Medical device fixing device capable of detecting physical signs and fixing method and manufacturing method thereof
By designing a medical device fixing device with a patch structure including a positioning sheet body, a winding sheet body and an attachment section, the problem of time-consuming, resource waste and skin pressure of medical devices in the prior art is solved, and the stable fixation of medical pipe fittings and sensing components is achieved, and the waste of medical resources and equipment manufacturing costs are reduced.
Patent Information
- Application Number
- CN202510414779.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-06-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing medical device fixing method consumes time and manpower, resulting in waste of medical resources, and is prone to pressure and discomfort on the patient's skin. In particular, the injection molded cover has high manufacturing costs, damage to sensing components and environmental protection problems.
A medical device fixing device that can detect physical signs is designed, adopting a patch structure, including a positioning piece body, a winding piece body and an attachment section. Through the cooperation of the winding piece body and the attachment section of the wrapping piece body, the stable fixation of the medical pipe fittings is achieved, and the sensing components are fixed through the accommodating groove to avoid the use of additional cover shells.
The fixing device can stabilize the medical pipe fittings without the need for multiple layers of tape and gauze, reduce pressure and discomfort on the skin, reduce waste of medical resources, and fix the sensing components through built-in container slots, improving the environmental protection and convenience of use of the equipment.
Smart Images

Figure CN120189610A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a fixing device, a fixing method and a manufacturing method of a fixing device, in particular to a medical device fixing device capable of detecting physical signs, a method of fixing a medical pipe fitting, and a manufacturing method of a medical device fixing device capable of detecting physical signs. Background Art
[0002] To meet medical needs, medical devices such as drainage tubes and urinary catheters must be stably fixed to the patient's skin so that the patient can drain postoperative exudate, urine, etc. A common fixing method is to use tape to stick the pipe fitting to the skin. To avoid pressure damage to the patient's skin caused by the pipe fitting, when fixing, multiple layers of tape and gauze are used to wrap the pipe fitting, and then the pipe fitting is fixed to the patient's skin to achieve a decompression effect.
[0003] However, the existing method of fixing pipe fittings not only consumes time and labor, but also the use of a large amount of tape and gauze not only causes waste of medical resources, but also easily increases the pressure on the skin when the pipe fitting is fixed to the patient's skin, and also causes problems such as poor air permeability and gauze rubbing the skin. In addition, when the pipe fitting needs to be removed from the patient's skin, the large amount of tape is easy to exacerbate the patient's pain when torn off and may cause new wounds.
[0004] On the other hand, medical devices such as sensing components are usually covered by a covering shell made by injection molding to form a wearable sensing device. The covering shell is fixed to the patient's skin by sticking with double-sided tape. However, the method of manufacturing the covering shell by injection molding to cover the sensing component has problems such as high manufacturing cost, damage to the sensing component caused by high temperature resulting in low yield, and environmental unfriendliness in recycling and treatment. In addition, the contact between the covering shell and the patient's skin is likely to cause discomfort to the patient, and the use of double-sided tape is likely to cause skin allergy to the patient. Summary of the Invention
[0005] An object of the present invention is to provide a medical device fixing device capable of detecting physical signs, its fixing method and its manufacturing method to solve the problems raised in the above background art.
[0006] Therefore, one of the objects of the present invention is to provide a medical device fixing device capable of detecting physical signs and fixing medical devices. In addition to providing fitting stability and skin buffer protection, it can more effectively monitor the patient's condition in real time through an embedded chip, bringing significant progress to wearable medical materials and long-term care and intensive care applications.
[0007] Thus, the medical device fixing device capable of detecting physical signs of the present invention is suitable for fixing a medical pipe fitting. The medical device fixing device capable of detecting physical signs includes a patch. The patch extends along a length direction and includes a positioning sheet body arranged along the length direction, and a winding sheet body connected to one side of the positioning sheet body. The positioning sheet body has an adhesive section, and a perforation is formed in the positioning sheet body. The winding sheet body has a winding section connected to the positioning sheet body and adjacent to the perforation, and an attaching section connected to an end of the winding section opposite to the positioning sheet body. The attaching section is used to pass through the perforation so that the winding section can be reversely threaded through the perforation and wind around the medical pipe fitting.
[0008] In some embodiments, the winding section has a bearing portion connected to the positioning sheet body, and a folding portion connected between the bearing portion and the attaching section. The bearing portion is used to bear and wind the medical pipe fitting, and the folding portion is used to pass through the perforation and wind around the medical pipe fitting.
