Sports rehabilitation phototherapy patch type ion exchange nanocrystalline up-conversion device

By designing the positioning frame and switching components, the phototherapy device achieves precise positioning and flexible adjustment of the therapeutic wavelength, solving the problems of light offset and single wavelength in existing devices, and improving the treatment effect and scope of application.

CN121623170AInactive Publication Date: 2026-03-10QINGDAO UNIV OF SCI & TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-18
Publication Date
2026-03-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing phototherapy patch-type ion exchange nanocrystal upconversion devices for sports rehabilitation suffer from problems such as light direction deviation and insufficient light wavelength adjustment capabilities, resulting in poor treatment effects and an inability to adapt to diverse rehabilitation scenarios.

Method used

Precise alignment is achieved using a positioning frame, mounting cover, and connecting components to ensure perpendicular light incidence; flexible adjustment of the therapeutic light wavelength is achieved through a switching component; and precise switching of filters is achieved by using magnetic columns and magnetic blocks for adsorption and engagement, combined with gear and belt drives.

Benefits of technology

It solves the problems of light deviation and single wavelength, ensuring efficient conversion and stable output of therapeutic light, adapting to the rehabilitation needs of different injury types, and broadening the applicability of the device in the field of sports rehabilitation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of phototherapy equipment, in particular to an exercise rehabilitation phototherapy patch type ion exchange nanocrystalline up-conversion device which comprises an installation piece, a positioning frame fixed to the middle of the installation piece in a penetrating mode and an installation cover attached to the inner side of the top end of the positioning frame in a sliding mode. When the rehabilitation phototherapy device is used, the illuminator in the installation cover and the transparent box in the positioning frame can be always centered and aligned, illumination deviation is effectively avoided, it is ensured that exciting light vertically enters a nanocrystalline body in the transparent box, the conversion efficiency is guaranteed, and meanwhile the recovery phototherapy device is convenient to use. A transparent grid plate of the crystal separation assembly can limit a nanocrystalline body in an independent grid, agglomeration of the nanocrystalline body due to movement or gravity is prevented, stable energy transfer among ions is maintained, a transparent cover plate is clamped and fixed to an abutting hole of a transparent box through an abutting column, and the nanocrystalline body can be directly replaced after the transparent cover plate is opened. And the device integrally meets the requirement of the biomedical engineering industry on the convenience of phototherapy equipment.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of light treatment equipment, in particular to a sports rehabilitation light therapy patch type ion exchange nanocrystal up-conversion device. BACKGROUND

[0002] In the development process of the biomedical engineering industry, the demand for precise and portable light therapy equipment in the field of sports rehabilitation is increasingly urgent, and the sports rehabilitation light therapy patch type ion exchange nanocrystal up-conversion device emerges as the times require. The existing patch is usually based on a medical flexible material as a substrate, and an ion exchange nanocrystal layer is fixed inside. When in use, the patch is directly attached to the skin of the sports injury site, and the initial fixation is ensured by the adhesive layer on the edge of the patch. Then, an independent near-infrared light source device (mostly handheld or desktop type, with a switch and light parameter adjustment function) is taken out, the light source switch is manually turned on, and the irradiation angle of the light source is adjusted according to the position of the patch. After the external near-infrared light source irradiates the patch, the ion exchange nanocrystal in the patch absorbs the low-energy photons of the near-infrared light, and through the energy transfer process between the rare earth ions inside the nanocrystal, the low-energy photons are converted into high-energy visible light or ultraviolet light. These converted treatment lights can penetrate the skin and act on the deep tissues, interact with the tissue cells, promote the synthesis of ATP in the cells to accelerate tissue repair, inhibit the transmission of pain nerves to relieve pain, reduce the release of inflammatory factors to play an anti-inflammatory effect, and promote collagen synthesis to help wound healing, thereby realizing the light therapy effect of sports rehabilitation.

