A Traditional Chinese Medicine Tumor Rehabilitation Physiotherapy Device
Patent Information
- Application Number
- CN202310109253.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-14
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2043-02-14
AI Technical Summary
[0007]针对现有技术的不足,本发明提供了一种中医肿瘤康复理疗设备,解决现有的中医肿瘤康复理疗设备在使用时,装置体积过大,且无法移动的技术问题
[0032]1、由于采用了充气后的气垫作为蒸气腔室,将患者包裹起来,再由蒸气发生器向蒸气腔室中输送中药蒸气,所以,有效解决了现有的中医肿瘤康复理疗设备在使用时,装置体积过大,且无法移动的技术问题,进而实现了减小了装置体积的目的,方便对装置进行携带与运输,从而提高装置的适用范围。
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Figure CN115969690B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical equipment technology, and in particular to a traditional Chinese medicine tumor rehabilitation physiotherapy device. Background Technology
[0002] Traditional Chinese medicine fumigation therapy, also known as steam therapy, steam bath therapy, or transdermal herbal atomization therapy, is a TCM external treatment method guided by TCM theory. It utilizes the steam generated from the decoction of medicinal herbs to fumigate the body and achieve therapeutic effects. As early as the *Huangdi Neijing* (Yellow Emperor's Inner Classic), there was the concept of "massaging and bathing," and the *Liyu Jiaowen* (Treatise on the Principles of External Treatment) stated that "the principles of external treatment are the same as those of internal treatment; the medicines used in external treatment are the same as those used in internal treatment; the only difference is the method." Practice has proven that TCM fumigation therapy has a direct effect, definite efficacy, wide applicability, and no toxic side effects.
[0003] Currently, an existing TCM tumor rehabilitation physiotherapy device (e.g., patent number: CN110051526B) discloses a TCM tumor fumigation device, including a box and a seat installed inside the box. The box includes a working chamber and a fumigation chamber. The working chamber contains a TCM heating and atomizing device. The inner wall of the box is provided with several air outlets for the atomized drug vapor to pass through. The seat is installed inside the fumigation chamber. The front and top of the box have openings for the patient to enter the box. The openings are provided with retractable, sliding, deformable, and bendable curtains. One end of the curtain is connected to the lower end of the box, and the other end is provided with a first connecting plate. A second connecting plate is provided at the rear of the upper part of the side plate and spliced with the first connecting plate. A deformable cover extends from the end of the second connecting plate away from the first connecting plate. The deformable cover closes the rear side of the box. The center of the first and second connecting plates forms a through hole for the patient's neck to pass through. The seat includes a seat plate and a back plate. The back plate is hinged to the seat plate. An adjustment mechanism for adjusting the angle of the back plate is provided inside the fumigation chamber.
[0004] However, during the implementation of the above technical solution, at least the following technical problems were discovered:
[0005] Excessive device size: Existing TCM oncology rehabilitation physiotherapy equipment requires the patient's entire body to be wrapped in order to open the pores and accelerate blood circulation. In order to be suitable for people of different body sizes, the device is too large, making it impossible to use in some confined environments (such as on a bed) or to move it (such as when the patient is walking). In addition, the existing TCM oncology rehabilitation physiotherapy equipment is made of rigid materials, which greatly limits the scope of use and the environment in which the device is used (i.e., it cannot be easily moved). Therefore, we propose a TCM oncology rehabilitation physiotherapy device. Summary of the Invention
[0006] (a) Technical problems to be solved
[0007] To address the shortcomings of existing technologies, this invention provides a traditional Chinese medicine (TCM) tumor rehabilitation physiotherapy device, which solves the technical problems of existing TCM tumor rehabilitation physiotherapy devices being too large and immobile during use.
[0008] (II) Technical Solution
[0009] To achieve the above objectives, the present invention provides the following technical solution:
[0010] A traditional Chinese medicine tumor rehabilitation physiotherapy device, the physiotherapy device comprising:
[0011] The sealing component is fitted onto the patient's body to enclose the patient's body and form a sealed cavity. It is made of flexible and airtight material. When the sealing component is fitted onto the patient's body, air is inflated inside the sealing component, causing it to expand. At this time, the sealing component can be easily separated from the patient's body, thereby supporting the formation of an independent space, which facilitates the movement of Chinese medicine vapor within the space.