[0009] In some embodiments, the bearing portion is an adhesive portion for adhering to the medical pipe fitting.
[0010] In some embodiments, a width of the bearing portion taken along a width direction perpendicular to the length direction is greater than a width of the folding portion taken along the width direction.
[0011] In some embodiments, the perforation is elongated and its longitudinal direction extends along a width direction perpendicular to the length direction. The winding section has a folding portion for passing through the perforation and winding around the medical pipe fitting. A width of the folding portion taken along the width direction is less than a length of the perforation taken along the width direction. A width of the attaching section taken along the width direction is less than the length of the perforation taken along the width direction.
[0012] In some embodiments, the positioning sheet body further has a non-adhesive section connected between the adhesive section and the winding section, and the non-adhesive section forms the perforation.
[0013] In some embodiments, the patch further includes a base material and a buffer material disposed inside the base material. The base material has an outer surface opposite to the buffer material, and the buffer material has an inner surface opposite to the base material. The base material and the buffer material jointly define the perforation extending between the outer surface and the inner surface.
[0014] In some embodiments, the patch further includes a first inner adhesive layer and a second inner adhesive layer formed on the inner surface. The base material, the buffer material and the first inner adhesive layer jointly define an adhesive section of the positioning sheet body. The base material, the buffer material and the second inner adhesive layer jointly define the attaching section.
[0015] In some embodiments, the patch further includes an outer adhesive layer formed on the outer surface, and the substrate, the buffer material, and the outer adhesive layer together define a bearing portion of the winding section for bearing and winding the medical tube.
[0016] In some embodiments, it further includes a first inner release paper adhered to the first inner adhesive layer and removable from the first inner adhesive layer, and a second inner release paper adhered to the second inner adhesive layer and removable from the second inner adhesive layer.
[0017] In some embodiments, it further includes a step of removing an outer release paper adhered to the bearing portion after the sticking section is stuck to the skin and before the medical tube is placed on the winding section.
[0018] In some embodiments, the positioning sheet body is formed with a receiving groove for receiving a sensing component.
[0019] Therefore, another object of the present invention is to provide a method for fixing a medical tube that can overcome the inconveniences of the prior art.
[0020] Thus, the method for fixing a medical tube of the present invention is suitable for fixing a medical tube to a skin, and the method includes the following steps: sticking a sticking section of a positioning sheet body of a patch to the skin; placing the medical tube on a winding section of a winding sheet body of the patch, the winding section being connected to one side of the positioning sheet body; passing an attaching section at one end of the winding sheet body opposite to the winding section through a through hole of the positioning sheet body adjacent to the winding section, and pulling the attaching section in a direction away from the positioning sheet body, so that the winding section is reversely passed through the through hole and winds and tightens the medical tube; and sticking the attaching section of the winding sheet body to the skin.
[0021] In some embodiments, the medical tube is placed on a bearing portion of the winding section connected to the positioning sheet body, and the winding section is reversely passed through the through hole through a folding portion connected between the bearing portion and the attaching section, so that the bearing portion and the folding portion jointly wind the medical tube.
[0022] In some embodiments, the bearing portion is an adhering portion for adhering the medical tube, and the medical tube is adhered to the bearing portion.
[0023] In some embodiments, it further includes a step before the attaching section passes through the through hole, of flipping a non-sticking section of the positioning sheet body connected between the sticking section and the winding section, so that the non-sticking section formed with the through hole stands up and away from the skin.
[0024] In some embodiments, it further includes a step before the sticking section is stuck to the skin, of tearing off a first inner release paper stuck to the sticking section.
[0025] In some embodiments, it further includes a step between when the winding section winds and tightens the medical pipe fitting and when the attaching section is stuck to the skin, of tearing off a second inner release paper stuck to the attaching section.
[0026] In some embodiments, it further includes a step after the sticking section is stuck to the skin and before placing the medical pipe fitting on the winding section, of tearing off an outer release paper stuck to the bearing portion.
[0027] Therefore, another object of the present invention is to provide a manufacturing method of a medical device fixing device capable of detecting physical signs, which can overcome the disadvantages of the prior art.
[0028] Thus, the manufacturing method of the medical device fixing device capable of detecting physical signs of the present invention includes the following steps: providing a base material; forming a buffer material on the base material, the base material having an outer surface opposite to the buffer material, and the buffer material having an inner surface opposite to the base material; respectively forming an adhesive layer on an outer surface of the base material and an inner surface of the buffer material; hot-pressing and forming a medical device fixing device capable of detecting physical signs.
