An eye light stimulation matrix device

By using an ocular light stimulation matrix device to stimulate the optic nerve and brain nerve system with alpha waves, the shortcomings of traditional vision correction and nerve repair are overcome, achieving non-invasive visual function recovery and fundus screening, which is suitable for daily rehabilitation scenarios.

CN122075221APending Publication Date: 2026-05-26王家辉

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
王家辉
Filing Date
2026-03-04
Publication Date
2026-05-26

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Abstract

This invention relates to the field of ocular visual function rehabilitation and neuroelectrophysiological regulation technology. The invention discloses an ocular photostimulation matrix device, comprising: a housing; a display screen, power socket, power switch, and output socket disposed on the housing; a circuit board, a specific medical transformer, and a card reader chip assembly disposed inside the housing; and an output component connected to the output socket. This device is a non-invasive ocular rehabilitation device, breaking through the limitations of traditional vision correction and nerve repair technologies. Using 8-14Hz alpha waves as its core, it directly targets the core link of the visual nerve-central nervous system, fundamentally repairing visual conduction pathway disorders. It is non-invasive, has no usage restrictions, and is suitable for various visually impaired individuals. The device is easy to operate and can be used daily. It can induce endogenous light for preliminary fundus screening and can also address vision repair and brain nerve regulation. Supporting accessories further enhance the conditioning effect and device stability.
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Description

Technical Field

[0001] This invention relates to the field of ocular visual function rehabilitation and neuroelectrophysiological regulation technology, specifically to an ocular light stimulation matrix device. Background Technology

[0002] Visual impairment is one of the major health problems affecting people worldwide. Traditional vision correction methods mainly include optical correction (glasses, contact lenses), laser surgery, and physical therapy devices. However, optical correction can only improve refractive status and cannot repair dysfunction of the visual conduction pathway; although laser surgery can change corneal curvature, it is an invasive procedure, and new regulations from the Ministry of Education explicitly restrict postoperative patients from applying for related majors; existing physical therapy devices mostly focus on ciliary muscle accommodation or superficial eye massage, making it difficult to reach the core repair links of the visual nerve-central nervous system.

[0003] In recent years, research in the field of neuroscience has confirmed that the realization of visual function depends on the complete conduction of the optic nerve and the coordinated processing of the visual cortex of the brain. Retinal ganglion cells convert light signals into electrical signals, which are transmitted to the lateral geniculate body and visual cortex via the optic nerve, ultimately forming visual perception. When this pathway declines due to excessive eye use, aging, or neurological diseases, problems such as disordered neural electrical activity, decreased synchronicity between brain regions, and reduced activation rate of the visual cortex may occur, leading to symptoms such as decreased vision, blurred vision, and visual fatigue.

[0004] In existing technologies, the methods for activating and repairing the optic nerve-brain nerve connection are still relatively limited, and most of them are concentrated on gene therapy or invasive electrical stimulation, which are difficult to be widely applied in daily rehabilitation scenarios. Therefore, we propose an ocular light stimulation matrix device to solve the above-mentioned problems. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides an ocular light stimulation matrix device, which solves many problems such as traditional vision correction methods only improving refractive status but failing to repair visual conduction pathway dysfunction, laser surgery having invasive risks and being restricted by policies, existing physical training instruments only acting on the surface of the eye and having difficulty reaching the visual nerve and central core links, and existing optic nerve and brain nerve repair methods being mostly invasive techniques that are difficult to popularize in daily rehabilitation scenarios.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an ocular photostimulation matrix device, comprising:

[0007] case;

[0008] The display screen, power socket, power switch and output socket are installed on the housing;

[0009] The circuit board, specific medical transformer, and card reader module chipset are located inside the housing; as well as the output component connected to the output socket.

[0010] The output component includes an eye mask connecting cable, an eye mask body, and at least one coil disposed on the eye mask body, for transmitting pulse waveforms of a specific frequency band to the eye and inducing endogenous light in the visual nerve distribution area around the eye.

