Wearable LED medical device for treating osteoporosis
By designing a wearable LED medical device, using the combination of winding elastic bands and LED light bands, the existing phototherapy equipment is solved, and the problem of large size and unsuitable for home use is realized, and a portable and effective phototherapy treatment equipment is realized.
Patent Information
- Application Number
- CN202510134486.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing phototherapy equipment used to treat osteoporosis is large in size and cannot meet the needs of patients' daily use and home environment.
A wearable LED medical device is designed, which adopts structures such as wrapping elastic bands, first velvet strips, connecting bands, first injection hooks, silicone pads, red and purple LED light strips, and control boxes. Through the combination of these structures, the device can be wrapped around the patient's limbs and control the LED light strips to perform phototherapy on the patient through the control box.
A smaller phototherapy device is realized to facilitate patients to use in a home environment and provide effective phototherapy treatment for patients with osteoporosis.
Smart Images

Figure CN119951033A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and in particular to a wearable LED medical device for treating osteoporosis. Background Art
[0002] Osteoporosis is a common bone disease characterized by decreased bone mass and destruction of bone tissue microstructure, which leads to increased bone brittleness and susceptibility to fractures. With the aging of the population, the incidence of osteoporosis has increased year by year, which has had a serious impact on the quality of life of patients and increased the social medical burden. At present, the treatments for osteoporosis mainly include drug therapy, exercise therapy and nutritional supplements. However, these treatments have some limitations. For example, drug therapy may have side effects, and the effects of exercise therapy and nutritional supplements are relatively slow and require long-term persistence.
[0003] As a non-invasive treatment method, phototherapy has been widely used in the medical field. Different wavelengths of light have different biological effects. For example, red light and near-infrared light can promote cell metabolism, increase mitochondrial activity, and promote collagen synthesis. In recent years, studies have found that light irradiation with specific wavelengths can affect the activity and function of bone cells, thereby providing new ideas and methods for the treatment of osteoporosis. However, the phototherapy equipment used to treat osteoporosis in the existing technology is large in size and cannot meet the needs of patients' daily use or use in a home environment.
[0004] Therefore, it is necessary to provide a wearable LED medical device for treating osteoporosis to solve the above technical problems. Summary of the invention
[0005] The present invention provides a wearable LED medical device for treating osteoporosis, which solves the problem that the device is too large to be used by patients in daily life or in a home environment.
[0006] In order to solve the above technical problems, the present invention provides a wearable LED medical device for treating osteoporosis, comprising: A winding elastic belt, wherein a plurality of first flannel strips are arranged on one side of the winding elastic belt, a connecting belt is arranged at one end of one side of the winding elastic belt, and a first ejection hook belt is arranged on one side of the connecting belt; A plurality of first light strips, wherein the plurality of first light strips are all arranged on the other side of the winding elastic strip; A plurality of second light strips, each of which is arranged on the other side of the winding elastic strip; A control box is arranged on the other side of the wrapped elastic band, a display screen and a control switch are fixedly installed on the front of the control box, a charging port is fixedly installed on the bottom of the control box, a discharge port is fixedly installed on the side of the control box, and a circuit board and a battery are arranged on the inner side of the control box.
[0007] Preferably, a plurality of silicone pads are provided on the other side of the wrapped elastic band.
[0008] Preferably, the plurality of first light strips and the plurality of second light strips are arranged alternately with each other, and the plurality of first light strips and the plurality of second light strips are electrically connected.
[0009] Preferably, the plurality of the first light strips are all red LED lights, and the plurality of the second light strips are all purple LED lights.
[0010] Preferably, two second ejection hook belts are fixedly mounted on one side of the control box close to the winding elastic belt, and the two second ejection hook belts are adhered to the first flannel strip to limit the position between the control box and the winding elastic belt.
[0011] Preferably, a microcontroller unit, a power detection module, a timing module, a voice module and a Bluetooth module are integrated on the circuit board.
[0012] Preferably, the charging port is electrically connected to the battery, the discharging port is electrically connected to the circuit board, and the display screen and the control switch are both electrically connected to the circuit board.