[0029] In some embodiments, the adhesive layer is a polyurethane adhesive layer.
[0030] In some embodiments, the buffer material is formed by foaming after polyurethane is coated on the base material.
[0031] In some embodiments, before respectively forming the adhesive layer on the outer surface and the inner surface, the buffer material is heated and pressed to form a receiving groove.
[0032] Compared with the prior art, the beneficial effects of the present invention are as follows: The medical device fixing device capable of detecting physical signs positions the patch on the skin through the sticking section and arranges the medical pipe fitting on the bearing portion, and the winding section can reversely pass through the through hole and adhere to the skin after winding the medical pipe fitting through the adhesion section, so that the winding section and the adhesion section jointly tighten the medical pipe fitting. In this way, the medical pipe fitting can be stably fixed on the skin without using multiple layers of tape and gauze. Furthermore, the receiving groove can accommodate the sensing component in the patch, and the sensing component can be fixed to the skin without an additional covering shell. Description of the Drawings
[0033] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention, and those of ordinary skill in the art can also obtain other drawings based on these drawings.
[0034] Figure 1 is a top view of a first embodiment of a medical device fixing device capable of detecting physical signs of the present invention;
[0035] Figure 2 is an exploded perspective view of the first embodiment;
[0036] Figure 3 is along the Figure 1 a cross-sectional view taken along line III-III in;
[0037] Figure 4 is a step flowchart of the usage method of the first embodiment;
[0038] Figure 5 is a cross-sectional view of a first inner release paper of the first embodiment when being torn off;
[0039] Figure 6 is a cross-sectional view of an adhesive section of the first embodiment adhered to the skin;
[0040] Figure 7 is a cross-sectional view of an outer release paper of the first embodiment when being torn off;
[0041] Figure 8 is a cross-sectional view of a carrying part of the first embodiment placing a medical tube;
[0042] Figure 9 is a top view of the carrying part of the first embodiment placing the medical tube;
[0043] Figure 10 is a cross-sectional view of an adhesion section of the first embodiment when about to penetrate a perforation;
[0044] Figure 11 is a cross-sectional view of a winding section of the first embodiment tightening the medical tube;
[0045] Figure 12 is a cross-sectional view of a second inner release paper of the first embodiment when being torn off;
[0046] Figure 13 is a cross-sectional view of the adhesion section of the first embodiment adhered to the skin;
[0047] Figure 14A top view of the adhesion section of the first embodiment adhering to the skin;
[0048] Figure 15 A flowchart of a step of the manufacturing method of the first embodiment;
[0049] Figure 16 An exploded perspective view of a second embodiment of the medical device fixing device capable of detecting physical signs of the present invention and a sensing component;
[0050] Figure 17 A cross-sectional view of a receiving groove of the second embodiment receiving the sensing component.
[0051] Explanation of reference numerals: 11, medical pipe fitting; 12, skin; 13, sensing component; 200, medical device fixing device capable of detecting physical signs; 2, patch; 21, base material; 211, outer surface; 212, inner surface; 213, perforation; 22, buffer material; 221, outer surface; 222, inner surface; 223, perforation; 23, first inner adhesive layer; 24, second inner adhesive layer; 25, outer adhesive layer; 26, positioning sheet body; 261, adhesive section; 262, non-adhesive section; 263, perforation; 264, receiving groove; 27, winding sheet body; 271, winding section; 272, bearing part; 273, folding part; 274, attaching section; 3, first inner release paper; 4, second inner release paper; 5, outer release paper. Detailed Description of the Embodiment
[0052] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0053] Please refer to Figures 1 - 17 , the present invention provides a technical solution: Refer to Figures 1 to 3 , the first embodiment of the medical device fixing device 200 capable of detecting physical signs of the present invention is applicable to fixing a medical device such as a medical pipe fitting 11 (as shown in Figure 8 ) to a skin 12 of a patient (as shown in Figure 5 ). The medical device fixing device 200 capable of detecting physical signs includes a patch 2, a first inner release paper 3, a second inner release paper 4, and an outer release paper 5.
[0054] The patch 2 is elongated and extends in a longitudinal direction X along a length direction, and includes a base material 21, a buffer material 22, a first inner adhesive layer 23, a second inner adhesive layer 24, and an outer adhesive layer 25. The base material 21 is elongated and extends in the longitudinal direction X along the length direction. The base material 21 has an outer surface 211 and an inner surface 212 opposite to the outer surface 211. The base material 21 is formed with a perforation 213 extending between the outer surface 211 and the inner surface 212. The perforation 213 is elongated and extends in a width direction Y perpendicular to the length direction X. The outer surface 211 is for placing the medical pipe fitting 11. The material of the base material 21 can be, for example, a polyethylene (PE) non-woven fabric, a polyurethane film (PU film), or a substrate-free double-sided adhesive sheet, and is not limited thereto.
