This application claims the priority of Taiwanese patent application No. 109145976, filed on Dec. 24, 2020, which is incorporated herewith by reference.
The present invention relates generally to a dressing, and more particularly, to a dressing for negative pressure wound therapy.
Nowadays, the medical field develops auxiliary negative pressure wound therapy (NPWT) for complex wounds, surgery, chronic diseases, burns and scalds. It uses a dressing connected to a suction device to cover open wounds and regulates the suction device to draw out the air and the tissue fluid discharged from the wound between the wound and the dressing to form a negative pressure airtight environment between the dressing and the open wound, which can avoid infection, reduce dressing changes and promote wound healing.
Negative pressure wound therapy mainly uses porous materials, such as foam, to make dressings. The pores of the dressing can absorb wound tissue fluid, and the suction device draws out the wound tissue fluid absorbed by the dressing through a suction tube. Because the wound tissue fluid and new granulation tissue easily block the pores of the dressing, the suction device cannot completely extract the wound tissue fluid in the dressing, which affects the negative pressure effect. Therefore, the dressing must be replaced after several days of use, and changing the dressing may destroy the new granulation tissue.
At present, there is a negative pressure wound therapy combined with perfusion. The method is to set a negative pressure time period, inject cleaning or drug solution into the dressing and wound during the negative pressure release, and then start the suction device to extract the cleaning or drug solution. In the process of injecting the solution, the adhesion between the dressing and the wound may be damaged, and the subsequent negative pressure suction may be affected. The treatment staff often needs to adjust the pressure of the suction device, the position of the dressing or change the dressing. The operation is difficult and may reduce the effect of negative pressure therapy. How to solve the problems of the existing dressing, reduce the operating difficulty of negative pressure wound therapy, and improve the effect of negative pressure therapy are the objectives of developing the present invention.
To achieve the aforementioned objectives, the present invention provides a dressing, comprising: a skin-friendly layer, a fluid transport structure, and an upper cover. The skin-friendly layer has a plurality of first extraction guide holes and a plurality of first injection guide holes. The fluid transport structure is formed on the skin-friendly layer and has an extraction guide groove, a plurality of second extraction guide holes, an injection guide groove and a plurality of second injection guide holes, wherein the extraction guide groove and the injection guide groove are not connected, the second extraction guide holes are formed in the extraction guide groove and communicate with the first extraction guide holes, and the second injection guide holes are formed in the injection guide groove and communicate with the first injection guide holes. The upper cover is formed on the fluid transport structure and has an extraction hole and an injection hole. The extraction hole communicates with the extraction guide groove and the second extraction guide holes, and the injection hole communicates with the injection guide groove and the second injection guide holes.
In a preferred embodiment, the skin-friendly layer forms a convex portion and a sealing ring on a side opposite to the fluid transport structure, the sealing ring surrounds the convex portion, and the convex portion is adapted to fit a wound.
In a preferred embodiment, the skin-friendly layer forms a plurality of partition walls on a side next to the fluid transport structure, and the partition walls respectively separate the first extraction guide holes from the first filling guide holes.
In a preferred embodiment, the skin-friendly layer is made of silicone rubber or polyurethane.
In a preferred embodiment, the skin-friendly layer has a thickness between 1 and 2 mm.
In a preferred embodiment, the fluid transport structure includes an extraction transport layer and an injection transport layer, the extraction transport layer has the extraction guide groove, the second extraction guide holes, and a third injection guide hole, and the injection transport layer has the injection guide groove, the second injection guide holes and a third extraction guide hole, the third injection guide hole communicates with the injection guide groove, and the third extraction guide hole communicates with the extraction guide groove.
In a preferred embodiment, the extraction transport layer is sandwiched between the injection transport layer and the upper cover.
In a preferred embodiment, the dressing further includes a flow channel layer sandwiched between the skin-friendly layer and the fluid transport structure; the flow channel layer has a plurality of partition walls and a plurality of flow channels arranged in a staggered arrangement, and the partition walls respectively separate the first extraction guide holes and the first injection guide holes, and the flow channel is respectively connected with the first extraction guide holes and the first injection guide holes.
