Postoperative administration atomization nursing equipment for ophthalmology department
By designing an inner and outer eye mask with dressings in the ophthalmic nebulizer, combined with a magnetically positioned liquid supply tube and a support structure, the problems of drug condensation and discomfort in existing nebulizers have been solved, achieving more efficient drug absorption and a more comfortable nebulization effect.
Patent Information
- Application Number
- CN202511501947.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-01-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing ophthalmic nebulizers often cause condensation of the nebulized medication when it comes into direct contact with the eyes, leading to discomfort. Furthermore, the medication is difficult to absorb fully, and the operation is cumbersome.
A nebulization care device with an inner and outer eye mask and a dressing is designed. The inner eye mask is in contact with the eyes in the initial state. The mist sprayed from the nebulizer nozzle adheres to the dressing for heat therapy. The nebulization mode can be intermittently switched by a magnetically positioned liquid supply tube. A support structure is added to stably support the outer eye mask.
It improves the absorption and comfort of nebulized medication, reduces medication leakage, expands the scope of application, and avoids eye discomfort caused by prolonged nebulization.
Smart Images

Figure CN121370495A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of eye care, more particularly to an eye postoperative administration atomization nursing device. BACKGROUND
[0002] With the increasing number of patients with eye diseases, the treatment of eye diseases is also increasingly valued. After the operation of ophthalmic patients, in addition to the conventional intraocular care, the eye liquid daubing nursing is also required in the treatment process according to the doctor's advice. The common daubing nursing needs manual operation, and the drug needs to be daubed every certain period of time, which is complicated and difficult to realize the long-term effect of the drug on the eye.
[0003] The prior art attempts to use an atomization device for eye treatment, but the eye atomization device is generally similar to an eye mask structure, which is worn on the eye during use, and the atomized liquid is directly sprayed on the eye. On the one hand, if the atomized liquid is directly in contact with the eye for a long time, it is easy to condense around the eye, which brings discomfort to the patient's eye during the nursing process, and the condensed water droplets are easy to flow down through the gap around the eye mask, which is difficult to be fully absorbed by the eye, and there are certain disadvantages. SUMMARY
[0004] The present application aims to solve the existing problems, and provides an eye postoperative administration atomization nursing device compared with the prior art, which is a pair of inner eye masks with a pad added in the traditional atomization nursing device. The pad is in contact with the eye in the initial state, and the mist sprayed outward by the atomization nozzle is attached to the pad. Compared with being directly sprayed on the eye for a long time, the hot compress with water vapor is more conducive to the absorption of the liquid by the eye, improving the atomization comfort and effect. In addition, the liquid supply pipe can be horizontally moved and magnetically positioned, and the liquid supply pipe is used to position and expand the pad inward to realize direct contact atomization of the eye, so that the atomization mode can be intermittently switched according to the patient's needs, the application range is expanded, and the atomization effect is further improved.
[0005] The purpose of the present application can be achieved by the following technical scheme: an eye postoperative administration atomization nursing device, comprising a headrest, a pair of support structures are fixedly connected to the upper end of the headrest, and an atomization structure is connected to the top end of the pair of support structures; the atomization structure comprises an outer eye mask connected to the top end of the pair of support structures, a pair of cover caps are fixed to the rear part of the outer eye mask and are in communication with the inside of the outer eye mask, a medicine cup is embedded and installed at the top end of the outer eye mask, the inner bottom of the medicine cup is connected to a atomization host through a connecting line, a support seat is fixedly installed on each of the cover caps, a liquid supply pipe is installed on the support seat through an electric guide rail and can be driven in and out in the horizontal direction, and a atomization pipe is fixedly connected to the outer end of the liquid supply pipe and connected to the upper end wall of the medicine cup. The inner eye cover is internally provided with a pair of inner eye covers respectively installed at the inner ends of a pair of cover lids, the inner eye cover and the cover lid internally form an atomization space, the liquid supply pipe is internally provided with an atomization nozzle, and the outer end of the inner eye cover is fixedly connected with a bandage which can be magnetically positioned with the atomization nozzle.