[0012] The steam generator is connected to the sealing component via a pipe. The steam generator is used to provide the sealing component with Chinese medicine steam and air. In addition to the steam-generating structure, it also has an air pump installed inside to provide enough air to the sealing component, causing it to expand. After use, the sealing component is vented, and then it can be retracted.
[0013] The sealing component comprises two air cushions, inner and outer, with their ends connected. During use, the patient enters between the two air cushions, and then the gap between them is inflated. As air continuously enters the space between the patient and the air cushions, the air volume increases, causing the air cushions to expand outwards, thus forming a... Figure 3 As shown in the shape, the patient can move freely within the space formed by the air cushion. Through the above, the air cushion forms a sealed chamber, which facilitates the movement of Chinese medicine vapor inside it.
[0014] The steam generator is equipped with a steam pipe and a distribution pipe on the outside. The steam pipe is connected to the cavity formed by the inner air cushion, so as to transport the Chinese medicine steam to the sealed cavity formed by the air cushion. This allows the Chinese medicine steam to come into contact with the patient's body surface, delivering heat and Chinese medicine components into the patient's body, thereby promoting blood circulation, removing blood stasis, and achieving the purpose of fumigation. The distribution pipe is connected to the outer air cushion, injecting air into the air cushion so that the air cushion has enough air to expand.
[0015] Preferably, the air cushion includes a central air cushion and telescopic air cushions connected to both ends of the central air cushion. When stored, the telescopic air cushions enter the area enclosed by the central air cushion, thereby reducing the space occupied by the telescopic air cushions and making it easier to store and store the device.
[0016] The telescopic air cushion is equipped with valve cores on its exterior. Gas distribution pipes are connected to these valve cores to deliver gas into the telescopic air cushion, while also facilitating the separation of the steam generator from the air cushion.
[0017] The system includes multiple sets of telescopic air cushions, which are connected end to end in sequence, with the outermost telescopic air cushion connected to the central air cushion.
[0018] Preferably, a sealing cloth is provided at the connection between the two air cushions, and the sealing cloth is strip-shaped. The edge of the sealing cloth is connected to a hollow cloth tube, and a pull rope is inserted inside the cloth tube. When the pull rope is pulled, the opening of the sealing cloth will be tightened.
[0019] Both ends of the pull rope extend out of the fabric tube, such as... Figure 3 As shown, the pull cord is designed for easy operation, and its length is greater than the length of the fabric tube to prevent it from entering the tube when the sealing fabric is unfolded. Figure 3 As shown.
[0020] Preferably, a traction rope is connected at the junction of the two air cushions;
[0021] The connection between the two air cushions is equipped with an elastic ring, which is connected to the traction rope. Since the traction rope can only be connected to a certain point of the air cushion when it is pulled, it is difficult to drive other parts of the air cushion to move synchronously. Therefore, an elastic ring is set at the connection of the air cushions. Then, the traction rope pulls the elastic ring, so that the traction force of the traction rope is transmitted to the elastic ring, and the elastic ring drives the air cushion to flip inward.
[0022] Preferably, a motor housing is mounted on the outer air cushion and connected to it. To prevent air from flowing through the gap between the air cushion and the motor housing, an airtight fabric is adhered to the outside of the motor housing. Figure 4 As shown, the motor box contains a motor and a winding wheel. The winding wheel is driven to rotate by the motor. The motor is a self-locking motor with a self-locking function. When the motor is powered on, it can drive the winding wheel to rotate, thereby winding the traction rope and converting torque into tension.
[0023] The motor box is installed at the center of the outer air cushion, and the winding wheel inside the motor box is connected to the traction rope.
[0024] Preferably, the steam generator is externally connected to a main air pipe, which supplies air to the support cavity between the two air pads. The steam generator is connected to the support cavity between the two air pads through the main air pipe. Therefore, when the air pump supplies air to the main air pipe, air can be injected between the two air pads, causing the air pads to separate from each other, thereby moving the telescopic air pads stored between the air pads outward.
[0025] One end of the main air tube passes through the center of the outer air cushion and extends into the gap between the two air cushions, so that the main air tube is only connected to the support cavity.
[0026] Preferably, the inner wall of the inner air cushion is equipped with several nozzles, and the nozzles are connected to the inner air cushion to spray the Chinese medicine vapor into the cavity formed by the air cushion, that is, into the gap between the patient and the air cushion, thereby steaming the Chinese medicine into the device.
