Oxygen inhalation tube fixing cap

By designing an oxygen tube fixing cap, using Velcro and medical tape to secure the oxygen tube, and combining it with an anti-slip structure on the cap, the problems of unstable fixation of the oxygen tube and skin allergies in infants are solved, achieving stable fixation and comfortable use of the oxygen tube.

CN223831570UActive Publication Date: 2026-01-27王燕
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Patent Information

Application Number
CN202422494019.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2026-01-27
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

Existing methods for securing infant oxygen tubes have issues such as unstable fixation, potential skin allergies, and difficulties in care.

Method used

An oxygen tube fixing cap was designed, including a cap body, an oxygen tube fixing structure, and a cap body anti-slip structure. The oxygen tube is fixed with Velcro or medical tape, and the cap body is prevented from sliding down by a connecting strap, ensuring that the oxygen tube is reliably fixed.

Benefits of technology

This design achieves stable fixation of the oxygen tubing, avoiding skin allergies and care difficulties, and improving the comfort of infants.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oxygen inhalation tube fixing cap, and relates to the field of nursing materials. The oxygen inhalation tube fixing cap is suitable for baby patients. The oxygen uptake tube fixing cap comprises a cap body and two oxygen uptake tube fixing structures, the oxygen uptake tube fixing structures are both located in front of the cap body and connected with the cap body, and the two oxygen uptake tube fixing structures are symmetrically arranged with the center line of the front portion of the cap body as the center. When in use, the baby safety helmet is worn on the head of a baby; the oxygen uptake tube nose plug is inserted into the nasal cavity, and the rest part extends upwards; the oxygen uptake tube extending to the cap body is fixed by the oxygen uptake tube fixing structure; the cap body is worn on the head and is not easy to move downwards, and the oxygen inhalation tube fixed by the oxygen inhalation tube fixing structure is also not easy to move downwards. Therefore, the oxygen uptake tube can be fixed by the oxygen uptake tube fixing device. The oxygen uptake tube fixing device is used for fixing an oxygen uptake tube reliably; sticking is not needed, so that baby skin is more friendly; the oxygen uptake tube extends upwards, is not located in front of the trunk of the baby and is not prone to being pulled.
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Description

Technical Field

[0001] This utility model relates to the field of nursing products, and in particular to oxygen tube fixing caps. Background Technology

[0002] The specific method of using an oxygen inhalation tube for adults is as follows: Figure 1 As shown: a nasal plug is inserted into the patient's nasal cavity, the oxygen tube is wrapped behind the patient's ear, then down to the front of the patient and tightened. However, there are some disadvantages to using this method to secure the oxygen tube for infants. First, infants' ears are soft, and the oxygen tube can easily slip off the ear, making the fixation unreliable. Second, the oxygen tube is located in front of the infant, which can hinder the care of the infant to some extent, and may also be pulled by the infant's movements.

[0003] Figure 2 The image shows a common method for securing oxygen tubing to infants. The tubing extends upwards from the patient's nasal cavity and is then taped to the infant's face. This method can solve... Figure 1 While the method shown presents some problems, it also creates some new ones. Tape applied to a baby's face, and tape pressing the oxygen tubing against the baby's face, can cause skin irritation and pressure marks.

[0004] Patent application number 201820378154.8 discloses an auxiliary fixing tape for high-flow oxygen inhalation tubes used on newborns. It includes a tube adhesive portion, a left skin adhesive portion, and a right skin adhesive portion. The left skin adhesive portion includes an upper left skin adhesive portion, the upper edge of which is located above the upper edge of the tube adhesive portion, and the left end of the upper left skin adhesive portion extends to the left side of the tube adhesive portion. A lower left skin adhesive portion is located at the right end of the lower edge of the upper left skin adhesive portion. The right skin adhesive portion includes an upper right skin adhesive portion, the upper edge of which is located above the upper edge of the tube adhesive portion, and the right end of the upper right skin adhesive portion extends to the right side of the tube adhesive portion. A lower right skin adhesive portion is located at the left end of the lower edge of the upper right skin adhesive portion. This oxygen inhalation tube fixing tape has the advantage of more stable fixation, but it does not solve the problems associated with the adhesive tape used to fix oxygen inhalation tubes described above. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide an oxygen tube fixing cap suitable for infant patients.