[0006] Further, the support structure comprises an upper connecting plate fixed to the side end wall of the outer eye cover, both sides of the bottom end of the upper connecting plate are rotatably installed with rotating plates, the bottom end of the rotating plate is also rotatably installed with a lower connecting plate, and the headrest is provided with a sliding groove for sliding installation of the pair of connecting plates.
[0007] Further, the sliding groove is internally installed with an electromagnetic sheet, the lower connecting plate is made of a magnetic material, and when the atomization nursing equipment is used, the patient is in a lying position, the head is placed on the headrest, the two rotating plates are tilted and turned over according to the needs, the vertical height of the outer eye cover is adjusted until the flexible gasket on the outer eye cover is abutted against the outer periphery of the eyes of the patient, and the pair of inner eye covers are tightly attached to the pair of eyes, after the positioning work is completed, the electromagnetic sheet is started to make the outer eye cover in a stable supporting state, under the premise of relatively sealed atomization, the outer eye cover and other atomization structures will not cause excessive pressure on the face of the patient, and the use comfort is improved.
[0008] Further, the front end of the outer eye cover is attached with a flexible gasket, the outer ends of the pair of inner eye covers are provided with elastic parts exposed outside the outer eye cover, and the elastic parts and the flexible gasket are both made of soft medical silica gel, the outer end of the inner eye cover is exposed outside the outer eye cover in the initial state, the flexible gasket is attached to the outer periphery of the eyes of the patient when worn, and the elastic parts of the outer end of the pair of inner eye covers are attached to the inner periphery of the eyes, which not only improves the attachment to the face of the patient and the compression feeling of the face of the patient, but also plays a role in double sealing inside and outside to reduce the leakage of atomized liquid.
[0009] Further, the end part of the inner eye cover connected with the cover lid is nested with an electric heating ring, the inner eye cover is made of a heat-conducting material, and low-temperature heating is performed through the electric heating ring, the temperature suitable for hot compress is transmitted to the eyes through the inner eye cover, and a suitable hot compress environment is created for the atomization space.
[0010] Further, the bandage comprises an outer skin-friendly layer connected to the outer end of the inner eye cover, the outer skin-friendly layer is provided with an inner skin-friendly layer at the middle position, the inner skin-friendly layer is internally nested with a flexible magnetic ring, and the inner end wall of the atomization nozzle is internally nested with an electromagnetic ring matched with the flexible magnetic ring.
[0011] Further, the outer skin-friendly layer and the inner skin-friendly layer are both made of nanofiber material, the nanofiber material not only has air permeability and skin-friendliness, but also has high flexibility and bending property in the nanometer level structure.
[0012] Further, the outer eye cover middle part is inserted with a protective tube with two ends penetrating the top end and the outer end, and the connecting line is connected with the medicine cup and wrapped in the inner side of the protective tube.
[0013] The application further provides a use method of the ophthalmic postoperative administration atomization nursing equipment, including the following steps: Step one: first, the patient is in a lying state, the head is propped on the headrest, according to the requirement, the support structure is adjusted so that the outer eye cover is in a stable supporting state, the flexible gasket on the outer eye cover is attached to the outer periphery of the eye, and the elastic part of the pair of inner eye covers is attached to the inner periphery of the eye. Step two: pour the liquid medicine into the medicine cup, start the atomization host, and start the electric heating ring at the inner eye cover, the mist sprayed outward from the atomization nozzle is attached to the pad, the mist has a stable temperature, and the pad is used for hot compress treatment. Step three: in the atomization process, the liquid supply pipe is moved close to the pad under the cooperation of the electric guide rail, the atomization nozzle approaches the flexible magnetic ring, the electromagnetic ring is started, the inner skin layer is covered on the atomization nozzle by the flexible magnetic ring, then the liquid supply pipe is moved backward, the outer skin layer is stretched and expanded inward, and at this time, the atomized liquid medicine is directly sprayed on the eye through the inner skin layer. Step four: when too many water droplets are directly atomized on the eye, at this time, the pad is moved close to the eye by driving the liquid supply pipe, the electromagnetic ring at the atomization nozzle is disconnected, the pad returns to the initial state and is attached to the eye again after the external force is removed, the excess water droplets on the eye are adsorbed, and steps three and four are repeated, and the atomization mode is intermittently switched according to the requirement of the patient.
