Thermal therapy equipment for accelerating cell metabolism and therapy thereof
By integrating skin cleaning and electrolyte water circulation into the thermal therapy equipment, the problems of poor conductivity and inconvenience in cleaning of traditional thermal therapy equipment are solved, a more efficient and safer thermal therapy effect is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202510858465.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2025-09-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional thermal therapy equipment has problems such as poor conductivity, inconvenient cleaning and low treatment comfort during use, and fails to effectively solve the problem of dirt on the skin surface affecting the thermal therapy effect and hygiene safety.
A thermal therapy device that integrates skin cleansing, electrolyte water circulation flushing and synchronous thermal therapy is designed. By setting a skin cleaning mechanism on the therapy head, including a transmission turntable, a brushing plate, a water storage pot and a motor, mechanical brushing of the skin and automatic circulation supply and recovery of electrolyte water are achieved, thereby improving skin cleanliness and conductivity.
It significantly improves skin cleanliness, ensures the stability and safety of the thermal therapy effect, solves the problems of conductive gel drying and clumping and skin allergies in traditional thermal therapy, and improves the comfort and hygiene of the treatment process.
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Figure CN120643366A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of physiotherapy instruments, in particular to a thermotherapy device for accelerating cell metabolism and a therapy thereof. Background Art
[0002] With the advancement of modern medical technology, hyperthermia, as a physical therapy method, has been widely used in a variety of fields, including promoting blood circulation, relieving muscle pain, improving local metabolism, and assisting rehabilitation. Traditional hyperthermia devices typically heat the skin through electrodes or heating elements to accelerate cellular metabolism. However, in practical applications, existing technologies still have many shortcomings.
[0003] First, during use, conventional thermotherapy devices often accumulate dirt such as sweat, oil, and metabolic products on the skin surface, which affects the electrical conductivity between the electrodes and the skin, resulting in unstable thermotherapy effects. To improve conductivity, existing devices often use a conductive gel. However, this method has problems such as the gel drying and clumping easily, being difficult to clean, and potentially causing skin allergies, affecting user experience and treatment comfort.
[0004] Secondly, existing hyperthermia devices mostly focus on heat conduction, neglecting pre-treatment skin cleansing. Skin surface cleanliness directly impacts the efficiency of hyperthermia energy transfer and treatment effectiveness. Performing hyperthermia without cleaning the skin not only reduces contact between the electrodes and the skin but can also lead to local bacterial growth, increasing the risk of infection and compromising treatment safety. Therefore, a hyperthermia device and treatment method that accelerates cellular metabolism is needed to address these issues. Summary of the Invention
[0005] The purpose of the present invention is to provide a thermal therapy device and its therapy for accelerating cell metabolism, which has the advantages of integrated skin cleansing, electrolyte water circulation flushing and synchronous thermal therapy, and solves the problems of poor conductivity, inconvenience in cleaning and low treatment comfort of traditional equipment.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: a thermal therapy device for accelerating cell metabolism, comprising a main unit, a therapy head and a touch screen controller, wherein the therapy head is provided with a skin cleaning mechanism;
[0007] The touch screen controller is installed at the upper end of the host, and the physiotherapy head is electrically connected to the host through a wire. The physiotherapy head includes a handle, an electrode and a switch. The side end face of the handle is provided with a physiotherapy suction cup, and the electrode is installed on the physiotherapy suction cup. The skin cleaning mechanism includes a transmission turntable, a motor, a brush and a filter cartridge and a water storage pot. The transmission turntable is installed in the physiotherapy suction cup and is rotatably connected to it. The motor is fixedly installed in the handle to drive the transmission turntable. The brush and the filter cartridge are detachably installed on the transmission turntable. The water pot and the filter cartridge are detachably installed on the physiotherapy head.
[0008] As a preferred thermal therapy device for accelerating cell metabolism of the present invention, an annular groove is provided on the therapy suction cup, the transmission turntable is installed in the annular groove and is rotatably connected to the therapy suction cup, a first gear is provided on the output shaft of the motor, and a gear ring meshing with the first gear is provided on the side end face of the transmission turntable.
[0009] As a preferred thermal therapy device for accelerating cell metabolism of the present invention, a magnetic head is provided on the back of the brushing disc, a magnetic groove cooperating with the magnetic head is provided on the front end face of the transmission turntable, and a scraper is provided on the front end face of the brushing disc, and the scraper is made of silicone material.