[0027] The inner air cushion is connected to the steam pipe, and the Chinese medicine steam enters the inner air cushion along the steam pipe, making it convenient for the subsequent Chinese medicine steam to be sprayed out from the nozzle on the inner air cushion.
[0028] The nozzle's air outlet faces the center of the inner air cushion, thus blowing air onto the patient's skin.
[0029] Preferably, the telescopic air cushion includes an inner band, an outer band, and an elastic band arranged sequentially from top to bottom, with the outer edges of adjacent bands sewn together to form a sealed cavity between them. Figure 11 As shown;
[0030] One end of the air distribution tube extends into the gap between the inner and outer bands, so the air cushion can be inflated into the air chamber through the air distribution tube, causing the telescopic air cushion to expand.
[0031] (III) Beneficial Effects
[0032] 1. By using an inflatable air cushion as a steam chamber to wrap the patient, and then delivering Chinese medicine steam into the steam chamber by a steam generator, the technical problem of existing Chinese medicine tumor rehabilitation physiotherapy equipment being too large and immobile during use is effectively solved. This achieves the goal of reducing the size of the device, making it easier to carry and transport, thereby increasing the applicability of the device.
[0033] 2. By using traction ropes to pull the connection between the two air cushions towards the center, the technical problem of the excessive size of existing TCM tumor rehabilitation physiotherapy equipment during use is effectively solved, thereby realizing the automatic deployment and retraction of the device, reducing the size of the device when not in use, and reducing the difficulty of deployment and retraction.
[0034] 3. Because the patient is wrapped in a one-piece-shaped air cushion, the technical problem of existing TCM tumor rehabilitation physiotherapy equipment being unable to move during use is effectively solved. This allows for fumigation during patient movement, improving the convenience of fumigation without affecting the patient's normal activities. Attached Figure Description
[0035] The above description is merely an overview of the technical solution of the present invention. In order to better understand the technical means of the present invention and to implement it in accordance with the contents of the specification, the preferred embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0036] Figure 1 This is a usage diagram of an embodiment of the present invention (used in a hospital bed);
[0037] Figure 2 This is an overall structural diagram of an embodiment of the present invention;
[0038] Figure 3 This is a structural diagram showing the separation of the enclosed component and the steam generator in an embodiment of the present invention;
[0039] Figure 4 This is a structural diagram of the steam generator in an embodiment of the present invention;
[0040] Figure 5 This is a diagram illustrating the enclosed component retraction and detraction structure in an embodiment of the present invention;
[0041] Figure 6 For the present invention Figure 5 A structural diagram showing the extension of the central air cushion into the telescopic air cushion.
[0042] Figure 7 For the present invention Figure 6 A structural diagram of a telescopic air cushion after inflation;
[0043] Figure 8 This is a diagram illustrating the sealing cloth storage process in an embodiment of the present invention;
[0044] Figure 9 This is a cross-sectional view of the enclosed component in its retracted state in an embodiment of the present invention;
[0045] Figure 10 This is a diagram illustrating the air cushion deployment process in an embodiment of the present invention;
[0046] Figure 11 This is a diagram illustrating the inflation process of the telescopic air cushion in an embodiment of the present invention.
[0047] Figure 12 This is a structural diagram of the patient wearing the conjoined garment in an embodiment of the present invention;
[0048] Figure 13 This is a diagram showing the air cushion connection in an embodiment of the present invention;
[0049] Figure 14 For the present invention Figure 13 Enlarged view of structure A in the middle.
