WO2012099252A1 - ガスミスト圧浴システム - Google Patents
ガスミスト圧浴システム Download PDFInfo
- Publication number
- WO2012099252A1 WO2012099252A1 PCT/JP2012/051249 JP2012051249W WO2012099252A1 WO 2012099252 A1 WO2012099252 A1 WO 2012099252A1 JP 2012051249 W JP2012051249 W JP 2012051249W WO 2012099252 A1 WO2012099252 A1 WO 2012099252A1
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- WO
- WIPO (PCT)
- Prior art keywords
- gas
- gas mist
- pressure bath
- mist
- living body
- Prior art date
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Images
Classifications
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- A61H2201/16—Physical interface with patient
- A61H2201/1602—Physical interface with patient kind of interface, e.g. head rest, knee support or lumbar support
- A61H2201/164—Feet or leg, e.g. pedal
- A61H2201/1642—Holding means therefor
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
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- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
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- A61H2201/1602—Physical interface with patient kind of interface, e.g. head rest, knee support or lumbar support
- A61H2201/165—Wearable interfaces
-
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- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/16—Physical interface with patient
- A61H2201/1683—Surface of interface
- A61H2201/1688—Surface of interface disposable
-
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- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/50—Control means thereof
- A61H2201/5007—Control means thereof computer controlled
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- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/50—Control means thereof
- A61H2201/5058—Sensors or detectors
- A61H2201/5082—Temperature sensors
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/06—Arms
- A61H2205/065—Hands
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/08—Trunk
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- A—HUMAN NECESSITIES
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- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/10—Leg
- A61H2205/106—Leg for the lower legs
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/10—Leg
- A61H2205/108—Leg for the upper legs
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/12—Feet
Definitions
- the present invention provides a mist obtained by pulverizing and dissolving oxygen, carbon dioxide gas, or a mixed gas of oxygen and carbon dioxide and a liquid such as a drug, directly in contact with the skin or mucous membrane of a living body at a predetermined pressure value or higher.
- the present invention relates to a gas mist pressure bath system for improving gas absorption efficiency from a mucous membrane.
- carbon dioxide carbon dioxide: CO 2
- CO 2 carbon dioxide
- water soluble water soluble
- oil soluble fat soluble
- This blood circulation promoting action exerts various physiological effects such as lowering blood pressure, improving metabolism, and promoting the elimination of pain substances and waste products. It also has anti-inflammatory and antibacterial effects. Therefore, in recent years, carbon dioxide gas has attracted widespread attention not only for medical purposes but also for health promotion and beauty promotion.
- Carbon dioxide gas in living tissue has the function of releasing oxygen transported by binding to hemoglobin in red blood cells.
- red blood cells release more oxygen.
- the supply of oxygen to cells by red blood cells is mainly controlled by carbon dioxide.
- hemoglobin remains in a state where oxygen is bound, and cells cannot receive oxygen.
- carbon dioxide tends to look like a waste product resulting from cell activity, but it actually plays a very important role in the body.
- oxygen is effective in metabolic activity, blood circulation promotion, fatigue recovery, blood pressure stability, and the like.
- oxygen also has a bactericidal and sterilizing effect due to oxidation.
- the present inventor has developed a gas mist pressure bath apparatus and system capable of efficiently dissolving a drug in oxygen or carbon dioxide gas and effectively exerting the physiological action of the drug on the living body in addition to these gases.
- an object of the present invention is to provide a gas mist pressure bath system in which only a part of a gas mist generator is disposable to maintain hygiene and to realize cost reduction.
- the present invention provides a mist (hereinafter referred to as a mist) obtained by pulverizing and dissolving a carbon dioxide gas having a concentration equal to or higher than a predetermined value, oxygen, or a mixed gas of carbon dioxide and oxygen (hereinafter referred to as “gas”) and a liquid.
- a mist obtained by pulverizing and dissolving a carbon dioxide gas having a concentration equal to or higher than a predetermined value, oxygen, or a mixed gas of carbon dioxide and oxygen (hereinafter referred to as “gas”) and a liquid.
- gas mist in contact with the skin or mucous membrane of a living body, comprising a gas supply means, a connection portion between the gas supply means, a liquid storage section for storing liquid, and the gas supply A nozzle, a liquid suction pipe for feeding the liquid to the tip of the nozzle, a collision member for colliding the liquid blown by the gas flow from the nozzle, and the gas supplied to the upper part of the nozzle
- a gas mist generating means having a cylindrical gas introducing portion for guiding and a donut-shaped gas mist discharging portion for collecting and discharging the gas mist; and covering the skin and mucous membrane of the living body;
- a living body cover member that forms a space that encloses the gas mist supplied from the generation unit, and configured to be removable from at least the liquid storage unit and replaceable with another liquid storage unit in the gas mist generation unit
- the present invention provides a gas mist pressure bath system.
- the pulverization and dissolution means that a liquid is pulverized into fine droplets and mixed with a gas (carbon dioxide, oxygen, or a mixed gas of carbon dioxide and oxygen).
- a gas carbon dioxide, oxygen, or a mixed gas of carbon dioxide and oxygen.
- the gas mist pressure bath system of the present invention is based on sensors that detect measured values such as atmospheric pressure, temperature, oxygen concentration, carbon dioxide concentration and humidity in the living body cover member, and the measured values of the sensors. It is preferable to further comprise control means for controlling the inside of the living body cover member within a preset set value range.
- a pressurizing means for pressurizing the inside of the living body cover member may be further provided.
- the pressurizing means is formed of a hollow gas reservoir that is connected to the living body cover member and can discharge gas mist into the living body cover member.
- the biological cover member may be interval-pressurized by intermittently supplying the gas mist into the biological cover member by the control means.
- the pressurizing means may intermittently pressurize the living body cover member by discharging gas mist intermittently into the living body cover member.
