Laser-LED composite phototherapy instrument

By combining laser and LED phototherapy components with a laser-LED composite phototherapy device, the combination of overall acupoint treatment and local phototherapy is achieved, which solves the problems of comprehensiveness and durability in low back pain treatment, promotes muscle fiber repair, and reduces the recurrence rate and risk of side effects.

CN223350823UActive Publication Date: 2025-09-19加吾拉·阿不力孜
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Patent Information

Application Number
CN202422229181.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-09-19
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

Existing treatment devices lack a comprehensive approach to treating low back pain, and are unable to achieve both pain relief and muscle fiber repair. The treatment effects are difficult to sustain and are prone to relapse.

Method used

A laser-LED composite phototherapy device was designed, which combines a laser irradiation component and an LED phototherapy component. The laser irradiation component is used to stimulate acupoints to promote blood circulation and pain relief, while the LED phototherapy component is used to promote local blood circulation and muscle repair. Safe startup is ensured by a sensor module.

Benefits of technology

It combines overall acupoint treatment with local phototherapy, improves the comprehensiveness and effectiveness of treatment, promotes muscle fiber repair, and reduces the recurrence rate. The portable design of the device improves treatment compliance and reduces the risk of side effects.

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Abstract

The utility model discloses a laser-LED composite phototherapy instrument, which belongs to the technical field of LED composite phototherapy instruments, and comprises a shell, a base and a transparent cover, the base is arranged below the shell in a matched manner, the transparent cover is arranged below the shell in a matched manner, the transparent cover is positioned between the shell and the base, and adjustable viscera are arranged above the base. The laser irradiation assembly is used for promoting qi and blood circulation, and the LED phototherapy assembly capable of promoting local blood circulation, relieving inflammation and accelerating muscle fiber repair is arranged above the base. Through the arrangement of the laser irradiation assembly and the LED phototherapy assembly, combination of overall acupoint treatment and local phototherapy is achieved, the comprehensiveness and effectiveness of treatment are improved, muscle fiber repair is promoted, the rehabilitation process is accelerated, and the recurrence rate is reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of LED composite phototherapy apparatus, in particular to a laser-LED composite phototherapy apparatus. Background Art

[0002] Currently, nonspecific low back pain (NSLBP) refers to a common condition with unknown etiology, characterized by pain in the lower back, lumbosacral region, sacroiliac region, buttocks, or legs, caused by factors other than spinal-specific diseases and radicular pain. 90%-95% of low back pain patients suffer from NSLBP. The global prevalence of NSLBP is reported to be 18%, making it the leading cause of disability among the elderly.

[0003] For these patients, the following measures are taken:

[0004] 1. Laser acupuncture uses lasers to stimulate specific acupuncture points to relieve pain and has a certain therapeutic effect. However, simple laser irradiation often fails to achieve a lasting therapeutic effect and cannot effectively promote muscle fiber repair.

[0005] 2. Use LED phototherapy. LED phototherapy promotes tissue repair and reduces inflammation by emitting light of specific wavelengths. However, traditional LED phototherapy equipment can usually only perform local irradiation, making it difficult to achieve comprehensive overall and local treatment.

[0006] In summary, existing treatment devices have the following defects:

[0007] 1. The lack of a treatment plan that combines holistic (laser acupuncture) and local (near-infrared light LED) treatments makes it difficult to comprehensively address the problem of low back pain.

[0008] 2. It is impossible to achieve the dual effects of pain relief and muscle fiber repair at the same time.

[0009] 3. The treatment effect is difficult to last and relapse is easy.

[0010] Therefore, it is urgent to design a new type of composite phototherapy device to solve the above problems. Utility Model Content

[0011] The purpose of the present utility model is to provide a laser-LED composite phototherapy device in order to solve the problems of lack of a treatment plan combining overall and local treatment during use, difficulty in comprehensively solving low back pain, inability to achieve the dual effects of pain relief and muscle fiber repair at the same time, difficulty in maintaining a long-lasting treatment effect, and easy relapse.

[0012] The technical solution adopted by the present invention is as follows: a laser-LED composite phototherapy device, including a shell, a base and a transparent cover, the base is matched with a base under the shell, the transparent cover is matched with a transparent cover under the shell, the transparent cover is located between the shell and the base, a laser irradiation component that can regulate internal organs and promote blood circulation is set above the base, and an LED phototherapy component that can promote local blood circulation, reduce inflammation, and accelerate muscle fiber repair is set above the base.

[0013] Among them, the laser irradiation assembly includes a laser bracket, a 905nm±10nm laser and an 850nm±10nm laser. The laser bracket is fixedly installed on the top of the base by screws A and screws B. The 905nm±10nm laser is provided above the laser bracket. The 850nm±10nm laser is provided above the laser bracket near the 905nm±10nm laser.

