Eye wound gauze protection structure

By designing the eye trauma gauze protection structure with arc-shaped protective soft patch and transparent diaphragm, the complex problems of gauze replacement and medication in the prior art are solved, and simple and firm gauze fixation and anti-pollution effects are achieved.

CN223196240UActive Publication Date: 2025-08-08NANJING DRUM TOWER HOSPITAL
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Patent Information

Application Number
CN202421974696.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-08-08
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

In the prior art, the replacement and application of eye trauma gauze is complicated, and medical tape is required to be repeatedly tear, resulting in discomfort in the patient and cumbersome operation.

Method used

Design a protective structure for eye trauma gauze, adopting arc-shaped protective soft patches, with a window in the center, and a transparent diaphragm can be opened and closed. The gauze is fixed by using a clamping structure to avoid repeated sticking of tape, and simplifying operation.

Benefits of technology

It realizes a simple process of gauze replacement and medication, avoids skin discomfort in patients, is firmly fixed, prevents external pollution, and adapts to ergonomic design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an eye wound gauze protection structure which comprises an arc-shaped protection soft patch, two parallel pasting parts are arranged on the protection soft patch, a window is formed in the center of the protection soft patch, and the window can cover the eyes. According to the eye wound gauze protection structure, the window is formed in the protection soft patch, medicine can be applied or bound gauze can be placed through the window directly, the whole eye wound gauze protection structure does not need to be taken down, operation is easy and convenient, and discomfort of the skin around the eyes of a patient due to repeated pasting of medical adhesive tape is avoided.
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Description

Technical Field

[0001] The utility model relates to an eye protection structure, in particular to a gauze protection structure for eye trauma. Background Art

[0002] After trauma to the eyeball or external eye, especially open injuries, appropriate methods should be immediately employed to protect the eyeball from further damage from harmful external factors, prevent worsening of the condition, and prevent significant loss of ocular contents. Protective bandaging is essential to facilitate more comprehensive treatment or removal from the scene. Common bandaging methods include four-head eye pads, bandages, and pressure gauze. Sponge gauze bandaging is the most common, specifically applying a cotton pad or sponge gauze to the injured eye and securing it with adhesive tape to prevent displacement. However, this bandage requires the gauze to be removed during wound inspection and medication application. Repeated application and tearing can weaken the adhesive bond, reducing the reusability of the gauze, and can also cause discomfort to the patient.

[0003] The prior art "An ophthalmic bandage", announcement number: CN 221308607 U, discloses an ophthalmic bandage, including: a first strap, a second strap, a fixing strap, a magic hook surface, etc.; the first strap is installed on one side of the eye mask surface, and the second strap is installed on the other side of the eye mask surface. Two fixing straps are provided on the surface of the first strap, and one end of the fixing strap is wrapped on the surface of the first strap by sewing, and the other end surface of the fixing strap is fixedly provided with a magic hook surface, and the material of the surface of the fixing strap is set as a magic fleece surface; this technical solution, by providing the first strap and the second strap, does not require the use of medical tape to stick on the patient's face to fix the gauze, and the gauze is very stable on the patient's eyes, simple to use, and easy to operate.

[0004] However, when it is necessary to apply medicine or replace gauze, the ophthalmic bandage must be loosened first, then the entire ophthalmic bandage must be taken off, and then new gauze must be fixed to the ophthalmic bandage before tying it to the patient's eyes, which is a complicated operation. Utility Model Content

[0005] The utility model of the present application provides a gauze protection structure for eye trauma, which solves the technical problem in the prior art that when applying medicine or changing gauze, the ophthalmic bandage needs to be loosened first, then the entire ophthalmic bandage needs to be taken off, and new gauze needs to be fixed to the ophthalmic bandage before being tied to the patient's eyes, which is a complicated operation.

[0006] To address the aforementioned technical issues, the present invention provides the following technical solution: a gauze protective structure for eye wounds, comprising an arc-shaped protective patch with two parallel adhesive portions. A window is defined in the center of the patch, which covers the eye. The window allows for direct application of medication or placement of a gauze bandage without removing the entire gauze protective structure. This facilitates operation and eliminates the discomfort of the skin around the patient's eyes caused by repeated application of medical tape.

