A comprehensive therapy instrument for package
By designing the static main unit, therapeutic components, and connectors of the herbal pack integrated physiotherapy device, the problems of metal magnetic buckles affecting treatment effects and accidental touch control have been solved. This enables rapid replacement of the herbal pack and uniform action of the medicinal materials, thereby improving treatment effectiveness and resource utilization.
Patent Information
- Application Number
- CN202411880497.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2044-12-19
AI Technical Summary
In existing herbal pack therapy devices, the metal magnetic buckle affects the treatment effect, accidental touch can cause the function to be activated unexpectedly, and the herbs in the herbal pack are not used evenly, resulting in poor treatment effect and waste of resources.
The device features a static main unit, therapeutic components, and connectors, including a therapeutic belt, trigger unit, balloon, and trigger plate. It is equipped with a protective trigger device, and the mounting compartment and snap-fit ear allow for quick replacement of the herbal pack. The linkage gears and rollers ensure uniform application of the medicinal materials, and the adjustment mechanism adjusts the sensitivity to avoid accidental activation and waste of medicinal materials.
It enables safe operation of the physiotherapy device, quick replacement of the herbal pack, uniform application of medicinal materials, improved treatment effect, reduced resource waste, and enhanced safety and efficiency of treatment.
Smart Images

Figure CN119587864B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of physiotherapy devices, and particularly to a comprehensive physiotherapy device using a suffocation technique. Background Technology
[0002] The Occlusive Therapy Device is a medical device that combines traditional Chinese medicine theory with modern technology. It is mainly used to treat and assist in the treatment of various diseases. This device utilizes physical factors such as far-infrared rays and composite magnetic fields, and through the penetration of drug components, improves microcirculation and unblocks meridians, thereby achieving therapeutic effects.
[0003] For example, Chinese Patent CN102500048A discloses a comprehensive therapeutic device for traditional Chinese medicine (TCM) with easily replaceable herbal packs. The device includes a safe power supply, a controller, and a treatment body. The treatment body comprises a separable herbal pack and a heating pack. The heating pack is connected to the controller via a cable. The herbal pack contains a medicinal core, and the heating pack contains an electric heating element. The herbal pack is stacked on top of the heating pack, and the two are connected together as a whole by multiple connecting buckles on the contact surface. By setting the herbal pack and heating pack of the treatment body as separate structures and combining them into a whole using easily assembled and disassembled connecting buckles, the herbal pack and heating pack are easily assembled and disassembled, making the operation of replacing the herbal pack simple and easy for users.
[0004] However, the aforementioned occlusion therapy device still has some shortcomings in actual use:
[0005] 1. In the above-mentioned prior art, the herbal pack and heating pack of the treatment body are easily combined and separated by the metal magnetic buckle. However, the metal magnetic buckle itself is made of metal. When the controller starts to work, the heat generated by it and the composite magnetic field generated by the operation will be affected by the metal magnetic buckle, resulting in poor quality and effect on the patient's affected area.
[0006] 2. Secondly, existing occlusive therapy devices improve ease of operation through touch-screen human-computer interaction. However, if accidental touch occurs, the infrared and composite magnetic field functions of the occlusive therapy device may be accidentally activated. This not only leads to a waste of resources but may also pose unnecessary harm to surrounding staff. Furthermore, if patients forget to turn off the device after treatment, it may continue to work, which will also result in a waste of resources.
[0007] 3. Furthermore, in the existing technology, when the Chinese medicine pack is used to treat a patient, the Chinese medicine materials close to the skin of the pack will take effect, while the contents of the pack and the part furthest from the body cannot exert their best effect. As a result, most of the Chinese medicine in the pack cannot effectively exert its effect, leading to poor treatment results for the entire device.
[0008] Therefore, based on the above-mentioned viewpoints, there is still room for improvement in existing occlusive therapy devices. Summary of the Invention
[0009] To address the above problems, this invention provides a comprehensive occlusive physiotherapy device, employing the following technical solution:
[0010] A comprehensive physiotherapy device, comprising a stationary main unit, a physiotherapy component for treating affected areas of the human body, and a connector for connecting the main unit and the physiotherapy component.
[0011] The physiotherapy device includes a physiotherapy belt and a triggering part. The physiotherapy belt is connected to the main unit. The triggering part is located at one end of the physiotherapy belt and includes four sets of rectangularly distributed balloons at the bottom of the physiotherapy belt. A first connecting tube is provided at the end of each balloon near the physiotherapy belt. The first connecting tube is located inside the physiotherapy belt. The end of the first connecting tube away from the balloons extends towards the main unit, and the end of the first connecting tube near the main unit is located inside a reaction frame. The reaction frame is installed in the main unit.
[0012] The triggering part is also provided with a trigger plate that comes into contact with the human body on the balloon, and a snap-fit groove is formed between the trigger plate and the balloon. The reaction frame is also provided with an adjustment component.
