A multi-wavelength LED mood regulation phototherapy instrument with feedback regulation

By designing a multi-wavelength LED mood-regulating phototherapy device and integrating a flexible circuit board and detector, the device achieves multiple treatment modes and feedback functions, solving the limitations and safety issues of existing phototherapy equipment. It provides personalized phototherapy solutions and real-time feedback, improving user comfort and treatment effectiveness.

CN116999668BActive Publication Date: 2026-01-20THE FIRST MEDICAL CENT CHINESE PLA GENERAL HOSPITAL
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Patent Information

Application Number
CN202210463607.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-04-28
Publication Date
2026-01-20
Estimated Expiration
2042-04-28

AI Technical Summary

Technical Problem

Existing phototherapy devices have problems such as requiring users to use them in a fixed position, stimulating sleep time, lacking detection and feedback devices, and the potential harm to the eyes from prolonged exposure to high-intensity blue light.

Method used

A multi-wavelength LED mood-regulating phototherapy device with feedback adjustment was designed, including a support module, an auxiliary light environment module, an eye treatment module, a main control module, a feedback module, and a power supply module. It has multiple treatment modes and feedback functions, integrates LED light sources and detectors through a flexible circuit board, supports remote connection, and realizes free adjustment of phototherapy formula and real-time feedback.

Benefits of technology

It provides a comfortable user experience, can adjust the phototherapy plan under different conditions, reduce the impact of environmental radiation, has real-time detection and feedback functions, adapts to the personalized needs of different users, and improves the safety and effectiveness of phototherapy.

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Abstract

A kind of multi-wavelength LED mood regulation phototherapy instrument with feedback regulation, the inside integrated flexible circuit board of support module, the fixing unit is equipped with headband (4);Auxiliary light environment module is on the fixing unit of support module, and different wave bands of ambient light are provided using first LED light source (21);Through eye treatment module is on the adjustable unit of support module, with the second LED light source (33) of irradiation into eye part;Master control module is arranged on flexible circuit board, including control unit and remote connection unit;Control unit adjusts the light of different irradiation LED light source;Through remote connection unit, the APP application module of mobile terminal is connected to the phototherapy instrument, the detection data of feedback module is sent to mobile terminal in real time, and the data sent by mobile terminal is received;Feedback module is arranged on flexible circuit board, including heart rate detector (71) and illuminance detector (72);Power supply module is arranged on flexible circuit board.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of medical devices, and in particular to a multi-wavelength LED mood regulation phototherapy instrument with feedback adjustment. BACKGROUND

[0002] With the continuous acceleration of people's life pace, the work pressure is increasing, and the prevalence of mental illness is increasing year by year. Emotions such as anxiety and depression have greatly affected people's normal work and life. Light is closely related to emotions, and light signals mainly regulate central biological clocks through the "retina-hypothalamic pathway". Studies have shown that the photoreceptor cells ipRGCs on the human retina directly transmit the stimulation signal to the hypothalamus, and then to the pineal gland through the hypothalamus, and through the stimulation of the pineal gland, the secretion of melatonin is regulated, thereby playing a role in managing the physiological time of the body and coordinating and controlling the rhythm and activity state of people at different times. Phototherapy can also directly relieve depressive symptoms through the retina-ventral lateral geniculate nucleus / intercalated leaflet-lateral habenular nucleus pathway. In addition, high-quality sleep has a certain improvement effect on various mental illnesses such as depression, bipolar disorder, and schizophrenia.

[0003] According to research, 471nm blue light can induce brain responses in the thalamus, amygdala, and hippocampus, which can improve the patient's drowsiness symptoms and regulate their alertness and cognitive function. 629nm red light and 533nm green light can improve sleep, improve sleep quality, and reduce the occurrence of sleep inertia. White light with a wavelength of 380-750nm can simulate the effect of a normal day to regulate biological rhythms and emotions.