[0007] As a preferred embodiment of the eye wound gauze protection structure described in the present invention, the protective patch has a larger curvature radius on its outer surface, while the other surface is its inner surface. The protective patch has two curved edges on both sides, and two parallel adhesive portions are integrally formed horizontally on the inner surface. By providing curved edges that conform to the curvature of the human eye's Jingming acupoint, the protective patch ensures seamless contact between the eye and the bridge of the nose, preventing patients from subconsciously rubbing their eyes through the gauze. The bridge of the nose also serves to limit the protective patch's position, preventing it from tilting.

[0008] As a preferred embodiment of the eye wound gauze protection structure of the present invention, the outer surface of the protective patch is provided with an openable and closable transparent membrane, which covers the window. The transparent membrane secures the gauze at the window, replacing the use of medical tape to secure the gauze at the window. The transparent membrane completely covers the gauze, preventing contamination from external dust, providing a more secure fixation, and allowing medical personnel to observe the condition of the bandaged gauze through the window by looking through the transparent membrane.

[0009] As a preferred embodiment of the eye wound gauze protection structure of the present invention, a recessed portion is provided in the center of the outer surface of the protective patch, within which the transparent film is positioned. The depth of the recessed portion is equal to the thickness of the transparent film. This creates a smooth surface on the outer surface of the protective patch, reducing the possibility of warping of the transparent film around the edges.

[0010] As a preferred embodiment of the eye wound gauze protection structure of the present invention, a slot is provided on one side of the recessed portion, and a locking slot is provided on the side of the transparent film adjacent to the slot. The locking slot and the slot are connected by an insert; a latch is provided on the other side of the recessed portion, and a mounting hole is provided on the transparent film that matches the latch; a convex button is provided on the side of the insert facing away from the recessed portion; and both ends of the transparent film are connected to the recessed portion by the insert and the latch, respectively. This provides a convenient method for fixing the transparent film, replacing gluing methods and making operation easier.

[0011] As a preferred embodiment of the eye wound gauze protection structure described in the present invention, the inner surface of the protective patch is provided with a snap-fit structure that secures the sponge gauze to the patch. By placing gauze on the inner surface of the patch corresponding to the area surrounding the eye, this gauze absorbs spilled medication and tear gland secretions, preventing external pollutants (including dust) from entering the eye from around the patch.

[0012] As a preferred embodiment of the eye wound gauze protective structure of the present invention, the clamping structure comprises two groups, each comprising a clamping portion, one end of which is connected to the inner surface of the protective patch, and the other end of which is a free end with an opening formed between the inner surface and the clamping portion. The free end of the clamping portion bends toward the inner surface to form an inwardly retracted section, providing a simple and easy-to-operate clamping structure.

[0013] As a preferred embodiment of the eye wound gauze protective structure of the present invention, the snap-fit structure further includes a raised portion disposed on the inner surface of the protective patch, the raised portion being opposite to the free end of the clamping portion and protruding toward the free end relative to the inner surface, thereby securing the gauze more securely.

[0014] As a preferred solution of the eye wound gauze protection structure of the utility model, a groove is provided on the inner surface of the protective soft patch, and the position of the groove corresponds to the bulge.

[0015] As a preferred embodiment of the eye wound gauze protective structure of the present invention, symmetrical grooves extending through the protective patch are provided on both sides of the protective patch. This provides an alternative structure for securing the eye wound gauze protective structure to the eye, replacing direct gauze adhesion. This avoids the discomfort caused by the adhesive adhering to the skin around the eye, which can also be weakened by sweat in hot summer weather.

[0016] One or more technical solutions are provided in the embodiments of the present application, which have at least the following technical effects or advantages:

[0017] 1. You can apply medicine or place gauze bandage directly through the window on the protective soft patch without removing the entire eye wound gauze protection structure. It is easy to operate and will not cause discomfort to the skin around the patient's eyes due to repeated sticking of medical tape.

[0018] 2. The fluffy eye sponge gauze can be fixed on the inner surface by using the provided snap-fit structure, and then the protective soft patch with sponge gauze can be applied to the patient's eyes by providing adhesive backing on the adhesive part to absorb the overflowed medicine and tear gland secretions, while preventing external pollutants (such as dust, etc.) from entering the eyes.