- the gas mist generating means includes a vent hole for taking in outside air.
- the liquid is preferably one or a combination of any one of water, ionic water, ozone water, physiological saline, purified water, and sterilized purified water.
- the liquid is menthol, vitamin E, vitamin C derivative, retinol, anesthetic, cyclodextrin, photocatalyst, photocatalyst and apatite complex, hyaluronic acid, coenzyme Q10, seed oil, propolis, ethanol, chlorhexidine gluconate, amphoteric Surfactant, benzalkonium chloride, alkyldiaminoetherglycine acetate, sodium hypochlorite, peracetic acid, sodium sesquicarbonate, silica, popidone iodine, sodium bicarbonate, high-concentration carbonated spring agent, antiallergic agent, anti-inflammatory agent, antipyretic Any one or more of analgesics, antifungal agents, anti-influenza virus agents, influenza vaccines
- the particle diameter of the mist supplied from the gas mist generating means into the living body cover member is preferably 10 ⁇ m or less.
- control means keeps the pressure in the living body cover member at the time of gas mist pressure bath at 1.02 to 2.5 atm.
- the electric charge provision means which provides an electric charge to the mist which the said gas mist production
- the charge is preferably a negative charge.
- the gas mist generating means has a gas mist supply pipe for supplying the gas mist into the living body pressure bath cover, and the gas mist supply pipe includes a filter for removing droplets adhering to the pipe. Good to do. Furthermore, it is preferable that all or a part of the gas mist supply pipe is constituted by a bellows-like pipe.
- the gas mist supply pipe may be provided with a check valve.
- control means preferably stops the supply of gas from the gas supply means when the pressure value in the living body cover member becomes a predetermined value or more.
- the removable part of the gas mist generating means is sterilized in advance.
- the liquid storage part for storing the medicine or the like can be removed and replaced with another liquid storage part, thereby considering hygiene and reducing the cost. It can be reduced.
- FIG. 1 is an overall schematic diagram of a gas mist pressure bath system according to a first embodiment of the present invention. It is a cross-sectional schematic diagram which shows the structure of the gas mist generator in the gas mist pressure bath system of FIG. It is a partially broken perspective view of the generator main body in the gas mist pressure bath system of FIG. It is a schematic diagram which shows the aspect which seals a generator main body in the gas mist pressure bath system of FIG. It is the perspective view of the state which looked at the cover part in the gas mist pressure bath system of FIG. 1 from the bottom. It is a partial expanded sectional view of the generator main body in the gas mist pressure bath system of FIG.
- FIG. 1 is an overall schematic view of a gas mist pressure bath system according to a first embodiment of the present invention.
- the gas mist pressure bath system of the present embodiment includes a gas supply means 10 for supplying oxygen, carbon dioxide gas, or a mixed gas of oxygen and carbon dioxide (hereinafter simply referred to as gas), and a gas mist generation means.
- the gas supply means 10 supplies gas to a nozzle 33 and a gas introduction part 37 of a gas mist generator 30 described later.
- the gas supply unit 10 is provided with a regulator for adjusting the gas pressure.
- a heater for heating the gas and a thermometer for temperature control may be arranged.
- gas is supplied to both the nozzle 33 and the gas introduction part 37 of the gas mist generator 30 with one gas supply means 10 is shown, but a plurality of gas supply means 10 are provided, and the nozzle 33 and the gas are supplied. You may make it supply the gas from the different gas supply means 10 to the introduction part 37, respectively. The gases supplied at this time may be different or the same.
- the gas mist generator 30 stores liquid in advance, generates gas mist obtained by crushing and dissolving the liquid and gas by the high-speed flow of gas supplied from the gas supply means 10, and supplies this to the biological pressure bath cover 50.
- FIG. 2 is a schematic cross-sectional view showing the structure of the gas mist generator 30.
- the gas mist generator 30 includes a generator body 31, a gas supply means connection part 35, and a lid part 36.
- FIG. 3 is a partially broken perspective view of the generator body 31.
- the generator main body 31 is stored in the liquid storage section 32 that stores liquid, the nozzle 33 that discharges the gas supplied from the gas supply means 10 from the tip opening 33 ⁇ / b> A, and the liquid storage section 32.
- a liquid absorption pipe forming member 34 that constitutes a liquid absorption pipe 34A that sucks up the liquid up to the tip of the nozzle 33.
- FIG. 4 is a schematic view showing an aspect in which the generator body 31 is sealed.
- FIG. 4A shows an example in which the upper and lower portions of the generator body 31 are sealed with plugs 31A and 31B made of an elastic member such as rubber.
- FIG. 4B the upper portion of the generator body 31 is covered with a film 31C made of aluminum, plastic or the like using heat or an adhesive, and the lower portion is sealed with a plug 31B made of an elastic member such as rubber.
- a film 31C made of aluminum, plastic or the like using heat or an adhesive
- a plug 31B made of an elastic member such as rubber.
- the liquid storage section 32 can be removed and replaced with another new liquid storage section 32, thereby reducing disposable parts and reducing costs. Plan.
- the generator main body 31 is sealed and provided, and it can keep hygiene by making it disposable each time.
- the liquid storage unit 32 can be made disposable and replaced with a new liquid storage unit 32, thereby eliminating the configuration for replenishing the liquid storage unit 32 with a liquid such as a chemical solution. Cost reduction can be realized.
- the removable gas mist generator body 31 is preferably sterilized in advance at the manufacturing stage. Also, parts that are not disposable are sterilized in advance before use.