[0004] For mental-related diseases, drug therapy and phototherapy are usually used to improve mood. The side effects of phototherapy are relatively mild compared to drug therapy, and patients have better acceptance, so phototherapy has certain market prospects. Considering that 471nm blue light may cause eye damage to some users during long-term high-intensity irradiation during phototherapy, safety considerations need to be taken into account when treating users, and different light formulations need to be used for different users, combined with user experience feedback.

[0005] Most of the phototherapy solutions on the market for mood regulation use light therapy boxes, which require users to be irradiated in a fixed position, and the room for phototherapy and the position of the light therapy box are strictly required. Although there are light therapy eye masks on the market that can achieve some functions, they will cause additional stimulation to the user when used during sleep time, and do not have corresponding detection and feedback devices. SUMMARY

[0006] In order to overcome the defects of the prior art, the technical problem to be solved by the present application is to provide a multi-wavelength LED mood regulation phototherapy instrument with feedback regulation, which is convenient to use, has good user experience, has multiple treatment modes, has a feedback function, and can freely adjust different light therapy formulas to achieve different treatment schemes suitable for oneself.

[0007] The technical solution of the present application is: the multi-wavelength LED mood regulation phototherapy instrument with feedback regulation comprises a support module, an auxiliary light environment module (2), an eye treatment module (3), a main control module (8), a feedback module (7), and a power supply module (9).

[0008] The support module is the main structure of the phototherapy instrument, which comprises a fixed unit and an adjustable unit, and a flexible circuit board is integrated inside the support module, and the fixed unit is provided with a headband (4).

[0009] The auxiliary light environment module is arranged on the fixed unit of the support module and provides different waveband ambient light by using a first LED light source (21).

[0010] The eye treatment module is arranged on the adjustable unit of the support module and has a second LED light source (33) for irradiating the eye part.

[0011] The main control module is arranged on the flexible circuit board and comprises a control unit and a remote connection unit.

[0012] The control unit adjusts the LED light source to irradiate different light, and the remote connection unit remotely connects the APP application module of the mobile terminal, sends the detection data of the feedback module to the mobile terminal in real time, and receives the data sent by the mobile terminal.

[0013] The feedback module is arranged on the flexible circuit board and comprises a heart rate detector (71) and an illuminance detector (72).

[0014] The power supply module is arranged on the flexible circuit board and supplies power to the auxiliary light environment module, the eye treatment module, the main control module, and the feedback module.

[0015] The support module of the application is the main structure of the light therapy instrument, which comprises a fixed unit and an adjustable unit, a flexible circuit board is integrated inside the support module, and the fixed unit is provided with a headband; the auxiliary light environment module is on the fixed unit of the support module, and different waveband ambient light is provided by the first LED light source; the transocular treatment module is on the adjustable unit of the support module, and the second LED light source is arranged to irradiate the eye; the main control module is arranged on the flexible circuit board, and comprises a control unit and a remote connection unit; the control unit adjusts the irradiation of different light by the LED light source; the remote connection unit remotely connects the APP application module of the mobile terminal, and sends the detection data of the feedback module to the mobile terminal in real time, and receives the data sent by the mobile terminal; the feedback module is arranged on the flexible circuit board, and comprises a heart rate detector and an illuminance detector; the power supply module is arranged on the flexible circuit board, and supplies power for the auxiliary light environment module, the transocular treatment module, the main control module and the feedback module; therefore, the user can have a comfortable experience when using the light therapy instrument, the auxiliary light environment module can ensure that the user can still perform other visual activities when using the light therapy instrument, the transocular treatment module connected by the adjustable unit can be adjusted, and the influence of other environmental radiation can be reduced when the eye piece is placed in front of the transocular treatment module without other visual work, and only the treatment light passes through the eye for treatment; the light therapy instrument has multiple treatment modes, has a feedback function, and can freely adjust different light therapy formulas to achieve different treatment schemes suitable for the user. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A structure diagram of a multi-wavelength LED mood regulation light therapy instrument with feedback adjustment according to the application is shown.

[0017] Figure 2 A structure diagram of an auxiliary light environment module of a multi-wavelength LED mood regulation light therapy instrument with feedback adjustment according to the application is shown.