[0014] Compared with the prior art, the application has the following advantages: The scheme is characterized in that a pair of inner eye covers with pads are additionally arranged in the traditional atomization nursing device, the pair of inner eye covers are closely attached to the eye when being worn and used, the outer eye cover is used for supporting and positioning, the inner and outer eye covers are used for double sealing, the leakage of the atomized liquid medicine is reduced, the pad arranged on the outer side of the inner eye cover is attached to the eye in the initial use, the mist sprayed outward from the atomization nozzle is attached to the pad, the pad is used for hot compress, compared with the mist directly sprayed on the eye for a long time, the hot compress with the mist is more conducive to the absorption of the liquid medicine by the eye, the atomization comfort and effect are improved. The liquid supply pipe in the scheme can move horizontally, and has a magnetic attraction effect on the inner skin layer on the pad, so that the inner skin layer is magnetically attracted and covered on the atomization nozzle after the liquid supply pipe is moved close to the pad, then the liquid supply pipe is moved backward, the outer skin layer is stretched and expanded inward, at this time, the atomized liquid medicine is directly sprayed on the eye through the inner skin layer, the atomization mode can be intermittently switched according to the requirement of the patient, the application range is expanded, and the atomization effect is further improved. This solution adds an outer eye mask with a pair of support structures, making the nebulizer suitable for supine nebulization treatment. By adjusting the pair of support structures, the outer eye mask is kept in a stable support state. Under the premise of relatively sealed nebulization, the outer eye mask and other nebulization structures will not put too much pressure on the patient's face, thus improving the comfort of use. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the initial structure of the present invention; Figure 2 This is a bottom view of the present invention; Figure 3 This is a schematic diagram of the structure of the present invention after positioning; Figure 4 This is a schematic diagram of the atomization structure of the present invention; Figure 5 The splitting of the atomization structure of the present invention Figure 1 ; Figure 6 The splitting of the atomization structure of the present invention Figure 2 ; Figure 7 This is a cross-sectional view of the atomizing structure of the present invention; Figure 8 This is a cross-sectional view of the atomization structure of the present invention during operation; Figure 9 This is a cross-sectional view of the atomizing structure of the present invention driving the liquid supply tube to move toward the dressing side during operation; Figure 10 This is a cross-sectional view of the atomizing structure of the present invention when it drives the liquid supply tube to pull the dressing towards the inside of the atomizing space during operation. Figure 11 This is a schematic diagram of the atomizing structure of the present invention after the atomizing tape expands towards the inside of the atomizing space during operation; Figure 12 This is a cross-sectional view of the atomizing structure of the present invention after the atomizing tape expands inward toward the atomizing space during operation; Figure 13 This is a schematic diagram of the operation of the atomizing structure of the present invention after the atomizing tape expands towards the inner side of the atomizing space.
[0016] Explanation of the labels in the diagram: 1. Headrest; 2. Outer eye mask; 201. Flexible gasket; 3. Support structure; 4. Cover; 5. Medicine cup; 6. Protective tube; 7. Connecting cable; 8. Nebulizer; 9. Nebulizer tube; 10. Liquid supply tube; 101. Nebulizer nozzle; 11. Support base; 12. Electric guide rail; 13. Inner eye mask; 14. Dressing band; 141. Outer skin-friendly layer; 142. Inner skin-friendly layer; 143. Flexible magnetic ring. Detailed Implementation
[0017] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application; obviously, the described embodiments are only part of the embodiments of the present application; rather than all the embodiments; based on the embodiments in the present application; all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the scope of protection of the present application.
