Ear hydrogen supply system

JP2026144910APending Publication Date: 2026-09-09永井 阳子
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Patent Information

Application Number
JP2025032480
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-09-09

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Benefits of technology

【0007】 本発明は、水素発生装置(水素発生容器)、水素供給管、耳あてマスクという簡単な耳部水素供給システムであるが、耳部へ水素を供給できて、それによって耳の状態(聴覚機能、平衡機能)を快適にし、耳の疾患がある場合はそれらを緩和·改善することができる。

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Abstract

This system provides a way to supply hydrogen to the inside of the ear to improve ear health. [Solution] The present invention is an ear hydrogen supply system including a hydrogen generator, characterized in that hydrogen generated by the hydrogen generator is supplied into the ear, comprising a hydrogen generator, an ear mask having an opening that can be placed over the ear, and a hydrogen supply tube connecting the hydrogen generator and the ear mask, and supplying hydrogen from the hydrogen generator to the ear mask, wherein when the opening of the ear mask is placed over the ear, there is a closed space formed by the ear mask, the head and face on the opening side of the ear mask, the hydrogen supplied to the mask enters the closed space, and furthermore, the hydrogen enters the ear through the ear canal.
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Description

[[Technical Field]]

[0001] The present invention relates to a health system using hydrogen gas, and in particular to a system for supplying hydrogen into the ear canal. [[Background Art]]

[0002] In recent years, hydrogen has attracted attention as a fuel for hydrogen-powered vehicles, and it has been reported that hydrogen water, which is hydrogen dissolved in water, is useful for health promotion. For example, daily drinking of hydrogen water is known not only to have anti-aging cosmetic effects such as rejuvenating cells, but also to have improving effects on various diseases, and some hospitals have adopted hydrogen intake as part of treatment. In addition, health promotion is also performed by inhaling hydrogen alone or hydrogen mixed with mist through the mouth or nose. (Patent Document 1) [[Prior Art Documents]] [[Patent Documents]]

[0003] [[Patent Document 1]] Japanese Unexamined Patent Application Publication No. 2017-086857 [[Summary of the Invention]] [[Problem to be Solved by the Invention]]

[0004] The ear is a vital organ in the body, primarily responsible for hearing, one of the five senses, but also for balance. It collects and amplifies sounds from the surroundings, converts sound waves (vibrations in the air) into electrical signals, and transmits this auditory information to the brain via the nerves in the ear (auditory function). It also senses information about the current movement and position of the head to maintain balance and transmits this information to the brain via nerves. The ear is divided into three parts: the outer ear, middle ear, and inner ear. Sound is collected as vibrations in the auricle and transmitted to the eardrum through the external auditory canal. These vibrations cause the eardrum to vibrate, which is amplified by the ossicles, and then the cochlea in the inner ear converts these vibrations into electrical signals that are transmitted to the brain. Problems in these areas can lead to various ear diseases. For example, these include hearing loss, otitis media (inflammation of the middle ear behind the eardrum), serous otitis media (accumulation of fluid in the middle ear), cholesteatoma (tumor in the middle ear), cochlea (inflammation of the inner ear), earwax impaction, noise-induced hearing loss, sudden hearing loss, and Meniere's disease, an inner ear disorder that causes dizziness and hearing loss. The present invention provides means to improve ear function and alleviate or improve these conditions. [Means for solving the problem]

[0005] This invention provides a system that supplies hydrogen to the inside of the ear to promote ear health, and has the following features. (1) The present invention relates to an ear hydrogen supply system including a hydrogen generator, characterized in that hydrogen generated by the hydrogen generator is supplied into the ear, comprising a hydrogen generator, an ear mask having an opening that can be placed over the ear, and a hydrogen supply tube that connects the hydrogen generator and the ear mask and supplies hydrogen from the hydrogen generator to the ear mask, wherein when the opening of the ear mask is placed over the ear, there is a closed space formed by the ear mask, the head and face on the opening side of the ear mask, the hydrogen supplied to the mask enters the closed space, and furthermore, the hydrogen enters the ear through the ear canal.