- the liquid stored in the liquid storage unit 32 is preferably water, ionic water, ozone water, physiological saline, purified water, or sterilized purified water. Furthermore, these liquids may contain a drug effective for a user's disease, symptom, and the like. Drugs include, for example, antiallergic agents, anti-inflammatory agents, antipyretic analgesics, antifungal agents, anti-influenza virus agents, influenza vaccines, steroid agents, anticancer agents, antihypertensive agents, cosmetic agents, hair thickeners, hair growth agents And hair restorer.
- Drugs include, for example, antiallergic agents, anti-inflammatory agents, antipyretic analgesics, antifungal agents, anti-influenza virus agents, influenza vaccines, steroid agents, anticancer agents, antihypertensive agents, cosmetic agents, hair thickeners, hair growth agents And hair restorer.
- menthol has a refreshing action, vitamin E that promotes blood circulation, vitamin C derivative that is easily absorbed by skin tissue and has a high beautifying effect, retinol that normalizes the keratinization of the skin and protects the mucosa, and relieves irritation to the mucosa Anesthetic for removing odor, cyclodextrin for removing odors, photocatalyst with bactericidal or anti-inflammatory effect, or a composite of photocatalyst and apatite, hyaluronic acid with excellent water retention and moisturizing effect on skin, activating cells and immunity Coenzyme Q10 to improve, seed oil containing antioxidant substances and a large amount of nutrients, antioxidants, antibacterials, anti-inflammatorys, analgesics / anesthetics, immunity and other propolis, etc., alone or in combination, It is also possible to produce a synergistic effect with the physiological action of the gas.
- ethanol chlorhexidine gluconate, amphoteric surfactant, benzalkonium chloride, alkyldiaminoetherglycine acetate, sodium hypochlorite, peracetic acid, sodium sesquicarbonate, silica, popidone iodine, sodium bicarbonate may be added.
- you may add the high concentration carbonate spring agent (as an example of an active ingredient, a sulfate, carbonate, an organic acid, sodium dichloroisocyanurate) which has a carbonate and an organic acid as a main component.
- a nozzle 33 is provided in the center of the bottom of the generator body 31 (liquid storage part 32).
- the nozzle 33 protrudes from the bottom of the liquid storage portion 32 and is formed in a substantially conical shape that is squeezed toward the top of the generator body 31.
- a gas discharge port 35 ⁇ / b> A of the gas supply means connecting portion 35 is connected to the base end of the nozzle 33, and gas can be discharged from the tip opening 33 ⁇ / b> A of the nozzle 33.
- the liquid absorption pipe 34 ⁇ / b> A is formed between the outer peripheral surface of the nozzle 33 and the substantially conical cylindrical liquid absorption pipe forming member 34 that is slightly larger than the nozzle 33. That is, as shown in FIG. 2, by arranging the nozzle 33 so as to cover the liquid absorption pipe forming member 34, the liquid absorption pipe is provided between the outer peripheral surface of the nozzle 33 and the inner peripheral surface of the liquid absorption pipe forming member 34. 34A is formed.
- the base end (substantially lower part of the conical cylindrical portion) of the liquid absorption pipe forming member 34 is provided with a minute claw-like protrusion, so that the base end of the liquid absorption pipe formation member 34 and the liquid reservoir are stored.
- a gap is formed in the bottom surface of the part 32, and the liquid stored in the liquid storage part 32 is sucked up by the liquid absorption pipe 34A from this gap. Further, the tip 34B of the liquid suction pipe forming member 34 is opened in the vicinity of the tip opening 33A of the nozzle 33 so that the liquid sucked by the liquid suction pipe 34A hits the gas flow discharged from the nozzle 33. It is configured.
- the gas supply means connection portion 35 is a connection portion with the gas supply means 10, and the gas flow supplied from the gas supply means 10 is branched into two in the gas supply means connection portion 35 (the branch portion in FIG. 2). 35B), one is supplied to the nozzle 33 and the other is supplied to a gas introduction part 37 to be described later.
- the lid portion 36 is a member that is attached to the top of the generator main body 31 and guides the generated gas mist to the biological pressure bath cover 50. Further, it is a member for increasing the supply pressure of the gas mist to the living body pressure bath cover 50 by supplying gas into the generator body 31 separately from the nozzle 33. Details of the lid 36 are shown in FIG. FIG. 5 is a perspective view of the lid portion 36 as viewed from the bottom side.
- the lid portion 36 introduces gas into the generator main body 31 and creates a gas flow for discharging the gas mist, and a baffle (collision member) disposed at a position facing the tip opening 33A of the nozzle 33. 38 and a gas mist discharge unit 39 for collecting and discharging the gas mist to the living body pressure bath cover 50.
- a baffle collision member
- the gas introduction part 37 is a substantially cylindrical body that guides gas from the outside of the lid part 36 to the periphery of the nozzle 33 of the generator body 31, and the gas branched by the gas supply means connection part 35 enters the generator body 31 from here. Supplied.
- a gas introduction port 37A connected to the gas supply means connection part 35 with a tube or the like is provided at the upper end of the gas introduction part 37.
- the gas introduction port 37A may be provided with a vent hole for taking in outside air.
- the tube etc. which connect the gas supply means connection part 35 and the gas introduction port 37A, as shown in FIG.1 and FIG.2, the flow regulator (for example, adjusting a gas supply amount to the gas introduction part 37) Valve) 35C may be arranged.
- the baffle 38 is arranged in the vicinity of the lower end of the gas introduction part 37 by the baffle support part 38A.
- the baffle 38 is fixed to the lid portion 36 is shown, but it may be arranged on the generator body 31 side.
- the gas mist discharge part 39 is a donut-shaped space formed around the cylindrical gas introduction part 37 by the inner side and upper part of the lid part 36.
- the gas introduction part 37 preferably has a cylindrical shape
- the gas mist discharge part 39 has a donut shape, but is not necessarily limited thereto.
- the gas mist generated by the nozzle 33 and the baffle 38 is driven to the gas mist discharge unit 39 by the gas from the gas introduction unit 37.