[0055] The shape of the buffer material 22 is the same as that of the base material 21. The buffer material 22 is elongated and extends in the longitudinal direction X along the length direction. The buffer material 22 is disposed on the inner surface 212 of the base material 21, and has an outer surface 221 connected to the inner surface 212 of the base material 21, and an inner surface 222 opposite to the outer surface 221 and the base material 21. The buffer material 22 is formed with a perforation 223 extending between the outer surface 221 and the inner surface 222. The perforation 223 is elongated and extends in the width direction Y. The material of the buffer material 22 is a polyurethane foam plastic, and the polyurethane foam plastic is coated on the inner surface 212 of the base material 21 and foamed to form a self-foamed sponge to constitute the buffer material 22. The coating thickness of the polyurethane foam plastic can be adjusted according to the needs of the user to change the thickness of the buffer material 22. The buffer material 22 is used to provide a buffer structure to reduce the pressure of the medical pipe fitting 11 on the skin 12 when the medical pipe fitting 11 is fixed to the skin 12 by the patch 2.
[0056] The first inner adhesive layer 23 is formed on the inner surface 222 of the buffer material 22 and is spaced from the perforation 223. The first inner adhesive layer 23 is used to adhere to the skin 12. Among them, the material of the first inner adhesive layer 23 is a polyurethane adhesive, whereby, when adhering to the skin 12, it can achieve good gripping force, reduce damage to the skin 12, and can be repeatedly adhered after cleaning.
[0057] The second inner adhesive layer 24 is formed on the inner surface 222 of the buffer material 22 and is spaced from the perforation 223. The second inner adhesive layer 24 and the first inner adhesive layer 23 are respectively located on opposite sides of the perforation 223. The second inner adhesive layer 24 is used to adhere to the skin 12. Among them, the material of the second inner adhesive layer 24 is the polyurethane adhesive.
[0058] The outer adhesive layer 25 is formed on the outer surface 211 of the base material 21. The outer adhesive layer 25 is used for adhering the medical pipe fitting 11. Among them, the material of the outer adhesive layer 25 is the polyurethane glue or an acrylic glue.
[0059] The base material 21, the buffer material 22, the first inner adhesive layer 23, the second inner adhesive layer 24 and the outer adhesive layer 25 together define a positioning sheet body 26 arranged along the length direction X and a winding sheet body 27 connected to one side of the positioning sheet body 26. The positioning sheet body 26 is used for positioning on the skin 12, and the winding sheet body 27 is used for winding the medical pipe fitting 11. The positioning sheet body 26 is used for positioning the patch 2 on the skin 12, and has an adhesive section 261 and a non-adhesive section 262 connected between the adhesive section 261 and the winding sheet body 27. A perforation 263 is formed in the non-adhesive section 262. The perforation 263 is elongated and its longitudinal direction extends along the width direction Y, and is used for the winding sheet body 27 to pass through after winding the medical pipe fitting 11. The base material 21, the buffer material 22 and the first inner adhesive layer 23 together define the adhesive section 261 for adhering to the skin 12. The base material 21 and the buffer material 22 together define the non-adhesive section 262 for flipping. The perforations 213 and 223 together define the perforation 263. In this embodiment, the positioning sheet body 26 is in a long shape, but can also be in an irregular shape, as long as it can position the patch 2 on the skin 12 and allow the winding sheet body 27 to pass through.
[0060] The winding sheet body 27 has a winding section 271 connected to the positioning sheet body 26 and adjacent to the perforation 263, and an attaching section 274 connected to an end of the winding section 271 opposite to the positioning sheet body 26. The winding section 271 has a bearing portion 272 connected to one side of the non-adhesive section 262 of the positioning sheet body 26 and adjacent to the perforation 263, and a folding portion 273 connected between the bearing portion 272 and the attaching section 274. The base material 21, the buffer material 22 and the outer adhesive layer 25 together define the bearing portion 272 for bearing and winding the medical pipe fitting 11. The base material 21 and the buffer material 22 together define the folding portion 273 for passing through the perforation 263 and winding the medical pipe fitting 11. The base material 21, the buffer material 22 and the second inner adhesive layer 24 together define the attaching section 274 for passing through the perforation 263 to adhere to the skin 12.