[0003] The existing sports rehabilitation light therapy patch type ion exchange nanocrystal up-conversion device has many defects to be solved in actual application: first, the light-emitting assembly and the nanocrystal layer are designed in a separate manner, and there is no stable and reliable precise positioning structure. When in use, the positions of the two need to be manually aligned by hand, which is not only cumbersome to operate, but also easy to cause displacement due to slight deviation during assembly or movement of the limbs during treatment, resulting in deviation of the light irradiation direction and failure to ensure that the excitation light is perpendicular to the nanocrystal layer. Such deviation can directly weaken the absorption efficiency of the nanocrystal to the excitation light, interfere with the energy transfer process between the ions, and thus reduce the conversion efficiency and affect the output intensity of the treatment light; second, the existing device has insufficient treatment light wavelength adjustment capability. The ion exchange nanocrystal up-conversion structure of most devices is fixed, or only a single specification of light filtering component is provided, which cannot adjust the treatment light wavelength according to the rehabilitation needs of different sports injury types. For example, deep muscle strain requires a stronger penetrating wavelength, while superficial tendonitis or skin injury requires a wavelength that acts on the surface tissue. The single wavelength of the treatment light cannot adapt to diversified rehabilitation scenarios, resulting in poor treatment effect for some injuries and limiting the application range of the device in the field of sports rehabilitation in the biomedical engineering industry. SUMMARY

[0004] The purpose of the present application is to provide a sports rehabilitation phototherapy patch type ion exchange nanocrystal upconversion device to solve the problems raised in the above background.

[0005] To achieve the above object, the present application provides the following technical solution: a sports rehabilitation phototherapy patch type ion exchange nanocrystal upconversion device, comprising a mounting sheet, a positioning frame fixed through the middle of the mounting sheet, and a mounting cover slidingly fitted along the inside of the top end of the positioning frame, both ends of the mounting sheet are fixedly connected with auxiliary patches, the inside of the bottom end of the positioning frame is provided with a transparent box, the inside of the transparent box is provided with a crystal separation assembly, a connecting assembly is arranged between the positioning frame and the mounting cover, a light emitter is vertically arranged at the inside middle position of the mounting cover, a storage battery is fixedly installed on the inside wall of one side of the mounting cover, the storage battery and the light emitter are electrically connected through control wires, the irradiation end of the light emitter faces the middle part of the positioning frame, and a switching assembly is arranged in the inside of the mounting cover; the connecting assembly comprises a plurality of magnet columns and a plurality of magnet blocks, a plurality of magnet columns are fixedly installed at the edges of the mounting cover at equal intervals, and a plurality of magnet blocks are arranged at positions corresponding to the plurality of magnet columns on the inner wall of the positioning frame.

[0006] Further, a positioning frame is fixedly sleeved on the outside of each magnet block, and one end of the positioning frame is embeddedly fixedly installed on the inner wall of the positioning frame.

[0007] Further, a plurality of fixing blocks are uniformly fixed on the periphery of the transparent box, one end of the fixing block away from the transparent box is fixedly installed on the inner wall of the positioning frame, the crystal separation assembly comprises a transparent grid plate and a transparent cover plate, the transparent grid plate is fixedly installed in the inside of the transparent box, the transparent cover plate is fitted on the outside of the top end of the transparent box, and the grid of the transparent grid plate is filled with nanocrystal bodies.

[0008] Further, a plurality of abutting holes are circumferentially arranged at equal intervals at the edges of the transparent box, an abutting column is fixedly installed at the edge of the transparent cover plate corresponding to each abutting hole, and one end of the abutting column is abuttingly and clampingly installed in the inside of the corresponding side abutting hole.

[0009] Further, a control switch and a charging interface are installed on the outside of one side of the mounting cover close to the storage battery, an installation frame is fixedly sleeved on the outside of the light emitter, and one end of the installation frame away from the light emitter is fixedly installed on the inner wall of the mounting cover.