[0018] Figure 3 A structure diagram of a transocular treatment module of a multi-wavelength LED mood regulation light therapy instrument with feedback adjustment according to the application is shown.

[0019] Figure 4 A control principle block diagram of a multi-wavelength LED mood regulation light therapy instrument with feedback adjustment according to the application is shown.

[0020] Figure 5 A smart device control diagram of one mode of a multi-wavelength LED mood regulation light therapy instrument with feedback adjustment according to the application is shown.

[0021] Figure 6 A smart device control diagram of another mode of a multi-wavelength LED mood regulation light therapy instrument with feedback adjustment according to the application is shown. Detailed Implementation

[0022] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention.

[0023] It should be noted that the term "comprising" and any variations thereof in the specification, claims and accompanying drawings of this invention are intended to cover non-exclusive inclusion. For example, a process, method, apparatus, product or device that includes a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products or devices.

[0024] like Figure 1 As shown, this multi-wavelength LED mood-regulating phototherapy device 1 with feedback adjustment includes: a support module, an auxiliary light environment module 2, an eye treatment module 3, a main control module 8, a feedback module 7, and a power supply module 9;

[0025] The support module is the main structure of the phototherapy device, which includes a fixed unit and an adjustable unit. The support module integrates a flexible circuit board, and the fixed unit is equipped with a headband 4.

[0026] The auxiliary lighting module, mounted on the fixed unit of the support module, utilizes the first LED light source 21 to provide ambient light of different wavelengths.

[0027] The transocular treatment module has a second LED light source 33 that illuminates the eye on the adjustable unit of the support module;

[0028] The main control module is mounted on a flexible circuit board and includes a control unit and a remote connection unit;

[0029] The control unit adjusts the LED light source to irradiate different light; the phototherapy device is remotely connected to the APP application module of the mobile terminal through the remote connection unit, and the detection data of the feedback module is sent to the mobile terminal in real time and the data sent by the mobile terminal is received.

[0030] The feedback module is mounted on a flexible circuit board and includes a heart rate detector 71 and an illuminance detector 72.

[0031] The power supply module is mounted on a flexible circuit board and supplies power to the auxiliary light environment module, the transocular therapy module, the main control module, and the feedback module.

[0032] The support module of the application is the main structure of the light therapy instrument, which comprises a fixed unit and an adjustable unit, and a flexible circuit board is integrated inside the support module, and the fixed unit is provided with a headband; the auxiliary light environment module is arranged on the fixed unit of the support module, and different waveband ambient light is provided by the first LED light source; the transocular treatment module is arranged on the adjustable unit of the support module, and the second LED light source is arranged to irradiate the eye; the main control module is arranged on the flexible circuit board, and comprises a control unit and a remote connection unit; the control unit adjusts the different light irradiated by the LED light source; the remote connection unit remotely connects the APP application module of the mobile terminal, and the detection data of the feedback module is sent to the mobile terminal in real time, and the data sent by the mobile terminal is received; the feedback module is arranged on the flexible circuit board, and comprises a heart rate detector and an illuminance detector; the power supply module is arranged on the flexible circuit board, and supplies power to the auxiliary light environment module, the transocular treatment module, the main control module and the feedback module; therefore, the user can have a comfortable experience when using the light therapy instrument, the auxiliary light environment module can ensure that the user can still perform other visual activities when using the light therapy instrument, the transocular treatment module connected by the adjustable unit can be adjusted, and the influence of other environmental radiation can be reduced when the eye piece is placed in front of the transocular treatment module without other visual work, and only the treatment light passes through the eye for treatment; the light therapy instrument has multiple treatment modes, has a feedback function, and can freely adjust different light therapy formulas to achieve different treatment schemes suitable for the user.

[0033] Preferably, the LED light source comprises white light beads capable of emitting light with a wavelength of 380-750 nm, red light beads capable of emitting light with a wavelength of 629 nm, green light beads capable of emitting light with a wavelength of 533 nm, and blue light beads capable of emitting light with a wavelength of 471 nm.