[0050] Legend: 1. Enclosed component; 11. Central air cushion; 12. Telescopic air cushion; 121. Inner belt; 122. Outer belt; 123. Elastic belt; 124. Air chamber; 13. Support chamber; 14. Nozzle; 15. Steam chamber; 2. Steam generator; 21. Steam pipe; 22. Distribution pipe; 23. Main pipe; 31. Zipper belt; 32. Zipper teeth; 33. Zipper head; 4. Bodysuit; 5. Sealing cloth; 6. Fabric tube; 7. Pull rope; 81. Traction rope; 82. Elastic ring; 83. Motor box; 84. Rewinding wheel. Detailed Implementation
[0051] This application provides a traditional Chinese medicine (TCM) tumor rehabilitation physiotherapy device that effectively solves the technical problems of existing TCM tumor rehabilitation physiotherapy devices being too large and immobile during use. When in use, the device utilizes an inflated air cushion as a steam chamber to enclose the patient, and a steam generator delivers herbal steam into the steam chamber, thereby reducing the device's size and facilitating its carrying and transportation, thus expanding its applicability. Furthermore, the use of a traction rope to pull the connection between two air cushions towards the center enables automatic deployment and retraction of the device, reducing its size when not in use and simplifying deployment and retraction. Finally, the use of a one-piece-shaped air cushion to enclose the patient allows for fumigation during patient movement, improving the convenience of fumigation without affecting the patient's normal activities.
[0052] Example 1
[0053] The technical solution in this application embodiment effectively solves the technical problem that existing TCM tumor rehabilitation physiotherapy equipment is too large and cannot be moved during use. The overall idea is as follows:
[0054] To address the problems existing in the prior art, this invention provides a traditional Chinese medicine tumor rehabilitation physiotherapy device. This device includes an air cushion for wrapping the patient. The air cushion expands when inflated, making the originally soft cushion firm, similar to an existing swimming ring. When not inflated, the swimming ring can be folded, but when inflated, it takes on a certain shape. This application utilizes this structural feature, transforming a device made of rigid materials into this special structure. This allows the device to meet the needs of different situations (i.e., it can be folded when not in use, reducing the device's volume; when in use, it can form a sealed space with a certain degree of rigidity). It also includes a steam generator 2 for inflating the air cushion and introducing traditional Chinese medicine steam into the device. This steam generator 2 can be a commercially available hand-operated garment steamer (such as the portable garment steamer disclosed in patent CN105980623B), with the liquid inside the steamer replaced by a concentrated liquid from decocted traditional Chinese medicine, or it can use a structure that generates steam inside an iron.
[0055] The sealing component 1 is fitted onto the patient's body surface to wrap the patient's body and form a sealed cavity. It is made of a flexible and airtight material. When the sealing component 1 is fitted onto the patient's body surface, air is inflated inside the sealing component 1, causing the sealing component 1 to expand. At this time, the sealing component 1 can be separated from the patient's body surface, thereby supporting the formation of an independent space, which facilitates the movement of Chinese medicine vapor within the space.
[0056] Steam generator 2 is connected to the sealing component 1 through a pipe. Steam generator 2 is used to provide Chinese medicine steam and air to the sealing component 1. In addition to the steam generating structure, it is also equipped with an air pump to provide enough air to the sealing component 1 so that the sealing component 1 can expand. After use, the sealing component 1 is vented, and then the sealing component 1 can be opened and closed.
[0057] The sealing component 1 comprises two air cushions, inner and outer, with their ends connected. During use, the patient enters between the two air cushions (and the gap between the patient and the air cushions is sealed, e.g., ...). Figure 1 (As shown), then air is inflated into the gap between the two air cushions. As air continuously enters between the patient and the air cushions, the air volume in the space enclosed by the air cushions increases, causing the air cushions to expand outwards, thus forming a shape like... Figure 3 As shown in the shape, the patient can move freely within the space formed by the air cushion. Through the above, the air cushion forms a sealed chamber, which facilitates the movement of Chinese medicine vapor inside it.
[0058] Steam generator 2 is externally equipped with steam pipe 21 and air distribution pipe 22. Steam pipe 21 is connected to the cavity formed by the inner air cushion, thereby delivering the Chinese medicine steam to the sealed cavity formed by the air cushion, so that the Chinese medicine steam comes into contact with the patient's body surface, delivering heat and Chinese medicine components into the patient's body, thereby achieving the purpose of promoting blood circulation and removing blood stasis, as well as fumigation. Air distribution pipe 22 is connected to the outer air cushion, injecting air into the air cushion, so that the air cushion has enough air to expand.