[0010] As a preferred thermal therapy device for accelerating cell metabolism of the present invention, the handle is provided with a kettle interface at the end away from the electrode sheet, the inner end face of the kettle interface is provided with an internal thread, the water storage kettle is installed in the kettle interface and is threadedly connected to it, the kettle interface is provided with a liquid supply channel for the therapy suction cup, the handle is provided with a piston cavity, and the bottom of the piston cavity is provided with a first return flow channel connected to the therapy suction cup and a second return flow channel connected to the kettle interface.
[0011] As a preferred thermal therapy device for accelerating cell metabolism of the present invention, a slidingly connected piston plate is provided in the piston chamber, a first one-way valve is provided in the first return flow channel, a second one-way valve is provided in the second return flow channel, and a third one-way valve is provided in the liquid supply flow channel.
[0012] As a preferred thermal therapy device for accelerating cell metabolism of the present invention, a connecting rod is provided on the upper end face of the piston plate, a first limit plate is provided on the top of the connecting rod, a second limit plate is provided on the inner end face of the piston cavity, a spring is sleeved on the connecting rod, and the spring is located between the first limit plate and the second limit plate, a rotatably connected cam is provided in the piston cavity, and the bottom of the cam is kept in contact with the first limit plate.
[0013] As a preferred thermal therapy device for accelerating cell metabolism of the present invention, the side end face of the cam is provided with a transmission shaft rotatably connected to the handle, and the end of the transmission shaft away from the cam is provided with a second gear meshing with the gear ring.
[0014] As a preferred thermotherapy device for accelerating cell metabolism of the present invention, the filter cartridge is provided with a docking nozzle which is interference-connected with the second recirculation channel, and the side end surface of the filter cartridge is evenly provided with filter holes.
[0015] As a preferred thermal therapy device for accelerating cell metabolism of the present invention, the inner wall of the filter cartridge is provided with a check bucket, the check bucket is a conical structure, the end of the filter cartridge is provided with a screw hole, a cleaning cover connected by a thread is provided in the screw hole, and a vertical plate is provided on the cleaning cover.
[0016] A hyperthermia method for accelerating cell metabolism comprises the following steps:
[0017] Step 1: Prepare the equipment, fill the water tank with electrolyte water, install the filter cartridge, and set the appropriate parameters through the touch screen controller;
[0018] Step 2: Pre-treat the skin by placing the therapy suction cup on the skin, turning on the motor, and scraping the skin with the brush while rinsing with electrolyte water to clean the skin surface.
[0019] Step 3: Heat therapy begins. Press the switch to start the electrode heat therapy. The device simultaneously keeps the water circulating and the skin clean.
[0020] Step 4: After the heat treatment is completed, turn off the equipment, remove the brush plate and filter cartridge for cleaning, empty the water reservoir, rinse the handle, and finally disinfect the equipment.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. The present invention uses a motor built into the handle to drive the rotation of the transmission turntable in the therapy suction cup, and a brushing disc with a silicone scraper is detachably installed on the transmission turntable. This structure simultaneously realizes mechanical brushing of the skin around the therapy area during heat therapy. On the one hand, this effectively promotes local blood circulation through friction and stimulation of meridians, and helps accelerate metabolism; on the other hand, the brushing action directly removes secretions and metabolites on the skin surface, significantly improving the skin cleanliness of the treatment area, solving the problem that incomplete skin cleaning in traditional heat therapy may affect the electrode contact effect and hygiene, and creating a cleaner and more effective skin environment for subsequent heat therapy.