[0018] Embodiment 1: The present application discloses an ophthalmic postoperative administration atomization nursing equipment, please refer to Figures 1-3 , including headrest 1, the upper end of headrest 1 is fixedly connected with atomization structure on both sides through support structure 3, support structure 3 includes upper connecting plate fixed on the side end wall of outer eye cover 2, rotating plate is rotatably installed on both sides of the bottom end of upper connecting plate, the bottom end of rotating plate is also rotatably installed with lower connecting plate, the upper end of headrest 1 is provided with sliding slot for sliding installation of a pair of connecting plates, electromagnetic sheet is installed in sliding slot, lower connecting plate is made of magnetic material; When using the atomization nursing equipment, the patient is in a lying position, the head is on the headrest 1, according to the requirement, the two rotating plates are tilted and turned over, the vertical height of the outer eye cover 2 is adjusted until the flexible gasket 201 on the outer eye cover 2 is against the outer periphery of the patient's eye, after the positioning work is completed, the electromagnetic sheet is started, so that the outer eye cover 2 is in a stable supporting state, under the premise of relatively sealed atomization, the outer eye cover 2 and other atomization structures will not cause excessive pressure on the patient's face, and the use comfort is improved.
[0019] Please refer to Figure 3 、 Figure 4 , the atomization structure includes outer eye cover 2 connected to the top end of a pair of support structures 3, a pair of cover caps 4 fixed to the rear part of the outer eye cover 2 and communicating with the inside thereof, a medicine cup 5 embedded and installed at the top end of the outer eye cover 2, the inner bottom of the medicine cup 5 is connected with an atomization host 8 through a connecting line 7, a protective tube 6 with two ends penetrating through the top end and the outer end thereof is inserted into the inner side of the outer eye cover 2, one end of the connecting line 7 connected with the medicine cup 5 is covered in the inner side of the protective tube 6, a pair of support seats 11 are fixedly installed on the cover caps 4, a liquid supply pipe 10 driven in and out along the horizontal direction is installed on the support seats 11 through an electric guide rail 12, and the outer end of the liquid supply pipe 10 is fixedly connected with an atomization pipe 9 connected with the upper end wall of the medicine cup 5.
[0020] Please refer to Figure 4 , the inside of the outer eye cover 2 is provided with a pair of inner eye covers 13 fixedly installed by magnetic attraction with the inner ends of a pair of cover caps 4, respectively, the inner eye covers 13 and the cover caps 4 form an atomization space inside, and the top two sides of the outer eye cover 2 are provided with gas permeable surfaces communicating with the atomization space.
[0021] The front end of the outer eye cover 2 is attached with a flexible gasket 201, and the outer end of the pair of inner eye covers 13 is provided with an elastic part exposed outside the outer eye cover 2. The elastic part and the flexible gasket 201 are both made of soft medical silicone. In the initial state, the outer end of the inner eye cover 13 is exposed outside the outer eye cover 2. When worn, the flexible gasket 201 is attached to the outer periphery of the patient's eyes, and the elastic part of the outer end of the pair of inner eye covers 13 is attached to the inner periphery of the eyes. This not only improves the fit with the patient's face and reduces the feeling of compression on the patient's face, but also achieves double sealing from the inside and outside to reduce the leakage of atomized liquid.
[0022] Please refer to Figures 4-5 The outer end of the inner eye cover 13 is fixedly connected with a pad 14, the inner end of the liquid supply pipe 10 penetrates to the inside of the atomization space and is fixedly installed with an atomization nozzle 101, and the outer wall of the end of the inner eye cover 13 connected with the cover 4 is nested with an electric heating ring. The inner eye cover 13 is made of a heat-conducting material and is heated at low temperature by the electric heating ring. The temperature suitable for hot compress is transmitted to the eyes through the inner eye cover 13, creating a suitable hot compress environment for the atomization space. In addition to the heating method using the electric heating ring, a heating wire for heating the water mist can also be added inside the liquid supply pipe 10, which directly heats the water mist at low temperature. When the patient wears the atomization nursing device, the pad 14 is attached to the eyes, please refer to Figure 8 The mist sprayed outward by the atomization nozzle 101 adheres to the pad 14. The mist has a stable temperature and plays a good hot compress role with the help of the pad 14. Compared with directly spraying on the eyes for a long time, the hot compress with water vapor is more conducive to the absorption of the liquid by the eyes, improving the atomization comfort and effect.