[0006] (2) In addition to (1), the present invention is characterized in that the hydrogen supply pipe is equipped with a flow meter, which allows adjustment of the amount of hydrogen supplied to the ear mask and the amount of hydrogen supplied to the ear, with the amount of hydrogen supplied to the ear being 150 to 170 cc / min. Furthermore, the hydrogen generator is a device that generates hydrogen by placing a hydrogen generating agent in water, and the hydrogen generating agent is calcium oxide (CaO) and aluminum (Al), and the hydrogen is generated by reacting these with water. Alternatively, the hydrogen generator is a hydrogen cylinder filled with hydrogen, and the pressure of the hydrogen supplied from the hydrogen generator is adjusted to 1 to 4 atmospheres by a pressure regulator. [Effects of the Invention]

[0007] This invention is a simple ear hydrogen supply system consisting of a hydrogen generator (hydrogen generating container), a hydrogen supply tube, and an ear mask. It can supply hydrogen to the ear, thereby improving the condition of the ear (hearing function, balance function), and alleviating or improving ear diseases in some cases. [Brief explanation of the drawing]

[0008] [Figure 1] Figure 1 shows the ear hydrogen supply system of the present invention. [Figure 2] Figure 2 illustrates the penetration of hydrogen supplied into the ear and the effects of hydrogen in the ear hydrogen supply system of the present invention. [Figure 3] Figure 3 shows an example of the ear hydrogen supply system of the present invention. [Figure 4] Figure 4 shows the ocular hydrogen supply system using hydrogen gas according to the present invention. [Figure 5] Figure 5 shows the goggles that supply hydrogen to the eyes according to the present invention. [Modes for carrying out the invention]

[0009] The present invention relates to an ear hydrogen supply system that supplies hydrogen to the ear, and provides means and methods for resolving or alleviating various ear diseases, in other words, a method for promoting ear health. Figure 1 is a diagram showing the ear hydrogen supply system (first embodiment) of the present invention. The ear hydrogen supply system 10 in the first embodiment of the present invention includes a hydrogen generator 11, a hydrogen water container (hydrogen collection container) 17 into which hydrogen generated by the hydrogen generator 11 is introduced through a hydrogen introduction pipe 15, and the hydrogen collected from the hydrogen water container 17 is further passed through a hydrogen supply pipe 19 and guided through flow meters 20 and 21 to ear masks 24 and 25 that cover the ears 22 and 23, and into spaces 27 and 28 inside the ear masks 24 and 25. When the openings of the ear masks 24 and 25 are covered with ears, the spaces 27 and 28 inside the ear masks 24 and 25 are filled with hydrogen. The hydrogen that fills and accumulates in the spaces 27 and 28 inside the ear masks 24 and 25 is pushed out of the spaces 27 and 28 and naturally enters the ear canal 22 and 23. Once inside the ear, the hydrogen penetrates the ear organs such as the outer ear, middle ear, and inner ear, making the ears more comfortable and improving various ear diseases.

[0010] The hydrogen generator 11 contains a hydrogen generating agent holder 12. The hydrogen generating agent holder 12 contains a hydrogen generating agent, which is a material that reacts with water to produce hydrogen when it comes into contact with water. For example, when the hydrogen generating agent holder 12 containing calcium oxide (CaO) and aluminum (Al) (these are in powder form) is placed in the hydrogen generating container 11, and then water 36 is added to the hydrogen generating container 11, the aluminum (Al) acts as a hydrogen generation reaction accelerator and hydrogen (H2) is generated. The chemical reaction equation is CaO + Al + 5H2O → Ca(OH)2 + Al(OH)4 + 2H2. (Alternatively, CaO + H2O → Ca(OH)2, 2Al + Ca(OH)2 + 2H2O → Ca(AlO2)2 + 3H2.) Alternatively, for example, metallic magnesium Mg can also be used as a hydrogen generating agent. (Reaction equation: Mg + 2H2O → Mg(OH)2 + H2). Since the hydrogen generating agent is in powder or lump form, it can be stored in a nonwoven fabric bag. The nonwoven fabric bag can be placed in the hydrogen generating agent holder 12, or the nonwoven fabric bag containing the hydrogen generating agent can be placed directly into the hydrogen generating container 11 without using the hydrogen generating agent holder 12, and the nonwoven fabric bag can be brought into contact with water. The hydrogen generating container 11 is covered with a cap 13. When hydrogen (H2) is generated, the hydrogen collects in the space below the cap 13, which is the top of the hydrogen generating container 11, and the pressure in the space below the cap 13 of the hydrogen generating container 11 increases. A gas outlet 14 is formed in the cap 13, and the hydrogen inside the hydrogen generating container 11 is pushed out from the gas outlet 14. A hydrogen introduction pipe 15 is connected to the gas outlet 14, so the hydrogen pushed out from the gas outlet 14 passes through the hydrogen introduction pipe 15.