[0010] Further, the switching assembly comprises a large gear disc and four transmission rods, the large gear disc is fitted on the inner wall of one side of the mounting cover, the four transmission rods are rotatably fixedly installed at one side corner in the inside of the mounting cover, and two transmission belts are sleeved on the outside of both ends of the four transmission rods.

[0011] Further, one end of each of the four transmission rods near one end of each transmission belt is fixedly provided with a belt pulley, and the outer part of the belt pulley is in contact with the inner wall of the corresponding side transmission belt.

[0012] Further, one end of each of the four transmission rods near the gear disc is fixedly provided with a pinion, and one side of the pinion is in meshing connection with one side of the gear disc, and a plurality of flexible filters of different specifications are fixedly connected between the two transmission belts at equal intervals.

[0013] Further, a center shaft is fixedly installed at the middle part of the side of the gear disc away from the flexible filter, one end of the center shaft is rotatably installed on the outside of one side of the installation cover, a limiting disc is fixedly installed on the outside of the penetrating end of the center shaft, a twisting block is fixedly installed on the outside of the side of the limiting disc away from the center shaft, and a scale mark is arranged on the outside of the installation cover near the limiting disc.

[0014] Further, a plurality of positioning holes are arranged at equal intervals on the inside of the edge of the limiting disc near the installation cover, an installation hole is arranged on the outside of each positioning hole near the installation cover, a sliding block is slidingly and clippably installed in the installation hole, a ball is fixedly installed on one end of the sliding block near the positioning hole, the ball is slidingly and clippably installed in the corresponding installation hole, a resisting spring is fixedly connected to the side of the sliding block away from the ball, and the end of the resisting spring away from the sliding block is embeddedly and fixedly installed on the inner wall of the installation hole.

[0015] Compared with the prior art, the beneficial effects of the present application are: 1. By arranging the positioning frame, the installation cover and the connecting assembly, the present rehabilitation phototherapy device can be quickly and accurately docked with the installation cover and the positioning frame by the adsorption and clamping of the magnet column and the magnet block in the connecting assembly when in use, the light-emitting device in the installation cover and the transparent box in the positioning frame are always centered and aligned, light deviation is effectively avoided, the excitation light is ensured to be perpendicular to the nanocrystal body in the transparent box, the conversion efficiency is ensured, the transparent grid plate of the crystal separation assembly can limit the nanocrystal body in an independent grid to prevent it from agglomerating due to activity or gravity, the ion energy transmission is stable, the transparent cover plate is clamped and fixed by the resisting hole of the transparent box through the resisting column, the nanocrystal body can be directly replaced by opening, the device does not need to be replaced as a whole, the use cost is greatly reduced, the defects of poor positioning, nanocrystal agglomeration and inconvenience of replacement of the existing device are solved, and the overall convenience requirement of the biomedical engineering industry for phototherapy equipment is met.

[0016] 2. By switching the setting of the assembly, the present rehabilitation light therapy device can drive the large gear disc to rotate by twisting the limiting disc when in use, the large gear disc engages the pinion to drive the transmission rod to operate, the belt pulley on the transmission rod drives the transmission belt to move, thereby accurately switching different specifications of flexible filters into the irradiation path of the light emitter, and the positioning hole of the limiting disc can be engaged with the ball in the mounting hole of the mounting cover to limit the position, ensuring the stable position of the filter, realizing flexible adjustment of the wavelength of the treatment light, adapting to the rehabilitation needs of different injuries such as deep muscle sprain and superficial tendonitis, completely solving the problems of single wavelength of the existing device and poor adaptability, and significantly widening the application range of the device in the sports rehabilitation scene. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the present application; Figure 2 It is a schematic diagram of the overall structure of the present application; Figure 3 It is a schematic diagram of the overall structure of the present application; Figure 4 It is a schematic diagram of the overall structure of the present application; Figure 3 It is a schematic diagram of the overall structure of the present application; Figure 5 It is a schematic diagram of the overall structure of the present application; Figure 6 It is a schematic diagram of the overall structure of the present application; Figure 5 It is a schematic diagram of the overall structure of the present application; Figure 7 It is a schematic diagram of the overall structure of the present application; Figure 8 It is a schematic diagram of the overall structure of the present application; Figure 9 It is a schematic diagram of the overall structure of the present application; Figure 10 It is a schematic diagram of the overall structure of the present application; Figure 11 It is a schematic diagram of the overall structure of the present application; Figure 10 It is a schematic diagram of the overall structure of the present application; Figure 12 It is a schematic diagram of the overall structure of the present application;