- the gas mist discharge unit 39 guides the gas mist to the biological pressure bath cover 50.
- a gas mist discharge port 39 ⁇ / b> A connected to a gas mist supply pipe 41 that connects the gas mist generator 30 and the biological pressure bath cover 50 is provided in the upper part of the gas mist discharge unit 39.
- the gas mist supply pipe 41 is entirely or partially made of a flexible bellows-like pipe having a large pipe diameter as shown in FIG. There is no need to do. Further, even if the gas mist flowing through the gas mist supply pipe 41 is liquefied, the liquid can be removed from the irregular portions of the bellows.
- a check valve is provided in the gas mist supply pipe 41 to prevent the gas mist from flowing backward. Further, the gas mist supply pipe 41 may be provided with a droplet removal filter for removing excess droplets adhering to the inside of the tube (not shown).
- the living body pressure bath cover 50 is a cover that covers the skin and mucous membrane of a living body (here, as an example, a lower limb of a human body) and can form a space in which gas mist is enclosed.
- FIG. 1 illustrates a shape such as trousers covering the lower limbs of a human body.
- the biological pressure bath cover 50 is made of a pressure-resistant, non-breathable, and non-breathable material.
- natural rubber, silicon rubber, polyethylene, polypropylene, polyvinylidene chloride, polystyrene, polyvinyl acetate, polyvinyl chloride, polyamide resin, polytetrafluoroethylene, etc. are suitable, and as a multilayer structure of these materials Also good.
- the biological pressure bath cover 50 is connected to a gas mist supply pipe 41 and includes a supply port 51 for introducing the gas mist into the inside.
- a check valve is provided inside the supply port 51 to prevent the gas mist from flowing backward.
- the living body pressure bath cover 50 may be provided with an opening or a valve through which gas mist can be discharged in order to adjust the internal pressure. These pressure adjustments may be performed manually, but are preferably automatically performed by the control device 60 together with the gas mist supply control based on the measured value of the pressure gauge 71 described later.
- a safety valve relievef valve
- a pressure gauge 71 for measuring the internal pressure is installed in the living body pressure bath cover 50.
- the control device 60 maintains the pressure value in the biological pressure bath cover 50 at 1 atmosphere or more (more preferably, 1.02 to 2.5 atmospheres), so that the generation of gas mist is performed based on the measurement value of the pressure gauge 71. Control the supply. For example, the supply of gas from the gas supply means 10 is adjusted and stopped, or the gas mist is discharged from the biological pressure bath cover 50.
- a thermometer 72 for measuring the temperature in the biological pressure bath cover 50 is installed inside the biological pressure bath cover 50.
- the control device 60 turns on / off the heater provided in the gas supply means 10 based on the measured value of the thermometer 72 in order to keep the inside of the biological pressure bath cover 50 at a set temperature (for example, about 38 ° C.) at which a warm bath effect is obtained. Etc.
- a sensor for measuring oxygen concentration, carbon dioxide concentration, humidity, and the like is installed in the living body pressure bath cover 50 so that the inside of the cover is controlled by the control device 60 within a preset value range. Also good.
- the opening portion of the living body pressure bath cover 50 is provided with a fastening portion 52 that can be attached to and detached from the living body (here, the lower limb of the human body) and prevents leakage of gas mist enclosed therein.
- the fastening part 52 is preferably composed of, for example, a stretchable surface fastener. Or you may use a string, rubber
- a material that adheres to the skin of the user may be disposed on the inner surface of the biological pressure bath cover 50 (such as the inner surface of the fastening portion 52).
- the adhesive material is preferably a viscoelastic gel made of, for example, polyurethane or silicone rubber. Further, it is preferable that the adhesive material is detachable and can be replaced every time it is used or when the viscosity is low.
- the control device 60 is composed of a computer having a CPU, a memory, and a display. Various controls such as pressure adjustment and on / off switching of the gas supplied from the gas supply means 10 and on / off switching of the gas mist supply are performed so that the gas mist pressure bath can be performed in an optimum state. In particular, it is preferable that the control device 60 stops the gas supply of the gas supply means 10 when the pressure value in the biological pressure bath cover 50 becomes a predetermined value or more.
- the sealed generator body 31 is opened, the gas supply means connecting portion 35 and the lid portion 36 are set, and the gas mist generator 30 is completed.
- the gas supply means 10, the gas mist generator 30, the biological pressure bath cover 50, the control device 60, etc. are connected to each other.
- the living body pressure bath cover 50 is fixed and sealed to a living body (here, the lower limb of a human body). Then, supply of gas from the gas supply means 10 to the gas mist generator 30 is started.
- the gas When the gas is supplied to the nozzle 33, since the nozzle 33 is narrowed toward the tip as shown in FIG. 6, the gas is discharged at an increased flow rate.
- the liquid is sucked up in the liquid absorption pipe 34A by the negative pressure generated by the air flow at this time, blown up by the gas at the tip 34B of the liquid absorption pipe 34A and collides with the baffle 38, and mist is generated.
- the particle size of the mist generated by this collision is desirably fine, and specifically, it is optimal to be 10 ⁇ m or less. Mist thus finely pulverized can exhibit the effect of negative ions.
- the gas is further supplied from the gas introduction part 37 into the generator body 31 to increase the discharge pressure of the generated gas mist. While the gas mist is generated, the control device 60 adjusts the gas supply pressure, temperature, and the like.
- the generated gas mist is discharged from the gas mist discharge unit 39 to the biological pressure bath cover 50 through the gas mist supply pipe 41.
- the control device 60 keeps the inside of the biological pressure bath cover 50 in an optimal pressurization and heating state (about 1.02 to 2.5 atm, about 38 ° C.) from the measured values of the pressure gauge 71 and the thermometer 72. Each means is adjusted so that the gas mist pressure bath is performed in this state.