[0059] In some examples, the air cushion includes a central air cushion 11 and telescopic air cushions 12 connected to both ends of the central air cushion 11. When stored, the telescopic air cushions 12 enter the area enclosed by the central air cushion 11, such as... Figure 5 and Figure 9 As shown, this reduces the space occupied by the telescopic air cushion 12, facilitating the deployment and retraction of the device. Both the central air cushion 11 and the telescopic air cushion 12 are connected to the air pump inside the steam generator 2 via the air distribution pipe 22 (i.e., the steam generator 2 is equipped with an air pump, which injects air into the central air cushion 11 and the telescopic air cushion 12 through the air distribution pipe 22, thus providing an air source for the central air cushion 11 and the telescopic air cushion 12). After expansion, both the central air cushion 11 and the telescopic air cushion 12 are cylindrical, as shown... Figure 3As shown, at this time, the central air cushion 11 and the telescopic air cushion 12 do not support a space where steam can flow for the patient;
[0060] The telescopic air cushion 12 is equipped with valve cores on its exterior. The air distribution pipe 22 is connected to these valve cores to deliver gas into the telescopic air cushion 12, while also facilitating the separation of the steam generator 2 from the air cushion.
[0061] Multiple sets of telescopic air cushions 12 are provided, connected end to end in sequence, with the outermost telescopic air cushion 12 connected to the central air cushion 11, as shown below. Figure 2 and Figure 3 As shown, this increases the length of the sealing component 1, allowing it to completely enclose the patient's body surface and facilitate the movement of vapor at various locations on the patient's body surface.
[0062] In some examples, a sealing cloth 5 is provided at the connection between the two air cushions. The sealing cloth 5 is strip-shaped, and a hollow fabric tube 6 is connected to the edge of the sealing cloth 5. A pull cord 7 (such as a hood) is inserted inside the fabric tube 6. When the pull cord 7 is pulled, the opening of the sealing cloth 5 is tightened. Figures 3 to 2 As shown, this blocks the gap between the air cushion and the patient's body surface, reducing the outflow of Chinese medicine vapor and air;
[0063] Both ends of the pull rope 7 extend out of the cloth tube 6, such as Figure 3 As shown, the pull cord 7 is designed for easy operation (similar to the hood strap on a hoodie), and its length is greater than that of the fabric tube 6 to prevent the pull cord 7 from entering the fabric tube 6 when the sealing fabric 5 is unfolded. Figure 3 As shown.
[0064] In practice, the patient enters between the two air cushions (and the gap between the patient and the air cushions is blocked, such as...). Figure 1 (As shown), then the air distribution pipe 22 at the rear end of the steam generator 2 is inserted into the valve core outside the central air cushion 11 and the telescopic air cushion 12, so that the air distribution pipe 22 is connected to the central air cushion 11 and the telescopic air cushion 12. After completion, the gap between the two air cushions is inflated (using the air pump inside the steam generator 2). As air continuously enters between the patient and the air cushion, the air in the space enclosed by the air cushion continuously increases, causing the air cushion to expand outward, thus forming a shape like... Figure 3 As shown in the diagram, pull the cord 7 on the outside of the fabric tube 6. Since the cord 7 is inserted into the fabric tube 6 and the sealing cloth 5 is connected to the fabric tube 6, the opening of the sealing cloth 5 will be tightened when the cord 7 is pulled, as shown. Figures 3 to 2 As shown, this blocks the gap between the air cushion and the patient's body surface, reducing the outflow of Chinese medicine vapor and air. At this time, the patient can move freely in the space formed by the air cushion. Through the above, the air cushion forms a sealed chamber.
[0065] After the chamber is formed, the herbal steam generated by the steam generator 2 enters the chamber formed by the air cushion along the steam pipe 21. Figure 1 As shown, at this time, the herbal steam can come into contact with the patient's skin, thereby delivering heat and herbal ingredients into the body through the pores, accelerating the patient's blood flow, and enabling the patient to quickly absorb the herbal medicine, thus achieving the purpose of treating tumors.
[0066] After use, loosen the pull rope 7. At this time, the fabric tube 6 is no longer under tension, and you can manually pull the fabric tube 6 outward to form a shape like... Figures 2 to 3 As shown in the process, the patient can be removed from the cavity formed by the air cushion. Then, the air cushion 12 is deflated from the outside to the inside. After all the air cushions are deflated, they can be folded up for storage and convenient use next time.