[0018] In the drawings, the components represented by each reference numeral are listed as follows: 1, mounting piece; 2, positioning frame; 3, transparent box; 4, transparent grid plate; 5, nanocrystal body; 6, transparent cover plate; 7, abutting column; 8, abutting hole; 9, mounting cover; 10, light emitter; 11, mounting bracket; 12, battery; 13, control switch; 14, charging interface; 15, magnet column; 16, positioning bracket; 17, magnet block; 18, large gear plate; 19, center shaft; 20, limiting disc; 21, transmission rod; 22, transmission belt; 23, pulley; 24, flexible filter; 25, pinion; 26, twisting block; 27, fixed block; 28, auxiliary patch; 29, scale mark; 30, positioning hole; 31, mounting hole; 32, sliding block; 33, abutting spring; 34, ball; 35, control wire. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0020] Embodiment one: please refer to Figure 1 Figure 7 A sports rehabilitation phototherapy patch type ion exchange nanocrystal up-conversion device, comprising a mounting piece 1, a positioning frame 2 fixed through the middle of the mounting piece 1, and a mounting cover 9 slidingly fitted along the inner side of the top end of the positioning frame 2, both ends of the mounting piece 1 are fixedly connected with auxiliary patches 28, the bottom end of the positioning frame 2 is provided with a transparent box 3 inside, the inside of the transparent box 3 is provided with a crystal separation assembly, a connecting assembly is arranged between the positioning frame 2 and the mounting cover 9, a light emitter 10 is vertically arranged at the inner middle position of the mounting cover 9, a battery 12 is fixedly installed on the inner wall of one side of the mounting cover 9, the battery 12 and the light emitter 10 are electrically connected through a control wire 35, the irradiation end of the light emitter 10 faces the middle part of the positioning frame 2, and a switching assembly is arranged in the mounting cover 9; the connecting assembly comprises a plurality of magnet columns 15 and a plurality of magnet blocks 17, the plurality of magnet columns 15 are fixedly installed at the edges of the mounting cover 9 at equal intervals, and the plurality of magnet blocks 17 are arranged at positions corresponding to the plurality of magnet columns 15 on the inner wall of the positioning frame 2.

[0021] The outer part of each magnet block 17 is fixedly sleeved with a positioning bracket 16, one end of the positioning bracket 16 is embeddedly fixedly installed on the inner wall of the positioning frame 2.

[0022] ​A plurality of fixing blocks 27 are uniformly fixed on the outer periphery of the transparent box 3, and the fixing blocks 27 are fixedly installed on the inner wall of the positioning frame 2 away from the transparent box 3. The crystal separation assembly includes a transparent grid plate 4 and a transparent cover plate 6. The transparent grid plate 4 is fixedly installed in the interior of the transparent box 3, and the transparent cover plate 6 is attached to the top end of the transparent box 3. The grid of the transparent grid plate 4 is filled with a nanocrystal body 5.

[0023] A plurality of abutting holes 8 are equidistantly arranged around the edge of the transparent box 3, and an abutting column 7 is fixedly installed on the edge of the transparent cover plate 6 corresponding to each abutting hole 8. One end of the abutting column 7 is abuttingly and clippably installed in the corresponding abutting hole 8.