[0061] In this embodiment, in order to save the use of components, the two side edges of the bearing portion 272 are designed to be inclined and connected to the non-adhesive section 262 and the folding portion 273, so that a width of the bearing portion 272 taken along the width direction Y gradually decreases from the non-adhesive section 262 towards the folding portion 273. Therefore, a maximum width of the bearing portion 272 taken along the width direction Y is greater than a maximum width of the folding portion 273 taken along the width direction Y. Thereby, the bearing portion 272 has a larger area to enhance the adhesion stability when adhering to the medical tube 11. In other embodiments of this embodiment, the two side edges of the bearing portion 272 can also be designed to be collinear with the two side edges of the non-adhesive section 262 respectively, so that a width of the bearing portion 272 is equal to a width of the positioning sheet body 26 taken along the width direction Y and greater than the width of the folding portion 273.
[0062] By providing the outer adhesive layer 25, the bearing portion 272 is an adhesive portion for adhering the medical tube 11. Thereby, when the medical tube 11 is placed on the bearing portion 272, it can be adhered by the outer adhesive layer 25 and temporarily positioned on the bearing portion 272, and after the medical tube 11 is wound around the bearing portion 272, the medical tube 11 can be adhered by the outer adhesive layer 25.
[0063] The width of the folding portion 273 taken along the width direction Y is less than a length of the through hole 263 taken along the width direction Y, so that the folding portion 273 can pass through the through hole 263 without contacting or interfering with the positioning sheet body 26. A width of the attaching section 274 taken along the width direction Y is less than the length of the through hole 263 taken along the width direction Y, so that the attaching section 274 can pass through the through hole 263 without contacting or interfering with the positioning sheet body 26. In this embodiment, the width of the folding portion 273 gradually decreases towards the attaching section 274, and the width of the attaching section 274 gradually decreases in a direction away from the positioning sheet body 26, but in other embodiments, the width of the folding portion 273 can also be equal to the width of the attaching section 274, and is not limited thereto.
[0064] The first inner release paper 3 is adhered to the first inner adhesive layer 23 and can be torn off from the first inner adhesive layer 23, so that the first inner adhesive layer 23 can maintain its adhesiveness when the adhesive section 261 is not adhered to the skin 12.
[0065] The second inner release paper 4 is adhered to the second inner adhesive layer 24 and can be torn off from the second inner adhesive layer 24, so that the second inner adhesive layer 24 can maintain its adhesiveness when the adhering section 274 is not adhered to the skin 12.
[0066] The outer release paper 5 is adhered to the outer adhesive layer 25 and can be torn off from the outer adhesive layer 25, so that the outer adhesive layer 25 can maintain its adhesiveness when the medical pipe fitting 11 is not adhered to the bearing part 272.
[0067] Hereinafter, a method for fixing the medical pipe fitting 11 by the medical device fixing device 200 capable of detecting physical signs according to this embodiment will be exemplarily described.
[0068] Refer to Figure 4 , Figure 4 which is a step flow chart of the method for fixing the medical pipe fitting according to this embodiment, including the following steps: Step S11: Tear off the first inner release paper 3; Step S12: Adhere the adhesive section 261 of the positioning sheet body 26 to the skin 12; Step S13: Tear off the outer release paper 5; Step S14: Place the medical pipe fitting 11 on the winding section 271 of the winding sheet body 27; Step S15: Flip the non-adhesive section 262 of the positioning sheet body 26 to make it away from the skin 12; Step S16: Pass the attaching section 274 of the winding sheet body 27 through the perforation 263 so that the winding section 271 winds and tightens the medical pipe fitting 11; Step S17: Tear off the second inner release paper 4, and Step S18: Adhere the attaching section 274 to the skin 12.
[0069] Refer to Figure 4 and Figure 5 , in Step S11, tear off the first inner release paper 3 adhered to the first inner adhesive layer 23 on the adhesive section 261, so that the first inner adhesive layer 23 is exposed.
[0070] Refer to Figure 4 and Figure 6 , in Step S12, adhere the first inner adhesive layer 23 of the adhesive section 261 to the skin 12 to position the patch 2 on the skin 12 where the medical pipe fitting 11 is required to be set.
[0071] Refer to Figure 4 and Figure 7 , in Step S13, tear off the outer release paper 5 adhered to the outer adhesive layer 25 on the bearing part 272, so that the outer adhesive layer 25 is exposed.