[0067] Example 2
[0068] Based on Example 1, the embodiments of this application effectively solve the technical problem that the existing TCM tumor rehabilitation physiotherapy equipment is too large in size during use. The overall idea is as follows:
[0069] The two air cushions are connected by a traction rope 81, such as... Figure 9 As shown, the traction rope 81 is located in the gap between the two air cushions, so when the traction rope 81 is pulled, the air cushions can be flipped inwards, as... Figure 8 As shown, this reduces the volume of the air cushion. The other end of the traction rope 81 extends to the center of the outer air cushion, causing the air cushion to move towards the center and thus be stored in the center of the air cushion, allowing the air cushion to be folded up, thereby reducing the volume of the device, ultimately forming a shape as shown. Figure 5 The shape shown;
[0070] The connection point between the two air cushions is equipped with an elastic ring 82, which is connected to a traction rope 81. Since pulling the traction rope 81 only connects to a single point on the air cushion, making it difficult to move other parts of the air cushion synchronously, an elastic ring 82 is installed at the connection point. The traction rope 81 pulls the elastic ring 82, transferring the traction force of the rope to the elastic ring 82, which then causes the air cushion to rotate inwards. Figure 8 As shown.
[0071] In some examples, a motor housing 83 is mounted on the outer air cushion and connected to it. To prevent air from flowing through the gap between the air cushion and the motor housing 83, an airtight fabric is bonded to the outside of the motor housing 83. Figure 4As shown, the motor box 83 is equipped with a motor and a winding wheel 84. The winding wheel 84 is driven to rotate by the motor. The motor is a self-locking motor with a self-locking function. When the motor is powered on, it can drive the winding wheel 84 to rotate, thereby winding the traction rope 81 and converting the torque into the tension.
[0072] The motor box 83 is installed at the center of the outer air cushion, facilitating the pulling of the air cushion towards the center. The winding wheel 84 inside the motor box 83 is connected to the traction rope 81, so when the winding wheel 84 rotates, it can pull one end of the traction rope 81, ultimately forming a... Figure 9 The state shown.
[0073] In some examples, the steam generator 2 is externally connected to a main air pipe 23, which supplies air to the support cavity between the two air pads. The steam generator 2 is connected to the support cavity 13 between the two air pads via the main air pipe 23. Therefore, when the air pump supplies air to the main air pipe 23, air is injected between the two air pads, causing the air pads to separate and thus moving the telescopic air pad 12 housed between them outwards. Figure 10 As shown, as the main air tube 23 continuously inflates the support cavity 13, the air cushion stored inside the support cavity 13 continuously unfolds, thereby reducing the difficulty of unfolding the air cushion.
[0074] One end of the main air tube 23 passes through the center of the outer air cushion and extends into the gap between the two air cushions, so that the main air tube 23 is only connected to the support cavity 13.
[0075] In some examples, the inner wall of the inner air cushion is equipped with several nozzles 14, and the nozzles 14 are connected to the inner air cushion. Therefore, by introducing the Chinese medicine steam into the inner air cushion (the space inside the inner air cushion is the steam chamber 15), after the air pressure inside the steam chamber 15 reaches a certain value, the Chinese medicine steam is sprayed out from the nozzles 14 on its inner wall, thereby spraying the Chinese medicine steam into the cavity surrounded by the air cushion, that is, into the gap between the patient and the air cushion, thus introducing the Chinese medicine steam into the device.
[0076] The inner air cushion is connected to the steam pipe 21. The Chinese medicine steam enters the inner air cushion along the steam pipe 21, which facilitates the subsequent spraying of Chinese medicine steam from the nozzle 14 on the inner air cushion (both the inner and outer air cushions are composed of a central air cushion 11 and a telescopic air cushion 12).
[0077] The air outlet of nozzle 14 is directed toward the center of the inner air cushion, thereby blowing air onto the patient's body surface (the patient is located in the center of the air cushion).
[0078] In some examples, the telescopic air cushion 12 includes an inner band 121, an outer band 122, and an elastic band 123 arranged sequentially from top to bottom, with the outer edges of adjacent bands stitched together to form a sealed cavity between them. Figure 11 As shown, the cavity formed between the inner band 121 and the outer band 122 is an air cavity 124. When the air cavity 124 is inflated, the inner band 121 and the outer band 122 separate from each other until they can no longer be separated. At this time, the telescopic air cushion 12 expands into a state with a certain degree of rigidity, like an inflatable swimming ring, while the elastic band 123 on the outer band 122 is in a stretched state. When the air cavity 124 is deflated, the elastic band 123 contracts under its own elastic force, pulling the outer band 122 and the inner band 121 together toward the center, causing the telescopic air cushion 12 to bulge, thereby reducing the space occupied by the telescopic air cushion 12.