[0011] It also includes a card reader module for identification and adaptation with the card reader module chipset.

[0012] Preferably, the output component further includes an output line plugged into the output socket, with green round eyepieces plugged into both ends of the output line, and a coil integrated inside the green round eyepieces.

[0013] Preferably, the specific medical transformer is used to convert the external 220V voltage into a stable 5V voltage to supply the circuit motherboard;

[0014] The circuit board is used to convert current into a specific pulse frequency band, with the -Hz alpha wave as the main output frequency band.

[0015] The card reader module chipset is used to identify the user or activate the device function.

[0016] Preferably, it also includes a speaker for issuing sound prompts or guiding the user.

[0017] Preferably, it also includes an eye patch, which contains functional ingredients that help repair vision.

[0018] Preferably, the pulse waveform of the specific frequency band works in synergy with the main body of the green round eye patch or eye mask through the coil to stimulate the optic nerve and brain nerve system, induce the brain to enter the alpha wave state, and promote synchronous nerve discharge and neuronal repair.

[0019] Preferably, the ocular photostimulation matrix is ​​a non-invasive device that does not require a light source and achieves conditioning of the eye and cerebral cortex through endogenous bio-photoduction.

[0020] Preferably, it also includes an outer packaging flight case for placing the eye light stimulation matrix device inside for protection.

[0021] Beneficial effects

[0022] This invention provides an ocular light stimulation matrix device. Compared with the prior art, it has the following advantages:

[0023] This eye light stimulation matrix device is a non-invasive eye rehabilitation device that effectively solves many shortcomings of traditional vision correction and nerve repair technologies. Compared with optical correction, which only improves refractive status, laser surgery, which is invasive and subject to policy restrictions, and traditional physical instruments, which only act on the surface of the eye, this device uses 8-14Hz alpha waves as its core. Through the synergistic effect of coils, eye mask, and green round eye patches, it directly reaches the core link of the visual nerve-central nervous system, stimulates the optic nerve and brain nerve system, promotes synchronous nerve discharge and neuronal repair, and fundamentally repairs the dysfunction of the visual conduction pathway. It is non-invasive, has no usage restrictions, and is suitable for people with various visual impairments.

[0024] Meanwhile, the device overcomes the invasive limitations of existing optic nerve repair methods, is easy to operate, requires no professional medical environment, and can be widely used in daily rehabilitation scenarios. It can also induce the generation of endogenous light to achieve preliminary screening of fundus problems, combining the dual value of treatment and screening. In addition, the device can induce the brain to enter an alpha wave state, enhancing the neural connection between the optic and brain, achieving vision repair effects such as myopia prevention and control in teenagers and treatment of eye diseases in middle-aged and elderly people, while also improving sleep and relieving anxiety, achieving multi-target synergistic treatment of the eye and brain nervous system. The accompanying eye patches and flight case further enhance the treatment effect and the stability of the device. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0026] Figure 2 This is a cross-sectional view of the structure of the housing 101 of the present invention;

[0027] Figure 3 This is a diagram showing the connection between the green round eyepiece and the output line of the present invention.

[0028] In the diagram: 101, housing; 102, display screen; 103, power socket; 104, power cord; 105, power switch; 106, output socket; 107, circuit board; 108, specific medical transformer; 109, speaker; 110, card reader module chipset; 2, output component; 201, goggle connection cable; 202, goggle body; 203, coil; 204, green round eyepiece; 205, output cable. Detailed Implementation

[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. 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 are within the scope of protection of the present invention.

[0030] like Figure 1-3As shown:

[0031] An ocular light stimulation matrix device, comprising:

[0032] Casing 101;

[0033] The display screen 102, power socket 103, power switch 105 and output socket 106 are installed on the housing 101;

[0034] The circuit board 107, the specific medical transformer 108, and the card reader module chipset 110 are disposed inside the housing 101; and the output component 2 is connected to the output socket 106.

[0035] The output component 2 includes an eye mask connection cable 201, an eye mask body 202, and at least one coil 203 disposed on the eye mask body 202, for transmitting pulse waveforms of a specific frequency band to the eye and inducing endogenous light in the visual nerve distribution area around the eye.