[0013] Preferably, the host includes a protective shell, a touch screen with intelligent touch screen operation technology, and a physiotherapy device connected to the touch screen. The physiotherapy device is disposed inside the protective shell, and a plurality of connection ports are provided on one side of the protective shell. The physiotherapy device is installed at the connection ports of the protective shell through connectors.
[0014] Preferably, the reaction frame is a sealed structure. Two second metal guide plates are symmetrically arranged along the length of the reaction frame, and the ends of the two second metal guide plates that are opposite to each other are connected to the host through wires. A first metal guide plate parallel to the second metal guide plates is also slidably arranged inside the reaction frame. An insulating tension spring is provided between one side of the first metal guide plate and the inner wall of the reaction frame, and the insulating tension spring controls the first metal guide plate to always have an elastic force away from the second metal guide plate.
[0015] Preferably, the connector includes a connecting wire connecting the main unit and the physiotherapy belt. The connecting wire is broken along the middle, and the ends of the broken connecting wires that are close to each other are respectively connected to an active connecting frame and a passive connecting frame. The active connecting frame and the passive connecting frame are provided with buckles. The first connecting tube is also broken along the middle, and the ends of the first connecting tube that are close to each other are also respectively provided on the active connecting frame and the passive connecting frame.
[0016] Preferably, the connection between the trigger plate and the balloon is further provided with an installation chamber for installing and removing the Chinese medicine pack. The installation chamber has a hollow structure, and both ends of the installation chamber in the length direction are provided with snap-fit ears that are fitted into the snap-fit groove. The snap-fit ears are made of elastic high-temperature resistant material.
[0017] Preferably, the side wall of the installation chamber is provided with an installation slot for installing the Chinese medicine pack.
[0018] Preferably, the installation chamber is also rotatably connected to a linkage column, and a linkage gear is installed on the linkage column. The linkage gear extends toward the physiotherapy belt and into the physiotherapy belt. A micro motor is installed inside the physiotherapy belt, and a micro gear rotatably disposed inside the physiotherapy belt is installed at the output end of the micro motor. The micro gear slides and meshes with the linkage gear on the linkage column.
[0019] Preferably, a number of rollers are rotatably installed at equal intervals inside the installation chamber, the rollers are located between the installation chamber and the Chinese medicine pack inside, and the bottom of each roller is eccentrically connected with a claw; a number of linkage belts are provided between the end of the linkage column near the installation chamber and the number of rollers.
[0020] Preferably, the trigger plate has a movable groove, and a temperature monitoring device is installed in the movable groove of the trigger plate.
[0021] Preferably, the adjusting component includes an adjusting threaded rod, which is rotatably mounted on the reaction frame, with the adjusting end of the adjusting threaded rod extending outward and the actuating end of the adjusting threaded rod connected to two second metal guide plates.
[0022] In summary, this application includes at least one of the following beneficial technical effects:
[0023] I. The physiotherapy device in this invention has a certain passive protection function, which prevents medical staff from turning on the device and starting work when the patient is not wearing the physiotherapy belt while operating the touch screen. Only when the patient is properly wearing the physiotherapy belt will the trigger part in the physiotherapy device contact the protection. When the medical staff operates the touch screen, they can issue various different instructions to realize the patient's physiotherapy work.
[0024] Second, the installation compartment and snap-fit ear in this invention enable the quick installation and disassembly of the herbal pack, greatly improving the efficiency of herbal pack replacement. Furthermore, the installation method of the herbal pack can avoid affecting the magnetic therapy effect of the physiotherapy device, maximizing the effectiveness of magnetic therapy and infrared therapy.
[0025] Third, the claw in this invention can knead the surface of the herbal pack at a uniform speed when heating and treating it. This not only enhances the efficacy of the herbal medicine but also moves the herbs in the herbal pack, ensuring that all the herbs in the herbal pack adhere to the patient's affected area. This ensures that the medicinal properties of the herbs in the herbal pack can act on the patient's body, avoiding a large waste of medicinal efficacy. Attached Figure Description
[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0027] Figure 1 This is a first-view schematic diagram of the main structure of the occlusive comprehensive physiotherapy device of the present invention.
[0028] Figure 2 This is a schematic diagram of the main structure of the occlusive comprehensive physiotherapy device of the present invention from a second perspective.
[0029] Figure 3 This is a schematic diagram of the main structure of the occlusive comprehensive physiotherapy device of the present invention from a third-view perspective.
[0030] Figure 4 This is a schematic diagram of the structure of the physiotherapy component of the present invention.
[0031] Figure 5 This is a schematic diagram of the trigger part of the present invention.
[0032] Figure 6 This is the present invention. Figure 5 A magnified view of section A in the image.
[0033] Figure 7 This is a schematic diagram of the structure between the therapeutic component and the connecting component of the present invention.