[0072] Refer to Figure 4 , Figure 8 and Figure 9 , in Step S14, place the medical pipe fitting 11 on the bearing part 272 of the winding sheet body 27, so that the medical pipe fitting 11 can be adhered by the outer adhesive layer 25 and temporarily positioned on the bearing part 272 to prevent the medical pipe fitting 11 from shaking.
[0073] Refer to Figure 4 and Figure 10, in step S15, turn over the non - adhesive section 262 connected between the adhesive section 261 and the winding section 271, so that the non - adhesive section 262 with the perforation 263 stands up and away from the skin 12. Thereby, the perforation 263 is made convenient for the attaching section 274 of the winding sheet 22 to pass through and the winding section 221 to pass through subsequently.
[0074] Refer to Figure 4 and Figure 11 , in step S16, pass the attaching section 274 through the perforation 263 and pull it in the direction away from the positioning sheet body 26, so that the winding section 271 is formed to pass through the folded portion 273 of the perforation 263 in a folded manner, and the bearing portion 272 and the folded portion 273 jointly wind and tighten the medical pipe fitting 11. More specifically, after the bearing portion 272 and the folded portion 273 jointly wind and tighten the medical pipe fitting 11, the bearing portion 272 can firmly fix the medical pipe fitting 11 through the outer adhesive layer 25 and make it fixed to the patch 2.
[0075] Refer to Figure 4 and Figure 12 , in step S17, tear off the second inner release paper 4 adhered to the second inner adhesive layer 24 of the attaching section 274, so that the second inner adhesive layer 24 is exposed.
[0076] Refer to Figure 4 , Figure 13 and Figure 14 , in step S18, adhere the attaching section 274 to the skin 12, so that the medical pipe fitting 11 can be fixed to the skin 12 through the patch 2.
[0077] The manufacturing method of a medical device fixing device capable of detecting signs of the present embodiment will be exemplarily described below.
[0078] Refer to Figure 2 and Figure 15 , the manufacturing method of the medical device fixing device capable of detecting signs of the present embodiment includes the following steps: Step S21: Provide the base material 21, Step S22: Form the buffer material 22 on the base material 21, Step S23: Form an adhesive layer on each of the outer surface 211 and the inner surface 212 of the buffer material 22, and Step S24: Thermally press and form the medical device fixing device 200 capable of detecting signs.
[0079] In step S21, provide the base material 21 as one of the materials of the medical device fixing device 200 capable of detecting signs.
[0080] In step S22, the cushioning material 22 is formed on the substrate 21. The cushioning material 22 is formed by foaming a polyurethane foam plastic with a polyurethane composition coated on the substrate 21. Among them, the polyurethane foam plastic can be made, for example, by forming a prepolymer from toluene diisocyanate and polypropylene glycol, introducing a polysiloxane copolymer, and using a silane end-capping, so that the polyurethane foam plastic has the effects of low resilience, softness, and not easily adhering to body fluids.
[0081] In step S23, the adhesive layers are respectively formed on the outer surface 211 of the substrate 21 and the inner surface 222 of the cushioning material 22 to form the first inner adhesive layer 23, the second inner adhesive layer 24, and the outer adhesive layer 25. Among them, the adhesive layer is a polyurethane adhesive layer. In this embodiment, the outer adhesive layer 25 is formed on the outer surface 211 of the substrate 21 in step S23. However, in other embodiments of this embodiment, the substrate 21 can also coat the adhesive layer (for example, the acrylic adhesive) on the outer surface 211 in step S21 to form the outer adhesive layer 25.
[0082] In step S24, after hot pressing and forming, it is cut with a die to form the medical device fixing device 200 capable of detecting physical signs.
[0083] Refer to Figure 16 and Figure 17 , a second embodiment of the medical device fixing device 200 capable of detecting physical signs according to the present invention. This second embodiment is similar to the first embodiment, except that the positioning piece 26 is further formed with a receiving groove 264. The receiving groove 264 is formed by recessing from the inner surface 222 of the cushioning material 22 for accommodating a medical device such as a sensing component 13. In this embodiment, the receiving groove 264 is elongated to conform to the shape of the sensing component 13. However, it can be understood that the shape of the receiving groove 264 can also be adjusted according to the shapes of different sensing components 13 and is not limited thereto. Thereby, the medical device fixing device 200 capable of detecting physical signs in this embodiment can simultaneously fix two medical devices, namely the medical pipe fitting 11 and the sensing component 13, without the need to use an additional covering shell to cover the sensing component 13, thus achieving the effects of environmental protection and reducing the discomfort of patients caused by using double-sided adhesive to adhere the covering shell.