[0019] 3. By setting a curved edge that matches the curvature of the Jingming acupoint on the human eye, it can ensure that the protective patch fits perfectly and seamlessly at the edge of the eye and the bridge of the nose, preventing patients from subconsciously rubbing their eyes with their hands through the gauze. At the same time, the bridge of the nose can also be used to limit the position of the protective patch to prevent the gauze from leaning.

[0020] 4. By setting up an openable and closable transparent film, the eye gauze can be protected from external pollution. At the same time, when applying medicine to the eyes, there is no need to remove the entire gauze. Just open the transparent film and you can drop medicine into the eyes through the window or change the medicine. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without inventive work. Among them:

[0022] Figure 1 This is an outer surface diagram of Example 1 of the gauze protection structure for eye trauma.

[0023] Figure 2 This is an inside view of Example 1 of the gauze protection structure for eye trauma.

[0024] Figure 3 This is a three-dimensional view of the inside of the second embodiment of the gauze protection structure for eye trauma.

[0025] Figure 4 for Figure 3 Cross-sectional view of the middle BB interface.

[0026] Figure 5 for Figure 3 Enlarged view of point P in the middle.

[0027] Figure 6 This is a three-dimensional diagram of the outer surface of Example 3 of the gauze protection structure for eye trauma.

[0028] Figure 7 This is a diagram of Example 3 of the gauze protection structure for eye trauma, in which the outer surface has no transparent film.

[0029] Figure 8 This is a diagram of the inner surface of Example 3 of the gauze protection structure for eye trauma.

[0030] Figure 9 It is a transparent film diagram.

[0031] Figure 10 The figure shows the insert.

[0032] Figure 11These are diagrams of sponge gauze, where (a) is the auxiliary sponge gauze; (b) is the main sponge gauze.

[0033] Explanation of the reference numerals: 1-protective soft patch; 101-window; 102-recessed portion; 103-adhesive portion; 104-clamping protrusion; 105-slot; 106-clamping portion; 1061-inward section; 107-bulging portion; 108-channel; 109-bundle groove; 2-transparent membrane; 201-mounting hole; 202-locking groove; 3-insert; 301-convex button; M-main sponge gauze; A-auxiliary sponge gauze. DETAILED DESCRIPTION

[0034] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below with reference to the accompanying drawings. Example 1

[0035] Reference Figure 1-2 , this embodiment provides a gauze protection structure for eye trauma.

[0036] The eye wound gauze protection structure includes an arc-shaped protective patch 1 with a window 101 in the center. The protective patch 1 is attached to the patient's eye area, and the main sponge gauze M (i.e., the main sponge gauze covering the wound) required for bandaging is inserted through the window 101 to cover the eye wound to be bandaged. Each time the main sponge gauze M is replaced, only the main gauze M at the window needs to be removed, without having to remove the entire protective patch 1. This facilitates operation and avoids repeated application and removal of gauze from the patient's eye area.

[0037] Specifically, the protective patch 1 is arc-shaped as a whole, and its overall shape is bent in accordance with the ergonomics of the eye. The curved edge that matches the curvature of the Jingming acupoint of the human eye can ensure that the protective patch 1 fits perfectly and seamlessly at the edge of the eye and the bridge of the nose, preventing the patient from subconsciously rubbing the eyes with their hands through the gauze. At the same time, the bridge of the nose can also be used to limit the position of the protective patch 1 to prevent the gauze from being biased.

[0038] The side of the protective patch 1 with a larger curvature radius is the outer surface, and the other side is the inner surface. At least two parallel adhesive portions 103 are provided on the inner surface of the protective patch 1 (the adhesive portions are preferably provided along the longitudinal direction of the protective patch). The adhesive portions 103 can firmly adhere the protective patch 1 to the periphery of the eye.

[0039] Preferably, the protective patch 1 is made of a medical-grade soft plastic with a certain degree of hardness, thickness, and deformation capability, such as the material used for medical masks. The protective patch 1 has a certain degree of deformation capability, allowing it to better fit the eye area. Its certain degree of hardness ensures that the bandage can be repeatedly applied to the protective patch 1 to provide better positioning and protection.