[0034] Figure 8 This is a schematic diagram of the first structure of the installation chamber and the physiotherapy belt of the present invention.
[0035] Figure 9 This is a schematic diagram of the structure of the linkage column, linkage gear, micro motor, micro gear and roller of the present invention.
[0036] Figure 10 This is a schematic diagram of the structure between the roller, the gripper, and the drive belt of the present invention.
[0037] Figure 11 This is a schematic diagram of the second structure of the installation chamber and the physiotherapy belt in this invention.
[0038] Figure 12 This is a schematic diagram of the third structure for installing the mounting compartment and the physiotherapy belt in this invention.
[0039] Explanation of reference numerals in the attached diagram: 1. Main unit; 2. Physiotherapy component; 3. Connector; 20. Physiotherapy belt; 21. Trigger; 210. Balloon; 211. Connecting tube No. 1; 212. Reaction frame; 213. Trigger plate; 22. Adjusting component; 10. Protective shell; 11. Touch screen; 12. Connection port; 214. Metal guide plate No. 2; 215. Metal guide plate No. 1; 216. Insulating spring; 30. Connecting wire; 31. Active connecting frame; 32. Passive connecting frame; 217. Mounting chamber; 218. Snap-fit ear; 40. Linkage column; 41. Linkage gear; 42. Micro motor; 43. Micro gear; 44. Roller; 45. Claw; 46. Linkage belt; 5. Temperature controller; 220. Adjusting threaded rod; 221. Insulating plate; 6. Fastener No. 1; 7. Fastener No. 2; 8. Protective mesh; 9. Heating wire. Detailed Implementation
[0040] The following is in conjunction with the appendix Figures 1-10 This application will be described in further detail.
[0041] This application discloses a comprehensive suffocation therapy device. It is noted that this comprehensive suffocation therapy device is mainly used in the process of human rehabilitation and conditioning. In terms of technical effect, it can avoid the problem that the Chinese medicine pack cannot fully exert the medicinal properties of the Chinese medicine inside, resulting in the waste of most of the Chinese medicine in the Chinese medicine pack.
[0042] Especially when the herbal pack is heated, the occlusive physiotherapy device can also work in conjunction with the herbal medicine to treat the affected area through far-infrared and composite magnetic fields. Secondly, existing occlusive physiotherapy devices can improve the ease of operation through touch-screen human-computer interaction. However, if accidentally touched, the infrared and composite magnetic field functions of the occlusive physiotherapy device may be accidentally activated, resulting in waste of resources and potentially causing unnecessary harm to surrounding staff. Therefore, a protective triggering device can be designed. When a patient needs physiotherapy, after the operator operates the occlusive physiotherapy device, the protective triggering device must be passively triggered by contact with the human body before the occlusive physiotherapy device can work, which can effectively reduce the waste of resources.
[0043] Reference Figure 1 As shown, a suffocation-based comprehensive physiotherapy device includes a stationary main unit 1, a physiotherapy component 2 for treating affected areas of the human body, and a connector 3 connecting the main unit 1 and the physiotherapy component 2.
[0044] It should be noted that the physiotherapy device in this application eliminates aseptic inflammation and edema through the combined action of far-infrared rays and composite magnetic fields, improves anaerobic metabolism, converts effective Chinese herbal medicines into ionic form, and allows them to penetrate the skin directly into the lesion, overcoming the skin barrier. It provides concentrated and targeted medication, treats the symptoms, and uses different prescription modes for different diseases. It is fast-acting, has no toxic side effects, and has stable efficacy. It is a modern innovative application of external treatment methods in traditional Chinese medicine.
[0045] Furthermore, this application possesses seven core technologies: composite energy penetration technology, composite energy aggregation technology, precise constant temperature point temperature control technology, ultra-micro pulverization technology, eleven special prescriptions available, independent overheat protection technology, and intelligent touch screen operation technology.
[0046] Among these features, the infrared function of the occlusive therapy device can automatically adjust the far-infrared wavelength, dynamically emitting far-infrared rays that are beneficial to the human body. This dynamic adjustment helps to more precisely promote blood circulation, improve microcirculation, relieve pain, and promote metabolism, thereby improving the overall treatment effect. Furthermore, by automatically adjusting the far-infrared wavelength, the device can better control temperature changes during treatment, avoiding overheating or discomfort, making patients feel more comfortable during the treatment process.
[0047] Simultaneously, with the selection of eleven specialized prescriptions, the composite magnetic field of the occlusive therapy device can automatically adjust its intensity. This not only enhances local blood circulation and improves tissue permeability, thus facilitating the dissipation of inflammation and the absorption of exudates, but also aids in the diffusion and absorption of medication at the treatment site. Secondly, the magnetic field increases cell membrane permeability, accelerating the transport process of drug molecules, allowing the drug to penetrate the treatment area more effectively. Furthermore, the magnetic field can also improve drug absorption efficiency by altering the arrangement of drug particles, making them easier to pass through biological channels.
