A61L15/18

Equine thermal therapy overleg device
11701210 · 2023-07-18 ·

An equine thermal therapy overleg device that encircles a pastern of a subject horse and provides thermal therapy to the subject horse. The may include a pastern dual layer component, a distal phalanx cover and a distal phalanx slipper. The arrangement of the pastern dual layer component, a distal phalanx cover and a distal phalanx slipper allow for free movement of the subject horse and for a thermal fluid to contain ice and prevent the ice from becoming lodged around the subject horse hoof.

BREATHABLE DIAPER BACKSHEET
20230218451 · 2023-07-13 · ·

A breathable thermoplastic polymer film may be produced and adapted for use as a breathable diaper backsheet. The film may comprise a blend of LLDPE, mLLDPE and calcium carbonate, and may have improved tear strength and melt strength such that instances of tears or break offs during the machine direction orientation portion of the production process are significantly reduced or eliminated. In addition, the film may have sufficient tear strength to permit omission of CDI processing needed to strengthen weaker prior art films. In this regard, undesired streaking of colors or printed aspects of the film may be reduced or avoided completely.

ABSORBENT INTIMATE HYGIENE PRODUCT FOR PREVENTING AND TREATING INFECTION
20230218448 · 2023-07-13 ·

Devices according to the invention use a metal-based material having antimicrobial, biocidal, bactericidal, virucidal and/or fungicidal effect. Metals having antimicrobial properties can be toxic to microorganisms of interest (microbes), such as bacteria and/or fungi.

ABSORBENT INTIMATE HYGIENE PRODUCT FOR PREVENTING AND TREATING INFECTION
20230218448 · 2023-07-13 ·

Devices according to the invention use a metal-based material having antimicrobial, biocidal, bactericidal, virucidal and/or fungicidal effect. Metals having antimicrobial properties can be toxic to microorganisms of interest (microbes), such as bacteria and/or fungi.

Wound dressing materials and methods of making thereof
11690765 · 2023-07-04 · ·

Disclosed is a wound dressing material comprising a substrate, about 2.5% to about 8% by weight of a bicarbonate, and a film-forming agent, the film-forming agent serving as a binder for said bicarbonate to said substrate, the film-forming agent and the bicarbonate being present in a ratio of between 1:2 and 2:1 with respect to one another. Also disclosed are a method for preparing a wound dressing material and a method for treating a wound.

Wound dressing materials and methods of making thereof
11690765 · 2023-07-04 · ·

Disclosed is a wound dressing material comprising a substrate, about 2.5% to about 8% by weight of a bicarbonate, and a film-forming agent, the film-forming agent serving as a binder for said bicarbonate to said substrate, the film-forming agent and the bicarbonate being present in a ratio of between 1:2 and 2:1 with respect to one another. Also disclosed are a method for preparing a wound dressing material and a method for treating a wound.

Nanotechnology-based hemostatic dressings

Hemostatic compositions including a combination of more than one hemostatic agent, and devices coated or impregnated therewith, have been developed. Nanotechnology yields hemostatic agents with large surface areas thereof, thereby increasing the hemostatic properties of the device to which they are applied. By combining more than one hemostatic agent and utilizing one or more different nanotechnology approaches to enhance the surface areas thereof, the capability of the dressing to stop bleeding is improved via more than one mechanism, and thus provides better hemostasis.

Ceramic particle composite material

To provide a ceramic particle separable composite material having a calcium phosphate sintered body particle with which bioaffinity reduction and solubility change are suppressed as much as possible and which has a smaller particle diameter. A ceramic particle separable composite material comprising a ceramic particle and a substrate, wherein: the ceramic particle and the substrate are chemically bonded to each other, or the ceramic particle physically adheres to or is embedded in the substrate; the ceramic particle has a particle diameter within a range of 10 nm to 700 nm; the ceramic particle is a calcium phosphate sintered body particle; and the ceramic particle contains no calcium carbonate.

Ceramic particle composite material

To provide a ceramic particle separable composite material having a calcium phosphate sintered body particle with which bioaffinity reduction and solubility change are suppressed as much as possible and which has a smaller particle diameter. A ceramic particle separable composite material comprising a ceramic particle and a substrate, wherein: the ceramic particle and the substrate are chemically bonded to each other, or the ceramic particle physically adheres to or is embedded in the substrate; the ceramic particle has a particle diameter within a range of 10 nm to 700 nm; the ceramic particle is a calcium phosphate sintered body particle; and the ceramic particle contains no calcium carbonate.

CONSTITUENT FOR PREVENTING AND/OR TREATING SKIN WOUNDS

The invention provides a constituent that is used with a novel method for preventing and/or treating skin wounds and ensures stable delivery of low-concentration hydrogen sulfide to a wound site. The skin wound-preventing and/or treating constituent includes a sustained hydrogen sulfide releasing agent that is preferably a layered double hydroxide having HS— and/or Sk2- between layers where k is a positive integer.