Abstract:
The invention relates to a printed hemostatic product having at least three-dimensions and being made of a stack of layers deposited on one another from a first external layer up to a second external layer, wherein adjacent layers of the stack of layers are joined together, and wherein at least one layer of the stack of layers has at least one portion made from an hemostatic flowable with a composition comprising: non-cross-linked collagen of the fibrillar type comprising a content of fibrous collagen and/or fibrillar collagen of at least 70% by weight relative to the total weight of the collagen; and—at least one monosaccharide. The invention also relates to a method for forming such an hemostatic product with a three-dimensional additive printer, and the use of an hemostatic flowable as a printing ink in such a three-dimensional additive printer.
Abstract:
A matrix for dissolving including a functional compound, method of preparing and using such a matrix, and a method of preparing a product including a functional compound as well as the use of such a product are described. The matrix has been provided with at least one functional compound, and at least one solvent dissolving the functional compound, and at least one film-forming agent, wherein the solvent dissolving the functional compound also homogenizes the film-forming agent into the matrix.
Abstract:
The present invention provides thermochromic liquid crystal inks and coatings. The ink and coating compositions comprise one or more non-encapsulated cholesteryl materials, one or more resins that are not cholesteryl materials, and one or more solvents. In certain embodiments, a thermochromic effect is observed at about body temperature.
Abstract:
This relates to a hydrogel precursor composition and to a bioink obtainable from the hydrogel precursor composition, as well as a method of preparing and using the same. More specifically, This also relates to a bioink that contains a catechol grafted and spontaneously crosslinked hydrogel including cells, and to its use in 3D bioprinting and to a method of preparing the same.
Abstract:
An inkjet recording apparatus includes an ink set, a conveyance section that conveys a recording medium, an image forming section disposed opposite to one side of the conveyance section for performing inkjet recording on the recording medium with the ink set, and a heating section disposed opposite to the image forming section with the conveyance section therebetween for heating the recording medium. The ink set includes an ink of a first color, an ink of a second color, an ink of a third color, and an ink of a fourth color. The ink of the first color, the ink of the second color, the ink of the third color, and the ink of the fourth color each contain a pigment, a polysaccharide, an aqueous medium, and binder resin particles. The aqueous medium includes a glycol ether. The glycol ether has a boiling point of no greater than 200° C.
Abstract:
Fusing nanowire inks are described that can also comprise a hydrophilic polymer binder, such as a cellulose based binder. The fusing nanowire inks can be deposited onto a substrate surface and dried to drive the fusing process. Transparent conductive films can be formed with desirable properties.