[0011] The hydrogen water container 17 contains water 37, and its opening is closed with a lid 25, creating a space between the lid 25 and the water inside the hydrogen water container 17. The hydrogen introduction tube 15 is connected to a hydrogen introduction inlet 18 formed in the lid 25, and the hydrogen introduction inlet 18 is further connected to a hydrogen inhalation tube 16 inside the hydrogen water container 17. The hydrogen inhalation tube 16 enters the water in the hydrogen water container 17 and exits the water in the hydrogen water container 17 through the outlet of the hydrogen inhalation tube 16. The hydrogen released into the water in the hydrogen water container 17 collects in the space at the top of the hydrogen water container (hydrogen collection container) 17, where it is collected. The hydrogen collected in the hydrogen collection container exits through an outlet 26 formed in the lid 25 of the hydrogen water container 17. A hydrogen supply tube 19 is connected to the outlet 26 of the lid 25 of the hydrogen water container 17, and it branches into two paths (19(19-1), 19(19-2)) along the way. One hydrogen supply pipe 19(19-1) is connected to the inlet of the flow meter 20, where the amount of hydrogen is adjusted by the flow meter 20, and the hydrogen enters the hydrogen supply pipe 19(19-3) from the outlet of the flow meter 20. The hydrogen flowing through the hydrogen supply pipe 19(19-3) enters the ear mask 24 through the inlet and into the internal space 27 of the ear mask 24. The other hydrogen supply pipe 19(19-2) is connected to the inlet of the flow meter 21, where the amount of hydrogen is adjusted by the flow meter 21, and the hydrogen enters the hydrogen supply pipe 19(19-4) from the outlet of the flow meter 21. The hydrogen flowing through the hydrogen supply pipe 19(19-4) enters the ear mask 25 through the inlet and into the internal space 28 of the ear mask 25.

[0012] Each ear mask 24 and 25 has one opening that can cover the entire ears 22 and 23, while the other parts are closed except for the part into which the hydrogen supply tubes 19 (19(19-3), 19(19-4)) are inserted. When the opening of the ear mask 24 and 25 is placed against the ears 22 and 23 so that it covers the entire ears 22 and 23, the area around the opening (the part that touches) comes into contact with the head and face, creating a closed space (internal space 27 and 28 of the ear masks 24 and 25). The two left and right ear masks 24 and 25 are connected by an ear mask holder (headband) 28. The ear mask holder (headband) 28 has a structure (for example, a spring mechanism) that pushes the ear mask inward, so that when the ear masks 24 and 25 are in contact with each ear 22 and 23, the ear masks 24 and 25 firmly cover the entire ear, securely fixing them in place so that they do not fall off the ears or allow too much hydrogen to leak out. The parts of the ear masks 24 and 25 that come into contact with the head and face (ear mask contact parts) are formed, for example, in a cushioned manner so as not to put excessive pressure on the head and face. In this way, the two ear masks 24 and 25 are similar in structure to headphones.