[0013] Preferably, a second ejected hook belt is fixedly installed on the back of each of the first and second light belts, a second velvet strip is adhered to the back of each of the second ejected hook belts, each of the second velvet strips is fixedly installed on one side of the winding elastic belt, and an elastic belt is fixedly connected between each of the second velvet strips.
[0014] Preferably, the protection frame is fixedly mounted on the front side of the control box, and the protection frame cover is arranged on the outer side of the control switch.
[0015] Preferably, both sides of the inner side surface of the protective frame are provided with sliding grooves, the inner side surface of the sliding groove is slidably connected with a protective cover, a protective strip is fixedly installed at one end of the top of the protective cover, a metal plate is fixedly installed at the other end of the protective cover, one end of the metal plate is magnetically attracted with a magnetic plate, and the magnetic plate is fixedly installed at one end of the inner side surface of the protective frame.
[0016] Compared with the related art, the wearable LED medical device for treating osteoporosis provided by the present invention has the following beneficial effects: The present invention provides a wearable LED medical device for treating osteoporosis. The structure of the device is coordinated with each other by a winding elastic band, a first flannel strip, a connecting band, a first injection hook, a silicone pad, a first light band, a second light band and a control box. When in use, the winding elastic band can be adhered by the first flannel strip and the first injection hook band, so as to be wound around the outer side of a patient's limbs. Then, the control box controls the first light band and the second light band to irradiate the patient's limbs, so as to perform phototherapy on the osteoporosis patient. The device is small in size and is convenient for users to use in a home environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 A schematic structural diagram of a first embodiment of a wearable LED medical device for treating osteoporosis provided by the present invention; Figure 2 for Figure 1 Another perspective structural schematic diagram shown; Figure 3 for Figure 1 The schematic diagram of the control box structure shown; Figure 4 for Figure 3 Another perspective structural schematic diagram shown; Figure 5 for Figure 3 The schematic diagram of the cross-sectional structure of the control box shown in the figure is a top view; Figure 6 for Figure 5 The circuit board connection diagram shown; Figure 7 A schematic structural diagram of a second embodiment of a wearable LED medical device for treating osteoporosis provided by the present invention; Figure 8 A schematic structural diagram of a third embodiment of a wearable LED medical device for treating osteoporosis provided by the present invention; Fig. 9 for Figure 8 The side cross-sectional structure diagram of the protective frame shown.
[0018] Numbers in the figure: 1. winding elastic belt, 11. first flannel strip, 12. connecting belt, 13. first injection hook belt, 14. silicone pad, 2. first light belt, 3. second light belt, 4. control box, 41. display screen, 42. control switch, 43. charging port, 44. release port, 45. second injection hook belt, 46. battery, 47. circuit board, 48. micro control unit, 49. power detection module, 40. timing module, 411. voice module, 412. Bluetooth module, 5. third injection hook belt, 51. second flannel strip, 52. elastic belt, 6. protective frame, 61. slide groove, 62. protective cover, 63. anti-slip strip, 64. metal plate, 65. magnetic plate. DETAILED DESCRIPTION
[0019] The present invention will be further described below in conjunction with the accompanying drawings and implementation modes.
[0020] First embodiment Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 ,in, Figure 1 A schematic structural diagram of a first embodiment of a wearable LED medical device for treating osteoporosis provided by the present invention; Figure 2 for Figure 1 Another perspective structural schematic diagram shown; Figure 3 for Figure 1 The schematic diagram of the control box structure shown; Figure 4 for Figure 3 Another perspective structural schematic diagram shown; Figure 5 for Figure 3 The schematic diagram of the cross-sectional structure of the control box shown in the figure is a top view; Figure 6 for Figure 5 A wearable LED medical device for treating osteoporosis comprises: a winding elastic band 1, a plurality of first flannel strips 11 are arranged on one side of the winding elastic band 1, a connecting band 12 is arranged at one end of one side of the winding elastic band 1, and a first ejection hook band 13 is arranged on one side of the connecting band 12; A plurality of first light strips 2, wherein the plurality of first light strips 2 are all arranged on the other side of the winding elastic strip 1; A plurality of second light strips 3, wherein the plurality of second light strips 3 are all arranged on the other side of the winding elastic strip 1; A control box 4 is arranged on the other side of the wrapped elastic band 1, a display screen 41 and a control switch 42 are fixedly installed on the front of the control box 4, a charging port 43 is fixedly installed on the bottom of the control box 4, a discharge port 44 is fixedly installed on the side of the control box 4, and a circuit board 47 and a battery 46 are arranged on the inner side of the control box 4.