[0023] Embodiment 2: Based on the embodiment 1, the structure of the pad 14 and the horizontal movement of the liquid supply pipe 10 are further optimized, as follows: Please refer to Figures 5-8 The pad 14 includes an outer skin layer 141 connected to the outer end of the inner eye cover 13. The outer skin layer 141 is provided with an inner skin layer 142 corresponding to the position of the atomization nozzle 101 at the middle position. The inner skin layer 142 is nested with a flexible magnetic ring 143, and the inner end wall of the atomization nozzle 101 is embedded with an electromagnetic ring matched with the flexible magnetic ring 143. The outer skin-friendly layer 141 and the inner skin-friendly layer 142 are both made of nanofiber material, which is not only breathable and skin-friendly, but also has high flexibility and bending property at the nanoscale structure. In the initial state, the application belt 14 is located on the inner side of the outer end of the inner eye cover 13. When the patient wears the atomization nursing device, the application belt 14 is just attached to the eye part. The mist sprayed outward by the atomization nozzle 101 is attached to the application belt 14. The mist has a stable temperature, and the outer skin-friendly layer 141 plays a good hot compress role. Compared with directly spraying on the eye part for a long time, the hot compress with water vapor is more conducive to the absorption of the drug liquid by the eye part, thereby improving the atomization comfort and effect. Please refer to Figures 9-13 , cooperate with the liquid supply pipe 10 capable of flexible horizontal movement. When the liquid supply pipe 10 moves close to one side of the application belt 14, the atomization nozzle 101 approaches the flexible magnetic ring 143. After the electromagnetic ring at the atomization nozzle 101 is started, the inner skin-friendly layer 142 is covered on the atomization nozzle 101 by the flexible magnetic ring 143. Then the liquid supply pipe 10 is moved backward. The outer skin-friendly layer 141 is stretched and expanded inward. The expansion range can be determined according to the actual elasticity range of the application belt 14 and the optimal atomization distance to the eye part. After the outer skin-friendly layer 141 is stretched and expanded inward, the eye part is exposed. The atomized drug liquid is directly sprayed on the eye part through the inner skin-friendly layer 142, which also avoids the discomfort caused by long-term hot compress on the eye part. When too much water droplet is generated by direct atomization on the eye part, the electric guide rail 12 can be started to move outward at this time, so as to drive the liquid supply pipe 10 to move close to the eye part with the application belt 14, disconnect the electromagnetic ring at the atomization nozzle 101, and the application belt 14 can restore to the initial state to reattach to the eye part after removing the external force, thereby adsorbing the excess water droplet on the eye part. The mode is switched from hot compress to atomization, which avoids too much condensation water droplet caused by long-term direct atomization. The atomization mode is intermittently switched according to the patient's needs, which expands the application range, improves the atomization absorption effect, avoids the water droplet from flowing down along the gap around the eye cover, and saves the drug liquid.