[0048] Furthermore, this product is applicable to the following conditions: cervical spondylosis, frozen shoulder, arthritis, lumbar disc herniation, chronic traumatic swelling and pain, lumbar muscle strain, stomach pain, cold-induced dysmenorrhea, breast hyperplasia, chronic pelvic inflammatory disease, and comprehensive treatment with occlusive dressing.
[0049] Secondly, the advantages of this application are: 1. Targeted therapy directly reaches the diseased tissue and accumulates and releases effective ingredients at the target site, forming a relatively high concentration and promoting its transport into the cells.
[0050] 2. Improve media utilization to overcome the first-pass effect while avoiding systemic toxicity.
[0051] 3. Wide range of applications: 11 prescriptions allow for different treatment methods and treatment times to be set according to different patients and symptoms.
[0052] 4. Touchscreen human-computer interaction, user-friendly interface, and easy operation.
[0053] See Figure 1 and Figure 2 The diagram shown is a structural schematic of the physiotherapy device in this application. The main unit 1 includes a protective shell 10, a touch screen 11 with intelligent touch screen operation technology, and a physiotherapy device connected to the touch screen 11. The physiotherapy device is disposed inside the protective shell 10, and a number of connection ports 12 are provided on one side of the protective shell 10. The physiotherapy device 2 is installed at the connection ports 12 of the protective shell 10 through connectors 3.
[0054] The physiotherapy device has a known structure, consisting of a chip and a processor.
[0055] The treatment temperature and time can be set through the main unit 1, and different treatment prescriptions can be selected for different conditions.
[0056] In the specific implementation process, the host 1 can perform mixed treatment on the patient's affected area through the combined action of infrared and composite magnetic fields. During this process, the touch screen 11 issues various instructions and treatment modes, which are then processed by the physiotherapy device to realize infrared operation and magnetic therapy operation.
[0057] However, it should be noted that when medical staff perform physiotherapy on patients, they first need to tie the physiotherapy band 20 to the patient's affected area, and then issue various commands through the touch screen 11. However, it should be noted that if the patient is not wearing the physiotherapy band 20, no matter how the medical staff issues various commands through the touch screen 11, it will not work properly. Only when the triggering part 21 in the physiotherapy component 2 is passively triggered can the various commands issued by the medical staff through the touch screen 11 be effectively executed.
[0058] See Figure 2 and Figure 3 The diagram shows a structural schematic of the physiotherapy device 2 for treating a patient's affected area in this application. The physiotherapy device 2 includes a physiotherapy belt 20 and a triggering part 21. The physiotherapy belt 20 is connected to the host 1. The triggering part 21 is located at one end of the physiotherapy belt 20. The triggering part 21 includes four sets of rectangularly distributed balloons 210 at the bottom of the physiotherapy belt 20. A first connecting tube 211 is provided at the end of the balloons 210 near the physiotherapy belt 20. The first connecting tube 211 is located inside the physiotherapy belt 20. The end of the first connecting tube 211 away from the balloons 210 extends towards the host 1. The end of the first connecting tube 211 near the host 1 is located inside the reaction frame 212. The reaction frame 212 is installed in the host 1.
[0059] The balloon 210 of the triggering part 21 is also provided with a trigger plate 213 that comes into contact with the human body, and a snap-fit groove is formed between the trigger plate 213 and the balloon 210.
[0060] It should be noted that, in the initial state, all four sets of balloons 210 on the physiotherapy belt 20 are filled with gas, so that the balloons 210 are in a fully inflated state; secondly, the trigger plate 213 is made of skin-friendly rubber material to avoid causing any discomfort to the patient when the trigger plate 213 comes into contact with the patient's affected area.
[0061] In practice, when a patient needs physiotherapy, the trigger part 21 of the physiotherapy belt 20 is first aligned with the patient's affected area, and then the physiotherapy belt 20 is secured to the patient's body with its own buckle to ensure the stability of the physiotherapy belt 20.
[0062] When the physiotherapy band 20 is attached to the patient's affected area, the trigger plate 213 on the balloon 210 is compressed. The trigger plate 213 then compresses the balloon 210, causing the gas inside the balloon 210 to enter the reaction frame 212 along the first connecting tube 211. This triggers an electrical signal within the reaction frame 212. The electrical signal is then received by the physiotherapy device in the host 1, enabling medical staff to issue various commands through the touch screen 11. This achieves a protective function, preventing accidental touches on the touch screen 11.
[0063] Reference Figure 4 , Figure 5 and Figure 6 As shown, specifically, the reaction frame 212 is a sealed structure. Two second metal guide plates 214 are symmetrically arranged along the length of the reaction frame 212, and the ends of the two second metal guide plates 214 that are opposite to each other are connected to the host 1 through wires. A first metal guide plate 215 parallel to the second metal guide plates 214 is also slidably arranged inside the reaction frame 212. An insulating tension spring 216 is arranged between one side of the first metal guide plate 215 and the inner wall of the reaction frame 212, and the insulating tension spring 216 controls the first metal guide plate 215 to always have one end away from the second metal guide plate 214.
