumor according to claim 7, characterized in that: The controller is electrically connected with the thermoelectric cooling sheet.