[0079] One end of the air distribution pipe 22 extends into the gap between the inner belt 121 and the outer belt 122, so the air cushion can be inflated into the air chamber 124 through the air distribution pipe 22, causing the telescopic air cushion 12 to expand.
[0080] In the specific implementation process, the sealing component 1 unfolds: first, air is injected into the central air cushion 11 through the air distribution pipe 22 (simultaneously inflating the central air cushion 11 on both the inner and outer layers of air cushions), causing the central air cushion 11 to expand and form a shape like... Figure 5 As shown (and as Figure 10 As shown in Figure a), at this time, the central air cushion 11 expands to a certain shape. Then, air is pumped into the main air pipe 23 through the air pump, which injects air between the two air cushions (one end of the main air pipe 23 extends into the support cavity 13 between the two air cushions), causing the air cushions to separate from each other. Under the action of air pressure, the telescopic air cushion 12 stored between the air cushions moves outward, as shown in Figure a. Figure 10 As shown (from top to bottom) Figure 10 a, Figure 10 b、 Figure 10 c and Figure 10 d) As the main air tube 23 continuously inflates the support cavity 13, the air cushion housed inside the support cavity 13 continuously expands, such as Figure 10 b to Figure 10 In the state shown in Figure c, the telescopic air cushion 12 closest to the central air cushion 11 is inflated, causing it to expand and, like the central air cushion 11, gain a certain supporting force. Then, the support cavity 13 is inflated until all the telescopic air cushions 12 extend between the two layers of the central air cushion 11. Finally, the air inside the support cavity 13 is released, thus forming a... Figure 3 The shape shown.
[0081] When the enclosed component 1 is stored, the outermost telescopic air cushion 12 is first deflated. After deflation, the motor inside the motor box 83 is energized and rotates. Since the motor's output shaft is connected to the winding wheel 84, and the winding wheel 84 is used to connect one end of the traction rope 81, the traction rope 81 is pulled when the motor rotates, causing it to move towards the motor box 83 (i.e., the position of the central air cushion 11), thereby pulling the outermost telescopic air cushion 12 into the gap between the air cushions. Figure 8 As shown, the sealing cloth 5 located on the outside of the air cushion is also pulled between the two air cushions. Similarly, the telescopic air cushion 12 is continuously deflated and pulled so that all the telescopic air cushions 12 enter between the two central air cushions 11. Finally, the central air cushion 11 is deflated. At this time, the sealing component 1 is completely stored, thereby reducing the difficulty of storage.
[0082] Example 3
[0083] Based on Example 1, this application describes how to bend an air cushion into a cylindrical shape. The general idea is as follows:
[0084] Both sides of the air cushion are connected to zipper straps 31, and zipper teeth 32 are provided on the outside of the zipper straps 31. A zipper head 33 is movably connected to one of the zipper straps 31. The zipper head 33 is used to operate the zipper teeth 32 to engage or disengage, like a sleeping bag, connecting the originally flat air cushion into a cylindrical shape, like 13 and Figure 14 As shown;
[0085] When the two zipper teeth 32 bite together, the air cushion rolls up into a cylindrical shape, thereby wrapping the patient, which can improve the existing air cushion into a usable closed component 1.
[0086] Example 4
[0087] Based on Example 1, the embodiments of this application effectively solve the technical problem that existing TCM tumor rehabilitation physiotherapy equipment cannot be moved during use. The overall idea is as follows:
[0088] like Figure 12 As shown, by making the air cushion into the shape of a bodysuit 4, the patient can wear it. Then, air is injected between the bodysuit 4 and the patient through the steam generator 2, causing the bodysuit 4 to inflate and create an independent space. After completion, Chinese medicine steam is introduced into the gap between the bodysuit 4 and the patient, so that the Chinese medicine steam comes into contact with the patient's skin, thereby transferring heat and Chinese medicine ingredients to the patient.