[0023] 2. The present invention provides a water storage pot with a threaded connection on the handle, and the handle has a built-in piston pump composed of a piston plate, a one-way valve, a cam and a spring, as well as a liquid supply and return flow channel between the physical therapy suction cup and the water pot interface. This structure realizes the automatic circulation supply and recovery of electrolyte water. While driving the brush sweeping disk, the motor drives the cam through gear linkage, driving the piston to reciprocate, and continuously pumping the electrolyte water in the water storage pot to between the physical therapy suction cup and the skin, and then returning to the water storage pot after filtering through the return flow channel and the detachable filter cartridge. This circulation system not only improves the electrical conductivity of the electrode sheet and the skin, ensuring the thermal therapy effect, but more importantly, it continuously rinses the skin, washes away the stains swept out by the brush and the metabolites produced by the metabolic process, and solves the problem of traditional conductive gel easily drying and agglomerating, adhering to the skin and causing itching and discomfort, and greatly improves the comfort and hygiene of the treatment process. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0025] Figure 2 This is a structural diagram of the physiotherapy head of the present invention;
[0026] Figure 3 An exploded view of the physiotherapy head of the present invention;
[0027] Figure 4 This is a top view of the physiotherapy head of the present invention;
[0028] Figure 5 For the present invention Figure 4 Middle AA section;
[0029] Figure 6 For the present invention Figure 5 Enlarged view of point B in the middle;
[0030] Figure 7 For the present invention Figure 6 Enlarged view of point C in the middle;
[0031] Figure 8 Schematic diagram of the cross-sectional structure of the filter cartridge of the present invention;
[0032] Figure 9 This is a schematic diagram of the structure of the brush sweeping disc of the present invention;
[0033] Figure 10 It is a schematic structural diagram of the transmission disc of the present invention.
[0034] Figure: 1. Main unit; 2. Therapy head; 201. Handle; 202. Electrode; 203. Switch; 205. Annular groove; 206. Therapy suction cup; 207. First return flow channel; 208. Liquid supply channel; 209. Piston chamber; 210. Second return flow channel; 2011. Third one-way valve; 212. Kettle interface; 3. Touch screen controller; 4. Skin cleaning mechanism; 401. Transmission turntable; 4011. Gear ring; 4012. Magnetic suction groove; 402. Motor; 403. Brushing disc; 4031 , magnetic head; 4032, scraper; 404, filter cartridge; 4041, docking nozzle; 4042, check bucket; 4043, filter hole; 4044, cleaning cover; 4045, screw hole; 4046, vertical plate; 405, water storage pot; 406, first gear; 407, transmission shaft; 408, piston plate; 409, spring; 410, cam; 411, second one-way valve; 412, first one-way valve; 413, second gear; 414, first limit plate; 415, second limit plate; 416, connecting rod. DETAILED DESCRIPTION
[0035] Example 1
[0036] See also Figures 1-10 , a heat therapy device for accelerating cell metabolism, comprising a host 1, a therapy head 2 and a touch screen controller 3, wherein the therapy head 2 is provided with a skin cleaning mechanism 4;
[0037] The touch screen controller 3 is installed at the upper end of the host 1, and the physiotherapy head 2 is electrically connected to the host 1 through a wire. The physiotherapy head 2 includes a handle 201, an electrode 202 and a switch 203. The side end face of the handle 201 is provided with a physiotherapy suction cup 206, and the electrode 202 is installed on the physiotherapy suction cup 206. The skin cleaning mechanism 4 includes a transmission turntable 401, a motor 402, a brush sweeping disc 403, a filter cartridge 404 and a water storage pot 405. The transmission turntable 401 is installed in the physiotherapy suction cup 206 and is rotatably connected to it. The motor 402 is fixedly installed in the handle 201 to drive the transmission turntable 401. The brush sweeping disc 403 is detachably installed on the transmission turntable 401, and the water pot and the filter cartridge 404 are detachably installed on the physiotherapy head 2.
[0038] Furthermore, an annular groove 205 is provided on the therapy suction cup 206, and the transmission turntable 401 is installed in the annular groove 205 and is rotatably connected to the therapy suction cup 206. A first gear 406 is provided on the output shaft of the motor 402, and a gear ring 4011 is provided on the side end face of the transmission turntable 401 to engage with the first gear 406.
[0039] The motor 402 cooperates with the first gear 406 and the second gear ring 4011 to drive the transmission turntable 401 to rotate, so that the transmission turntable 401 drives the brushing plate 403 to brush the area around the treatment area. On the one hand, it can dredge qi and blood and promote local blood circulation by rubbing the skin and stimulating the meridians. On the other hand, it cleans the metabolites secreted on the skin surface and improves skin cleanliness.
[0040] Furthermore, a magnetic head 4031 is provided on the back of the brush sweeping disc 403, a magnetic groove 4012 cooperating with the magnetic head 4031 is provided on the front end surface of the transmission turntable 401, and a scraper 4032 is provided on the front end surface of the brush sweeping disc 403, and the scraper 4032 is made of silicone material.