[0021] The wrapping elastic band 1 has a certain elasticity, and by installing multiple first velvet strips 11 on one side of the wrapping elastic band 1 and installing a first ejected hook band 13 on the connecting band 12, when in use, the wrapping elastic band 1 is wrapped around the patient's limbs. At this time, according to the thickness of the patient's limbs, the first ejected hook band 13 is adhered to the appropriate first velvet strip 11. In this way, it can meet the needs of different patients and increase the adaptability of the device.
[0022] A plurality of silicone pads 14 are arranged on the other side of the winding elastic band 1 .
[0023] The plurality of first light strips 2 and the plurality of second light strips 3 are arranged alternately with each other, and the plurality of first light strips 2 and the plurality of second light strips 3 are electrically connected to each other.
[0024] The plurality of first light strips 2 are all red LED lights, and the plurality of second light strips 3 are all purple LED lights.
[0025] The wavelength of purple LED lamp is between 280nm-320nm, and the peak value is 310nm; the wavelength of red LED lamp is between 750nm-770nm; the usage ratio of purple LED lamp and red LED lamp is 1:1.
[0026] Two second ejection hook belts 45 are fixedly installed on one side of the control box 4 close to the winding elastic belt 1 . The two second ejection hook belts 45 are adhered to the first flannel strip 11 to limit the position between the control box 4 and the winding elastic belt 1 .
[0027] By installing two second ejection hooks 45 on the side of the control box 4, the control box 4 can be disassembled after charging or use.
[0028] The circuit board 47 is integrated with a microcontroller unit 48 , a power detection module 49 , a timing module 40 , a voice module 411 and a Bluetooth module 412 .
[0029] The charging port 43 is electrically connected to the battery 46 , the discharging port 44 is electrically connected to the circuit board 47 , and the display screen 41 and the control switch 42 are both electrically connected to the circuit board 47 .
[0030] A plurality of first light strips 2 and a plurality of second light strips 3 are connected in parallel and powered by a power plug. The power plug can be set as a USB plug. In this case, the discharge port 44 installed on the control box 4 is adapted thereto. When the power plug is inserted into the inner side of the discharge port 44, the first light strip 2 and the second light strip 3 can be powered. When charging, the user can remove the control box 4 from the top of the elastic band 1, and then connect the charging port 43 to the charger to charge the battery 46. When the battery 46 is in use, it can store power, so that the user can move around after wearing the device and avoid being limited by power supply. The display screen 41 is connected to the micro control unit 48, and the display screen 41 is used to display the working status of the device (such as LED lighting status, remaining time of timing, battery power, etc.), setting parameters (such as timing duration, light intensity setting, etc.); The power detection module 49 (such as INA219) is connected to the micro control unit 48 via the I2C bus. Its function is to monitor the voltage and current of the battery 46 in real time, calculate the remaining battery power, and then feed the data back to the micro control unit 48. The micro control unit 48 can display the power information on the display screen 41 according to the power status, or trigger the voice module 411 to work when the power is low; The timing module 40 is a built-in timer, and the micro control unit 48 sets the timing time through read and write operations. When the timing ends, an interrupt is triggered to notify the micro control unit 48, and the micro control unit 48 then starts the reminder module voice module 411; The voice module 411 is connected to the micro control unit 48 via a serial port. In a scenario where a voice reminder is required, the micro control unit 48 sends a command to the voice module 411, and the voice module 411 plays a pre-recorded voice message, such as "The timer is up, please stop treatment"; The Bluetooth module 412 is connected to the microcontroller unit 48 to realize data transmission through the serial communication protocol. The user can use the mobile phone APP to connect to the device via Bluetooth to remotely set the timing time, light intensity and other parameters, and can also receive data feedback from the device, such as treatment time and battery power; When the user presses the control switch 42, the micro control unit 48 detects the pin level change, triggers the corresponding interrupt service program or processing flow, enters the setting mode or performs the corresponding operation, turns on or off the device, switches the display interface, and adjusts the timing time.