[0040] A window 101 is provided in the center of the protective patch 1 . The window 101 is positioned facing the patient's eyes, and the size of the window 101 is such that the patient's eyes are completely covered.

[0041] When in use, the protective soft patch 1 is pasted around the patient's eyes through the adhesive portion 103 on the protective soft patch 1, so that the window 101 is facing the patient's eyes, and the main sponge gauze M required for bandaging is put in from the window 101 to cover the eye wound to be bandaged, and then the main sponge gauze M is pasted to the protective soft patch 1 with medical tape. In this way, each time the main sponge gauze M is replaced, it is only necessary to remove the gauze at the window without removing the entire protective soft patch 1. The operation is convenient and avoids repeatedly sticking and tearing gauze around the patient's eyes. Example 2

[0042] Reference Figure 3-5 11. This embodiment is based on embodiment 1, but differs from embodiment 1 in that an openable and closable transparent film 2 is provided on the outer surface of the protective soft patch 1, and the transparent film 2 covers the window 101. Using the transparent film 2 to replace the medical tape in embodiment 1 can avoid contamination of the gauze by external dust, and the fixation is more secure. At the same time, it is convenient for medical staff to observe the condition of the main sponge gauze M through the window after looking through the transparent film.

[0043] Specifically, the transparent film 2 can completely cover the main sponge gauze M and is attached to the outer surface of the protective soft patch 1. The transparent film is preferably a transparent dressing for infusion, which has a certain degree of viscosity.

[0044] Furthermore, the inner surface of the protective soft patch 1 is provided with a snap-fit structure that can fix the auxiliary sponge gauze A (i.e., the auxiliary sponge gauze located around the main sponge gauze) to the protective soft patch 1. The snap-fit structure can be a structure such as gluing, sewing or clamping, as long as the auxiliary sponge gauze A can be fixed to the inner surface of the protective soft patch 1.

[0045] The auxiliary sponge gauze A and the main sponge gauze M are spliced together to form a complete gauze. The main sponge gauze M is mainly used to bandage the patient's wound, and the auxiliary sponge gauze A is mainly used to absorb excess medicine and / or lacrimal gland secretions, and prevent external pollutants (such as dust, etc.) from entering the eyes from all sides of the protective patch.

[0046] The main sponge gauze M can be in various shapes such as square, round or oval, as long as it can cover the wound. The auxiliary sponge gauze A is hollowed out in the middle, and its hollowed-out shape corresponds to the shape of the main sponge gauze M. The two can form a complete gauze (such as Figure 11 shown).

[0047] The outer surface of the protective patch 1 is flat, with a thickened raised area located in the center of the inner surface. This area is located between the two adhesive portions 103 and is appropriately spaced from the edge of the protective patch 1. This thickened raised area is designed to allow the auxiliary sponge gauze A to fit more closely around the eye area, and a snap-fit structure is secured to this area.

[0048] Furthermore, the clamping structure is arranged in two groups in parallel, and the clamping structure includes a clamping portion 106 integrally formed on the inner surface of the protective soft patch 1, and one end of the clamping portion 106 is integrated with the inner surface of the protective soft patch 1; the other end of the clamping portion 106 is a free end, and an opening is formed between the inner surface, and the free end of the clamping portion 106 is bent toward the inner surface and forms an inward section 1061.

[0049] Preferably, the clamping portion 106 is arranged along the transverse direction of the protective soft patch 1 (the long side direction of the protective soft patch 1 is the longitudinal direction, and the short side direction is the transverse direction), and the distance between the two parallel clamping portions 106 is such that the auxiliary sponge gauze A is just flat after the end of the auxiliary sponge gauze A is clamped into the clamping portion 106.

[0050] When using, first, follow the attached Figure 4 Apply force in the direction of the arrow in the figure to bend the protective patch 1 in the opposite direction of its outer shape. After bending, the openings on both sides are widened. Fix the two ends of the auxiliary sponge gauze A in the clamping parts 106 inside the protective patch 1 respectively, and then loosen the protective patch 1. The protective patch 1 will elastically return to its original shape and state, and the opening will return to its initial size, and clamp the two sides of the gauze.