[0064] It should be noted that the two secondary metal guide plates 214 are connected to wires on their back sides, and the wires are connected to the host 1. The two secondary metal guide plates 214 are initially disconnected from each other. Only when the primary metal guide plate 215 connects the two secondary metal guide plates 214 can the two secondary metal guide plates 214 connected to the host 1 transmit the power signal to the host 1, so that the host 1 is unlocked. At this time, medical staff can control the touch screen 11 to issue various physiotherapy commands to the physiotherapy belt 20.
[0065] When the gas in the balloon 210 enters the reaction frame 212 through the first connecting pipe 211, the gas pressure compresses the first metal guide plate 215 in the reaction frame 212, causing the first metal guide plate 215 to move toward the two second metal guide plates 214 in the reaction frame 212 until the first metal guide plate 215 comes into contact with the two second metal guide plates 214. At this time, the two second metal guide plates 214 change from an open circuit to a closed circuit. After they become a closed circuit, an electrical signal can be generated in the entire circuit. At this time, the host 1 can issue commands through the touch screen 11.
[0066] When the trigger plate 213 comes into contact with the patient's affected tissue, the herbal pack that is engaged with the trigger plate 213 and the balloon 210 will adhere to the patient's affected area. At this time, the main unit 1 starts to heat the herbal pack, and at the same time, it works with infrared function and composite magnetic field to accelerate the recovery speed of the patient's affected area.
[0067] Reference Figure 7 and Figure 8 As shown, specifically, the connection between the trigger plate 213 and the balloon 210 is also provided with an installation chamber 217 for installing and removing the Chinese medicine pack. The installation chamber 217 has a hollow structure, and both ends of the installation chamber 217 in the length direction are provided with snap-fit ears 218 that are fitted into the snap-fit groove. The snap-fit ears 218 are made of elastic high-temperature resistant material.
[0068] The side wall of the installation compartment 217 is provided with an installation slot for installing Chinese medicine packs.
[0069] When the Chinese herbal medicine pack has been used for a long time, it needs to be replaced. The Chinese herbal medicine pack is usually placed in the installation compartment 217, which is installed on four sets of trigger plates 213 by snap-fit ears 218. The four sets of trigger plates 213 limit and fix the position of the Chinese herbal medicine pack, ensuring that the Chinese herbal medicine pack can be quickly replaced and installed, improving the portability of the Chinese herbal medicine pack. In addition, the medicinal ingredients of the Chinese herbal medicine pack used by different patients are also different. Therefore, the quick replacement method can ensure the timely replacement of the Chinese herbal medicine pack.
[0070] The installation chamber 217 has a hollow structure, which ensures the efficacy of the medicine and does not affect the infrared and magnetic therapy functions of the physiotherapy device. Especially for magnetic therapy, a more complex structure can affect the penetration and magnetism of the magnetic field, which can seriously affect the magnetic therapy effect. However, the installation chamber 217 and the Chinese medicine pack in this application are directly attached to the patient's affected area and do not contain any materials that affect the magnetic field. This allows the magnetic therapy effect to be maximized. Therefore, with the combination of magnetic therapy and the Chinese medicine pack, a greater therapeutic effect can be achieved, shortening the patient's treatment time.
[0071] Looking back Figure 7As shown, a movable groove is provided on the trigger plate 213, and a temperature control monitor 5 is installed in the movable groove of the trigger plate 213. When the trigger plate 213 is attached to the patient's affected area, the movable groove at the bottom of the trigger plate 213 can monitor the temperature of the herbal pack at all times to prevent the temperature from being too high and causing the patient's affected area to be burned. It should be noted that the temperature control monitor 5 is a known existing structure, which is mainly made of a thermometer.
[0072] Looking back Figure 2 and Figure 3 As shown in Embodiment 1, in order to further ensure the therapeutic effect of the physiotherapy device, this application also proposes a connector 3. The main function of the connector 3 is to facilitate the replacement of different physiotherapy belts 20. Because the physiotherapy device of this application can perform physiotherapy on multiple different parts of the human body, such as joints and waist, multiple physiotherapy belts 20 of different sizes need to be prepared for different parts of the human body. When performing physiotherapy on joints, smaller physiotherapy belts 20 can be replaced, which not only ensures the concentration of treatment and improves the therapeutic effect, but also improves its stability. Specifically, the connector 3 includes a connecting wire 30 connecting the main unit 1 and the physiotherapy belt 20. The connecting wire 30 is broken along the middle, and the ends of the broken connecting wire 30 that are close to each other are respectively connected to an active connecting frame 31 and a passive connecting frame 32. The active connecting frame 31 and the passive connecting frame 32 are provided with buckles. The first connecting tube 211 is also broken along the middle, and the ends of the first connecting tube 211 that are close to each other are also respectively set on the active connecting frame 31 and the passive connecting frame 32.