[0036] The output component 2 also includes an output line 205 plugged into the output socket 106. Green round eyepieces 204 are plugged into both ends of the output line 205. A coil 203 is also integrated in the green round eyepieces 204. The pulse waveform of a specific frequency band works in synergy with the green round eyepieces 204 or the eye mask body 202 through the coil 203 to stimulate the optic nerve and brain nerve system, induce the brain to enter the alpha wave state, and promote synchronous nerve discharge and neuronal repair.

[0037] It also includes a card reader module for identification and adaptation with the card reader module chipset 110.

[0038] A specific medical transformer 108 is used to convert an external 220V voltage into a stable 5V voltage to supply the main circuit board 107;

[0039] The main circuit board 107 is used to convert current into a specific pulse frequency band, with the 8-14Hz alpha wave as the main output frequency band.

[0040] The card reader module chipset 110 is used to identify the user or activate the device function;

[0041] It also includes a speaker 109, used to provide sound prompts or guide the user.

[0042] It also includes eye patches, which contain functional ingredients that help repair vision, such as lutein, astaxanthin, and sodium hyaluronate.

[0043] The eye light stimulation matrix device is a non-invasive device that does not rely on a light source. It achieves conditioning of the eye and cerebral cortex through endogenous bio-light induction.

[0044] It also includes an outer flight case for housing the eye light stimulation matrix device for protection.

[0045] In this implementation plan: The operator connects the power cord 104 to the power socket 103 on the device housing 101, presses the power switch 105 on the surface of the housing 101, and starts the eye light stimulation matrix instrument. External 220V civil AC power is officially input into the device. After receiving the 220V voltage, the specific medical transformer 108 inside the device housing 101 performs precise voltage conversion and voltage regulation, and stably converts it into a safe 5V DC voltage. The circuit board 107 provides a continuous and stable power supply to ensure the stability of all subsequent circuit operations and signal generation, while avoiding high voltage from causing safety hazards to equipment components and the human body.

[0046] After the stable 5V voltage output from the specific medical transformer 108 is input to the circuit main board 107, the circuit main board 107 performs waveform conversion, frequency modulation, and band generation processing on the input current according to the preset program and precision circuit design. The circuit main board 107 generates an electrical pulse waveform with the 8-14Hz alpha wave as the core output frequency band. This frequency band is highly consistent with the brain wave frequency of the human brain in a relaxed state, which is the core technology band for realizing neural regulation. The circuit main board 107 can ensure the frequency accuracy and output continuity of the pulse waveform.

[0047] The device housing 101 integrates an external card reader module to complete user identification or device function activation before pulse waveform transmission: After the operator / user completes identity verification through the card reader module, the card reader module chipset 110 sends a function activation signal to the main circuit board 107 to ensure that the device outputs pulse waveforms according to the authorized functions, realizing intelligent management and dedicated use of the device; when identity verification is not completed, the device only remains powered on and does not output the core pulse signal. During the operation of the device, the speaker 109 will simultaneously emit sound prompts or guide the user to complete the above operations, improving the ease of operation;

[0048] The 8-14Hz alpha wave pulse waveform generated by the main circuit board 107 is transmitted outward through the output socket 106 on the housing 101. There are two flexibly switchable transmission paths, both of which integrate coils 203, providing the core carrier for pulse signal conduction and endogenous light induction. The specific transmission paths are as follows:

[0049] The pulse waveform is transmitted to the eye mask connection line 201 via the output port 106, and then transmitted to the eye mask body 202 via the eye mask connection line 201. At least one coil 203 on the eye mask body 202 receives the pulse signal and completes the uniform distribution of the signal in the eye area, which is suitable for the overall eye conditioning scenario.

[0050] The pulse waveform is transmitted to the output line 205 via the output socket 106. The green round eye patch 204 plugged into both ends of the output line 205 integrates the coil 203 to receive the pulse signal, realizing the precise transmission of the pulse waveform to the eye, which is suitable for local targeted treatment scenarios.