[0014] Among them, the LED phototherapy component includes a 940nm±10nm LED lamp and an 850nm±10nm LED lamp. A 940nm±10nm LED lamp is provided above the base near the 905nm±10nm laser, and an 850nm±10nm LED lamp is provided above the base near the 940nm±10nm LED lamp.

[0015] A sensor module is installed above the base near the 850nm±10nm LED lamp, and a sensor module cover is provided above the sensor module.

[0016] Wherein, a remote control base is matched with the outside of the shell, remote control buttons are matched with the inside of the remote control base, and a remote control cover is matched with the bottom of the remote control base.

[0017] Among them, a USB-C interface is embedded in one side of the base, a double-sided tape is provided inside the base, a battery is fixedly installed above the double-sided tape, a button A is embedded in one side of the base, and a button B is provided on one side of the button A.

[0018] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0019] 1. In the present invention, the laser irradiation component and the LED phototherapy component are set up to realize the combination of overall acupoint treatment and local phototherapy, thereby improving the comprehensiveness and effectiveness of the treatment, promoting muscle fiber repair, accelerating the recovery process, and reducing the recurrence rate.

[0020] 2. In the present invention, the portable design of the shell and the base facilitates daily use in the home and improves treatment compliance.

[0021] 3. In the present invention, the device is fitted to the patient's waist, providing non-invasive, non-drug treatment and reducing the risk of side effects. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0023] Figure 2 This is a schematic diagram of the circuit control of the utility model.

[0024] Markings in the figure: 1. Housing; 2. Base; 3. Transparent cover; 4. Sensor module cover; 5. Button B; 9. Laser bracket; 10. Remote control base; 11. Remote control cover; 12. Remote control button; 13. USB-C interface; 14. Button A; 15. 905nm±10nm laser; 16. 850nm±10nm laser; 17. Sensor module; 18. 940nm±10nm LED light; 19. 850nm±10nm LED light; 20. Battery; 21. Screw A; 22. Screw B; 23. Double-sided tape. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] In this utility model: Figure 1-2 A laser-LED composite phototherapy device includes a shell 1, a base 2 and a transparent cover 3. The base 2 is provided under the shell 1, and the transparent cover 3 is provided under the shell 1. The transparent cover 3 is located between the shell 1 and the base 2. A laser irradiation component that can regulate internal organs and promote blood circulation is provided above the base 2. An LED phototherapy component that can promote local blood circulation, reduce inflammation and accelerate muscle fiber repair is provided above the base 2.

[0027] In this embodiment, the laser irradiation component includes a laser bracket 9, a 905nm±10nm laser 15 and an 850nm±10nm laser 16. The laser bracket 9 is fixedly installed on the base 2 by screws A21 and screws B22. The 905nm±10nm laser 15 is provided above the laser bracket 9. The 850nm±10nm laser 16 is provided above the laser bracket 9 near the 905nm±10nm laser 15. Through the setting of the laser irradiation component, the acupuncture points related to low back pain can be accurately located and stimulated, yin and yang can be harmonized, meridians can be dredged, internal organs can be adjusted, qi and blood circulation can be promoted, and pain can be relieved overall.

[0028] In this embodiment, the LED phototherapy component includes a 940nm±10nm LED lamp 18 and an 850nm±10nm LED lamp 19. A 940nm±10nm LED lamp 18 is provided above the base 2 near the 905nm±10nm laser 15, and an 850nm±10nm LED lamp 19 is provided above the base 2 near the 940nm±10nm LED lamp 18. Through the setting of the LED phototherapy component, a large area of ​​​​the waist muscles can be irradiated, local blood circulation can be promoted, inflammation can be reduced, and muscle fiber repair can be accelerated.

[0029] In this embodiment, a sensor module 17 is installed above the base 2 near the 850nm±10nm LED lamp 19, and a sensor module cover 4 is provided above the sensor module 17. Through the sensor module 17, the instrument can be activated to start treatment to ensure the safety of treatment. The instrument can only be started when the human body fully contacts the pressure sensor arranged on the treatment instrument to ensure the effectiveness and safety of the treatment and prevent the light source from accidentally causing eye damage.

[0030] In this embodiment, a remote control base 10 is provided on the outside of the shell 1, a remote control button 12 is provided inside the remote control base 10, and a remote control cover 11 is provided below the remote control base 10. The phototherapy device can be controlled by the remote control button 12.

[0031] The sensor module 17 includes a CPU, a switch control module, a signal receiving module, and a pressure sensor. The pressure sensor can detect whether the device is in contact with the human body. The switch control module is connected to the button B5 and the button A14 circuit. The signal receiving module is connected to the remote control button 12 signal. The CPU processes the signal. When the phototherapy device is in contact with the patient, the pressure sensor detects that the device is in contact with the human body. At this time, the CPU sends a command to the switch control module to open the circuit. At this time, when button B5 is turned on, the switch control module controls the operation of the 905nm±10nm laser 15 and the 850nm±10nm laser 16. When button A14 is turned on, the 940nm±10nm LED lamp 18 and the 850nm±10nm LED lamp 19 can be controlled.