[0073] The replacement of the physiotherapy belt 20 is achieved by engaging and disengaging the active connecting frame 31 and the passive connecting frame 32. The active connecting frame 31 and the passive connecting frame 32 are located in the middle of the connecting wire 30, which facilitates their operation and avoids placing them near the end of the physiotherapy belt 20, which would make it difficult to wear the physiotherapy belt 20. At the same time, it also avoids placing them near the end of the main unit 1, which would affect the movement of the main unit 1.
[0074] Reference Figure 8 , Figure 9 and Figure 10 As shown, based on Embodiment 1, in order to further ensure that the Chinese medicine pack can exert its best performance, this application also proposes a comprehensive physiotherapy device for sealing and wrapping; specifically, a linkage column 40 is rotatably connected to the installation chamber 217, a linkage gear 41 is installed on the linkage column 40, the linkage gear 41 extends towards the physiotherapy belt 20 and extends into the physiotherapy belt 20, a micro motor 42 is installed in the physiotherapy belt 20, and a micro gear 43 is rotatably installed at the output end of the micro motor 42 in the physiotherapy belt 20, the micro gear 43 and the linkage gear 41 on the linkage column 40 are slidably meshed.
[0075] Several rollers 44 are rotatably installed at equal intervals inside the installation chamber 217. The rollers 44 are located between the installation chamber 217 and the Chinese medicine pack inside. Each roller 44 has a claw 45 eccentrically connected to its bottom.
[0076] Several linkage belts 46 are provided between the end of the linkage column 40 near the installation chamber 217 and several rollers 44.
[0077] It should be noted that in the initial state, the installation chamber 217 can be disassembled at will, so the linkage column 40 at the upper end of the installation chamber 217 can be movably inserted into the physiotherapy belt 20.
[0078] In the specific implementation process, when assembling the installation chamber 217, first insert the linkage column 40 and linkage gear 41 on the installation chamber 217 into the physiotherapy belt 20. Then, the linkage gear 41 on the linkage column 40 meshes with the micro gear 43 in the physiotherapy belt 20. Then, the snap-fit ear 218 of the installation chamber 217 is snapped onto the trigger plate 213. When the physiotherapy device is started, the herbal pack begins to heat up and gradually exerts its medicinal effect to treat the patient's affected area. However, the herbal medicine in the herbal pack is concentrated together. After heating, only the part of the herbal pack that is in contact with the body can exert its maximum medicinal effect. The side of the herbal pack that is far from the patient cannot exert its medicinal effect on the patient, resulting in waste of the herbal medicine.
[0079] Therefore, when the herbal pack in this application is used for physiotherapy on the patient, the micro motor 42 is started. The output end of the micro motor 42 controls the linkage gear 41 and the linkage column 40 to rotate through the micro gear 43. At this time, the linkage column 40 controls several rollers 44 to rotate through the linkage belt 46. During the rotation of the rollers 44, the chuck 45 rotates eccentrically, so that the chuck 45 acts on the herbal pack and stirs the herbal medicine inside the herbal pack. This ensures that the herbs inside the herbal pack are constantly being rotated, so that the herbs inside the herbal pack can exert their maximum medicinal properties. At the same time, it also ensures that the medicinal properties exerted by the herbs inside the herbal pack are evenly applied to the patient's affected area.
[0080] Furthermore, when a patient wears the physiotherapy band 20, the effect varies depending on the individual. For example, some people with a certain build can effectively compress the trigger plate 213, while older people cannot apply much force. As a result, the balloon 210 on the back of the trigger plate 213 is not compressed effectively, which may lead to the inability to control the connection between the second metal guide plate 214 and the first metal guide plate 215. Therefore, this application also proposes an adjustment element 22 to adjust the sensitivity between the second metal guide plate 214 and the first metal guide plate 215.
[0081] Looking back Figure 4 , Figure 5 and Figure 6 As shown, specifically, the adjusting component 22 includes an adjusting threaded rod 220, which is rotatably mounted on the reaction frame 212. The adjusting end of the adjusting threaded rod 220 extends outward, while the actuating end of the adjusting threaded rod 220 is connected to two second metal guide plates 214.
[0082] In the specific implementation process, rotating the adjusting threaded rod 220 controls the two second metal guide plates 214 to move towards the first metal guide plate 215. At this time, the distance between the second metal guide plate 214 and the first metal guide plate 215 becomes smaller, so that the trigger plate 213 and the balloon 210 are slightly squeezed, and the protection of the trigger part 21 can be released, allowing medical staff to freely operate the touch screen 11 to issue various commands.