[0024] In combination with the use method of the drug administration and atomization nursing device in Embodiment 1 and Embodiment 2, the method comprises the following steps: Step one: first, the patient is in a lying state, the head is rested on the headrest 1, and the outer eye cover 2 is in a stable support state by adjusting the support structure 3 according to the needs. The flexible gasket 201 on the outer eye cover 2 is attached to the outer periphery of the patient's eye part, and the elastic part of the outer end of the inner eye cover 13 is attached to the inner periphery of the eye part. Step two: pour the drug liquid into the medicine cup 5, start the atomization host 8, and start the electric heating ring at the inner eye cover 13. The mist sprayed outward by the atomization nozzle 101 is attached to the application belt 14. The mist has a stable temperature, and the application belt 14 is used for hot compress treatment. Step three: in the atomization process, cooperate with the electric guide rail 12 to make the liquid supply pipe 10 move close to the application tape 14, the atomization nozzle 101 approaches the flexible magnetic ring 143, the electromagnetic ring is started, the inner skin-friendly layer 142 is sleeved on the atomization nozzle 101 by the flexible magnetic ring 143, then the liquid supply pipe 10 is moved backward, the outer skin-friendly layer 141 is stretched and expanded inward, at this time, the atomized liquid is directly sprayed on the eye through the inner skin-friendly layer 142; Step four: when too many water droplets are directly atomized on the eye, at this time, the liquid supply pipe 10 drives the application tape 14 to move close to the eye, the electromagnetic ring at the atomization nozzle 101 is disconnected, the application tape 14 returns to the initial state and is reattached to the eye after removing the external force, and the excess water droplets on the eye are adsorbed, and steps three and four are repeated, and the atomization mode is intermittently switched according to the patient's needs.
[0025] After the atomization work is completed, the atomization host 8 is turned off, the outer eye cover 2 is adjusted upward through the support structure 3, the patient's head is conveniently separated from below the outer eye cover 2, then the inner eye cover 13 with the application tape 14 is detached outward, and the atomization part can be cleaned.
[0026] As described above: the scheme adds a pair of inner eye covers 13 with application tapes 14 in the traditional similar eye cover atomization nursing device, when wearing and using, the pair of inner eye covers 13 are closely attached to the eye, cooperate with the outer eye cover 2 for bearing and positioning, and the inner and outer double sealing is realized, so that the leakage of the atomized liquid is reduced. The application tape 14 arranged outside the inner eye cover 13 is attached to the eye in the initial use, the mist sprayed outward by the atomization nozzle 101 is attached to the application tape 14, the mist has a stable temperature, and the application tape 14 plays a good hot compress role, compared with being directly sprayed on the eye for a long time, the hot compress with the water vapor is more easy for the liquid to be absorbed by the eye, the atomization comfort and effect are improved. In addition, the liquid supply pipe 10 can move horizontally, and has a magnetic attraction effect on the inner skin-friendly layer 142 on the application tape 14, so that after the liquid supply pipe 10 moves close to one side of the application tape 14, the inner skin-friendly layer 142 is magnetically attracted and covered on the atomization nozzle 101, then the liquid supply pipe 10 is moved backward, the outer skin-friendly layer 141 is stretched and expanded inward, at this time, the atomized liquid is directly sprayed on the eye through the inner skin-friendly layer 142, the discomfort caused by long-time hot compress on the eye is avoided, the atomization mode is intermittently switched according to the patient's needs, the application range is expanded, and the atomization effect is further improved.
[0027] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this; any person skilled in the art can make equivalent replacement or change according to the technical scheme and improvement concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. An ophthalmic post-operative administration nebulization care device comprising a headrest (1), characterized in that: The headrest (1) upper end both sides are fixedly connected with atomization structure through support structure (3), the atomization structure includes the outer eye cover (2) connected to a pair of support structure (3) top, the outer eye cover (2) rear is fixed with a pair of cover (4) with its inside communication, the top of outer eye cover (2) is embedded with medicine cup (5), the medicine cup (5) inner bottom is connected with atomization host computer (8) through connecting line (7), a pair of cover (4) are all fixedly installed with support seat (11), the support seat (11) is installed with the liquid supply pipe (10) that can drive along horizontal direction inside and outside through electric guide rail (12), the liquid supply pipe (10) outer end is fixedly connected with the atomization pipe (9) connected with medicine cup (5) upper end wall; The inner side of the outer eye cover (2) is inserted with a protective tube (6) having two ends penetrating through the top and outer end thereof, and the connecting line (7) connected with the medicine cup (5) is covered inside the protective tube (6).
