US2014341786A1PendingUtilityA1
Cold plasma setrilization device
Est. expiryFeb 2, 2028(~1.6 yrs left)· nominal 20-yr term from priority
Inventors:Gregory A. Konesky
A61L 2/02A61L 2/14B01J 19/087B01J 2219/0896H05H 1/466H05H 1/463H05H 1/46A61L 9/22H05H 2245/36A61L 2103/05
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Claims
Abstract
A cold plasma device for large area decontamination that can function as a scrub brush to sterilize surfaces and areas that are otherwise difficult, time consuming and/or may cause exposure hazards under convention sterilization methods.
Claims
exact text as granted — not AI-modified1 - 20 . (canceled)
21 . A sterilization device comprising:
an applicator having an input coupled to a gas source, the applicator having a first surface and a second surface opposite the first surface, the first surface configured to be placed adjacent to a surface of tissue to be sterilized; at least one output channel, the at least one output channel having an individual wire electrode with a sharp conductive point disposed therein; and at least one resistor coupled to the individual wire electrode, the at least one resistor further coupled to a power source for supplying the same electrical potential to the individual wire electrode, wherein the individual wire electrode is coupled to the at least one resistor such that the individual wire electrode extends from the at least one resistor into the at least one output channel; wherein when the individual wire electrode is are powered by the power source with the same electrical potential and gas is flowing through the at least one output channel, the sharp conductive point of the individual wire electrode creates an electric field gradient which removes electrons from molecules of the gas and ionizes the gas to form a cold plasma beam at the at least one output channel under atmospheric pressure so as to sterilize the tissue in contact with the cold plasma beam.
22 . The sterilization device of claim 21 , wherein the gas is inert.
23 . The sterilization device of claim 22 , wherein the inert gas is argon.
24 . The sterilization device of claim 22 , wherein the inert gas is helium.
25 . The sterilization device of claim 21 , wherein the applicator is disposable.
26 . The sterilization device of claim 21 , wherein the applicator is reusable.
27 . The sterilization device of claim 21 , wherein the applicator is mounted on a swing arm configured to be positioned as necessary for a procedure.
28 . The sterilization device of claim 27 , wherein the applicator is configured to be operated remotely.
29 . The sterilization device of claim 27 , wherein the applicator is configured to be preset for operation.
30 . The sterilization device of claim 21 , wherein at least one individual resistor forms a resistor network.
31 . The sterilization device of claim 21 , wherein the resistor network is at least one bulk distributed resistor, the at least one bulk distributed resistor being formed of an insulating material that blended with at least one conductive component to produce a desired level of equivalent resistance throughout the at least one bulk distributed resistor.
32 . The sterilization device of claim 31 , wherein the at least one bulk distributed resistor is formed with a pin array.
33 . The sterilization device of claim 31 , wherein the at least one conductive component is selected from the group consisting essentially of carbon nanotubes, carbon fibers, graphite powers, conductive metal particles, conductive metal oxides, conductive polymers and combinations thereof.
34 . The sterilization device of claim 31 , wherein the power source directs power through the at least one bulk distributed resistor.
35 . The sterilization device of claim 21 , wherein the applicator is a hand-held, flexible device configured to adjust to contoured surfaces.
36 . The sterilization device of claim 21 , wherein the applicator is a wall-mounted, flexible device configured to adjust to contoured surfaces.Join the waitlist — get patent alerts
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