A61L2/02

Penile Condom Catheter For Facilitating Urine Collection And Egress Of Urinary Fluids Away From The Body Torso
20190142627 · 2019-05-16 ·

A penile condom catheter facilitates urine collection and egress of urinary fluids away from the body torso. A circumferential anchoring structure includes a web of flexible strands sized and arranged to at least partially contact a portion of the penis. The anchoring structure provides a flexible yet secure hold against the penis when flaccid and provides an increase in the hold when a longitudinal force is exerted upon the anchoring structure. An annularly circumferential penile skin covering material is affixed to the anchoring structure and sized to fit over at least a portion of the penis. A seal is affixed to at least a portion of a covering material, a covering material orifice, or an anchoring structure. A conduit is affixed to at least one of a covering material, a covering material orifice, a seal and an anchoring structure created to permit the flow of urinary fluid away.

CLEANING SYSTEM BY MEANS OF ARTIFICIAL MIST
20190117808 · 2019-04-25 ·

The present invention relates to a system, and the method of application thereof, for washing and decontamination comprising nebulizing means (8) of a mixture of at least one first gas and at least one first liquid, and pressurizing means (1) of said first gas, wherein said pressurizing means (1) are in fluid communication with a first pressure-regulating valve (3) and with a second pressure-regulating valve (4),

the first pressure-regulating valve (3) being in fluid communication with a first pressurized tank (5) through first inlet means (31) of said first gas, the first pressurized tank (5) being configured to contain the first liquid, and comprising first outlet means (30) of said first liquid to the nebulizing means (8) through a first valve (6), at a first pressure that is greater than atmospheric pressure,

and wherein the second pressure-regulating valve (4) is in fluid communication with said nebulizing means (8), and is configured to pressurize the gas at a second pressure that is greater than atmospheric pressure.

CLEANING SYSTEM BY MEANS OF ARTIFICIAL MIST
20190117808 · 2019-04-25 ·

The present invention relates to a system, and the method of application thereof, for washing and decontamination comprising nebulizing means (8) of a mixture of at least one first gas and at least one first liquid, and pressurizing means (1) of said first gas, wherein said pressurizing means (1) are in fluid communication with a first pressure-regulating valve (3) and with a second pressure-regulating valve (4),

the first pressure-regulating valve (3) being in fluid communication with a first pressurized tank (5) through first inlet means (31) of said first gas, the first pressurized tank (5) being configured to contain the first liquid, and comprising first outlet means (30) of said first liquid to the nebulizing means (8) through a first valve (6), at a first pressure that is greater than atmospheric pressure,

and wherein the second pressure-regulating valve (4) is in fluid communication with said nebulizing means (8), and is configured to pressurize the gas at a second pressure that is greater than atmospheric pressure.

STERILIZATION AND FILTRATION OF PEPTIDE COMPOSITIONS
20190111165 · 2019-04-18 ·

Methods and devices for sterilizing viscous peptide compositions which have shear thinning rheological properties at high concentrations.

Method for retrovirus removal

A method for removing retroviruses from liquid samples and a nanofiber containing liquid filtration medium that simultaneously exhibits high liquid permeability and high microorganism retention is disclosed. Retroviruses are removed from a liquid by passing the liquid through a porous nanofiber containing filtration medium having a retrovirus LRV greater than about 6, and the nanofiber(s) has a diameter from about 10 nm to about 100 nm. The filtration medium can be in the form of a fibrous electrospun polymeric nanofiber liquid filtration medium mat.

Gloveport assembly and method of replacing components

A replacement glove assembly has a replacement access element defining an outermost shoulder end and an innermost hand end configured to receive a hand of a user. A replacement sealing assembly engages the outermost shoulder end of the replacement access element and defines a leading radial face defining a first coupling structure, a trailing radial face defining a second coupling structure, and an outer annular surface configured to be received by a glove port. A first glove cap has a first side and a second side opposite the first side. The first side defines a first mating structure sealably engaged with the first coupling structure of the leading radial face. The second side defines a second mating structure that is configured to sealably engage the second coupling structure of the trailing radial face of the replacement sealing assembly.

Refraction technology system

A system and method for modifying monoatomic oxygen levels in an initial fluid, for applications. The system and method produces both positive and negative oxygen modified fluid that retains oxygen levels for long durations as measured by oxygen reduction potential (ORP). An incoming fluid is split between a positive chamber defined by a cathode and a porous divider and a negative chamber defined by the porous divider and an anode. The relative charge over the porous divider produces fluid with elevated ORP from the positive chamber and fluid with lowered ORP from the negative chamber. A method of killing bacteria includes contacting the bacteria with negative ORP fluid produced in the system and method to the bacteria.

Semiconductor manufactured nano-structures for microbe or virus trapping or destruction

A method includes disposing a solution including a microbe or a virion on a surface of a semiconductor substrate, the semiconductor substrate having a trench extending from the surface to a region within the semiconductor substrate; wherein the the microbe or the virion is trapped within the trench of the semiconductor substrate.

Semiconductor manufactured nano-structures for microbe or virus trapping or destruction

A method includes disposing a solution including a microbe or a virion on a surface of a semiconductor substrate, the semiconductor substrate having a trench extending from the surface to a region within the semiconductor substrate; wherein the the microbe or the virion is trapped within the trench of the semiconductor substrate.

Sterilizing method and apparatus

Methods and apparatus for sterilization are presented. An exemplary embodiment includes a sterilizing cabinet assembly. The sterilizing cabinet includes a cabinet having an access port, a door connected to the cabinet, the door moveable between an open position permitting passage through the access port to an interior of the cabinet and a closed position precluding passage through the access port. The sterilizing cabinet assembly also includes at least one of the cabinet and the door having a vent port. The sterilizing cabinet has a primary filter overlying the vent port and forming a sealed interface with an adjacent portion of the one of the cabinet and the door and a secondary filter overlying at least a portion of the primary filter.