[0084] In this embodiment, the manufacturing method of the medical device fixing device capable of detecting physical signs for manufacturing the medical device fixing device 200 is similar to that of the first embodiment, except that after completing step S22 and before step S23, the inner surface 222 of the cushioning material 22 is heated and pressed to form the receiving groove 264 capable of accommodating the sensing component 13.
[0085] It should be noted that, in another embodiment of this embodiment, the medical device fixing device 200 capable of detecting signs may also be used to solely fix the sensing component 13 according to requirements.
[0086] In summary, the medical device fixing device 200 capable of detecting signs positions the patch 2 on the skin 12 through the adhesive section 261, arranges the medical pipe fitting 11 on the bearing portion 272, and after winding around the medical pipe fitting 11, the adhesive section 274 passes through the perforation 263 and adheres to the skin 12, so that the winding section 271 can reversely pass through the perforation 263 and jointly tighten the medical pipe fitting 11 with the adhesive section 274. In this way, the medical pipe fitting 11 can be stably fixed on the skin 12 without using multiple layers of tape and gauze. Furthermore, the accommodating groove 264 can accommodate the sensing component 13 in the patch 2, and the sensing component 13 can be fixed on the skin 12 without an additional covering shell. Therefore, the purpose of the present invention can indeed be achieved.
[0087] However, the above are only the embodiments of the present invention, and the scope of implementation of the present invention cannot be limited thereby. All simple equivalent changes and modifications made according to the scope of the patent application of the present invention and the content of the patent specification still fall within the scope covered by the patent of the present invention.
Claims
1. A medical device fixing device capable of detecting vital signs, suitable for fixing a medical tube, characterized in that: The medical device fixing device capable of detecting vital signs comprises: a patch extending along a length direction and including a positioning sheet arranged along the length direction, and a winding sheet connected to one side of the positioning sheet, the positioning sheet having an adhesive section, the positioning sheet forming a through hole, the winding sheet having a winding section connected to the positioning sheet and adjacent to the through hole, and an attachment section connected to an end of the winding section opposite to the positioning sheet, the attachment section being used to pass through the through hole so that the winding section can be folded back and passed through the through hole and wrapped around the medical tube.
2. A medical device fixing device capable of detecting vital signs according to claim 1, characterized in that: The winding section has a bearing portion connected to the positioning sheet, and a folded portion connected between the bearing portion and the attachment section. The bearing portion is used to bear and wrap the medical tube, and the folded portion is used to penetrate the through hole and wrap the medical tube.
3. A medical device fixing device capable of detecting vital signs according to claim 2, characterized in that: The bearing portion is an adhesive portion for adhering the medical tube.
4. A medical device fixing device capable of detecting vital signs according to claim 3, characterized in that: A width of the carrying portion along a width direction perpendicular to the length direction is greater than a width of the folded portion along the width direction.
5. The medical device fixing device capable of detecting vital signs according to claim 1, characterized in that: The through hole is elongated and its length extends along a width direction perpendicular to the length direction. The winding section has a folded portion for passing through the through hole and winding around the medical tube. The width of the folded portion along the width direction is smaller than the length of the through hole along the width direction. The width of the attachment section along the width direction is smaller than the length of the through hole along the width direction.
6. The medical device fixing device capable of detecting vital signs according to claim 1, characterized in that: The positioning sheet body also has a non-adhesive section connected between the adhesive section and the winding section, and the non-adhesive section is formed with the through hole.
7. The medical device fixing device capable of detecting vital signs according to claim 1, characterized in that: The patch also includes a substrate and a buffer material arranged on the inner side of the substrate. The substrate has an outer surface opposite to the buffer material, and the buffer material has an inner surface opposite to the substrate. The substrate and the buffer material jointly define the through hole extending between the outer surface and the inner surface.
8. The medical device fixing device capable of detecting vital signs according to claim 7, characterized in that: The patch also includes a first inner adhesive layer and a second inner adhesive layer formed on the inner surface. The substrate, the buffer material and the first inner adhesive layer jointly define an adhesive section of the positioning sheet, and the substrate, the buffer material and the second inner adhesive layer jointly define the attachment section.
9. The medical device fixing device capable of detecting vital signs according to claim 7, characterized in that: The patch also includes an outer adhesive layer formed on the outer surface. The substrate, the buffer material and the outer adhesive layer jointly define a bearing portion of the winding section for bearing and winding the medical tube.