[0034] Preferably, an eye piece 6 is arranged behind the auxiliary light environment module, and the LED light beads around the eye piece irradiate light with different wavelengths around the eye piece, so that the user can see the change in the color of the environment shown through the eye piece according to the color of the LED light source. Further, the auxiliary light environment module plays a role in simulating the change in the ambient light. The integrated LED light source inside the auxiliary light environment module can irradiate light with different wavelengths in front of the eye piece, and the illuminance of the light is between 200 and 500 lux. The user can see the change in the color of the environment shown through the eye piece according to the color of the LED light source.

[0035] Preferably, the LED light beads inside the transocular treatment module irradiate light with different wavelengths to the eye through the eye piece, so that the light can pass through the eyelid and irradiate the eye when the user closes the eyes, and the light can be used to adjust the mood and rhythm by irradiating the retina.

[0036] Preferably, the adjustable unit is provided with a hinge 31 and a rotating shaft 32 at the connection with the fixed unit; before the user goes to sleep, the adjustable unit is placed in front of the fixed unit to block other external light; when not needed, the adjustable unit is placed upwards and fixed above the fixed unit to ensure its durability.

[0037] Preferably, the illuminance detector detects the light intensity of the irradiation light in real time and sends it to the main control module; the illuminance detector can detect the light intensity of the light irradiated to the user's eye in real time to ensure that the user can safely and comfortably perform the treatment, wherein when the illuminance exceeds the preset safety threshold, the main control module will issue a warning. The heart rate detector collects the user's heart rate information during use and sends it to the main control module; according to the heart rate information, the main control module can identify the user's state during treatment, including identifying the sleep state, simulating the mood, and anxiety situation. The main control module can detect the user's sleep condition through the heart rate detector and stop irradiation when the user is in a deep sleep state to reduce the disturbance to the user's sleep.

[0038] Preferably, the main control module controls the irradiation wavelength, irradiation light intensity, irradiation time, irradiation duration, irradiation mode, and irradiation frequency of the auxiliary light environment module and the transocular treatment module through different light therapy formulas. The light therapy formula is determined by the irradiation wavelength, irradiation light intensity, irradiation time, irradiation duration, irradiation mode, and irradiation frequency, wherein the irradiation wavelength has white light of 380-750nm, red light of 629nm, green light of 533nm, and blue light of 471nm, the irradiation light intensity is between 200-500 lux, the irradiation time can be customized to select any time point of the day, which can be accurate to minutes, the irradiation duration can be set in the style of hours, minutes, and seconds, and the irradiation mode can be divided into pulse and continuous, and in the pulse irradiation mode, the pulse frequency during irradiation can be further customized.

[0039] Preferably, the light therapy formula includes a built-in light therapy formula and a customized light therapy formula. The light therapy formula has a default setting and can be customized, and the user can customize the light therapy formula suitable for himself to achieve different therapeutic effects and feel the most comfortable adjustment effect.

[0040] Preferably, the APP application module of the mobile terminal sets a feedback option, the APP application module collects the use feedback and sends it to the main control module, and the main control module generates a light therapy formula suitable for different users through iteration.

[0041] Preferably, the first LED light source of the auxiliary light environment module and the second LED light source of the transocular treatment module are provided with a light homogenizing layer on the surface in front of the light source to ensure uniform illumination; the power supply module uses a light rechargeable lithium battery to ensure sufficient power supply while being light; the fixing unit of the support module is made of a high polymer material to ensure firmness and durability while ensuring proper weight, and a soft sponge 5 is provided near the head position to ensure stable wearing of the phototherapy instrument on the head during use; the headband is made of elastic material and can be adjusted elastically to adapt to different users.

[0042] The application will be described in more detail below.