[0006] The technical solution adopted by this utility model is as follows: the oxygen tube fixing cap includes a cap body and two oxygen tube fixing structures. The two oxygen tube fixing structures are located in front of the cap body and connected to the cap body. The two oxygen tube fixing structures are symmetrically arranged with the center line of the front part of the cap body as the center.

[0007] Furthermore, the distance between the two oxygen tube fixing structures should not be less than 8cm.

[0008] Furthermore, the oxygen tube fixing cap includes an oxygen tube folding structure, which is located in the middle of the front of the cap and connected to the cap body, and is located above the oxygen tube fixing structure.

[0009] Furthermore, the cap is made of mesh elastic bandage.

[0010] Furthermore, both the oxygen tubing fixing structure and the oxygen tubing merging structure are tied with straps, with the middle of the straps connected to the cap.

[0011] Furthermore, both the oxygen tube fixing structure and the oxygen tube closing structure include a first hook and loop fastener and a second hook and loop fastener. The first hook and loop fastener is connected to the cap body, and one end of the second hook and loop fastener is connected to the cap body. The second hook and loop fastener can be attached to the first hook and loop fastener.

[0012] Furthermore, the oxygen tubing fixing cap includes medical tape, and the oxygen tubing fixing structure is a connecting ear with a through hole. The medical tape passes through the connecting ear and can wrap around and stick the oxygen tubing.

[0013] Furthermore, it includes a cap anti-slip structure, which is used to limit the front of the cap from slipping down.

[0014] Furthermore, the anti-slip structure of the hat body is a connecting strap, one end of which is fixedly connected to the back of the hat body, and the other end of which is detachably connected to the back of the hat body.

[0015] Furthermore, the connecting strap is detachably connected to the cap body via Velcro.

[0016] The beneficial effects of this utility model are: Figure 4 As shown, when using this invention, it is worn on the baby's head; the oxygen tube nasal plug is inserted into the nasal cavity, with the rest extending upwards; the oxygen tube extending to the cap is fixed by an oxygen tube fixing structure; once the cap is on the head, it is not easy for it to slip down, and the oxygen tube fixed by the oxygen tube fixing structure is also not easy for it to slip down. It is evident that this invention can secure the oxygen tube.

[0017] This invention provides a more reliable fixation for the oxygen tubing; it eliminates the need for adhesives, making it gentler on the baby's skin; and the tubing extends upwards, preventing it from being pulled on the baby's torso. The applicant has already conducted practical tests on this invention, demonstrating excellent results. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of common methods for fixing oxygen tubing;

[0019] Figure 2A schematic diagram of the existing method for securing an infant oxygen tube;

[0020] Figure 3 This is a structural diagram of the first type of oxygen cannula fixing cap;

[0021] Figure 4 This is a diagram showing the usage status of the first type of oxygen tubing fixing cap;

[0022] Figure 5 This is a structural diagram of the second type of oxygen cannula fixing cap (tie type);

[0023] Figure 6 This is a structural diagram of the second type of oxygen cannula fixing cap (Velcro type);

[0024] Figure 7 This is a structural diagram of the second type of oxygen cannula fixing cap (connecting ear type);

[0025] Figure 8 Diagram showing the usage status of the second type of oxygen tubing cap;

[0026] Figure 9 Side view of the third type of oxygen cannula fixing cap;

[0027] Figure 10 Rear view of the third type of oxygen cannula fixing cap;

[0028] Figure reference numerals: 1. Cap body; 2. Oxygen tube fixing structure; 3. Oxygen tube closing structure; 4. Cap body anti-slip structure; 5. Oxygen tube; 6. Detailed Implementation

[0029] The present invention will now be described in detail with reference to the accompanying drawings.