[0024] The control switch 13 and the charging interface 14 are installed on the outer side of the mounting cover 9 close to the battery 12. The mounting bracket 11 is fixedly installed on the inner wall of the mounting cover 9 away from the light emitting device 10.

[0025] In this embodiment, the working principle and use process of the sports rehabilitation light therapy patch type ion exchange nanocrystal upconversion device are as follows: when in use, first, the mounting sheet 1 is attached to the skin surface of the sports injury part, and the two end fixedly connected auxiliary patches 28 can enhance the attachment stability of the device and the skin, avoid displacement of the device during limb movement, and ensure that the treatment area accurately corresponds to the injury part. The positioning frame 2 is fixedly installed in the middle of the mounting sheet 1, and the inner wall is stably connected to the transparent box 3 through a plurality of fixing blocks 27. The fixing blocks 27 can effectively limit the position of the transparent box 3, and prevent the transparent box 3 from shaking and affecting the light receiving effect during use.

[0026] Subsequently, the mounting cover 9 is slid along the top end of the positioning frame 2, and the mounting cover 9 and the positioning frame 2 are precisely docked by using the connecting assembly. The magnet column 15 fixedly arranged at the edge of the mounting cover 9 will generate an adsorption force with the magnet block 17 at the corresponding position of the inner wall of the positioning frame 2. The positioning bracket 16 fixedly sleeved outside the magnet block 17 can further fix the installation position of the magnet block 17, avoid deviation during adsorption, and finally make the light emitting device 10 fixedly installed in the mounting bracket 11 in the mounting cover 9 be kept in the center of the transparent box 3, solve the light deviation problem caused by the separation design of the existing device, and provide protection for the subsequent light conversion efficiency.

[0027] Then, press the control switch 13 on the side of the installation cover 9 close to the battery 12, the battery 12 provides stable power for the light emitting device 10 through the control wire 35, the irradiation end of the light emitting device 10 faces the middle of the positioning frame 2, and the emitted near-infrared light is vertically incident into the inside of the transparent box 3. The transparent grid plate 4 fixed in the transparent box 3 limits the nanocrystal body 5 filled in the grid in an independent space, effectively prevents the nanocrystal body 5 from agglomerating due to gravity, vibration or limb movement, avoids the blockage of ion energy transfer caused by agglomeration, ensures that the nanocrystal body 5 can uniformly absorb near-infrared light, and through the conversion effect of ion exchange nanocrystal, the low-energy near-infrared light is efficiently converted into therapeutic light, the therapeutic light penetrates the transparent box 3 and acts on the skin and deep tissue, realizing the effects of tissue repair, analgesia and anti-inflammatory and other sports rehabilitation.

[0028] When the nanocrystal body 5 has efficiency decay due to long-term use, or needs to be replaced according to different treatment stages, the transparent cover plate 6 can be manually operated, and the abutting column 7 at the edge of the transparent cover plate 6 is separated from the corresponding abutting hole 8 at the edge of the transparent box 3 under the action of external force, that is, the transparent cover plate 6 can be opened to replace the nanocrystal body 5 in the grid of the transparent grid plate 4, without discarding the whole device, greatly reducing the use cost, and solving the defect that the nanocrystal of the existing device is inconvenient to replace. If the battery 12 is insufficient, the charging interface 14 on the outside of the installation cover 9 can be used to supplement the power, so that the device can continuously meet the needs of sports rehabilitation phototherapy, and the whole process not only meets the convenience requirements of biomedical engineering industry for phototherapy equipment, but also makes up for many defects of the existing device through structural design.

[0029] Embodiment two: please refer to Figure 8 Figure 12 The embodiment further illustrates embodiment one, and the switching assembly includes a large gear plate 18 and four transmission rods 21. The large gear plate 18 is arranged on one side of the inner wall of the installation cover 9, the four transmission rods 21 are rotatably arranged at one side of the inner corner of the installation cover 9, and two transmission belts 22 are arranged on the outer sides of the two ends of the four transmission rods 21.