[0031] The working principle of a wearable LED medical device for treating osteoporosis provided by the present invention is as follows: When in use, the user wraps the wrapping elastic band 1 around the limbs, and then makes the first ejected hook band 13 adhere to the first velvet strip 11, thereby limiting the wrapping elastic band 1 on the limbs, and then starts the first light band 2 and the second light band 3 through the control switch 42, so that the first light band 2 and the second light band 3 illuminate the patient's limbs, thereby playing the role of phototherapy for the patient.
[0032] Compared with the related art, the wearable LED medical device for treating osteoporosis provided by the present invention has the following beneficial effects: By cooperating with each other through the structures such as the winding elastic band 1, the first flannel strip 11, the connecting band 12, the first injection hook 13, the silicone pad 14, the first light strip 2, the second light strip 3 and the control box 4, when in use, the winding elastic band 1 can be adhered by the first flannel strip 11 and the first injection hook band 13, so as to be wrapped around the outer side of the patient's limbs, and then the control box 4 controls the first light strip 2 and the second light strip 3 to irradiate the patient's limbs, so as to perform phototherapy on patients with osteoporosis. The device is small in size and convenient for users to use in a home environment.
[0033] Second embodiment Please refer to Figure 7 Based on the wearable LED medical device for treating osteoporosis provided in the first embodiment of the present application, the second embodiment of the present application proposes another wearable LED medical device for treating osteoporosis. The second embodiment is only a preferred embodiment of the first embodiment, and the implementation of the second embodiment will not affect the independent implementation of the first embodiment.
[0034] Specifically, the second embodiment of the present application provides a wearable LED medical device for treating osteoporosis. The difference is that, in a wearable LED medical device for treating osteoporosis, a plurality of the first light strips 2 and a plurality of the second light strips 3 are fixedly installed with a second ejection hook belt 5 on the back side, a plurality of the second ejection hook belts 5 are adhered with a second velvet strip 51 on the back side, a plurality of the second velvet strips 51 are fixedly installed on one side of the winding elastic band 1, and an elastic band 52 is fixedly connected between the plurality of the second velvet strips 51.
[0035] The plurality of first light strips 2 and second light strips 3 are connected by an elastic band 52, which makes it convenient for users to disassemble and subsequently install them. Furthermore, the elastic band 52 can be set to keep the light strips elastic, so that they can be subsequently contracted and loosened following the winding of the elastic band 1.
[0036] The working principle of a wearable LED medical device for treating osteoporosis provided by the present invention is as follows: During use, when the wrapped elastic band 1 needs to be cleaned, the user can separate the second flannel strip 51 and the third ejected hook band 5 , thereby disassembling the first light band 2 and the second light band 3 , and then clean the wrapped elastic band 1 .
[0037] Compared with the related art, the wearable LED medical device for treating osteoporosis provided by the present invention has the following beneficial effects: The third ejected hook belt 5 and the second flannel strip 51 are bonded together, so that when in use, it is convenient for the user to disassemble the first light belt 2 and the second light belt 3 so as to facilitate the subsequent cleaning of the wound elastic belt 1.
[0038] Third embodiment Please refer to Figure 8 Based on the wearable LED medical device for treating osteoporosis provided in the first embodiment of the present application, the third embodiment of the present application proposes another wearable LED medical device for treating osteoporosis. The third embodiment is only a preferred embodiment of the first embodiment, and the implementation of the third embodiment will not affect the independent implementation of the first embodiment.
[0039] Specifically, the third embodiment of the present application provides a wearable LED medical device for treating osteoporosis, which is different in that the protective frame 6 is fixedly mounted on the front of the control box 4, and the protective frame 6 is covered on the outer side of the control switch 42.
[0040] Slide grooves 61 are provided on both sides of the inner side surface of the protective frame 6, and a protective cover 62 is slidably connected to the inner side surface of the slide groove 61. A protective strip 63 is fixedly installed at one end of the top of the protective cover 62, and a metal plate 64 is fixedly installed at the other end of the protective cover 62. A magnetic plate 65 is magnetically attracted to one end of the metal plate 64, and the magnetic plate 65 is fixedly installed on one end of the inner side surface of the protective frame 6.