- the lower limb of the human body is described as an example of a living body part for performing a gas mist pressure bath.
- the present invention can be applied to various parts. In that case, an optimal gas mist pressure bath is performed using the biological pressure bath cover 50 having a shape that matches the target region.
- FIG. 8 schematically shows a biological pressure bath cover 50A for the upper body of the human body.
- the living body pressure bath cover 50A has a shape covering and covering the entire upper body, and a fastening portion 52A is provided at the opening of the lumbar portion so as to be attachable / detachable and prevent leakage of gas mist enclosed therein. .
- a fastening portion 53A is provided in the opening of the neck portion.
- 51A is a supply port for introducing gas mist into the inside.
- FIG. 9 shows an example of the shape of the biological pressure bath cover 50 that covers a more local part of the living body.
- FIG. 9A shows a biological pressure bath cover 50B for one lower limb (lower knee) of a human body.
- the living body pressure bath cover 50B is provided with a fastening portion 52B at its opening and a supply port 51B for introducing gas mist into the inside.
- FIG. 9B shows a biological pressure bath cover 50C for the foot of the human body.
- the living body pressure bath cover 50C is provided with a fastening portion 52C at its opening and a supply port 51C for introducing gas mist into the inside.
- FIG. 9C shows a biological pressure bath cover 50D for the forearm of the human body.
- the living body pressure bath cover 50D is provided with a fastening portion 52D at its opening and a supply port 51D for introducing gas mist into the inside.
- FIG. 9D shows a biological pressure bath cover 50E for the human hand.
- the living body pressure bath cover 50E is provided with a fastening portion 52E at its opening and a supply port 51E for introducing gas mist into the inside.
- FIG. 10 shows an example of a patch-like biological pressure bath cover 50F.
- FIG. 10 (a) is a diagram showing an outline of the patch-shaped biological pressure bath cover 50F
- FIG. 10 (b) is a view when the patch-shaped biological pressure bath cover 50F is attached to a living body (here, a human lower limb). It is a figure which shows an external appearance.
- the living body pressure bath cover 50F includes a cover part 54F that covers the skin and mucous membrane of the living body, a fastening part 52F that is provided on the periphery of the cover part 54F and is directly attached to the skin and mucous membrane of the living body, and a cover part 54F.
- a fixing portion 53F made of a belt or a string for fixing to a living body, and a supply port 51F for supplying gas mist into a space formed by the cover portion 54F and the fastening portion 52F.
- the living body pressure bath cover 50 may have various shapes other than these examples shown in FIGS.
- the living body pressure bath cover 50 since the present invention can be applied not only to the human body but also to all living organisms such as animals, the living body pressure bath cover 50 also adopts a shape according to the use object and the use site. In short, any shape may be used as long as it can cover the skin and mucous membrane of a living body and form a space in which gas mist is enclosed.
- illustration was abbreviate
- the living body pressure bath cover 50 brings the gas mist into contact with the skin and mucous membrane of the living body at a predetermined pressure value or more.
- the control device 60 may supply the gas mist intermittently into the living body pressure bath cover 50 at a constant rhythm.
- FIG. 11 is an overall schematic view of a gas mist pressure bath system according to the second embodiment of the present invention.
- a gas mist pressure bath system further provided with pressurizing means for facilitating pressurization in the biological pressure bath cover will be described.
- symbol is attached
- a living body pressure bath cover 80 that forms a space for enclosing gas mist therein, and the living body pressure bath cover 80 are connected to the inside body pressure bath cover 80.
- pressurizing means 90 for pressurizing.
- the biological pressure bath cover 80 has substantially the same structure as the biological pressure bath cover 50 shown in the first embodiment, and includes a gas mist supply port 81 and a fastening portion 82. However, the supply port 81 is connected to the pressurizing means 90 in this embodiment. In addition, here, as an example, a living body pressure bath cover 80 having a shape covering the hand portion of the human body is illustrated.
- the pressurizing means 90 includes a hollow gas reservoir 91 connected to the biological pressure bath cover 80 in order to pressurize the interior of the biological pressure bath cover 80.
- the gas reservoir 91 is made of a flexible material having pressure resistance, non-breathability, and non-moisture permeability.
- the pressurizing means 90 is connected to the supply port 81 of the biological pressure bath cover 80 and has a supply port 92 itself, from which gas mist is supplied into the gas reservoir 91.
- a check valve for preventing the backflow of gas mist is provided inside the supply port 92 of the pressurizing means 90.
- the gas mist is accumulated in the gas reservoir 91 while an appropriate gas mist is accumulated in the biological pressure bath cover 80. Then, when the gas reservoir 91 is pressurized so as to be crushed as shown by an arrow in FIG. 11, the gas mist in the gas reservoir 91 is discharged into the biological pressure bath cover 80. Can be pressurized.
- the pressurizing means 90 may be configured to be manually pressed, or may be mechanically performed under the control of the control device 60 using a drive device or the like. Further, as described above, the pressurization in the gas mist pressure bath increases the effect by being pulsed at predetermined intervals, so it is effective to press the pressurizing means 90 intermittently at a constant rhythm.
- the sealed generator body 31 is opened, the gas supply means connecting portion 35 and the lid portion 36 are set, The gas mist generator 30 is completed.
- the gas supply means 10, the gas mist generator 30, the biological pressure bath cover 80, the control device 60, etc. are connected to each other.
- the living body pressure bath cover 80 is fixed and sealed to a living body (here, a hand part of a human body).
- supply of the gas from the gas supply means 10 to the gas mist generator 30 is started, and gas mist is produced
- the control device 60 adjusts the supply pressure, amount, temperature, etc. of the liquid and gas.