[0030] The one end of each of the four transmission rods 21 close to the transmission belt 22 is provided with a belt pulley 23, and the outer side of the belt pulley 23 is in abutting connection with the inner wall of the corresponding side of the transmission belt 22.

[0031] The one end of each of the four transmission rods 21 close to the large gear plate 18 is provided with a small gear 25, one side of the small gear 25 is in meshing connection with one side of the large gear plate 18, and a plurality of flexible filters 24 of different specifications are fixedly connected between the two transmission belts 22.

[0032] ​The center shaft 19 penetrates and is rotatably installed on one side of the outer part of the installation cover 9, the outer part of the penetrating end of the center shaft 19 is fixedly installed with a limiting disc 20, the outer part of the side of the limiting disc 20 away from the center shaft 19 is fixedly installed with a screw block 26, and the outer part of the installation cover 9 close to the limiting disc 20 is provided with a scale mark 29.

[0033] The limiting disc 20 is internally and equidistantly provided with a plurality of positioning holes 30 around the edge close to the installation cover 9, the outer part of each positioning hole 30 of the installation cover 9 is provided with a mounting hole 31, the inner part of the mounting hole 31 is slidably and clampingly installed with a sliding block 32, one end of the sliding block 32 close to the positioning hole 30 is fixedly installed with a ball 34, the ball 34 is slidably and clampingly installed in the corresponding mounting hole 31, and the side of the sliding block 32 away from the ball 34 is fixedly connected with a contact spring 33, and one end of the contact spring 33 away from the sliding block 32 is embeddedly and fixedly installed on the inner wall of the mounting hole 31.

[0034] In this embodiment, the switching assembly of the sports rehabilitation light therapy patch type ion exchange nanocrystal up-conversion device plays a core role in realizing flexible adjustment of the treatment light wavelength to adapt to the rehabilitation needs of different sports injuries, and the working principle is as follows: when the user needs to adjust the treatment light wavelength for different injury types (such as deep muscle strain requiring a stronger penetrating wavelength, and superficial tendonitis requiring a wavelength acting on the surface), first, manually twist the screw block 26 on the outer side of the limiting disc 20, the screw block 26 drives the limiting disc 20 to rotate synchronously, and the limiting disc 20 is fixedly connected with the center shaft 19, so that the center shaft 19 rotates together with the limiting disc 20 and penetrates the inner wall of the installation cover 9, thereby driving the large gear disc 18 fixed at the other end of the center shaft 19 to rotate on the inner wall of one side of the installation cover 9.

[0035] Since the large gear disc 18 is meshingly connected with the four small gear wheels 25 at the ends of the four transmission rods 21, the large gear disc 18 rotates to drive the small gear wheels 25 to rotate synchronously, and the small gear wheels 25 drive the corresponding transmission rods 21 to rotatably run at the inner corners of the installation cover 9. The fixed belt pulleys 23 at the two ends of the transmission rods 21 rotate with the transmission rods 21, and the outer part of the belt pulleys 23 is in abutting contact with the inner wall of the transmission belts 22, so that the belt pulleys 23 rotate to drive the two transmission belts 22 to move stably in the horizontal direction, and the plurality of flexible light filters 24 of different specifications fixedly arranged at equal intervals between the two transmission belts 22 move with the belts, so that the flexible light filter 24 of the target specification is accurately switched to the irradiation path of the light emitting device 10, and the adjustment of the treatment light wavelength is realized.