In the dressing of the present invention, the skin-friendly layer, the fluid transport structure and the upper cover are provided with guide grooves and guide holes for separating the extraction and injection of the fluid so that the negative pressure wound therapy can perform fluid extraction, drug delivery and cleaning separately or simultaneously. The drug delivery and cleaning will not affect the adhesion between the skin-friendly layer and the wound, which can reduce the difficulty of negative pressure wound therapy, effectively prevent wound infection, promote wound healing, extend dressing replacement period, and greatly enhance the effect of wound treatment.
The present invention will be apparent to those skilled in the art by reading the following detailed description of a preferred embodiment thereof, with reference to the attached drawings, in which:
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
The dressing of the present invention is suitable for negative pressure suction and medicine infusion cleaning of wounds.
Medical silicone rubber, polyurethane, polypropylene and other polymer materials with good biocompatibility can be used to mold the skin-friendly layer 11, the fluid transport structure 12 and the upper cover 13, respectively, and the thickness of each layer is between 1 and 2 mm. Then, by stacking and hot pressing the skin-friendly layer 11, the fluid transport structure 12 and the upper cover 13, a dressing 1 of the present invention is formed.
As shown by the dotted arrows in
As shown by the solid arrows in
During the cleaning process, the skin-friendly layer 11 of the dressing 1 is attached to the wound, so that a closed space is formed between the skin-friendly layer 11 and the wound, and the suction tube (not shown) of the suction device is connected to the extraction hole 131 of the upper cover 13, the injection hole 132 of the upper cover 13 is connected with an infusion tube (not shown) of the injection device. After the suction device and the injection device are started at the same time, the cleaning solution passes through the injection hole 132 of the upper cover 13, the second injection guide holes 124 and the injection guide groove 123 of the fluid transport structure 12, and the first injection guide hole 112 of the skin-friendly layer 11, and reaches the wound; the air in the closed space, the wound tissue fluid, and the cleaning solution after cleaning the wound pass through the first extraction guide holes 111 of the skin-friendly layer 11, the second extraction guide holes 122 and the extraction guide groove 121 of the fluid transport structure 12, and the extraction hole 131 of the upper cover 13, and flow into the container of the suction device.
The skin-friendly layer, the fluid transport structure, and the upper cover form guide holes and guide grooves that separate the extraction and injection of the fluid. The dressing of the present invention is used so that the negative pressure wound therapy can perform fluid extraction, drug delivery and cleaning separately or simultaneously. The drug delivery and cleaning will not affect the adhesion between the skin-friendly layer and the wound, which can reduce the difficulty of negative pressure wound therapy, effectively prevent wound infection, promote wound healing, extend dressing replacement period, and greatly enhance the effect of wound treatment.
As shown by the dotted arrows in
As shown by the solid arrows in
During the cleaning process, the skin-friendly layer 31 of the dressing 3 is attached to the wound so that a closed space is formed between the skin-friendly layer 31 and the wound, and the suction tube (not shown) of the suction device is connected to the extraction hole 341 of the upper cover 34, and the injection hole 342 of the upper cover 34 is connected with an injection tube (not shown) of the injection device. After starting the suction device and the injection device at the same time, the cleaning solution passes through the injection hole 342 of the upper cover 34, the third injection guide hole 336 of the extraction transport layer 33b, the injection guide groove 331 the second injection guide holes 332 of the injection transport layer 33a, the flow channels 322 of the flow channel layer 32, and the first injection guide holes 312 of the skin-friendly layer 31 to reach the wound; the air in the closed space, wound tissue fluid, and cleansing solution after cleaning the wound pass through the first extraction guide hole 311 of the skin-friendly layer 31, the flow channels 322 of the flow channel layer 32, the third extraction guide holes 333 of the injection transport layer 33a, the second extraction guide holes 335 and the extraction guide groove 334 of the extraction transport layer 33b, and the extraction hole 341 of the upper cover 34 and flows into the container of the suction device.
In summary, The skin-friendly layer, the fluid transport structure, and the upper cover form guide holes and guide grooves that separate the extraction and injection of the fluid. The dressing of the present invention is used so that the negative pressure wound therapy can perform fluid extraction, drug delivery and cleaning separately or simultaneously. The drug delivery and cleaning will not affect the adhesion between the skin-friendly layer and the wound, which can reduce the difficulty of negative pressure wound therapy, effectively prevent wound infection, promote wound healing, extend dressing replacement period, and greatly enhance the effect of wound treatment.
Although the present invention has been described with reference to the preferred embodiments thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.
Number | Date | Country | Kind |
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109145976 | Dec 2020 | TW | national |