[0051] Furthermore, the locking structure also includes a bulge 107 integrally formed on the inner surface, the bulge 107 is parallel to the clamping portion 106, and the bulge 107 is opposite to the free end of the clamping portion (106), and the bulge 107 protrudes toward the free end compared to the inner surface.

[0052] A groove 108 is provided on the inner surface of the protective patch 1 , and the position of the groove 108 corresponds to the bulge 107 .

[0053] When using, follow the attached Figure 4Applying force in the direction of the arrow in the figure causes the protective patch 1 to bend in the opposite direction of its outer shape, subjecting the inner surface to tension. Simultaneously, the bulge 107 tends to move closer to the inner surface, increasing the gap between the bulge 107 and the retracted section 1061. Because the groove 108 is provided in the middle of the bulge 107, when the inner surface is subjected to tension, the tension space formed on both sides of the bulge 107 is larger, further increasing the extent to which the bulge 107 approaches the inner surface. When the protective patch 1 returns to its original shape, the bulge 107 moves closer to the retracted section 1061, and the retracted section 1061 also moves closer to the bulge 107, further tightening the two sides of the auxiliary sponge gauze A. The protective patch 1 is then applied to the area around the eye, the main sponge gauze M is placed over the patient's wound, and the main sponge gauze M is then attached to the outer surface of the protective patch 1 using the transparent film 2. Each time the dressing is changed, the transparent film 2 only needs to be torn off, and the transparent film 2 will leave the patient's wound together with the gauze, and then the dressing or the bandage gauze can be changed again. Example 3

[0054] Reference Figure 6-10 This embodiment is based on Example 2, but differs from Example 2 in that a recessed portion 102 is provided in the center of the outer surface of the protective patch 1. The recessed portion 102 covers the window 101, and the transparent film 2 is disposed within the recessed portion 102. The depth of the recessed portion 102 is the same as the thickness of the transparent film 2. This creates a smooth surface on the outer surface of the protective patch, reducing the possibility of warping of the transparent film around the edges.

[0055] Preferably, the transparent film 2 itself is not sticky and can be opened and closed by a certain structure, and the transparent film 2 is reusable. The transparent film 2 is made of the material of medical masks and has a certain thickness and deformation ability.

[0056] Specifically, the recessed portion 102 can completely cover the window 101, and the dimensions of each side of the recessed portion 102 are longer than the dimensions of each side of the window 101. The area of the recessed portion 102 is smaller than the area of the thickened raised area, and the thickness of the recessed portion 102 is smaller than the thickness of the thickened raised area. The recessed portion 102 is rectangular in shape and has protruding flanges at both ends in the transverse direction. One end of the transverse end of the transparent film 2 is flat, and the other end is consistent with the shape of the flange of the recessed portion 102 (such as Figure 9 shown).

[0057] The transparent film 2 is placed within the recessed portion 102. A latching protrusion 104 is integrally formed on the recessed portion 102, corresponding to the end of the transparent film 2 with the protruding flange. The transparent film 2 is provided with a mounting hole 201 that mates with the latching protrusion 104. A slot 105 is provided on the other flange of the recessed portion 102. A locking slot 202 is provided on the side of the transparent film 2 near the slot 105. The locking slot 202 and the slot 105 are connected by an insert 3. The insert 3 can slide within the locking slot 202 and the slot 105. A knob 301 is integrally formed on the side of the insert 3 facing away from the recessed portion 102.

[0058] The outer diameter of the locking protrusion 104 is slightly larger than the inner diameter of the mounting hole 201 , so the two can be installed together through interference fit, so that the transparent membrane 2 can be removed and cleaned and disinfected after removal.

[0059] During use, when the transparent film 2 needs to be opened, the transparent film 2 can be opened by sliding the inserting piece 3 through the convex button 301 so that one side of the inserting piece 3 is disengaged from the locking groove 202 .