[0036] During the filter switching process, the positioning structure of the limiting disc 20 can ensure the stability of the filter position: the positioning holes 30 on the edge of the limiting disc 20 rotate with it, and when a certain positioning hole 30 rotates to align with the mounting hole 31 on the outside of the mounting cover 9, the abutting spring 33 in the mounting hole 31 will push the sliding block 32 to slide towards the positioning hole 30, and the ball 34 at the end of the sliding block 32 will be clamped into the positioning hole 30, forming a mechanical limit to avoid the limiting disc 20 from being offset due to external force or vibration, thereby ensuring that the flexible filter 24 is always in the center of the illumination path of the light-emitting device 10, preventing wavelength shift from affecting the treatment effect. At the same time, the scale mark 29 on the mounting cover 9 near the limiting disc 20 can assist the user in judging the current switched filter specification, without the need to disassemble the device to accurately identify the wavelength type, greatly improving the operation convenience.

[0037] The technical effects of the switching assembly are remarkable: first, through the coordinated action of gear transmission and belt transmission, smooth and accurate switching of the filter is achieved, which is more efficient than the existing manual disassembly and replacement of the filter component, and avoids assembly deviation; second, different specifications of the flexible filter 24 can cover various treatment wavelength requirements, completely solving the defects of single wavelength and poor adaptability of the existing device, and meeting the diversified rehabilitation scenarios such as deep tissue repair and superficial inflammation relief; third, the clamping structure of the positioning hole 30 and the ball 34 combined with the elastic force of the abutting spring 33 ensures the stability of the filter position after switching, even if the limb moves, the displacement will not occur, ensuring the stability of the treatment light wavelength; fourth, the entire switching process does not require disconnection of the device power supply or disassembly of the mounting cover 9, and can be adjusted in real time during treatment, improving the use flexibility of the device, fully meeting the core needs of the biomedical engineering industry for the precision, convenience and multifunctionality of phototherapy equipment, and significantly widening the application range of the device in the field of sports rehabilitation.

[0038] It should be noted that, in the present text, relational terms such as first and second and the like can only be used to distinguish one entity or operation from another entity or operation, without necessarily requiring or implying any such actual relationship or order between these entities or operations. Moreover, the terms "comprises", "comprising", or any other variant thereof are intended to cover non-exclusive inclusions, so that a process, method, article, or device that includes a series of elements not only includes those elements, but also includes other elements not explicitly listed, or inherent to such a process, method, article, or device.

[0039] Although embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A sports rehabilitation phototherapy patch type ion exchange nanocrystal up-conversion device, comprising a mounting sheet (1), a positioning frame (2) fixed through the middle of the mounting sheet (1), and a mounting cover (9) slidingly fitted along the inner side of the top end of the positioning frame (2), characterized in that: Both ends of the mounting sheet (1) are fixedly connected with auxiliary patches (28), the bottom end of the positioning frame (2) is internally provided with a transparent box (3), the inside of the transparent box (3) is provided with a crystal separation assembly, a connecting assembly is arranged between the positioning frame (2) and the mounting cover (9), a light emitter (10) is vertically arranged at the middle position of the inside of the mounting cover (9), a storage battery (12) is fixedly installed on the side inner wall of the mounting cover (9), the storage battery (12) and the light emitter (10) are electrically connected through a control lead (35), the irradiation end of the light emitter (10) faces the middle part of the positioning frame (2), and a switching assembly is arranged in the inside of the mounting cover (9). The connecting assembly comprises a plurality of magnet columns (15) and a plurality of magnet blocks (17), a plurality of magnet columns (15) are fixedly installed at the edges of the mounting cover (9) at equal intervals, and a plurality of magnet blocks (17) are arranged at positions corresponding to the plurality of magnet columns (15) on the inner wall of the positioning frame (2).

2. A motion rehabilitation phototherapy patch-type ion-exchange nanocrystal up-conversion device according to claim 1, characterized in that: The outer part of each magnet block (17) is sleeved and fixed with a positioning frame (16), and one end of the positioning frame (16) is embeddedly fixedly installed on the inner wall of the positioning frame (2).