[0013] Hydrogen that enters the ear masks 24 and 25 into the internal spaces 27 and 28 accumulates in these spaces and naturally enters the ear canal into the ear canal. However, the flow rate of hydrogen is regulated by the flow meters 20 and 21, so the hydrogen with this regulated flow rate enters the ear canal into the ear canal. To improve various ear diseases, the optimal flow rate is 50-250 cc / min, and the ideal rate is 150-160-170 cc / min, although this depends on the volume of the space inside the ear. If the flow rate exceeds 250 cc / min, the amount of hydrogen is too high, causing a strong feeling of pressure inside the ear, and if it is less than 50 cc / min, the improvement effect is small. The hydrogen pressure in the ear mask's internal spaces 27 and 28 is approximately atmospheric pressure (about 1 atm). However, as the amount of hydrogen in these spaces increases, the hydrogen pressure increases, leading to increased pressure on the ears. Therefore, it is possible to allow hydrogen to leak out from the ear mask's contact points to prevent the hydrogen pressure in the ear mask's internal spaces 27 and 28 from increasing. This adjustment can be made using the ear mask retainer (headband) 28.

[0014] The hydrogen accumulated in the ear mask spaces 27 and 28 is pushed out and enters the ear canal. The spatial pressure (hydrogen pressure) inside the hydrogen generating container 11 is determined by the spatial volume of the hydrogen generating container 11 and the amount of hydrogen generated from the hydrogen generating agent 12. If more hydrogen is generated than the amount of hydrogen released from the flow meters 20 and 21, the spatial pressure inside the hydrogen generating container 11, the hydrogen introduction pipe 15, the internal space inside the hydrogen water container 17, and the hydrogen supply pipes 19, 19-1, and 19-2 up to the inlets of the flow meters 20 and 21 will increase. The flow meters 20 and 21 take this hydrogen pressure into account and adjust the flow meters 20 and 21 so that the amount of hydrogen released from their outlets is equal to the hydrogen flow rate at atmospheric pressure (approximately 1 atm). Furthermore, by connecting a pressure adjustment pipe 31 to the internal space of the hydrogen water container 17 and arranging a constant-pressure gas adjustment device 32, the hydrogen pressure in the internal space of the hydrogen water container 17 can be kept constant. In this case, it is not necessary to adjust the flow rate fluctuations due to hydrogen pressure using the flow meters 20 and 21. 33 is an exhaust pipe connected to the constant-pressure gas adjustment device 21, which discharges excess hydrogen from the hydrogen water container 17.

[0015] If there is no need to produce hydrogen water, a hydrogen water container is unnecessary, and in that case, the hydrogen introduction tube 15 becomes the hydrogen supply tube 19. Also, to adjust the spatial pressure (hydrogen pressure) inside the hydrogen generation container 11, the pressure adjustment tube 31, which is connected to the constant-pressure gas adjustment device 32 for hydrogen pressure adjustment, can be connected to the space inside the hydrogen generation container 11. Furthermore, if the hydrogen supplied to the spaces 27 and 28 inside the ear mask can be supplied in a suitable amount, the flow meter may be removed. Also, by allowing hydrogen to escape from the contact area of ​​the ear mask, the hydrogen pressure inside the spaces 27 and 28 inside the ear mask can be adjusted, and excessive hydrogen pressure can be prevented from being applied to the inside of the ear. The hydrogen introduction tube 15 and hydrogen supply tube 19 can be made of metal tubes such as stainless steel, copper, and aluminum, plastic tubes such as urethane, propylene, and polytetrafluoroethylene, rubber tubes, and silicone tubes. The hydrogen generation container (device) 11 is a metal container such as iron, copper, or stainless steel, a plastic container such as acrylic, PET, or polypropylene, a ceramic container, or a glass container. In the case of plastic or glass containers, transparent containers that allow the contents to be seen can be used. The hydrogen generator 11 may also be a hydrogen cylinder filled with hydrogen at high pressure (for example, 10 atmospheres or more). In this case, a pressure regulator may be placed at the outlet of the hydrogen cylinder or in the middle of the hydrogen introduction tube 15, connected to the hydrogen introduction tube 15 to adjust the pressure (for example, reducing the pressure to 1 to 4 atmospheres) and then connected to the hydrogen introduction tube 15. The water placed in the hydrogen water container 17 will become hydrogen water as hydrogen dissolves into it, and it will be drinkable.