[0060] Furthermore, two symmetrical through grooves 109 are formed at both lateral ends of the protective patch 1. The grooves 109 enable the protective patch 1 to be attached to the eye using a bandage, replacing the adhesive at the adhesive portion 103. The adhesive would cause discomfort if adhered to the skin around the eye, and in the hot summer, sweat would also weaken the adhesive force of the adhesive.

[0061] During use, the auxiliary sponge gauze A is clipped onto the inner surface of the protective soft patch 1, and the bandage is then passed through the bundle slot 109. The protective soft patch 1 is fixed to the patient's head, with the window 101 of the protective soft patch 1 facing the patient's eyes. The main sponge gauze M is then attached to the center of the transparent film 2. The transparent film 2 is placed in the recessed portion 102, one end is sleeved on the locking protrusion 104, and the other end is fixed by sliding the insert 3 to complete the wound bandage. If a dressing change is needed, just slide the insert 3 out of the locking slot 202, remove the transparent film 2 with the sponge gauze M attached, and apply medicine to the wound or change the gauze.

[0062] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, and all of these should be included in the scope of the claims of the present invention.

Claims

1. A gauze protective structure for eye trauma, characterized in that: The protective soft patch (1) comprises two mutually parallel adhesive portions (103) provided on the protective soft patch (1), a window (101) is provided in the center of the protective soft patch (1), and the window (101) faces the eyes.

2. The eye wound gauze protection structure according to claim 1, characterized in that: The protective soft patch (1) is arc-shaped, with the side with a larger curvature radius being the outer surface and the other side being the inner surface. The two lateral edges of the protective soft patch (1) are curved edges, and two mutually parallel adhesive portions (103) are provided on the inner surface of the protective soft patch (1).

3. The eye wound gauze protection structure according to claim 1, characterized in that: The outer surface of the protective soft patch (1) is provided with a transparent film (2) that can be opened and closed, and the transparent film (2) covers the window (101).

4. The eye wound gauze protection structure according to claim 3, characterized in that: A recessed portion (102) is provided around the window (101) on the outer surface of the protective soft patch (1), the transparent film (2) is provided in the recessed portion (102), and the depth of the recessed portion (102) is the same as the thickness of the transparent film (2).

5. The eye wound gauze protection structure according to claim 4, characterized in that: A slot (105) is provided on one side of the recessed portion (102), and a locking slot (202) is provided on one side of the transparent film (2) close to the slot (105), wherein the locking slot (202) is connected to the slot (105) by means of a plug (3). A locking protrusion (104) is provided on the other side of the recessed portion (102), and a mounting hole (201) adapted to the locking protrusion (104) is provided on the transparent film (2); A convex button (301) is provided on a surface of the insert (3) facing away from the recessed portion (102); The two ends of the transparent film (2) are connected to the recessed portion (102) via the insert (3) and the clamping protrusion (104) respectively.

6. The eye wound gauze protection structure according to claim 2, characterized in that: The inner surface of the protective soft patch (1) is provided with a snap-fit structure capable of fixing the sponge gauze and the protective soft patch (1).

7. The eye wound gauze protection structure according to claim 6, characterized in that: The clamping structure is provided in two groups in parallel, including a clamping portion (106), one end of the clamping portion (106) is connected to the inner surface of the protective soft patch (1), the other end of the clamping portion (106) is a free end, and an opening is formed between the clamping portion and the inner surface, and the free end of the clamping portion (106) is bent toward the inner surface and forms an inward section (1061).

8. The eye wound gauze protection structure according to claim 7, characterized in that: The snap-fit structure further includes a bulge (107), which is arranged on the inner surface of the protective soft patch (1), the bulge (107) being opposite to the free end of the clamping portion (106), and the bulge (107) protrudes toward the free end relative to the inner surface.

9. The eye wound gauze protection structure according to claim 8, characterized in that: A groove (108) is provided on the inner surface of the protective patch (1), and the position of the groove (108) corresponds to the bulge (107).

10. The eye wound gauze protection structure according to claim 1, characterized in that: Through-going bundle grooves (109) are symmetrically provided on both sides of the protective soft patch (1), and a bandage fixing the eye trauma gauze protective structure can pass through the bundle grooves (109).

Citation Information

Patent Citations

  • Bandage for ophthalmology department

    CN221308607U