[0043] Reference Figures 1-3 The multi-wavelength LED mood regulation phototherapy instrument with feedback adjustment comprises a fixing unit 1 responsible for the main structure, a flexible circuit board integrated inside the fixing unit, and a light organic high polymer material made outside to ensure firmness and lightness, providing an elastic headband 4 worn on the head of the user, a soft sponge eyeglass rim 5 to ensure stability and comfort for the user during use, an ocular lens 6 for other visual work during use, an auxiliary light environment module 2 capable of providing simulated environmental light effects, and a transocular treatment module 3 capable of passing through the eyelids in the open-eye and closed-eye states. The auxiliary light environment module 2 is located in front of the ocular lens 6, wherein a plurality of multi-wavelength LED light sources 21 are integrated around the ocular lens 6, and a light homogenizing layer 22 is provided for light homogenization. The transocular treatment module 3 is connected to the fixing unit 1 through the connecting device's rotating shaft 32 and the connecting device's hinge 31, and a plurality of transocular treatment module LED light sources 33 are integrated in an array on the transocular treatment module 3, and a light homogenizing layer 34 is provided for the transocular treatment module LED light source 33. The transocular treatment module 3 can be placed in front of the ocular lens during use through the connecting device's rotating shaft 32 and the connecting device's hinge 31, and can be adjusted upward and fixed when not in use. After the ocular lens 6, an illuminance detector 72 is provided for detecting the light entering the user's eyes to ensure the safety of the user during use, and a heart rate detector 71 is provided near the user's temple position of the fixing unit 1.

[0044] Reference Figure 4The main control module 8 is integrated with a remote connection unit 81 and a control unit 82. The remote connection unit 81 is used for information interaction with the remote APP end 10 and instruction transmission to the control unit 82. The control unit 82 is used for controlling the light therapy formula and the running state of the auxiliary light environment module 2 and the transocular treatment module 3. The feedback module 7 is integrated with a heart rate detector 71 and an illumination detector 72. The feedback module 7 can collect the use information of the auxiliary light environment module 2 and the transocular treatment module 3, and feed back the information to the remote APP end 10 through the remote connection unit 81. The power supply module 9 provides power support for the feedback module 7, the main control module 8, the auxiliary light environment module 2 and the transocular treatment module 3 integrated on the flexible circuit. The power supply module 9 mainly adopts a rechargeable light lithium battery to ensure the power of the device and a lighter weight.

[0045] Embodiment 1

[0046] This embodiment provides a multi-wavelength LED mood regulation phototherapy instrument with feedback adjustment, and the use scene is daytime treatment. Before use, the user can first set the light therapy formula on the remote APP end 10. The remote connection unit 81 connects the remote APP end 10 and the device. The user can issue instructions to the control unit 82 on the remote APP end 10. The user adjusts the headband 4 of elastic material, aligns the soft sponge eyeglass frame 5 to the eyes, and wears the phototherapy instrument on the head. The transocular treatment module 3 is lifted up and fixed by the connecting device hinge 31 and the connecting device rotating shaft 32. Only the auxiliary light environment module 2 is used for treatment. When the device in this embodiment works, the power supply module 9 supplies power to the device in this embodiment.

[0047] The user sets the light therapy formula on the remote APP end 10. The wavelength of the irradiated light is set to green light with a wavelength of 533 nm. The illumination is set to 350 lux. The irradiation time is set to 8:50. The irradiation duration is set to 30 minutes. The irradiation mode is set to pulse light irradiation. The frequency is set to 50 Hz. The control unit 82 in the main control module 8 will control the power supply module 9 to form green light in front of the ocular lens 6 according to the setting parameters of the light therapy formula, simulating the mode of ambient light.

[0048] Because of the adoption of light lithium battery and light polymer material, and the upward lifting and fixing of the transcranial therapy module 3, the user can read or do other visual work through the eyepiece 6 while doing phototherapy. At the same time, the illuminance detector 72 and the heart rate detector 71 in the feedback module 7 also work at this time. The illuminance detector 72 can detect the illuminance data of the light reaching the user's eyes, and feed back the measurement value to the APP through the remote connection unit 81. In addition, the heart rate detector near the user's temple can detect the user's heart rate during use, and detect the user's state during use. After the treatment is completed, the APP end 10 of the user will prompt the user to evaluate the phototherapy condition this time, and the APP end 10 will dynamically adjust the pre-set phototherapy formula scheme according to the collected feedback evaluation, and iteratively optimize the most comfortable phototherapy formula scheme for the user.