10. The medical device fixing device capable of detecting vital signs according to claim 8, characterized in that: The invention further comprises a first inner release paper adhered to the first inner adhesive layer and capable of being torn off from the first inner adhesive layer, and a second inner release paper adhered to the second inner adhesive layer and capable of being torn off from the second inner adhesive layer.
11. The medical device fixing device capable of detecting vital signs according to claim 9, characterized in that: The invention further comprises an outer release paper which is adhered to the outer adhesive layer and can be torn off from the outer adhesive layer.
12. The medical device fixing device capable of detecting vital signs according to claim 1, characterized in that: The positioning sheet is formed with a receiving groove, and the receiving groove is used for receiving a sensing component.
13. A medical device fixing device capable of detecting vital signs according to claim 12, characterized in that: The sensing component is selected from a temperature sensor, a humidity sensor, a pressure sensor, a pH sensor, and a micro conductivity sensor.
14. The medical device fixing device capable of detecting vital signs according to claim 12, characterized in that: The sensing component has a wireless data transmission module and can transmit sensing data to at least one external receiving device or a cloud system.
15. A method for fixing a medical tube, characterized in that: Suitable for fixing a medical tube to a skin, the method comprises the following steps: Adhere an adhesive section of a positioning sheet of a patch to the skin; Placing the medical tube on a winding section of a winding sheet of the patch, wherein the winding section is connected to one side of the positioning sheet; An attachment section connected to the winding sheet at one end of the winding section opposite to the positioning sheet passes through a through hole of the positioning sheet adjacent to the winding section, and the attachment section is pulled in a direction away from the positioning sheet so that the winding section is folded back and passes through the through hole and wraps around and tightens the medical tube; and the attachment section of the winding sheet is adhered to the skin.
16. A method for fixing a medical tube according to claim 15, characterized in that: The medical tube is placed on a bearing portion of the winding section connected to the positioning sheet. The winding section is folded through the through hole through a folded portion connected between the bearing portion and the attachment section, so that the bearing portion and the folded portion wrap around the medical tube together.
17. A method for fixing a medical tube according to claim 16, characterized in that: The carrying portion is an adhesive portion for adhering the medical tube, and the medical tube is adhered to the carrying portion.
18. The method for fixing a medical tube according to claim 15, characterized in that: The method further comprises a step of turning over a non-adhesive section of the positioning sheet connected between the adhesive section and the winding section before the attaching section passes through the through hole, so that the non-adhesive section with the through hole is erected and away from the skin.
19. A method for fixing a medical tube according to claim 15, characterized in that: The method further comprises a step of tearing off a first inner release paper adhered to the adhesive section before the adhesive section is adhered to the skin.
20. The method for fixing a medical tube according to claim 15, characterized in that: The method further comprises a step of tearing off a second inner release paper adhered to the attaching section between the wrapping section wrapping and tightening the medical tube and the attaching section adhering to the skin.
21. A method for fixing a medical tube according to claim 17, characterized in that: The method further comprises the step of tearing off an outer release paper adhered to the bearing portion after the adhesive section is adhered to the skin and before the medical tube is placed on the winding section.
22. A method for manufacturing a medical device fixing device capable of detecting vital signs, characterized in that: The following steps are included: providing a substrate; forming a buffer material on the substrate, wherein the substrate has an outer surface opposite to the buffer material, and the buffer material has an inner surface opposite to the substrate; forming a glue layer on an outer surface of the substrate and an inner surface of the buffer material respectively; Thermoforming a medical device fixture capable of detecting vital signs.
23. A method for fixing a medical tube according to claim 22, characterized in that: in, The adhesive layer is a polyurethane adhesive layer.
24. A method for fixing a medical tube according to claim 22, characterized in that: in, The buffer material is formed by coating polyurethane on the base material and then foaming it.
25. A method for fixing a medical tube according to claim 22, characterized in that: in, Before the glue layer is formed on the outer surface and the inner surface respectively, the buffer material is heated and pressed to form a containing groove.
26. A method for fixing a medical tube according to claim 22, characterized in that: in, The receiving tank is provided with a sensing component, and the sensing component is selected from a temperature sensor, a humidity sensor, a pressure sensor, a pH value sensor, and a micro conductivity sensor.
27. A method for fixing a medical tube according to claim 26, characterized in that: in, The sensing component has a wireless data transmission module and can transmit the sensing data to at least one external receiving device or a cloud system.
Citation Information
Patent Citations
Medical device securing appliance, method of securing medical tube, and method of manufacturing medical device securing appliance can stably secure the medical tube to the skin without using multiple layers of tape and gauze
TW202508659A
Medical device fixtures
TWM649010U