[0016] Furthermore, by attaching heating or cooling devices such as heaters to the hydrogen introduction tube and hydrogen supply tube, the hydrogen can be heated or cooled to a desired temperature before being introduced into the ear. Electric heating wires or infrared rays can be used as heaters. The Peltier method can be used as a cooling device. A bubbler can also be connected near the outlet of the hydrogen inhalation tube 16 to generate numerous hydrogen bubbles. By generating numerous hydrogen bubbles, hydrogen can be efficiently dissolved in the water placed in the hydrogen water container 17. In other words, highly concentrated hydrogen water can be produced. The hydrogen saturation concentration of water at 1 atmosphere is approximately 1.6 ppm, but using a bubbler allows the hydrogen to be approached efficiently and quickly. Increasing the pressure inside the hydrogen water container 17 can further increase the hydrogen saturation concentration of the water. It should be noted that even with the bubbler 28 attached, the amount of hydrogen released into the space above the hydrogen water container 17 remains largely unchanged.

[0017] Figure 2 illustrates the penetration of hydrogen supplied to the ear and the effects of hydrogen in the ear hydrogen supply system of the present invention. The ear is composed of the outer ear (pinna, external auditory canal), middle ear (tympanic membrane, ossicles, middle ear cavity), and inner ear (cochlea and vestibule). Various sounds enter the ear to obtain information. Sound is the vibration of air and objects. These are collected in the pinna, pass through the outer ear, and vibrate the eardrum. The vibrations sent from the eardrum to the middle ear are amplified as they pass through the ossicles in the order of malleus → incus → stapes. Furthermore, they vibrate sensory cells (hair cells) in the cochlea in the inner ear via the perilymph, converting them into electrical signals which are sent to the brain via the auditory nerve and recognized as sound. In addition, high-pitched sounds can be heard at the narrow basilar plate of the spiral in the cochlea, and low-pitched sounds at the wide cochlear apex. If any of these organs malfunction, it can lead to various ear diseases. Ear disorders include hearing loss, sudden hearing loss, otitis media, otitis interna, otitis externa, and earwax impaction.

[0018] When hydrogen is introduced into the ear, it enters the outer ear through the ear canal, and further enters the tympanic membrane and middle ear cavity, which are constituent organs of the middle ear. Hydrogen molecules are extremely small (1 to 3 angstroms), allowing them to pass through the tympanic membrane. It further enters the eustachian tube and reaches as far as the nasal cavity and pharynx, which can be expected to relieve nasal congestion. In addition, since it enters the semicircular canals, vestibule and cochlea, which are constituent organs of the inner ear, it also has effects in improving symptoms of unsteadiness and stabilizing body balance. Furthermore, it enters the vestibular nerve and cochlear nerve, passes through the brainstem and reaches various parts of the brain. When hydrogen passes through these organs, it activates the function of capillaries, thereby having an effect of improving the aforementioned various diseases. In addition, due to their small molecular size, hydrogen can also penetrate through the skin into blood vessels and capillaries, enters the ends of capillaries, activates the function of capillaries, and can revitalize areas that blood could not previously reach. What is particularly noteworthy is that since hydrogen can reach the brain, it also activates brain function and particularly has an effect in improving cognitive function.

[0019] Figure 3 is a diagram showing an example of the ear hydrogen supply system of the present invention. In the model, a mannequin is used, and both ears of the mannequin are covered with ear masks 24 and 25. The pressing force of the ear masks 24 and 25 against the head and face is adjusted by an ear mask pressing member (headband). Hydrogen discharged from the hydrogen generator 11 passes through a hydrogen supply pipe 19 and is supplied to the inner spaces of the ear masks 24 and 25. Hydrogen that has entered the inner spaces of the ear masks 24 and 25 is supplied into the inner ear through the ear canal of the ear. The embodiment shown in Figure 3 does not include the hydrogen water container 17 shown in Figure 1. Although the present invention is a simple ear hydrogen supply system consisting of a hydrogen generator (hydrogen generation container), a hydrogen supply pipe and ear masks, it can supply hydrogen to the ear, thereby comfortable improving the ear conditions (auditory function and balance function) and relieving and improving ear diseases when present.