[0049] When the illuminance detected by the illuminance detector or the heart rate detected by the heart rate detector is abnormal after being detected by the main control module 8, the remote connection unit will send a warning to the APP end 10, and control the power supply module 9 to stop phototherapy.

[0050] Embodiment 2

[0051] The embodiment provides a multi-wavelength LED mood regulation phototherapy instrument with feedback adjustment, and the use scene is before sleeping. Before use, the user can set the phototherapy formula on the remote APP end 10, the remote connection unit 81 connects the remote APP end 10 and the device, and the user can send an instruction to the control unit 82 on the remote APP end 10. The user adjusts the headband 4 made of elastic material, aligns the soft sponge eyeglass frame 5 to the eyes, and wears the phototherapy instrument on the head. The transcranial therapy module 3 is placed downward by the connecting device hinge 31 and the connecting device rotating shaft 32, covers the eyepiece and is fixed. Only the transcranial therapy module 3 is used for treatment. When the device in the embodiment works, the power supply module 9 supplies power for the device in the embodiment.

[0052] The user sets the phototherapy formula on the remote APP end 10, sets the wavelength of the irradiated light as red light with a wavelength of 629 nm, sets the illuminance as 200 lux, sets the irradiation time as 22:30, sets the irradiation duration as 40 minutes, and sets the irradiation mode as continuous light irradiation. The control unit 82 in the main control module 8 controls the LED light source 33 of the transcranial therapy module 3 of the power supply module 9 to irradiate the eyes through the eyepiece 6 and the closed eyelids of the user according to the setting parameters of the phototherapy formula.

[0053] The device of the embodiment adopts a light lithium battery and a light polymer material, and the eye treatment module 3 covers the area in front of the eyepiece downward and is fixed, so that it can shield light and radiation except for the treatment light and only keep the treatment light. The illuminance detector 72 and the heart rate detector 71 in the feedback module 7 work at this time, the illuminance detector 71 can detect the illuminance data of the light reaching the user's eyes and feed back the measurement value on the APP 10 through the remote connection unit 81, and the heart rate detector 71 can detect the heart rate of the user when using and detect the sleep state of the user when using. When the data detected by the heart rate detector 71 speculates that the user has entered sleep for a certain period of time, the control unit 82 directly controls the power supply module 9 to turn off the treatment light of the phototherapy instrument to ensure the sleep of the user.

[0054] The application has the advantages and positive effects that the application adopts two different phototherapy schemes, the auxiliary light environment module can ensure that the user can perform other visual activities such as reading when using; the eye treatment module can be placed in front of the eyepiece when no other visual work or eye closing is needed, which can reduce the influence of other environmental radiation and only keep the treatment light passing through the eyes for treatment. The eye treatment module is connected to the fixed unit by an adjustable device, which can be placed in front of the eyepiece when using and adjusted upward when not needed, and the hinge and shaft on the adjustable device ensure its stability. In addition, the application has multiple treatment wavelengths, and the user can make different adjustments under different conditions and needs, and further, the user can adjust different phototherapy formulas to achieve different treatment schemes suitable for himself. Since the application is to illuminate the eyes for phototherapy, the application is provided with a feedback adjustment function, which can display the light intensity information and the heart rate condition of the user during treatment and the phototherapy formula to the user while the phototherapy instrument is working. The phototherapy instrument can identify the state of the user such as sleep according to the heart rate information, and intelligently adjust the working state of the phototherapy instrument according to the state of the user. Since the mood regulation needs a long process of relief and adjustment, the application provides a scheme with multiple treatment modes, which can be dynamically adjusted and displayed in real time on the remote APP and can be worn by the user to achieve more effective phototherapy and adapt to different lifestyles. The application can dynamically adjust the phototherapy formula according to the feedback after phototherapy to achieve a customized phototherapy formula for different users.