2. An ophthalmic post-operative administration nebulization care device according to claim 1, wherein: The inner side of the outer eye cover (2) is inserted with a protective tube (6) having two ends penetrating through the top and outer end thereof, and the connecting line (7) connected with the medicine cup (5) is covered inside the protective tube (6).
3. An ophthalmic post-operative administration nebulization care device according to claim 2, wherein: The support structure (3) includes an upper link plate fixed to the side end wall of the outer eye cover (2), both sides of the bottom end of the upper link plate are rotatably installed with rotating plates, the bottom end of the rotating plate is also rotatably installed with a lower link plate, and the headrest (1) is provided with a sliding groove for sliding installation of the pair of link plates.
4. An ophthalmic post-operative medicament delivery aerosolization care device according to claim 1, wherein: The sliding groove is installed with an electromagnetic sheet, and the lower link plate is made of a magnetic material.
5. An ophthalmic post-operative medicament delivery aerosolization care device according to claim 1, wherein: The front end of the outer eye cover (2) is attached with a flexible gasket (201), and the outer ends of the pair of inner eye covers (13) are provided with elastic portions exposed outside the outer eye cover (2), and the elastic portions and the flexible gasket (201) are both made of soft medical silica gel.
6. An ophthalmic post-operative medicament delivery aerosolization care device according to claim 1, wherein: The outer wall of the end portion of the inner eye cover (13) connected with the cover (4) is nested with an electric heating ring, and the inner eye cover (13) is made of a heat-conducting material.
7. An ophthalmic post-operative administration nebulization care device according to claim 6, wherein: The outer skin layer (141) is provided with an inner skin layer (142) at a middle position thereof, the inner skin layer (142) is nested with a flexible magnetic ring (143) inside, and the inner end wall of the atomization nozzle (101) is embedded with an electromagnetic ring matched with the flexible magnetic ring (143).
8. An ophthalmic post-operative medicament delivery aerosolization care device according to claim 1, wherein: The outer skin layer (141) and the inner skin layer (142) are both made of nanofiber material.
9. A method of using an ophthalmic post-surgical administration nebulization care device according to any one of claims 1-8, wherein: The middle inner side of the outer eye cover (2) is inserted with a protective tube (6) having two ends penetrating through the top and outer end thereof, and the connecting line (7) connected with the medicine cup (5) is covered inside the protective tube (6). The steps include the following steps: Step one: first, the patient is in a lying state, the head is rested on the headrest (1), according to the demand, the support structure (3) is adjusted so that the outer eye cover (2) is in a stable supporting state, the flexible gasket (201) on the outer eye cover (2) is attached to the outer periphery of the eyes, and the elastic portions of the pair of inner eye covers (13) are attached to the inner periphery of the eyes; Step two: pour the medicine into the medicine cup (5), start the atomization host (8), and the atomization work begins. The electric heating ring at the inner eye cover (13) is started, and the mist sprayed outward from the atomization nozzle (101) adheres to the application tape (14). The mist has a stable temperature, and the application tape (14) is used for hot compress treatment; Step three: during the atomization process, the electric guide rail (12) is used to move the liquid supply pipe (10) close to the application tape (14). The atomization nozzle (101) approaches the flexible magnetic ring (143), the electromagnetic ring is started, the inner skin-friendly layer (142) is sleeved on the atomization nozzle (101) by the flexible magnetic ring (143), and then the liquid supply pipe (10) is moved backward. The outer skin-friendly layer (141) is stretched and expanded inward. At this time, the atomized liquid is directly sprayed on the eye through the inner skin-friendly layer (142); Step four: when too many water droplets are generated by direct atomization on the eye, the liquid supply pipe (10) is driven to move the application tape (14) close to the eye, the electromagnetic ring at the atomization nozzle (101) is disconnected, the application tape (14) returns to the initial state after the external force is removed and is reattached to the eye. The excess water droplets on the eye are adsorbed, and steps three and four are repeated. According to the patient's needs, the atomization mode is intermittently switched.