[0041] The magnetic brush sweeping disc 403 structure allows it to be quickly installed and disassembled, making it easy to disassemble and clean, while maintaining stable transmission. The silicone scraper 4032 structure promotes blood circulation in the skin without scratching the skin or causing congestion due to excessive pressure.
[0042] Furthermore, a kettle interface 212 is provided at the end of the handle 201 away from the electrode sheet 202, and the inner end surface of the kettle interface 212 is provided with an internal thread. The water storage bottle 405 is installed in the kettle interface 212 and is threadedly connected to it. A liquid supply channel 208 for the therapy suction cup 206 is provided in the kettle interface 212, and a piston chamber 209 is provided in the handle 201. The bottom of the piston chamber 209 is provided with a first return flow channel 207 that passes through the therapy suction cup 206 and a second return flow channel 210 that passes through the kettle interface 212.
[0043] The water storage pot 405 is installed on the handle 201 through a threaded connection, and the central electrolyte water is continuously introduced into the therapy suction cup 206. On the one hand, the conductivity between the electrode sheet 202 and the skin is improved. On the other hand, the electrolyte water rinses the skin surface, cleansing the metabolites produced by the metabolic process and the stains scraped out. After rinsing, it returns to the water storage pot 405 for recycling. Compared with the transmission method of applying conductive gel, the conductive gel will not cause lumps to adhere to the skin surface after drying, causing itchy skin discomfort. This method is more comfortable.
[0044] Furthermore, a slidingly connected piston plate 408 is provided in the piston chamber 209, a first one-way valve 412 is provided in the first return flow channel 207, a second one-way valve 411 is provided in the second return flow channel 210, and a third one-way valve 2011 is provided in the liquid supply flow channel 208.
[0045] When the piston plate 408 is pulled up, negative pressure is formed in the piston chamber 209, and water is sucked from the first return flow channel 207. When the piston plate 408 is pressed down, it will be pushed into the water tank through the second return flow channel 210. The pressure in the water tank increases, causing the water to flow through the liquid supply channel 208 and flow into the chamber formed between the therapy suction cup 206 and the skin, thus realizing electrolyte water circulation.
[0046] Furthermore, a connecting rod 416 is provided on the upper end surface of the piston plate 408, a first limit plate 414 is provided on the top of the connecting rod 416, a second limit plate 415 is provided on the inner end surface of the piston chamber 209, a spring 409 is sleeved on the connecting rod 416, and the spring 409 is located between the first limit plate 414 and the second limit plate 415. A rotatably connected cam 410 is provided in the piston chamber 209, and the bottom of the cam 410 is kept in contact with the first limit plate 414.
[0047] When the cam 410 rotates, the cam 410 intermittently squeezes the second limiting plate 415 , and under the action of the spring 409 , the second limiting plate 415 performs up and down reciprocating motion, thereby achieving water circulation between the electrolyte water in the annular dark groove 205 and the water in the water storage tank.
[0048] Furthermore, a transmission shaft 407 rotatably connected to the handle 201 is provided on the side end surface of the cam 410 , and a second gear 413 meshing with the gear ring 4011 is provided on the end of the transmission shaft 407 away from the cam 410 .
[0049] When the motor 402 drives the transmission turntable 401 to rotate, the transmission turntable 401 drives the cam 410 to rotate through the gear ring 4011 and the second gear 413, realizing the synchronous operation of water circulation and scraping and cleaning, avoiding dry scraping causing pain and discomfort to the user's skin. The motor 402 is a servo motor 402, so that each time the equipment stops, the piston plate 408 is located at the bottom of the piston chamber 209.
[0050] Furthermore, the filter cartridge 404 is provided with a docking nozzle 4041 which is interference-connected with the second return flow channel 210 , and the side end surface of the filter cartridge 404 is evenly provided with filter holes 4043 .
[0051] The refluxed electrolyte water enters the filter cartridge 404, and the solid particle impurities in the electrolyte water are intercepted in the filter cartridge 404 by the filter holes 4043. The interference fit filter cartridge 404 is easy to remove for cleaning, thereby avoiding solid stains on the user's skin surface after cleaning.
[0052] Furthermore, a check bucket 4042 is provided on the inner wall of the filter cartridge 404 , and the check bucket 4042 is a conical structure. A screw hole 4045 is provided at the end of the filter cartridge 404 , and a cleaning cover 4044 connected by threads is provided in the screw hole 4045 , and a vertical plate 4046 is provided on the cleaning cover 4044 .