[0055] The above is only a preferred embodiment of the application, and does not limit the application in any form. Any simple modification, equivalent change and modification of the above embodiment according to the technical essence of the application still belongs to the protection scope of the technical solution of the application.

Claims

1. A multi-wavelength LED mood regulation phototherapy device with feedback regulation, characterized by: It comprises: Support module, auxiliary light environment module (2), transocular treatment module (3), main control module (8), feedback module (7), power supply module (9); The support module is the main structure of the light therapy instrument, which comprises a fixed unit and an adjustable unit. The inside of the support module is integrated with a flexible circuit board. The fixed unit is provided with a headband (4). The adjustable unit is provided with a hinge (31) and a rotating shaft (32) at the connection with the fixed unit. The auxiliary light environment module is on the fixed unit of the support module, which provides different waveband ambient light by using the first LED light source (21); The transocular treatment module is on the adjustable unit of the support module, which has the second LED light source (33) for irradiating into the eye; The main control module is arranged on the flexible circuit board, which comprises a control unit and a remote connection unit. The control unit adjusts the LED light source to irradiate different light. The remote connection unit connects the light therapy instrument with the APP application module of the mobile terminal, sends the detection data of the feedback module to the mobile terminal in real time, and receives the data sent by the mobile terminal; The feedback module is arranged on the flexible circuit board, which comprises a heart rate detector (71) and an illuminance detector (72); The power supply module is arranged on the flexible circuit board, which supplies power to the auxiliary light environment module, the transocular treatment module, the main control module and the feedback module.

2. The multi-wavelength LED mood regulation phototherapy instrument with feedback adjustment according to claim 1, characterized in that: The LED light source comprises: white light beads that can emit 380-750 nm wavelength, red light beads that can emit 629 nm wavelength, green light beads that can emit 533 nm wavelength and blue light beads that can emit 471 nm wavelength.

3. The multi-wavelength LED mood regulation phototherapy instrument with feedback regulation of claim 2, wherein: An ocular lens (6) is arranged behind the auxiliary light environment module. The LED light beads around the ocular lens irradiate light of different wavelengths around the ocular lens, so that the user can see the color of the environment around the ocular lens change according to the color of the LED light source.

4. The multi-wavelength LED mood regulation phototherapy instrument with feedback adjustment of claim 3, wherein: The LED light beads inside the transocular treatment module irradiate light of different wavelengths to the eye through the ocular lens. When the user closes his eyes, the light transmits through the eyelid and irradiates into the eye, so as to adjust the mood and rhythm by irradiating the light to the retina.

5. The multi-wavelength LED mood regulation phototherapy instrument with feedback regulation of claim 4, wherein: The illuminance detector detects the light intensity of the irradiation light in real time and sends it to the main control module; The heart rate detector collects the heart rate information of the user during use and sends it to the main control module.

6. The multi-wavelength LED mood regulation phototherapy instrument with feedback regulation of claim 5, wherein: The main control module controls the irradiation wavelength, irradiation intensity, irradiation time, irradiation duration, irradiation mode and irradiation frequency of the auxiliary light environment module and the transocular treatment module through different light therapy formulas.

7. The multi-wavelength LED mood regulation phototherapy instrument with feedback regulation of claim 6, wherein: The light therapy formula comprises built-in light therapy formula and self-defined light therapy formula.

8. The multi-wavelength LED mood regulation phototherapy instrument with feedback regulation of claim 7, wherein: The APP application module of the mobile terminal sets a feedback option. The APP application module collects the use feedback and sends it to the main control module. The main control module generates light therapy formulas suitable for different users through iteration.

9. The multi-wavelength LED mood regulation phototherapy instrument with feedback regulation of claim 8, wherein: The first LED light source of the auxiliary light environment module and the second LED light source of the transocular treatment module are both provided with a light uniformity layer on the surface in front of the light source. The power supply module uses a light rechargeable lithium battery. The fixed unit of the support module is made of high molecular material. A soft sponge (5) is arranged near the head position. The headband is made of elastic material.

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