- the generated gas mist is discharged from the gas mist discharge section 39 to the pressurizing means 90 and the biological pressure bath cover 80 via the gas mist supply pipe 41.
- the control device 60 adjusts each means from the measurement value of the thermometer 72 so that the inside of the biological pressure bath cover 80 is maintained in an optimally heated state (for example, about 38 ° C.).
- the pressurizing means 90 is pressed to appropriately pressurize the biological pressure bath cover 80 (about 1.02 to 2.5). Pressure) and gas mist pressure bath.
- the body pressure bath cover 80 can be used in various shapes in order to apply to various parts of the living body.
- the biological pressure bath cover 80 needs to have a size that can be easily pressurized by the pressurizing means 90.
- the size of the pressing means 90 needs to be such that a person can hold it with both hands, and the size of the biological pressure bath cover 80 that can be pressurized with such pressing means 90. It is also limited to some extent. Further, even when the pressure is applied by a driving device or the like, the pressing means 90 and the pressing means for pressing the pressing means are desirably compact so that they do not take up much space in reality. Application to the biological pressure bath cover 80 (covering a local part of the living body) is suitable.
- FIG. 12A shows a biological pressure bath cover 80A for one lower limb (lower knee) of a human body.
- the living body pressure bath cover 80A is provided with a supply port 81A for introducing gas mist into the interior, and a fastening portion 82A is provided at the opening.
- a pressurizing means 90A is connected to the supply port 81A.
- the pressurizing means 90A includes a gas reservoir 91A and a supply port 92A.
- FIG. 12B shows a biological pressure bath cover 80B for a foot part of a human body.
- the biological pressure bath cover 80B is provided with a supply port 81B for introducing gas mist into the interior, and a fastening portion 82B is provided at the opening.
- a pressurizing means 90B is connected to the supply port 81B.
- the pressurizing means 90B includes a gas reservoir 91B and a supply port 92B.
- FIG. 12C shows a biological pressure bath cover 80C for the forearm of the human body.
- the living body pressure bath cover 80 ⁇ / b> C is provided with a supply port 81 ⁇ / b> C for introducing gas mist into the interior, and a fastening portion 82 ⁇ / b> C is provided at the opening.
- a pressure means 90C is connected to the supply port 81C.
- the pressurizing means 90C includes a gas reservoir 91C and a supply port 92C.
- FIG. 13 shows an example of a patch-shaped biological pressure bath cover 80D.
- FIG. 13A is a diagram showing an outline of the patch-shaped biological pressure bath cover 80D
- FIG. 13B is an external view when the patch-shaped biological pressure bath cover 80D is attached to a living body (here, a human lower limb).
- FIG. The living body pressure bath cover 80D includes a cover portion 84D that covers the skin and mucous membrane of the living body, a fastening portion 82D that is provided at the periphery of the cover portion 84D and is directly attached to the skin and mucous membrane of the living body, and a cover portion 84D.
- the fixing portion 83D is formed of a belt or a string for fixing to a living body, and a supply port 81D for supplying gas mist into a space formed by the cover portion 84D and the fastening portion 82D.
- a pressurizing means 90D is connected to the supply port 81D.
- the pressurizing means 90D includes a gas reservoir 91D and a supply port 92D.
- the pressurization means 90 was comprised from the hollow gas reservoir 91 connected with the biological pressure bath cover 80, it compresses so that this other biological pressure bath cover 80 itself may be crushed from outer periphery. Any member can be used as long as it can easily pressurize the biological pressure bath cover 80.
- FIG. 14 is an overall schematic diagram of a gas mist pressure bath system according to a third embodiment of the present invention.
- a gas mist pressure bath system further provided with charge imparting means for charging the generated mist will be described.
- symbol is attached
- the electrode 22 is disposed in the vicinity of the outlet of the gas mist discharge port 39 ⁇ / b> A of the gas mist generator 30.
- the electrode 22 is connected to the power supply device 21, and the control device 60 sets the voltage value and controls on / off.
- the electrode 22 gives a charge (desirably a negative charge) when the mist generated by the gas mist generator 30 is discharged.
- the mist can be charged and adhesion to a charged object can be improved.
- the effect of improving the gas absorption rate by the gas mist pressure bath is further enhanced. It is possible to further promote penetration into
- the sealed generator body 31 is opened, the gas supply means connecting portion 35 and the lid portion 36 are set, The gas mist generator 30 is completed.
- the gas supply means 10, the gas mist generator 30, the biological pressure bath cover 50, the control device 60, etc. are connected to each other.
- the living body pressure bath cover 50 is fixed and sealed to a living body (here, the lower limb of a human body).
- supply of the gas from the gas supply means 10 to the gas mist generator 30 is started, and gas mist is produced
- the control device 60 adjusts the supply pressure, amount, temperature, etc. of the liquid and gas.
- the control device 60 turns on the power supply device 21 and applies an electric charge from the electrode 22 to the mist.
- the generated gas mist is discharged from the gas mist discharge unit 39 to the biological pressure bath cover 50 through the gas mist supply pipe 41.
- the control device 60 keeps the inside of the biological pressure bath cover 50 in an optimal pressurization and heating state (about 1.02 to 2.5 atm, about 38 ° C.) from the measured values of the pressure gauge 71 and the thermometer 72. Each means is adjusted so that the gas mist pressure bath is performed in this state.
- the liquid storage part can be removed and replaced with another liquid storage part, thereby considering hygiene and cost. Has been achieved.
- the present invention provides a mist obtained by pulverizing and dissolving oxygen, carbon dioxide gas, or a mixed gas of oxygen and carbon dioxide and a liquid such as a drug, directly in contact with the skin or mucous membrane of a living body at a predetermined pressure value or higher.
- the present invention has industrial applicability with respect to a gas mist pressure bath system that improves the absorption efficiency of gas from mucous membranes.