[0032] When the pressure sensor does not have a detection device in contact with the human body, the CPU sends a command to the switch control module to close the circuit. Even if the button B5 and the button A14 are turned on, the switch control module will not control the 905nm±10nm laser 15 and the 850nm±10nm laser 16, the 940nm±10nm LED lamp 18 and the 850nm±10nm LED lamp 19 to operate.

[0033] The remote control button 12 can input commands to the CPU through the signal receiving module at a distance. When the pressure sensor detection device is in contact with the human body, the CPU sends commands to the switch control module, and the switch control module controls the operation of the 905nm±10nm laser 15 and the 850nm±10nm laser 16, the 940nm±10nm LED lamp 18 and the 850nm±10nm LED lamp 19;

[0034] The remote control button 12 can input commands to the CPU through the signal receiving module at a long distance. When the pressure sensor has no detection device in contact with the human body, the CPU sends a command to the switch control module, and the switch control module suspends the control of the 905nm±10nm laser 15 and the 850nm±10nm laser 16, the 940nm±10nm LED lamp 18 and the 850nm±10nm LED lamp 19.

[0035] In this embodiment, a USB-C interface 13 is embedded in one side of the base 2, a double-sided tape 23 is provided inside the base 2, a battery 20 is fixedly installed above the double-sided tape 23, a button A14 is embedded in one side of the base 2, and a button B5 is provided on one side of the button A14. The battery 20 can be charged through the USB-C interface 13, and the battery 20 can supply power to the circuit components inside the device.

[0036] Working principle: First, when the phototherapy device is needed, fit the device to the patient's waist, press button A14 to start the phototherapy device, and then the sensor module 17 on the base 2 activates the device to start treatment. This design ensures the safety of the treatment and avoids the occurrence of situations such as accidental eye damage caused by the light source. After starting, the laser irradiation component set above the base 2 starts working, and the 905nm±10nm laser 15 and 850nm±10nm laser 16 on the laser bracket 9 emit lasers of specific wavelengths. These lasers can accurately locate and stimulate the acupuncture points related to low back pain, and regulate the internal organs by harmonizing yin and yang and unblocking the meridians. Promoting blood circulation, laser acupuncture can promote the body to release endogenous opioids such as endorphins, enkephalins and dynorphins, thereby producing analgesic effects and relieving pain overall. At the same time, the 940nm±10nm LED lamp 18 and the 850nm±10nm LED lamp 19 in the LED light therapy component will also light up. They can irradiate a large area of ​​the waist muscles, promote local blood circulation, reduce inflammation, and promote cell energy metabolism. Near-infrared light energy can be absorbed by cytochrome C oxidase in the cell mitochondria, stimulate the production of ATP (adenosine triphosphate), increase cell energy supply, and accelerate the repair process of damaged muscle cells.

[0037] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A laser-LED composite phototherapy device, comprising a housing (1), a base (2) and a transparent cover (3), wherein the base (2) is provided below the housing (1), and the transparent cover (3) is provided below the housing (1), and the transparent cover (3) is located between the housing (1) and the base (2), and is characterized in that: A laser irradiation component capable of regulating internal organs and promoting blood circulation is provided above the base (2); an LED light therapy component capable of promoting local blood circulation, reducing inflammation, and accelerating muscle fiber repair is provided above the base (2); The laser irradiation assembly includes a laser bracket (9), a 905nm±10nm laser (15) and an 850nm±10nm laser (16); the laser bracket (9) is fixedly mounted on the base (2) by screws A (21) and screws B (22); the 905nm±10nm laser (15) is provided above the laser bracket (9); and the 850nm±10nm laser (16) is provided above the laser bracket (9) near the 905nm±10nm laser (15); The LED light therapy component includes a 940nm±10nm LED lamp (18) and an 850nm±10nm LED lamp (19). The 940nm±10nm LED lamp (18) is provided above the base (2) near the 905nm±10nm laser (15), and the 850nm±10nm LED lamp (19) is provided above the base (2) near the 940nm±10nm LED lamp (18).

2. A laser-LED composite phototherapy device according to claim 1, characterized in that: A sensor module (17) is installed above the base (2) near the 850nm±10nm LED lamp (19), and a sensor module cover (4) is provided above the sensor module (17).

3. The laser-LED composite phototherapy device according to claim 1, characterized in that: A remote control base (10) is provided on the outside of the housing (1), remote control buttons (12) are provided inside the remote control base (10), and a remote control cover (11) is provided below the remote control base (10).

4. The laser-LED composite phototherapy device according to claim 1, characterized in that: A USB-C interface (13) is embedded in one side of the base (2), a double-sided tape (23) is provided inside the base (2), a battery (20) is fixedly installed above the double-sided tape (23), a button A (14) is embedded in one side of the base (2), and a button B (5) is provided on one side of the button A (14).