[0089] Example 5
[0090] Based on Example 1, the embodiments of this application address the technical problem that existing tumor rehabilitation methods all require large-scale instruments to complete. The overall approach is as follows:
[0091] A traditional Chinese medicine method for tumor rehabilitation and physiotherapy, comprising:
[0092] Establishing a steam chamber: The patient is wrapped in a flexible, airtight diaphragm, and the cavity formed by the diaphragm is inflated. This encloses the patient and prevents air leakage. By introducing air into the diaphragm, it expands to form an independent space. Then, Chinese medicine steam is introduced into the space to perform Chinese medicine physiotherapy. It is simple and convenient and does not require large equipment.
[0093] Fumigation: The steam produced by decocting the medicine is introduced into the cavity.
[0094] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the scope of protection of this invention.
Claims
1. A traditional Chinese medicine tumor rehabilitation physiotherapy device, characterized in that, The physiotherapy equipment includes: The closing component (1) is fitted onto the patient's body surface to wrap the patient's body and form a closed cavity; A steam generator (2) is connected to a closed assembly (1) via a pipe, and the steam generator (2) is used to provide Chinese medicine steam and air to the closed assembly (1); The closed component (1) includes two layers of air cushions, and the ends of the two air cushions are connected to each other. The air cushion includes a central air cushion (11) and telescopic air cushions (12) connected to both ends of the central air cushion (11). Both the central air cushion (11) and the telescopic air cushion (12) are supplied with air by the air pump inside the steam generator (2). Both the central air cushion (11) and the telescopic air cushion (12) are cylindrical after expansion. Multiple sets of telescopic air cushions (12) are provided and connected end to end in sequence. The telescopic air cushion (12) at the very end is connected to the central air cushion (11). A sealing cloth (5) is provided at the connection between the two air cushions, and the sealing cloth (5) is strip-shaped. A hollow cloth tube (6) is connected to the edge of the sealing cloth (5), and a pull rope (7) is inserted inside the cloth tube (6). Both ends of the pull rope (7) extend out of the cloth tube (6), and the length of the pull rope (7) is greater than the length of the cloth tube (6). A traction rope (81) is connected to the connection point of the two air cushions, and the traction rope (81) is located in the gap between the two air cushions. The other end of the traction rope (81) extends to the center of the outer air cushion. An elastic ring (82) is provided at the connection point of the two air cushions and is connected to the traction rope (81). The steam generator (2) is equipped with a steam pipe (21) and a gas distribution pipe (22) on its exterior. The steam pipe (21) is connected to the cavity formed by the inner air cushion, and the gas distribution pipe (22) is connected to the outer air cushion. The inner wall of the inner air cushion is equipped with several nozzles (14), and the nozzles (14) are connected to the inner air cushion; the inner air cushion is connected to the steam pipe (21); the air outlet of the nozzles (14) faces the center of the inner air cushion. Both sides of the air cushion are connected to zipper straps (31), and zipper teeth (32) are provided on the outside of the zipper straps (31). A zipper head (33) is movably connected to one of the zipper straps (31). The zipper head (33) is used to operate the zipper teeth (32) to engage or disengage. When two zipper teeth (32) are engaged together, the air cushion is rolled into a cylindrical shape.
2. The TCM tumor rehabilitation physiotherapy device according to claim 1, characterized in that: The telescopic air cushion (12) includes an inner strip (121), an outer strip (122), and an elastic strip (123) arranged from top to bottom, and the edges of adjacent strips are stitched together. One end of the gas distribution pipe (22) extends into the gap between the inner belt (121) and the outer belt (122).
3. The TCM tumor rehabilitation physiotherapy device according to claim 1, characterized in that: A motor housing (83) is installed on the outer air cushion, and a motor and a winding wheel (84) are installed inside the motor housing (83). The winding wheel (84) is driven to rotate by the motor. The motor box (83) is installed at the center of the outer air cushion, and the winding wheel (84) inside the motor box (83) is connected to the traction rope (81).
4. The TCM tumor rehabilitation physiotherapy device as described in claim 3, characterized in that: The steam generator (2) is externally connected to a main air pipe (23), and the steam generator (2) is connected to the support cavity (13) between the two air cushions through the main air pipe (23); One end of the main air tube (23) passes through the center of the outer air cushion and extends into the gap between the two air cushions.
Citation Information
Patent Citations
Portable steam garment steamer
CN105980623B
A Traditional Chinese Medicine Tumor Fumigation Device
CN110051526B
Air inflation cover
CN108922578A
Fumigation bed for oriental medicine
KR102130450B1