- Gas supply means 21 Power supply device 22 Electrode 30 Gas mist generator 31 Generator main body 31A, 31B Plug 31C Film 32 Liquid storage part 33 Nozzle 33A End opening 34 Absorption pipe formation member 34A Absorption pipe 34B End part 35 Gas supply means connection 35A Gas outlet 35B Branch 35C Flow controller 36 Lid 37 Gas inlet 38 Baffle 38A Baffle support 39 Gas mist outlet 41 Gas mist supply pipes 50, 50A, 50B, 50C, 50D, 50E, 50F Biological pressure bath cover 51, 51A, 51B, 51C, 51D, 51E, 51F Supply port 52, 52A, 52B, 52C, 52D, 52E, 52F Fastening portion 53A Fastening portion 53F Fixing portion 54F Cover portion 60 Controller 71 Pressure gauge 72 Thermometer 80, 80A, 80B, 80C, 80D Bath cover 81, 81A, 81B, 81C, 81D Supply port 82, 82A, 82B, 82C,
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Abstract
Description
図1は、本発明の第1の実施形態に係るガスミスト圧浴システムの全体概略図である。図1に示すように、本実施形態のガスミスト圧浴システムは、酸素、炭酸ガス、又は酸素と炭酸ガスの混合ガス(以下、単にガスという)を供給するガス供給手段10と、ガスミスト生成手段としてのガスミスト生成器30と、供給されたガスミストを内部に封入する生体カバー手段としての生体圧浴カバー50と、制御手段としての制御装置60と、から構成される。
図11は、本発明の第2の実施形態に係るガスミスト圧浴システムの全体概略図である。本実施形態では、生体圧浴カバー内の加圧を容易にする加圧手段をさらに備えたガスミスト圧浴システムについて説明する。なお、図1に示す第1の実施形態と同一の部分については、同一の符号を付して詳細な説明は省略する。
図14は、本発明の第3の実施形態に係るガスミスト圧浴システムの全体概略図である。本実施形態では、発生させたミストを帯電させるための電荷付与手段をさらに備えたガスミスト圧浴システムについて説明する。なお、図1に示す第1の実施形態と同一の部分については、同一の符号を付して詳細な説明は省略する。
21 電源装置
22 電極
30 ガスミスト生成器
31 生成器本体
31A、31B 栓
31C フィルム
32 液体貯留部
33 ノズル
33A 先端開口
34 吸液管形成部材
34A 吸液管
34B 先端部
35 ガス供給手段接続部
35A ガス吐出口
35B 分岐部
35C 流量調整器
36 蓋部
37 ガス導入部
38 バッフル
38A バッフル支持部
39 ガスミスト排出部
41 ガスミスト供給管
50、50A、50B、50C、50D、50E、50F 生体圧浴カバー
51、51A、51B、51C、51D、51E、51F 供給口
52、52A、52B、52C、52D、52E、52F 止着部
53A 止着部
53F 固定部
54F カバー部
60 制御装置
71 圧力計
72 温度計
80、80A、80B、80C、80D 生体圧浴カバー
81、81A、81B、81C、81D 供給口
82、82A、82B、82C、82D 止着部
83D 固定部
84D カバー部
90、90A、90B、90C、90D 加圧手段
91、91A、91B、91C、91D ガス溜部
92、92A、92B、92C、92D 供給口
Claims (19)
- 所定値以上の濃度の炭酸ガス、又は酸素、又は炭酸ガスと酸素の混合ガス(以下、「ガス」という)と液体を粉砕溶解させたミスト(以下、「ガスミスト」という)を生体の皮膚又は粘膜に接触させるためのシステムであって、
ガス供給手段と、
該ガス供給手段との接続部と、液体を供給する液体貯留部と、前記ガスが供給されるノズルと、該ノズル先端に前記液体を送液する吸液管と、前記ノズルからのガス流によって吹き上げられた液体を衝突させる衝突部材と、前記ガスが供給され前記ノズルの上部までガスを導く円筒状のガス導入部と、前記ガスミストを収集し排出するドーナツ形のガスミスト排出部と、を有するガスミスト生成手段と、
前記生体の皮膚及び粘膜を覆い、前記ガスミスト生成手段から供給されるガスミストを内部に封入する空間を形成する生体カバー部材と、
を備え、
前記ガスミスト生成手段において、少なくとも前記液体貯留部を取り外し可能にして他の液体貯蔵部と取替え可能に構成したことを特徴とするガスミスト圧浴システム。 - 前記生体カバー部材内の気圧、温度、酸素濃度、炭酸ガス濃度及び湿度等の測定値を検知するセンサ類と、
該センサ類の測定値に基づき前記生体カバー部材内を予め設定された設定値の範囲内に制御する制御手段と、
をさらに備えることを特徴とする請求項1に記載のガスミスト圧浴システム。 - 前記生体カバー部材内を加圧する加圧手段をさらに備えることを特徴とする請求項1又は2に記載のガスミスト圧浴システム。
- 前記加圧手段が、前記生体カバー部材と連設され、該生体カバー部材内にガスミストを排出可能な中空のガス溜からなることを特徴とする請求項3に記載のガスミスト圧浴システム。
- 前記制御手段により、前記ガスミストを間歇的に前記生体カバー部材内に供給することによって、該生体カバー部材をインターバル加圧することを特徴とする請求項2に記載のガスミスト圧浴システム。
- 前記加圧手段が、前記生体カバー部材内に間歇的にガスミストを排出することによって、該生体カバー部材をインターバル加圧することを特徴とする請求項4に記載のガスミスト圧浴システム。
- 前記ガスミスト生成手段が、外気を取り込むための通気孔を備えることを特徴とする請求項1乃至6の何れか一項に記載のガスミスト圧浴システム。
- 前記液体は、水、イオン水、オゾン水、生理食塩水、精製水、又は滅菌精製水の何れか一つ又は複数の組み合わせであることを特徴とする請求項1乃至7の何れか一項に記載のガスミスト圧浴システム。
