1460919929-77ad535a-7ee1-46a9-a03f-af05bbc86593

1. A gas mist pressure bathing system, which causes a mist (called as \u201cgas mist\u201d hereafter) to contact the skin or the mucous membrane of a living body, the mist having been prepared by pulverizing and dissolving carbon dioxide or oxygen and liquid, or a mixed gas (called as \u201cgas\u201d hereafter) of carbon dioxide and oxygen and liquid of concentration being not less than predetermined value, comprising
a gas supply means for supplying the above gas,
a gas mist generation means for generating the gas mist of the gas supplied from the gas supply means and the liquid stored inside, and supplying the gas mist under a condition of mixing with the above gas, and
a living body cover member for covering the skin and the mucous membrane of the living body and formed with a space for sealing inside the gas mist and gas supplied from the gas mist generation means,
wherein the above mentioned gas mist generation means is integrally provided with
a connection part to the gas supply means;
a diverging portion of branching a gas flow from the connection part;
a liquid storage of storing the liquid;
a nozzle of discharging one-side gas flow branched by the diverging portion and a liquid suction pipe of sending the liquid to a front end of the nozzle;
a collision member of generating the gas mist by colliding the liquid blown up by the gas flow discharged from the nozzle with this collision member;
a confluent part of joining the generated gas mist with the gas from an upward side;
a gas inlet of leading the other-side gas flow branched by the diverging portion until the confluent part; and
a gas mist discharge part of collecting and discharging the generated gas mist and gas.
2. The gas mist pressure bathing system as set forth in claim 1, wherein, in the gas mist generation means, at least the liquid storage is made removable and exchangeable with another liquid storage.
3. The gas mist pressure bathing system as set forth in claim 1, further provided with
sensors for detecting measured values of air pressure, temperature, concentrations of oxygen and carbon dioxide, and moisture within the living body cover member and
control means for controlling the interior of the living body cover member based on the measured values of the sensors to be within ranges of the set values having been in advance determined.
4. The gas mist pressure bathing system as set forth in claim 1, further provided with a pressurization means for pressurizing the interior of the living body cover member.
5. The gas mist pressure bathing system as set forth in claim 4, wherein the above mentioned pressurization means communicates with the living body cover member, and consists of a hollow gas storage enabling to discharge the gas mist into the living body cover member.
6. The gas mist pressure bathing system as set forth in claim 3, wherein the above mentioned control means supplies the gas mist intermittently into the living body cover member, so that the living body cover member may be effected with interval pressurization.
7. The gas mist pressure bathing system as set forth in claim 5, wherein the pressurization member intermittently discharges the gas mist into the living body cover member to carry out the interval pressurization on the living body cover member.
8. The gas mist pressure bathing system as set forth in claim 1, wherein the above mentioned liquid is any one or plural combination of water, ionic water, ozone water, physiological salt solution, purified water, or sterilized and purified water.
9. The gas mist pressure bathing system as set forth in claim 8, wherein the above mentioned liquid further contains any one or plural combination of menthol, vitamin E, vitamin C derivative, retinol, anesthetic agent, cyclodextrin, photo catalyst, complex of photo catalyst and apatite, hyaluronic acid, coenzyme Q10, seed oil, propolith, citric acid, ethanol, chlorhexidine gluconate, amphoteric surface active agent, benzalkonium chloride, alkyl diamino etherglycine acetate, sodium hypochlorite, peracetic acid, sodium sesqui-carbonate, silica, povidone-iodine, sodium hydrogen carbonate, carbonate spring agent of high concentration, anti-allergic agent, anti-inflammatory agent, anti-febrile agent, anti-fungus agent, anti-influenza virus agent, influenza vaccine, steroid agent, anti-cancer agent, anti-hypertensive agent, cosmetic, or trichogen.
10. The gas mist pressure bathing system as set forth in claim 1, wherein a size of the mist supplied from the gas mist generation means into the living body cover member is not larger than 10 \u03bcm.
11. The gas mist pressure bathing system as set forth in claim 1, wherein the control means holds pressure at 1.01 to 1.4 air pressure within the living body cover member when taking the gas mist pressure bathing.
12. The gas mist pressure bathing system as set forth in claim 1, wherein an electric charge giving means is provided for giving an electric charge to the mist supplied by the gas mist generation means.