[0041] The magnetic plate 65 and the metal plate 64 are magnetically attracted to each other, so that when in use, the protective cover 62 can be limited to prevent the protective cover 62 from sliding out of the inner side of the slide groove 61; By installing an anti-slip strip 63 on the top of the protective cover 62, it can play an anti-slip role when in use, making it convenient for the user to move the protective cover 62.
[0042] The working principle of a wearable LED medical device for treating osteoporosis provided by the present invention is as follows: When the user needs to press the control switch 42 , the user needs to first push the protective cover 62 to make the protective cover 62 slide on the inner side of the slide groove 61 , thereby exposing the control switch 42 , and then the user can press the control switch 42 .
[0043] Compared with the related art, the wearable LED medical device for treating osteoporosis provided by the present invention has the following beneficial effects: By setting the protective frame 6 on the outer side of the control switch 42 and then making the protective cover 62 block the opening of the protective frame 6, the control switch 42 can be protected to prevent the user from accidentally touching the control switch 42 during wearing.
[0044] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A wearable LED medical device for treating osteoporosis, characterized in that: include: A winding elastic belt, wherein a plurality of first flannel strips are arranged on one side of the winding elastic belt, a connecting belt is arranged at one end of one side of the winding elastic belt, and a first ejection hook belt is arranged on one side of the connecting belt; A plurality of first light strips, wherein the plurality of first light strips are all arranged on the other side of the winding elastic strip; A plurality of second light strips, wherein the plurality of second light strips are all arranged on the other side of the winding elastic strip; A control box is arranged on the other side of the wrapped elastic band, a display screen and a control switch are fixedly installed on the front of the control box, a charging port is fixedly installed on the bottom of the control box, a discharge port is fixedly installed on the side of the control box, and a circuit board and a battery are arranged on the inner side of the control box.
2. A wearable LED medical device for treating osteoporosis according to claim 1, characterized in that: A plurality of silicone pads are arranged on the other side of the winding elastic band.
3. A wearable LED medical device for treating osteoporosis according to claim 1, characterized in that: The plurality of first light strips and the plurality of second light strips are arranged alternately with each other, and the plurality of first light strips and the plurality of second light strips are electrically connected to each other.
4. A wearable LED medical device for treating osteoporosis according to claim 3, characterized in that: The first light strips are all red LED lights, and the second light strips are all purple LED lights.
5. A wearable LED medical device for treating osteoporosis according to claim 1, characterized in that: Two second ejection hook belts are fixedly installed on one side of the control box close to the winding elastic belt. The two second ejection hook belts are adhered to the first flannel strip and act on the position limiting between the control box and the winding elastic belt.
6. A wearable LED medical device for treating osteoporosis according to claim 1, characterized in that: A microcontrol unit, a power detection module, a timing module, a voice module and a Bluetooth module are integrated on the circuit board.
7. A wearable LED medical device for treating osteoporosis according to claim 6, characterized in that: The charging port is electrically connected to the battery, the discharging port is electrically connected to the circuit board, and the display screen and the control switch are both electrically connected to the circuit board.
8. A wearable LED medical device for treating osteoporosis according to claim 1, characterized in that: A second ejected hook belt is fixedly installed on the back of each of the first and second light belts, a second velvet strip is adhered to the back of each of the second ejected hook belts, each of the second velvet strips is fixedly installed on one side of the winding elastic belt, and an elastic belt is fixedly connected between each of the second velvet strips.
9. A wearable LED medical device for treating osteoporosis according to claim 1, characterized in that: The protection frame is fixedly installed on the front side of the control box, and the protection frame cover is arranged on the outer side of the control switch.
10. A wearable LED medical device for treating osteoporosis according to claim 9, characterized in that: Slide grooves are provided on both sides of the inner side of the protective frame, and a protective cover is slidably connected to the inner side of the slide groove. A protective strip is fixedly installed at one end of the top of the protective cover, and a metal plate is fixedly installed at the other end of the protective cover. A magnetic plate is magnetically attracted to one end of the metal plate, and the magnetic plate is fixedly installed at one end of the inner side of the protective frame.