- 前記液体は、メンソール、ビタミンE、ビタミンC誘導体、レチノール、麻酔薬、シクロデキストリン、光触媒、光触媒とアパタイトの複合体、ヒアルロン酸、コエンザイムQ10、シードオイル、プロポリス、エタノール、グルコン酸クロルヘキシジン、両性界面活性剤、塩化ベンザルコニウム、酢酸アルキルジアミノエテルグリシン、次亜塩素酸ナトリウム、過酢酸、セスキ炭酸ナトリウム、シリカ、ポピドンヨード、炭酸水素ナトリウム、高濃度炭酸泉剤、抗アレルギー剤、抗炎症剤、解熱鎮痛剤、抗真菌剤、抗インフルエンザウィルス剤、インフルエンザワクチン、ステロイド剤、抗ガン剤、血圧降下剤、化粧剤、増毛剤、発毛剤、又は育毛剤のうち、何れか一つ又は複数をさらに含有することを特徴とする請求項8に記載のガスミスト圧浴システム。
- 前記ガスミスト生成手段から前記生体カバー部材内に供給される前記ミストの粒径が、10μm以下であることを特徴とする請求項1乃至9の何れか一項に記載のガスミスト圧浴システム。
- 前記制御手段は、ガスミスト圧浴時における前記生体カバー部材内の圧力を1.02乃至2.5気圧に保持することを特徴とする請求項2に記載のガスミスト圧浴システム。
- 前記ガスミスト生成手段が供給するミストに電荷を付与する電荷付与手段をさらに備えることを特徴とする請求項1乃至11の何れか一項に記載のガスミスト圧浴システム。
- 前記電荷が、マイナス電荷であることを特徴とする請求項12に記載のガスミスト圧浴システム。
- 前記ガスミスト生成手段が、前記生体圧浴カバーへガスミストを供給するためのガスミスト供給管を有し、
該ガスミスト供給管が、管内に付着する液滴を除去するためのフィルターを備えることを特徴とする請求項1又は2に記載のガスミスト圧浴システム。 - 前記ガスミスト生成手段が、前記生体圧浴カバーへガスミストを供給するためのガスミスト供給管を有し、
該ガスミスト供給管の全部又は一部がジャバラ状の管から構成されることを特徴とする請求項1又は2に記載のガスミスト圧浴システム。 - 前記ガスミスト生成手段が、前記生体圧浴カバーへガスミストを供給するためのガスミスト供給管を有し、
該ガスミスト供給管に、逆止弁を設けることを特徴とする請求項1又は2に記載のガスミスト圧浴システム。 - 前記生体カバー部材のガスミスト供給口に、逆止弁を設けることを特徴とする請求項1又は2に記載のガスミスト圧浴システム。
- 前記制御手段は、前記生体カバー部材内の圧力値が所定値以上になった際は前記ガス供給手段からのガスの供給を停止することを特徴とする請求項1又は2に記載のガスミスト圧浴システム。
- 前記ガスミスト生成手段の取り外し可能部分が、予め滅菌処理されていることを特徴とする請求項1又は2に記載のガスミスト圧浴システム。
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CN201280003166.8A CN103140204B (zh) | 2011-01-21 | 2012-01-20 | 加压气雾洗浴系统 |
KR1020137010524A KR20130141494A (ko) | 2011-01-21 | 2012-01-20 | 가스 미스트 압욕 시스템 |
EP12737170.6A EP2626053A1 (en) | 2011-01-21 | 2012-01-20 | Pressurized gas mist bathing system |
US13/884,474 US9278204B2 (en) | 2011-01-21 | 2012-01-20 | Pressurized gas mist bathing system |
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- 2011-01-21 JP JP2011010648A patent/JP5102377B2/ja not_active Expired - Fee Related
-
2012
- 2012-01-20 EP EP12737170.6A patent/EP2626053A1/en not_active Withdrawn
- 2012-01-20 KR KR1020137010524A patent/KR20130141494A/ko not_active Application Discontinuation
- 2012-01-20 WO PCT/JP2012/051249 patent/WO2012099252A1/ja active Application Filing
- 2012-01-20 CN CN201280003166.8A patent/CN103140204B/zh not_active Expired - Fee Related
- 2012-01-20 US US13/884,474 patent/US9278204B2/en not_active Expired - Fee Related
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
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JP2000245841A (ja) * | 1999-02-26 | 2000-09-12 | Kao Corp | アイケア用噴霧装置 |
WO2010090210A1 (ja) * | 2009-02-06 | 2010-08-12 | 日本エー・シー・ピー株式会社 | ガスミスト圧浴システム |
JP3163837U (ja) * | 2010-08-23 | 2010-11-04 | 中村 正一 | ガスミスト圧浴用カバー |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2013065777A1 (ja) * | 2011-11-04 | 2013-05-10 | 日本エー・シー・ピー株式会社 | ガスミスト圧浴システム |
US9005156B2 (en) | 2011-11-04 | 2015-04-14 | Acp Japan Co., Ltd. | Gas mist pressure bathing system |
Also Published As
Publication number | Publication date |
---|---|
KR20130141494A (ko) | 2013-12-26 |
US20130226076A1 (en) | 2013-08-29 |
EP2626053A1 (en) | 2013-08-14 |
CN103140204A (zh) | 2013-06-05 |
JP5102377B2 (ja) | 2012-12-19 |
CN103140204B (zh) | 2016-09-21 |
US9278204B2 (en) | 2016-03-08 |
JP2012148022A (ja) | 2012-08-09 |
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