[0053] When solid particles pass through the check bucket 4042, they cannot flow back. The threaded cleaning cover 4044 is easy to unscrew and flush the filter cartridge 404. A vertical plate 4046 is provided on the cleaning cover 4044 to improve the convenience of the knob.
[0054] See also Figures 1-10 , a hyperthermia method for accelerating cell metabolism, comprising the following steps:
[0055] Step 1: Equipment preparation. Before use, carefully check whether all components of the hyperthermia device are intact. Fill the water storage pot 405 with central electrolyte water. Securely install the water storage pot 405 on the pot interface 212 of the handle 201 using the internal thread connection method. Install the filter cartridge 404 to ensure that the docking nozzle 4041 of the filter cartridge 404 is tightly interference-fitted with the second return flow channel 210. Set appropriate hyperthermia parameters, including hyperthermia time and temperature, through the touch screen controller 3. At the same time, check whether the motor 402, electrode sheet 202 and other components are working normally to ensure that the device is in good operational readiness.
[0056] Step 2: Skin pretreatment: Attach the therapy suction cup 206 to the skin area that needs to be treated with heat therapy, ensuring that it fits tightly without leakage. Turn on the motor 402, which drives the transmission turntable 401 to rotate through the first gear 406 and the gear ring 4011. The transmission turntable 401 drives the brushing disc 403 to scrape the skin in the treatment area. At the same time, the electrolyte water in the water storage pot 405 flows between the therapy suction cup 206 and the skin through the liquid supply channel 208 under the action of the piston chamber 209, and rinses the skin surface. Under the joint action of the brushing disc 403 and the electrolyte water, the metabolites, dust and other stains secreted on the skin surface are cleaned, creating a clean skin environment for heat therapy.
[0057] Step 3: Hyperthermia treatment is performed. Press the switch 203 to start the electrode sheet 202 hyperthermia treatment. The electrode sheet 202 begins to release variable frequency pulse current to stimulate cells and accelerate cell metabolism. During the hyperthermia treatment, the water circulation system of the device and the skin cleaning mechanism 4 operate synchronously. The piston plate 408 reciprocates up and down under the action of the cam 410 to achieve the circulation of electrolyte water, continuously improve the conductivity between the electrode sheet 202 and the skin, and continuously rinse the skin surface to remove metabolites generated during the hyperthermia treatment. At the same time, the brushing plate 403 continuously scrapes the skin to promote blood circulation. During this process, the operator needs to closely observe the skin condition of the treatment area.
[0058] Step 4: After the heat therapy is completed, turn off the power switch 203 of the device first to stop the electrode sheet 202 from working, then remove the brush plate 403 and the filter cartridge 404, clean the brush plate 403 to remove residual stains, clean the impurities intercepted in the filter cartridge 404 and rinse the filter cartridge 404, empty the remaining electrolyte water in the water storage pot 405, and rinse the handle 201 to remove any stains and traces of electrolyte water that may remain on the surface. Finally, disinfect the disassembled components and the main unit 1. Appropriate disinfectants can be used for wiping or ultraviolet light irradiation for disinfection. After the disinfection is completed, the components of the device are sorted and stored for next use.
[0059] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A thermotherapy device for accelerating cell metabolism, comprising a main unit (1), a therapy head (2) and a touch screen controller (3), characterized in that: A skin cleaning mechanism (4) is provided on the physiotherapy head (2); The touch screen controller (3) is mounted on the upper end of the host (1); the physiotherapy head (2) is electrically connected to the host (1) via a wire; the physiotherapy head (2) comprises a handle (201), an electrode sheet (202) and a switch (203); a physiotherapy suction cup (206) is provided on the side end face of the handle (201); the electrode sheet (202) is mounted on the physiotherapy suction cup (206); the skin cleaning mechanism (4) comprises a transmission turntable (401), an electric The invention relates to a device (402), a brushing disc (403), a filter cartridge (404) and a water storage pot (405); a transmission turntable (401) is installed in a physical therapy suction cup (206) and is rotatably connected thereto; the motor (402) is fixedly installed in a handle (201) to drive the transmission turntable (401); the brushing disc (403) is detachably installed on the transmission turntable (401); and the water pot and the filter cartridge (404) are detachably installed on the physical therapy head (2).