[0020] When the hydrogen gas of the present invention is supplied to the eyes, eye fatigue can be easily recovered. For example, when a glasses covering the eyes like goggles is worn on the eyes, hydrogen gas is supplied to the glasses, and an appropriate pressure (e.g., 1 atm to 2.0 atm) is applied, hydrogen will be absorbed (permeate) into the eyeball, crystalline lens, retina, and the surrounding cells, blood vessels, capillaries, lymphatic vessels, etc., thereby relieving eye fatigue. Furthermore, the present invention is effective against various eye diseases (e.g., dry eye, conjunctivitis, corneal damage, cataract, glaucoma, infectious diseases), and can improve or recover these conditions. It is also effective against myopia and hyperopia, and can improve or recover these conditions. In addition, a check valve may be installed on the hydrogen gas supply line to prevent excessive pressure rise (e.g., pressure exceeding 2 atm).

[0021] Fig. 4 is a diagram showing another embodiment of the present invention, and is a diagram illustrating an ocular hydrogen supply system using hydrogen gas. The ocular hydrogen supply system 110 of the present invention is a container having an opening 113 facing the eyes (ocular region) and a hydrogen inlet 112 for introducing hydrogen gas; the hydrogen inlet 112 is also connected to a hydrogen pipe 122, and the hydrogen pipe 122 is connected to a hydrogen outlet 121 of a hydrogen generator 120. Accordingly, hydrogen H2 generated by the hydrogen generator 120 passes through the hydrogen pipe 122 and enters the hydrogen inlet 112.

[0022] The container body (which can also cover the eyes, hence also called an eye mask or eye cover) 111 has a space that extends from the hydrogen inlet 112, and the opening 113 is directed towards the eyes or applied to the skin around the eyes (eye area). Therefore, as explained with goggles, the hydrogen that comes into contact with the eyes helps to relieve eye strain and other symptoms. When the opening 113 is in close contact with the eye area, the space inside the container body 111 is filled with hydrogen, and this filled hydrogen comes into contact with the eyes and penetrates into the eyeball, around the eye, and the area surrounding the eyes. The pressure inside the container body 111 increases and puts pressure on the eyes, so it is good to provide an outlet tube or outlet hole in the container body 111 to release the hydrogen gas. If hydrogen does not leak from the contact point between the opening 113 and the eye area even when the opening 113 is in close contact with the eye area, and the pressure inside the container body 111 does not become high enough to affect the eyes, then it is not necessary to provide an outlet tube or outlet hole in the container body 111 to release the hydrogen gas.

[0023] When the opening 113 facing the eye is in close contact with the eye, the goggles can be worn over the eye like glasses. Figure 5 shows the goggles 40 of the present invention for supplying hydrogen to the eye. The goggles 40 includes a lens mounting frame 51 for attaching a lens 41, an upper frame 42 that contacts the forehead, a lower frame 43 that contacts the nose, a side frame 48 that contacts the face around the eye, a tightening band 44 for attaching the goggles 40 to the face and fixing it around the eye, and a tightening adjustment member 45 for adjusting the tightness of the band. The upper frame 42 is provided with a hydrogen inlet 52, and a hydrogen inlet tube 46 is connected to the hydrogen inlet 52. The hydrogen inlet tube 46 corresponds to the hydrogen supply tube 19 in Figure 1. Hydrogen 50 is introduced into the inside of the goggles 40 through the hydrogen inlet tube 46, and when the goggles 40 are attached to the eye, hydrogen enters the inside of the goggles 40 and can come into contact with the eye. Furthermore, hydrogen can be supplied to the eyes by filling the inner space of the goggles 40 with hydrogen and pushing it out. The hydrogen inlet 52 can also be provided in other suitable locations on the goggles. For example, it can be attached to the lens 41 so that it directly hits the eye.

[0024] If the band is tightened appropriately, even if the pressure inside the goggles 40 increases, hydrogen will escape from the contact point between the face and the frame of the goggles 40, preventing the pressure from rising above a certain level. This will not strain the eyes, and hydrogen can be brought into contact with the eyes at an appropriate pressure. Alternatively, a gas vent hole 49 can be attached to the frame 48 of the goggles to release excess hydrogen to the outside. A check valve (a valve that allows gas to be released automatically when the pressure exceeds a certain level (for example, 1-2 atmospheres or more)) can also be provided in this gas vent hole 49. The gas vent hole 49 can also be provided in other suitable locations on the goggles.