[0051] After receiving a pulse waveform of a specific frequency band, the coil 203 works in conjunction with the eye mask body 202 / green round eye patch 204 to precisely apply the pulse signal to the visual nerve distribution area around the eye. Through neurophysiological regulation, it induces the human body to generate endogenous biolight in this area. This endogenous light has lumen output and is not irradiated by an external light source. This is the core non-invasive technical feature of the device.

[0052] The induced endogenous light will exhibit different colors, and the color of the light is directly related to the user's fundus health. Based on this characteristic, the screening accuracy rate can reach over 60%. The fundus conditions corresponding to different colors are as follows:

[0053] White light: Visual feedback from most healthy people, with no obvious fundus problems;

[0054] Red light: A typical visual response to lesions in the fundus; the higher the proportion of red light, the more obvious the characteristics of fundus lesions.

[0055] Blue light / yellow light: the primary visual feedback for cataract patients;

[0056] Green light / purple light: Visual feedback indicating minor eye problems such as eye strain, mild refractive error, dry eyes, etc.

[0057] Rainbow light / multicolored light: a typical visual response in patients with diabetic retinopathy;

[0058] Users can make a preliminary assessment of their own fundus health by observing the color of endogenous light, providing a reference for subsequent eye care or medical examinations. This stage can be used in conjunction with special eye patches, which contain ingredients that help repair vision, such as lutein, astaxanthin, and sodium hyaluronate. These ingredients can work synergistically with the induction of endogenous light to enhance the effect of eye care.

[0059] The synergistic effect of pulse waveforms in specific frequency bands and induced endogenous bio-light achieves full-link neural regulation and repair from the ocular nerve to the cerebral cortex. This process is also the core functional realization stage of the device, which is specifically divided into two major levels: the ocular visual nervous system and the cerebral nervous system.

[0060] Through the synergistic effect of coil 203, eye mask body 202 / green round eye patch 204, the pulse waveform and endogenous light precisely target dormant or underfunctional optic neurons around the eye, activating their activity, promoting synchronous firing of optic neurons, restoring the normal electrical signal transmission function of the optic nerve, and fundamentally improving the functional disorders of the visual transmission pathway. The endogenous light and pulse stimulation work together to promote microcirculation in the eye, dredge the meridians in the eye, accelerate the metabolism of eye tissues, and repair damaged tissues in the fundus. It quickly relieves eye symptoms such as dry eyes, tear duct blockage, blurred vision, and visual fatigue, while improving the ciliary muscle accommodation function. It is suitable for various scenarios such as myopia prevention and control in teenagers and eye disease treatment in middle-aged and elderly people. The green round eye patch 204 has a small force-bearing area and is more suitable for use in the corners of the eyes and for people with scattered vision.

[0061] The 8-14Hz alpha wave frequency band output by the mainboard 107 can resonate with the activity of neurons in the cerebral cortex. This frequency is transmitted to the visual center of the brain through the optic nerve pathway, inducing the brain to enter a relaxed and focused alpha wave state, thereby improving sleep quality and alleviating anxiety and depression. The continuous transmission to the visual center of the brain through the optic nerve pathway significantly enhances the signal transmission efficiency between the optic nerve and cranial nerves, promotes the integration and synergistic work of the optic-brain neural circuit, and improves the brain's ability to process visual information. With long-term use of the device, the continuous stimulation of the pulse waveform and endogenous light will induce plasticity changes in neuronal synapses, effectively repairing damaged neural connections, enhancing the stability and transmission efficiency of the neural network, and laying a solid neural foundation for the long-term recovery and improvement of visual function.

[0062] The equipment is equipped with an outer flight case, which can house the entire eye light stimulation matrix instrument, providing protection against impact, dust, and moisture during transportation and storage, and ensuring the integrity and operational stability of all components. The display screen 102 on the equipment housing 101 can display equipment operating parameters in real time, such as pulse frequency, working duration, and user information, making it convenient for operators to monitor the equipment status in real time.

