A61L15/00

Dissolving Hygienic Male Urine Wipe
20190175419 · 2019-06-13 ·

An aqueous soluble wipe designed to remove excess micturition from the end of a male urethra. The wipe, due to its absorption abilities reduces post urination leakage. Due to said wipes solubility characteristics, used wipe may be readily disposed of in most common urinal settings without constraints to flush ability in modern urinal settings.

MEMBRANE FOR STICKING TO LIVING ORGANISM, AND METHOD FOR PRODUCING SAME

A cellulose membrane according to an embodiment of the present disclosure is a self-supporting cellulose membrane having a thickness of between 20 nm and 1300 nm, inclusive, composed of regenerated cellulose having a weight average molecular weight of 150,000 or more.

FITTING FOR SEATING FURNITURE AND SEATING FURNITURE COMPRISING SUCH A FITTING
20190159595 · 2019-05-30 ·

A furniture fitting for an item of seating furniture. The furniture fitting has a base portion attaching to a furniture base that stands on a floor, a seat face portion attaching a seat face unit having a seat face, and a leg rest portion attaching a leg rest unit having a leg rest face. The seat face portion is attached to the base portion for movement between upper and lower terminal positions, and the leg rest portion is attached to the seat face portion for movement between a stowage terminal position and a use terminal position. The leg rest portion via a rear and a front pivot lever is attached to the seat face portion. A gear device kinematically couples the movement of the seat face portion in relation to the base portion to the movement of the leg rest portion in relation to the seat face portion.

Foams for oxygen delivery to wounds

There is provided a composition comprising covalently linked segments of for example, polycaprolactone and polyethylene glycol that are linked by a cross-linker. Such a composition foams in the presence of a catalyst and a solution containing an oxygen forming chemical like hydrogen peroxide. The foamed composition retains oxygen for delivery to, for example, a wound, where it aids in healing.

Hemostatic device

A hemostatic device includes a flexible band adapted to be wrapped around a patient's limb at a site on the limb where bleeding is to be stopped, a portion for securing the band in a wrapped state to the limb, a curved plate which is made of a material more rigid than the band and at least a portion of which is curved toward the inner peripheral side thereof, a main balloon which is provided on the inner peripheral side of the curved plate and which inflates when a fluid is introduced therein, and a pressing member which is provided between the curved plate and the main balloon so that at least a portion thereof overlaps with the balloon and which is adapted for pressing against the balloon. The device provides an excellent hemostatic effect and prevents numbness and poor circulation in areas peripheral to the site of attachment.

Polymer film and antiadhesive material using the same

A polymer film can be adjusted to movement or a fine uneven surface of a living body and has excellent ability to adhere to a biological tissue. The polymer film includes a block copolymer having a structure in which branched polyalkylene glycol and polyhydroxyalkanoic acid are bound to each other, wherein the polymer film has a film thickness of 10 to 1000 nm. The branched polyalkylene glycol has at least three terminal hydroxyl groups per molecule, the mass percentage of the branched polyalkylene glycol relative to the total mass of the block copolymer is 1% to 30%, and a value obtained by dividing the average molecular weight of polyhydroxyalkanoic acid in the block copolymer by X that is the number of terminal hydroxyl groups present per a single molecule of the branched polyalkylene glycol is 10000 to 30000.

Polymer film and antiadhesive material using the same

A polymer film can be adjusted to movement or a fine uneven surface of a living body and has excellent ability to adhere to a biological tissue. The polymer film includes a block copolymer having a structure in which branched polyalkylene glycol and polyhydroxyalkanoic acid are bound to each other, wherein the polymer film has a film thickness of 10 to 1000 nm. The branched polyalkylene glycol has at least three terminal hydroxyl groups per molecule, the mass percentage of the branched polyalkylene glycol relative to the total mass of the block copolymer is 1% to 30%, and a value obtained by dividing the average molecular weight of polyhydroxyalkanoic acid in the block copolymer by X that is the number of terminal hydroxyl groups present per a single molecule of the branched polyalkylene glycol is 10000 to 30000.

DEVICE AND PRODUCTION METHOD FOR THE SAME
20190022282 · 2019-01-24 · ·

A device includes a substrate and a hydrophilic polymer layer made of a hydrophilic polymer having a hydroxyl group. The hydrophilic polymer layer having a hydroxyl group is fixed to at least a part of a surface of the substrate and the hydrophilic polymer further has an amide group. A liquid film retention time of the device is 15 seconds or more. The device has a surface of a substrate which is hydrophilized. A method for producing the device by a simple method is also disclosed.

DEVICE AND PRODUCTION METHOD FOR THE SAME
20190022282 · 2019-01-24 · ·

A device includes a substrate and a hydrophilic polymer layer made of a hydrophilic polymer having a hydroxyl group. The hydrophilic polymer layer having a hydroxyl group is fixed to at least a part of a surface of the substrate and the hydrophilic polymer further has an amide group. A liquid film retention time of the device is 15 seconds or more. The device has a surface of a substrate which is hydrophilized. A method for producing the device by a simple method is also disclosed.

DEVICE AND PRODUCTION METHOD FOR THE SAME
20190015542 · 2019-01-17 · ·

Disclosed is a device including a substrate and a gel layer made of a hydrophilic polymer having a hydroxyl group. The gel layer is fixed to at least a part on a surface of the substrate in a thickness of 1 nm to 3,000 nm and an elastic modulus of a device surface is 6.0010.sup.3 Pa or less.