2. The hyperthermia device for accelerating cell metabolism according to claim 1, characterized in that: The therapy suction cup (206) is provided with an annular groove (205), the transmission turntable (401) is installed in the annular groove (205) and is rotatably connected to the therapy suction cup (206), the output shaft of the motor (402) is provided with a first gear (406), and the side end surface of the transmission turntable (401) is provided with a gear ring (4011) that meshes with the first gear (406).
3. The hyperthermia device for accelerating cell metabolism according to claim 1, characterized in that: The back of the brush sweeping disc (403) is provided with a magnetic head (4031), the front end surface of the transmission turntable (401) is provided with a magnetic groove (4012) that cooperates with the magnetic head (4031), and the front end surface of the brush sweeping disc (403) is provided with a scraper (4032), and the scraper (4032) is made of silicone material.
4. The hyperthermia device for accelerating cell metabolism according to claim 1, wherein: The handle (201) is provided with a kettle interface (212) at the end away from the electrode sheet (202), and the inner end surface of the kettle interface (212) is provided with an internal thread. The water storage pot (405) is installed in the kettle interface (212) and is threadedly connected thereto. The kettle interface (212) is provided with a liquid supply channel (208) for the therapy suction cup (206). The handle (201) is provided with a piston chamber (209), and the bottom of the piston chamber (209) is provided with a first return flow channel (207) that is connected to the therapy suction cup (206) and a second return flow channel (210) that is connected to the kettle interface (212).
5. The hyperthermia device for accelerating cell metabolism according to claim 4, characterized in that: A slidingly connected piston plate (408) is provided in the piston chamber (209), a first one-way valve (412) is provided in the first return flow channel (207), a second one-way valve (411) is provided in the second return flow channel (210), and a third one-way valve (2011) is provided in the liquid supply flow channel (208).
6. The hyperthermia device for accelerating cell metabolism according to claim 5, characterized in that: The upper end surface of the piston plate (408) is provided with a connecting rod (416), the top of the connecting rod (416) is provided with a first limiting plate (414), the inner end surface of the piston cavity (209) is provided with a second limiting plate (415), the connecting rod (416) is provided with a spring (409), the spring (409) is located between the first limiting plate (414) and the second limiting plate (415), and a rotatably connected cam (410) is provided in the piston cavity (209), and the bottom of the cam (410) is kept in contact with the first limiting plate (414).
7. The hyperthermia device for accelerating cell metabolism according to claim 6, characterized in that: The side end surface of the cam (410) is provided with a transmission shaft (407) rotatably connected to the handle (201), and the end of the transmission shaft (407) away from the cam (410) is provided with a second gear (413) meshing with the gear ring (4011).
8. The hyperthermia device for accelerating cell metabolism according to claim 1, characterized in that: The filter cartridge (404) is provided with a docking nozzle (4041) that is interference-connected with the second return flow channel (210), and the side end surface of the filter cartridge (404) is evenly provided with filter holes (4043).
9. The hyperthermia device for accelerating cell metabolism according to claim 8, characterized in that: The inner wall of the filter cartridge (404) is provided with a check hopper (4042), and the check hopper (4042) is a conical structure. The end of the filter cartridge (404) is provided with a screw hole (4045), and a cleaning cover (4044) connected by a thread is provided in the screw hole (4045), and a vertical plate (4046) is provided on the cleaning cover (4044).
10. A method for hyperthermia for accelerating cell metabolism, applicable to a hyperthermia device for accelerating cell metabolism as claimed in any one of claims 1 to 9, characterized in that: The following steps are involved: Step 1: Equipment preparation: Fill the water storage pot (405) with electrolyte water, install the filter cartridge (404), and set appropriate parameters through the touch screen controller (3); Step 2: Pre-treatment of the skin: place the therapy suction cup (206) on the skin, turn on the motor (402), and use the brushing disc (403) to scrape the skin while flushing with electrolyte water to clean the skin surface; Step 3: The heat therapy is performed by pressing the switch (203) to start the heat therapy of the electrode sheet (202), and the device simultaneously maintains water circulation and skin cleansing; Step 4: After the heat treatment is completed, the device is turned off, the brush plate (403) and the filter cartridge (404) are disassembled for cleaning, the water storage pot (405) is emptied, the handle (201) is rinsed, and finally the device is disinfected.
Citation Information
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