[0063] This solution is a non-invasive eye rehabilitation device that effectively solves many shortcomings of traditional vision correction and nerve repair technologies. Compared with optical correction, which only improves refractive status, laser surgery, which is invasive and subject to policy restrictions, and traditional physical instruments, which only act on the surface of the eye, this device uses 8-14Hz alpha waves as its core. Through the synergistic action of coils, eye mask body, and green round eye patches, it directly reaches the core link of the visual nerve-central nervous system, stimulates the optic nerve and brain nerve system, promotes synchronous nerve discharge and neuronal repair, and fundamentally repairs the dysfunction of the visual conduction pathway. It is non-invasive, has no usage restrictions, and is suitable for various visually impaired people.

[0064] Meanwhile, the device overcomes the invasive limitations of existing optic nerve repair methods, is easy to operate, requires no professional medical environment, and can be widely used in daily rehabilitation scenarios. It can also induce the generation of endogenous light to achieve preliminary screening of fundus problems, combining the dual value of treatment and screening. In addition, the device can induce the brain to enter an alpha wave state, enhancing the neural connection between the optic and brain, achieving vision repair effects such as myopia prevention and control in teenagers and treatment of eye diseases in middle-aged and elderly people, while also improving sleep and relieving anxiety, achieving multi-target synergistic treatment of the eye and brain nervous system. The accompanying eye patches and flight case further enhance the treatment effect and the stability of the device.

[0065] It should be noted that the control method of this invention is controlled by manually starting and stopping the switch. The wiring diagram of the power element and the supply of power are common knowledge in the field, so this invention will not explain the control method and wiring layout in detail.

[0066] Furthermore, any content not described in detail in this specification is existing technology known to those skilled in the art.

[0067] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. An ocular photostimulation matrix device, characterized in that: It includes: A shell (101); A display screen (102), a power socket (103), a power switch (105) and an output seat (106) arranged on the shell (101); A circuit mainboard (107), a special medical transformer (108) and a card module chip set (110) arranged inside the shell (101); and an output assembly (2) connected with the output seat (106) The output assembly (2) includes an eye mask connecting line (201), an eye mask body (202) and at least one coil (203) arranged on the eye mask body (202), which is used to transmit pulse waveforms of a specific frequency band to the eye and induce endogenous light in the visual nerve distribution area around the eye. It also includes a card module for identifying and adapting with the card module chip set (110).

2. The ocular photostimulation matrix of claim 1, wherein: The output assembly (2) further includes an output line (205) plugged into the output seat (106), and green round eye pieces (204) are plugged into both ends of the output line (205), and the green round eye pieces (204) also have coils (203) integrated therein.

3. The ocular photostimulation matrix of claim 1, wherein: The special medical transformer (108) is used to convert external 220V voltage into stable 5V voltage for the circuit mainboard (107); The circuit mainboard (107) is used to convert current into a specific pulse frequency band, of which the alpha wave of 8-14Hz is the main output frequency band; The card module chip set (110) is used to identify user identity or activate device functions.

4. The ocular photostimulation matrix of claim 1, wherein: It also includes a loudspeaker (109) for issuing sound prompts or guiding users to use.

5. The ocular photostimulation matrix of claim 1, wherein: It also includes an eye patch, which has a functional ingredient added therein to assist in repairing vision.

6. The ocular photostimulation matrix of claim 1, wherein: The specific frequency band pulse waveform cooperates with the green round eye piece (204) or the eye mask body (202) through the coil (203) to stimulate the optic nerve and the brain nerve system, induce the brain into an alpha wave state, and promote nerve synchronous discharge and neuron repair.

7. The ocular photostimulation matrix of claim 1, wherein: The eye light stimulation matrix instrument is a non-invasive device that does not require light source dependence and realizes the conditioning of the eye and the cerebral cortex through endogenous biological light induction.

8. The ocular photostimulation matrix of claim 1, wherein: It also includes an outer packaging aviation box for placing the eye light stimulation matrix instrument therein for protection.