[0083] In Embodiment 1, the mounting compartment 217 is simply attached to the trigger plate 213 via the snap-fit ear 218. However, this application also proposes another mounting method, see [link to documentation]. Figure 11 and Figure 12 As shown.
[0084] A second fastener 7 is provided on one side of the installation chamber 217, and a first fastener 6 is provided on the side of the physiotherapy belt 20 near the installation chamber 217. The first fastener 6 and the second fastener 7 are interlocked. A heating wire 9 is also provided on the side of the physiotherapy belt 20 near the installation chamber 217.
[0085] Furthermore, fasteners 6 and 7 are made of materials that do not affect the magnetic force of the magnetic therapy. A protective mesh 8 is also installed on the therapy belt 20 via a zipper to protect the installation compartment 217 on the therapy belt 20. When placing the therapy medicine pack, the protective mesh 8 is opened from the therapy belt 20 via the zipper, the therapy medicine pack is placed inside, and finally the zipper is closed again to reconnect the protective mesh 8 to the therapy belt 20. By wrapping the therapy medicine pack with the protective mesh 8, the even distribution of the medicine effect can be ensured, and the therapy medicine pack can also be prevented from being damaged.
[0086] Simultaneously, heating wire 9 heats the pack, allowing it to reach the optimal temperature for the physiotherapy medicine pack to exert its medicinal effects, thus maximizing its efficacy.
[0087] It should also be noted that, see Figure 12 The exploded view shows that the installation position of fastener 6 is integrated with the physiotherapy belt 20. The installation method of the installation chamber 217 and the physiotherapy belt 20 is different, but the internal structure of the installation chamber 217 is the same. The protective mesh 8 is made of perforated mesh material.
[0088] When in use: First, when the patient needs physiotherapy, first align the trigger part 21 of the physiotherapy belt 20 with the patient's affected area, and then bind the physiotherapy belt 20 to the patient's body through its own buckle to ensure the stability of the physiotherapy belt 20.
[0089] Step 2: When the physiotherapy band 20 is attached to the patient's affected area, the trigger plate 213 on the balloon 210 is squeezed. Then the trigger plate 213 squeezes the balloon 210, causing the gas inside the balloon 210 to enter the reaction frame 212 along the first connecting tube 211. This triggers an electrical signal in the reaction frame 212. At this time, the electrical signal is received by the physiotherapy device in the host 1, which can effectively instruct medical staff to issue various commands through the touch screen 11.
[0090] Step 3: After the trigger plate 213 comes into contact with the patient's affected tissue, the Chinese medicine pack that is engaged with the trigger plate 213 and the balloon 210 will adhere to the patient's affected area. At this time, the contact protection is activated, and the main unit 1 starts to heat the Chinese medicine pack. At the same time, the infrared function and the composite magnetic field are used to accelerate the recovery speed of the patient's affected area.
[0091] Step 4: After prolonged use, the herbal pack needs to be replaced. The herbal pack is usually placed in the installation compartment 217, which is then snapped onto four sets of trigger plates 213 via snap-fit ears 218. The four sets of trigger plates 213 limit and fix the position of the herbal pack, ensuring that the herbal pack can be quickly replaced and installed, improving its portability. Furthermore, since the medicinal ingredients in the herbal packs used by different patients are different, the quick replacement method ensures timely replacement of the herbal pack.
[0092] Step 5: When the herbal pack is used for physiotherapy on the patient, in order to further improve the effect of the physiotherapy, the micro motor 42 is started. The output end of the micro motor 42 controls the linkage gear 41 and the linkage column 40 to rotate through the micro gear 43. At this time, the linkage column 40 controls several rollers 44 to rotate through the linkage belt 46. During the rotation of the rollers 44, the chuck 45 rotates eccentrically, so that the chuck 45 acts on the herbal pack and stirs the Chinese medicine in the herbal pack. This ensures that the position of the Chinese medicine in the herbal pack is constantly changed, so as to ensure that the Chinese medicine in the herbal pack can exert its maximum medicinal effect and also ensure that the medicinal effect of the Chinese medicine in the herbal pack is evenly applied to the patient's affected area.
[0093] Step 6: When the patient wears the physiotherapy band 20, the effect varies depending on the individual. For example, some people with a certain build can effectively compress the trigger plate 213, while some older people cannot apply much force. As a result, the balloon 210 on the back of the trigger plate 213 is not compressed effectively, which may lead to the inability to control the connection between the second metal guide plate 214 and the first metal guide plate 215. Therefore, this application also proposes an adjustment element 22 to adjust the sensitivity between the second metal guide plate 214 and the first metal guide plate 215.
[0094] The embodiments described herein are preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, all equivalent changes made in accordance with the structure, shape, and principle of the present invention should be covered within the scope of protection of the present invention.