3. A motion rehabilitation phototherapy patch-type ion-exchange nanocrystal up-conversion device according to claim 1, characterized in that: The outer periphery of the transparent box (3) is uniformly fixed with a plurality of fixed blocks (27), one end of the fixed block (27) away from the transparent box (3) is fixedly installed on the inner wall of the positioning frame (2), the crystal separation assembly comprises a transparent grid plate (4) and a transparent cover plate (6), the transparent grid plate (4) is fixedly installed in the inside of the transparent box (3), the transparent cover plate (6) is attached to the outside of the top end of the transparent box (3), and the grid of the transparent grid plate (4) is filled with a nano crystal body (5).

4. A sports rehabilitation phototherapy patch type ion-exchange nanocrystal up-conversion device according to claim 3, characterized in that: A plurality of abutting holes (8) are circumferentially arranged at equal intervals at the edges of the transparent box (3), an abutting column (7) is fixedly installed at the edge of the transparent cover plate (6) corresponding to each abutting hole (8), and one end of the abutting column (7) is abuttingly and clampingly installed in the inside of the corresponding side abutting hole (8).

5. The motion rehabilitation phototherapy patch-type ion-exchange nanocrystal up-conversion device according to claim 1, characterized in that: A control switch (13) and a charging interface (14) are installed on the outside of one side of the mounting cover (9) close to the storage battery (12), an installation frame (11) is fixedly sleeved on the outside of the light emitter (10), and one end of the installation frame (11) away from the light emitter (10) is fixedly installed on the inner wall of the mounting cover (9).

6. A sports rehabilitation phototherapy patch-type ion-exchange nanocrystal up-conversion device according to claim 1, characterized in that: The switching assembly comprises a large gear disc (18) and four transmission rods (21), the large gear disc (18) is attached to the inner wall of one side of the mounting cover (9), four transmission rods (21) are rotatably penetrated and installed at one side corner in the inside of the mounting cover (9), and two transmission belts (22) are sleeved on the outer parts of both ends of the four transmission rods (21).

7. A sports rehabilitation phototherapy patch-type ion-exchange nanocrystal up-conversion device according to claim 6, characterized in that: A pulley (23) is fixedly installed at one end of each transmission rod (21) close to each transmission belt (22), and the outer part of the pulley (23) is abuttingly and clampingly connected with the inner wall of the corresponding side transmission belt (22).

8. A sports rehabilitation phototherapy patch type ion-exchange nanocrystal up-conversion device according to claim 6, characterized in that: Four said transmission rod (21) near the gear disc (18) one end of the fixed installation of pinion (25), a side of the pinion (25) and gear disc (18) one side of the meshing connection, two said transmission belt (22) between the equidistant fixed connection with several different specifications of flexible filter (24).

9. A sports rehabilitation phototherapy patch-type ion-exchange nanocrystal up-conversion device according to claim 8, characterized in that: The gear disc (18) away from the flexible filter (24) one side of the middle of the fixed installation of the center shaft (19), one end of the center shaft (19) through the rotation is installed in one side of the outside of the installation cover (9), the center shaft (19) through the outside of the fixed installation of the limit disc (20), the limit disc (20) away from the center shaft (19) one side of the outside of the fixed installation of the twist block (26), the installation cover (9) near the limit disc (20) of the outside of the setting of the scale mark (29).

10. A sports rehabilitation phototherapy patch-type ion-exchange nanocrystal up-conversion device according to claim 9, characterized in that: The limit disc (20) near the edge of the installation cover (9) inside equidistantly around the opening of a plurality of positioning holes (30), the installation cover (9) near each positioning hole (30) outside are provided with mounting hole (31), the inside of the mounting hole (31) is slidably connected with the sliding block (32), the sliding block (32) near the positioning hole (30) one end of the fixed installation of the ball (34), the ball (34) is slidably connected in the corresponding mounting hole (31), the sliding block (32) away from the ball (34) one side of the fixed connection of the resistance spring (33), the resistance spring (33) away from the sliding block (32) one end of the embedded type fixed installation in the inner wall of the mounting hole (31).