[0030] like Figure 3 As shown, the oxygen tube fixing cap includes a cap body 1 and two oxygen tube fixing structures 2. Both oxygen tube fixing structures 2 are located in front of the cap body 1 and connected to the cap body 1. The two oxygen tube fixing structures 2 are symmetrically arranged with the center line of the front part of the cap body 1 as the center.

[0031] like Figure 4 As shown, when using this invention, the cap 1 is worn on the baby's head; the nasal plug of the oxygen tube 6 is inserted into the nasal cavity, and the rest extends upwards; the oxygen tube extending onto the cap 1 is fixed by the oxygen tube fixing structure 2; the cap 1 is worn on the head and is not easy to slip down, and the oxygen tube 6 fixed by the oxygen tube fixing structure 2 is also not easy to slip down. It can be seen that this invention can fix the oxygen tube 6.

[0032] The oxygen tube 6 is fixed in a more reliable manner using this utility model; no adhesive is required, which is more skin-friendly for infants; the oxygen tube 6 extends upward and is not located in front of the infant's torso, so it is not easily pulled.

[0033] Two oxygen tube fixing structures 2 secure the oxygen tubes 6 on either side of the nasal plug. Ideally, the two fixing structures 2 should be sufficiently far apart; otherwise, the oxygen tubes will obstruct the infant's eyes. Given that the normal interocular distance of an infant is generally 3.5-5.5 cm, this invention preferably places the distance between the two fixing structures 2 at no less than 8 cm. This allows the oxygen tubes 6 to be fixed slightly outwards, preventing them from obstructing the infant's eyes.

[0034] The cap body 1 can be made of existing fabrics. Preferably, the cap body 1 is made of a mesh elastic bandage. The mesh elastic bandage is an existing material, possesses elasticity, and facilitates a secure wearing of the cap body 1 on the head. Furthermore, due to its numerous mesh openings, it offers good breathability.

[0035] This utility model can be further improved as follows: Figures 5 to 7 As shown, the oxygen tube fixing cap includes an oxygen tube folding structure 4, which is located in the middle of the front of the cap body 1 and connected to the cap body 1. The oxygen tube folding structure 4 is located above the oxygen tube fixing structure 2.

[0036] So it is Figure 8 As shown, the oxygen tubing 6 on both sides of the nasal plug is fixed by two oxygen tubing fixing structures 2, then extends upward and converges, and is fixed by the oxygen tubing converging structure 4. This makes the tubing more organized.

[0037] The oxygen tubing fixing structure 2 and the oxygen tubing merging structure 4 can have various specific structures. For example... Figure 5 As shown, both the oxygen tubing fixing structure 2 and the oxygen tubing closing structure 4 are tied with straps, with the middle of the straps connected to the cap body 1. The oxygen tubing 6 is thus fixed by the straps tightening it; the tightening force should be appropriate to avoid flattening the oxygen tubing.

[0038] It is also possible Figure 6 As shown, both the oxygen tube fixing structure 2 and the oxygen tube closing structure 4 include a first hook and loop fastener and a second hook and loop fastener. The first hook and loop fastener is connected to the cap body 1, and one end of the second hook and loop fastener is connected to the cap body 1. The second hook and loop fastener can be attached to the first hook and loop fastener. Hook and loop fastener is a common connection structure, often used in clothing, and includes two parts: a hook and loop fastener side and a fleece side. Preferably, the first hook and loop fastener is the hook and loop fastener side, and the second hook and loop fastener is the fleece side. The oxygen tube 6 is placed in the middle of the first hook and loop fastener, and then the second hook and loop fastener is placed over the oxygen tube 6 and attached to the first hook and loop fastener, thus securing the oxygen tube.

[0039] It is also possible Figure 7As shown, the medical tape 3, the oxygen tube fixing structure 2, and the oxygen tube closing structure 4 all have connecting ears with through holes. The medical tape 3 passes through the connecting ears and can wrap around and stick the oxygen tube 6. Using tape to wrap and stick can more reliably fix the oxygen tube 6 and does not require a large force to tighten or compress the oxygen tube 6.