Claims
1. A comprehensive occlusive physiotherapy device, characterized in that: The physiotherapy device includes a stationary main unit (1), a physiotherapy component (2) for treating the affected area of the human body, and a connector (3) connecting the main unit (1) and the physiotherapy component (2). The physiotherapy device (2) includes a physiotherapy belt (20) and a trigger part (21). The physiotherapy belt (20) is connected to the host (1). The trigger part (21) is located at one end of the physiotherapy belt (20). The trigger part (21) includes four sets of rectangularly distributed balloons (210) at the bottom of the physiotherapy belt (20). A first connecting tube (211) is provided at one end of the balloons (210) near the physiotherapy belt (20). The first connecting tube (211) is located inside the physiotherapy belt (20). The end of the first connecting tube (211) away from the balloons (210) extends toward the host (1). The end of the first connecting tube (211) near the host (1) is located inside the reaction frame (212). The reaction frame (212) is installed in the host (1). The trigger part (21) is also provided with a trigger plate (213) that comes into contact with the human body on the balloon (210). A snap-fit groove is formed between the trigger plate (213) and the balloon (210). An adjustment component (22) is also provided on the reaction frame (212). The reaction frame (212) is a sealed structure. The reaction frame (212) is symmetrically arranged with two No. 2 metal guide plates (214) along the length direction. The two No. 2 metal guide plates (214) are connected to the host (1) through wires at opposite ends. A No. 1 metal guide plate (215) parallel to the No. 2 metal guide plate (214) is also slidably arranged inside the reaction frame (212). An insulating tension spring (216) is arranged between one side of the No. 1 metal guide plate (215) and the inner wall of the reaction frame (212). The insulating tension spring (216) controls the No. 1 metal guide plate (215) to always have an elastic force away from the No. 2 metal guide plate (214).
2. The occlusive comprehensive physiotherapy device according to claim 1, characterized in that: The host (1) includes a protective shell (10), a touch screen (11) with intelligent touch screen operation technology, and a physiotherapy device connected to the touch screen (11). The physiotherapy device is set inside the protective shell (10), and a number of connection ports (12) are provided on one side of the protective shell (10). The physiotherapy device (2) is installed at the connection port (12) of the protective shell (10) through a connector (3).
3. The occlusive comprehensive physiotherapy device according to claim 1, characterized in that: The connector (3) includes a connecting wire (30) connecting the host (1) and the physiotherapy belt (20). The connecting wire (30) is broken along the middle, and the ends of the broken connecting wire (30) that are close to each other are respectively connected to an active connecting frame (31) and a passive connecting frame (32). The active connecting frame (31) and the passive connecting frame (32) are provided with buckles. The first connecting tube (211) is also broken along the middle, and the ends of the first connecting tube (211) that are close to each other are also respectively provided on the active connecting frame (31) and the passive connecting frame (32).
4. The occlusive comprehensive physiotherapy device according to claim 1, characterized in that: The connection between the trigger plate (213) and the balloon (210) is also provided with an installation chamber (217) for installing and removing the Chinese medicine pack. The installation chamber (217) is a hollow structure, and the two ends of the installation chamber (217) in the length direction are provided with snap-fit ears (218) sleeved in the snap-fit groove, and the snap-fit ears (218) are made of elastic high temperature resistant material.
5. The occlusive comprehensive physiotherapy device according to claim 4, characterized in that: The side wall of the installation compartment (217) is provided with an installation slot for installing Chinese medicine packs.
6. The occlusive comprehensive physiotherapy device according to claim 4, characterized in that: The installation chamber (217) is also rotatably connected to a linkage column (40), and a linkage gear (41) is installed on the linkage column (40). The linkage gear (41) extends toward the physiotherapy belt (20) and extends into the physiotherapy belt (20). A micro motor (42) is installed in the physiotherapy belt (20). A micro gear (43) is rotatably installed at the output end of the micro motor (42) in the physiotherapy belt (20). The micro gear (43) slides and meshes with the linkage gear (41) on the linkage column (40).
7. The occlusive comprehensive physiotherapy device according to claim 6, characterized in that: Several rollers (44) are rotatably installed at equal intervals inside the installation chamber (217). The rollers (44) are located between the installation chamber (217) and the Chinese medicine pack inside. Each roller (44) has a claw (45) eccentrically connected to its bottom. Several linkage belts (46) are provided between the end of the linkage column (40) near the installation chamber (217) and several rollers (44).
8. The occlusive comprehensive physiotherapy device according to claim 1, characterized in that: The trigger plate (213) has a movable groove, and a temperature control monitor (5) is installed in the movable groove of the trigger plate (213).
9. The occlusive comprehensive physiotherapy device according to claim 1, characterized in that: The adjusting component (22) includes an adjusting threaded rod (220) which is rotatably mounted on the reaction frame (212). The adjusting end of the adjusting threaded rod (220) extends outward, while the actuating end of the adjusting threaded rod (220) is connected to two second metal guide plates (214).
Citation Information
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