[0025] As described in detail above, the present invention provides a system for supplying hydrogen to the inside of the ear to promote ear health. It is a simple ear hydrogen supply system consisting of a hydrogen generator (hydrogen generating container), a hydrogen supply tube, and an ear mask, which can supply hydrogen to the ear, thereby improving the condition of the ear (hearing function, balance function), and alleviating or improving ear diseases if present. It goes without saying that the contents described and explained in certain parts of this specification can be applied without contradiction to other parts not described herein. Furthermore, the above embodiments are examples and can be implemented with various modifications without departing from the spirit of the invention, and it goes without saying that the scope of the rights of the present invention is not limited to the above embodiments. [Explanation of Symbols]

[0026] 10. Ear hydrogen supply system, 11. Hydrogen generator, 12. Hydrogen generating agent holder, 13. Cap, 14 Gas outlet, 15 Hydrogen inlet tube, 16 Hydrogen intake tube, 17 Hydrogen water container, 18 Hydrogen inlet, 19 Hydrogen supply pipe, 20 Flow meter, 21 Flow meter, 22 Ear, 23 Ear, 24 Ear mask, 25 Ear mask, 27 Earloop mask interior space, 28 Earloop mask interior space, 29 Earloop mask holder (headband), 31 Pressure regulating pipe, 32 Constant pressure gas regulating device, 33 Exhaust pipe, 36 Water, 37 Water

Claims

1. An ear hydrogen supply system including a hydrogen generator, characterized by supplying hydrogen generated by the hydrogen generator into the ear.

2. The ear hydrogen supply system according to claim 1, comprising a hydrogen generator, an ear mask having an opening that can be placed over the ear, and a hydrogen supply pipe connecting the hydrogen generator and the ear mask, and supplying hydrogen discharged from the hydrogen generator to the ear mask.

3. The ear hydrogen supply system according to claim 2, characterized in that when the opening of the ear mask is placed over the ear, the ear mask has a closed space formed by the ear mask, the head and face on the opening side of the ear mask, hydrogen supplied to the mask enters the closed space, and the hydrogen further enters the ear through the ear canal.

4. The ear hydrogen supply system according to claim 2, characterized in that the hydrogen supply pipe is equipped with a flow meter, and the amount of hydrogen supplied to the ear mask and the amount of hydrogen supplied to the ear canal can be adjusted.

5. The ear hydrogen supply system according to claim 2, characterized in that the amount of hydrogen supplied to the ear is 150 to 170 cc / min.

6. The hydrogen skin penetration device according to claim 2, characterized in that the hydrogen generating device is a device that generates hydrogen by placing a hydrogen generating agent in water.

7. The hydrogen skin penetration device according to claim 6, characterized in that the hydrogen generating agent is calcium oxide (CaO) and aluminum (Al), and the hydrogen is generated by reacting these with water.

8. The hydrogen skin penetration device according to claim 2, characterized in that the hydrogen generating device is a hydrogen cylinder filled with hydrogen.

9. The hydrogen skin penetration device according to claim 8, characterized in that the pressure of the hydrogen supplied from the hydrogen generator is adjusted to 1 to 4 atmospheres by a pressure regulator.

10. An ocular hydrogen supply system characterized by connecting hydrogen generated by a hydrogen generator to an eye container (called an eye mask) having an opening via a hydrogen conduit, and allowing the hydrogen to come into contact with the eye by directing the opening of the eye mask towards the eye.

11. The eye hydrogen supply system according to claim 10, characterized in that hydrogen generated by a hydrogen generator is connected to goggles through a hydrogen conduit, allowing hydrogen to be supplied to the inside of the goggles, so that when the goggles are worn, the hydrogen can come into contact with the eyes.

12. The eye hydrogen supply system according to claim 10 or 12, characterized in that the eye mask or goggles have a mechanism for releasing internal gas when the internal pressure becomes high.

Citation Information

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