[0040] While the cap 1, when placed on the infant's head, is not prone to shifting downwards entirely, the possibility of the front part shifting downwards due to the pulling of the oxygen tubing or the infant's movements cannot be ruled out. If the front part of the cap 1 shifts downwards, the oxygen tubing 6 will also shift downwards, causing the nasal plug to slip out of the infant's nasal cavity. To further ensure the reliability of fixing the oxygen tubing 6 in this invention, the oxygen tubing fixing cap preferably includes a cap anti-slip structure 5, which is used to limit the downward slippage of the front part of the cap 1.

[0041] Specific examples Figure 9 and Figure 10 As shown, the anti-slip structure 5 of the hat body is a connecting strap. One end of the connecting strap is fixedly connected to the back of the hat body 1, and the other end of the connecting strap is detachably connected to the back of the hat body 1.

[0042] When using the oxygen tube fixing cap, after the cap body 1 is put on the baby's head, separate the detachable end of the connecting strap from the cap body 1, wrap the connecting strap around the baby's chin, and finally wrap the detachable end of the connecting strap back to the back of the cap body 1 and reconnect it to the cap body 1 to complete the setting of the connecting strap.

[0043] The front of the cap 1 slides down, causing the back of the cap 1 to move up, which in turn moves the connecting strap up. The infant's chin restricts the upward movement of the connecting strap, thus restricting the upward movement of the back of the cap 1, and consequently restricting the front of the cap 1 from sliding down, thereby preventing the oxygen tube 6 from sliding down. Thus, this invention provides a very reliable fixation of the oxygen tube, effectively preventing the nasal plug from slipping out of the nasal cavity.

[0044] The connecting strap and the cap body 1 can be detachably connected via Velcro, which is a conventional method.

Claims

1. An oxygen cannula fixing cap, characterized in that: It includes a cap body (1), a cap anti-slip structure (5), and two oxygen tube fixing structures (2). The two oxygen tube fixing structures (2) are located in front of the cap body (1) and connected to the cap body (1). The two oxygen tube fixing structures (2) are symmetrically arranged with the center line of the front part of the cap body (1) as the center. The cap anti-slip structure (5) is used to restrict the front part of the cap body (1) from sliding down.

2. The oxygen cannula fixing cap according to claim 1, characterized in that: The distance between the two oxygen tube fixing structures (2) shall not be less than 8cm.

3. The oxygen cannula fixing cap according to claim 2, characterized in that: It includes an oxygen tube merging structure (4), which is located in the middle of the front of the cap (1) and connected to the cap (1). The oxygen tube merging structure (4) is located above the oxygen tube fixing structure (2).

4. The oxygen cannula fixing cap according to claim 3, characterized in that: The cap body (1) is made of mesh elastic bandage.

5. The oxygen cannula fixing cap according to claim 3, characterized in that: Both the oxygen tube fixing structure (2) and the oxygen tube closing structure (4) are straps, and the middle part of the strap is connected to the cap body (1).

6. The oxygen cannula fixing cap according to claim 3, characterized in that: Both the oxygen tube fixing structure (2) and the oxygen tube closing structure (4) include a first hook and loop fastener and a second hook and loop fastener. The first hook and loop fastener is connected to the cap body (1), and one end of the second hook and loop fastener is connected to the cap body (1). The second hook and loop fastener can be attached to the first hook and loop fastener.

7. The oxygen cannula fixing cap according to claim 3, characterized in that: The medical tape (3), the oxygen tube fixing structure (2) and the oxygen tube merging structure (4) are all connecting ears with through holes. The medical tape (3) passes through the connecting ears and can wrap around and stick the oxygen tube (6).

8. The oxygen cannula fixing cap according to claim 1, characterized in that: The anti-slip structure (5) of the hat body is a connecting strap. One end of the connecting strap is fixedly connected to the back of the hat body (1), and the other end of the connecting strap is detachably connected to the back of the hat body (1).

9. The oxygen cannula fixing cap according to claim 8, characterized in that: The connecting strap and the cap body (1) are detachably connected by Velcro.

Citation Information

Patent Citations

  • Auxiliary fixing adhesive tape for high-flow oxygen inhalation tube for newborn infant

    CN209075756U