13. The gas mist pressure bathing system as set forth in claim 12, wherein the electric charge is preferably minus.
14. The gas mist pressure bathing system as set forth claim 1, wherein the gas mist generation means has a gas mist supply pipe for supplying the gas mist and gas into the living body cover, and
this gas mist supply pipe is furnished with a filter for removing liquid drops attaching to the inside of the pipe.
15. The gas mist pressure bathing system as set forth in claim 1, wherein the gas mist generation means has a gas mist supply pipe for supplying the gas mist and gas into the living body cover, and
the gas mist supply pipe is composed of a cornice shaped pipe over a whole or at one part of the gas mist supply pipe.
16. The gas mist pressure bathing system as set forth in claim 15, wherein the cornice shaped pipe is formed inside with a groove in an axial direction of the pipe.
17. The gas mist pressure bathing system as set forth in claim 1, wherein the gas mist generation means has a gas mist supply pipe for supplying the gas mist and gas into the living body cover, and
this gas mist supply pipe is provided with a check valve.
18. The gas mist pressure bathing system as set forth in claim 1, wherein the living body cover member is furnished with the check valve at the gas mist supply port.
19. The gas mist pressure bathing system as set forth in claim 1, wherein the control means stops gas supply from the gas supply means when the pressure value becomes more than the predetermined value.
20. The gas mist pressure bathing system as set forth in claim 1, wherein the gas mist generation means is in advance sterilized.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A stabilized monomer dispersion containing inorganic oxide nanoparticles with high refractive index, wherein the refractive index of the inorganic oxide nanoparticles is greater than 1.65, the average particle size of the inorganic oxide nanoparticles is in a range of from 1 to 100 nm and its content is in a range of from 1.0% by weight to 10.0% by weight based on the total weight of the monomer dispersion.
2. The stabilized monomer dispersion of claim 1, wherein the average particle size of the inorganic oxide nanoparticles is in a range of from 2 to 50 nm.
3. The stabilized monomer dispersion of claim 1, wherein the inorganic oxide nanoparticles are in an amount of from 1.0% by weight to 8.0% by weight based on the total weight of the monomer dispersion.
4. The stabilized monomer dispersion of claim 1, wherein the monomer contained in the dispersion is a monomer which is liquid at a temperature of from 0 to 50\xb0 C.
5. The stabilized monomer dispersion of claim 4, wherein the monomer is at least one selected from the group consisting of a monomer containing an ethylenic functional group, an electrically conductive monomer and a polycondensation reactive monomer.
6. The stabilized monomer dispersion of claim 1, wherein the monomer dispersion can be further polymerized in the presence of a polymerization initiator to form a polymer.
7. The stabilized monomer dispersion of claim 1, wherein the inorganic oxide nanoparticles of the high refractive index are selected from the group consisting of titanium dioxide, zirconium dioxide and cerium dioxide.
8. A process for preparing a stabilized monomer dispersion containing inorganic oxide nanoparticles with a high refractive index greater than 1.65, the process comprising the steps of: condensing and then hydrolyzing an alkoxide precursor corresponding to the inorganic oxide in a reactive monomer serving as a solvent in the presence of an chelating agent and water at a temperature of from 0 to 50\xb0 C. to produce a dispersion consisting of the monomer and inorganic oxide nanoparticles dispersed therein, wherein the equivalent ratio of the water to the alkoxide is equal to or less than 3, and the equivalent ratio of the chelating agent to the alkoxide is at least 2.
9. The process of claim 8, wherein the inorganic oxide nanoparticles are selected from the group consisting of titanium dioxide, zirconium dioxide, and cerium dioxide.
10. The process of claim 8, wherein the alkoxide precursor is represented by X(OR)4, wherein R’s are the same or different and represent a straight or branched alkyl group having 1 to 8 carbon atoms, and X is Ti, Zr, or Ce.
11. The process of claim 10, wherein the alkoxide is titanium tetraisopropoxide or titanium tetrabutoxide.
12. The process of claim 10, wherein the alkoxide is zirconium tetraethoxide or zirconium tetrapropoxide.
13. The process of claim 8, wherein the chelating agent is a compound having a carboxyl (\u2014COOH) functional group.
14. The process of claim 13, wherein the chelating agent is acetic acid, citric acid, acrylic acid, or methacrylic acid.