Eyeshade for patient with extraocular muscle paralysis
By designing an L-shaped eye mask base and breathable assembly to adjust the temperature, the existing eye mask is not suitable for patients with extraocular muscle paralysis, achieving comfort, treatment assistance and cleaning convenience, significantly improving eye health.
Patent Information
- Application Number
- CN202510908433.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-02
- Publication Date
- 2025-08-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing eye mask design is not suitable for patients with extraocular muscle paralysis. It has problems such as uncomfortable wearing, poor obstruction, unadjustable structure and lack of therapeutic auxiliary functions, which cannot effectively alleviate eye discomfort and improve blood circulation.
An eye mask is designed including an L-shaped eye mask base, accommodating groove, baffle, heating layer and breathable assembly. The Chinese medicine ingredients are heated through the heating layer, and the Chinese medicine gas penetrates the eye acupoints. Combined with the breathable assembly, the temperature and wear angle are adjusted to provide comfort and treatment assistance.
Effectively relieve eye fatigue and improve blood circulation, improve comfort and safety of use, and facilitate cleaning and extend service life.
Smart Images

Figure CN120478043A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of eye masks, in particular to an eye mask used for patients with extraocular muscle paralysis. Background Art
[0002] Extraocular muscle paralysis is a common eye disease caused by abnormal eye movements due to lesions in the extraocular muscles or the nerves that control their movement. Patients typically experience symptoms such as diplopia, eye deviation, limited movement, and ptosis, which seriously affect their daily lives. Clinically, covering one eye to eliminate diplopia is a common treatment. Until extraocular muscle function recovers, covering the affected eye can effectively alleviate the patient's visual distress.
[0003] However, most eye masks currently on the market are of a general-purpose structure and are not specifically designed to meet the actual needs of patients with extraocular muscle paralysis. They suffer from problems such as uncomfortable wearing, loose shielding, and non-adjustable structure. They also lack a stable fixing method, and are prone to discomfort or falling off after long-term wear. In addition, most existing eye masks do not have auxiliary treatment functions, such as promoting blood circulation or relieving eye fatigue, and are of limited help in improving the condition. In summary, the existing technology cannot effectively take into account the shielding effect, wearing comfort, structural adjustability, and treatment-assisting effects. There is an urgent need to provide an eye mask with a reasonable structure, easy wearing, suitable for patients with extraocular muscle paralysis, and with treatment-assisting functions to meet the comprehensive needs of patients.
[0004] Prior art, such as patent publication number CN214180782U, discloses a dual-purpose eye mask for both amblyopia and strabismus. The mask consists of a base fabric layer, a breathable layer, an antibacterial layer, a silicone elastic frame, and a light-blocking plastic lens. The outer layer features an openable shade fabric. The silicone frame seals the upper and lower peripheral vision zones to prevent peeking, while the glass fiber breathable layer maintains air circulation within the eye.
[0005] Although the eye mask can effectively cover the affected eye, it is a fixed structure that only provides an integrated sealing frame and lacks an adjustment mechanism for different face shapes or eye positions; it also has no additional buckles or quick-release parts, making it insufficiently flexible in use and cleaning.
[0006] Therefore, based on the above-stated viewpoints, there is still room for improvement in the existing eye shields. Summary of the Invention
[0007] In order to solve the above problems, the present invention provides an eye mask for patients with extraocular muscle paralysis, comprising an eye mask base with an L-shaped cross-section, one side of the eye mask base with an arc-shaped opening, a receiving groove provided on the eye mask base, the receiving groove passing through both sides of the eye mask base, a baffle installed in the receiving groove, and a receiving assembly for receiving traditional Chinese medicine installed on one side of the baffle, a heating layer adhered to one side of the receiving assembly by adhesive, and a sealing sticker attached to one side of the heating layer by adhesive, a contact end mounted at the opening of the eye mask base by a snap fastener, and the end face of the contact end is arc-shaped.
[0008] The baffle is also provided with a ventilation component for allowing the heating layer to fully contact with the air.
[0009] Elastic bands are installed on both sides of the eye mask base.
[0010] Preferably, the containing component includes a Chinese medicine bag attached to one side of the baffle by adhesive, and the inside of the Chinese medicine bag is divided into an orbital area, a temple area and a lower orbital area by stitching, wherein all three areas are used to fill Chinese medicine powder.
[0011] Preferably, the outside of the Chinese medicine bag is provided with a plurality of medicine bag openings, and the medicine bag openings are respectively connected with the orbital acupoint area, the temple area and the lower orbital area.
[0012] An arc frame is arranged on the opening of the medicine bag, a sealing rubber is inserted into the opening of the arc frame, and a plurality of friction patterns matched with the sealing rubber are arranged in the opening of the arc frame.
[0013] Preferably, the baffle is slidably connected to the accommodating groove, and a mounting assembly is provided between the accommodating groove and the baffle. The mounting assembly includes an annular groove with an annular cross-section opened on the inner diameter of the accommodating groove, and the opening of the annular groove is away from the external end face of the eye mask base. A limiting rubber located in the annular groove is provided on the outside of the baffle.
[0014] Preferably, the limiting rubber is made of elastic material.
[0015] Preferably, the ventilation component includes a ventilation cavity provided in the baffle, and ventilation grooves are provided on the inner walls on both sides of the ventilation cavity and are respectively connected to the two sides of the baffle, and a rotating disk rotates in the ventilation groove, and the rotating disk is provided with several through grooves distributed along its axis and corresponding to the through grooves.
[0016] Preferably, a dividing bar located between the two through grooves is provided on both sides of the rotating disk, a rotating groove is opened on the dividing bar, and rotating bars on the inner walls on both sides of the air permeable cavity rotate in the rotating groove.
[0017] A rotating shaft that rotates and penetrates to the outside of the baffle is also provided on one side of the rotating disk, and a dial is sleeved on the outside of the rotating shaft.
[0018] Preferably, a limiting assembly is provided between the baffle and the limiting rubber for further limiting the baffle and the rotating disk. The limiting assembly includes two structural grooves symmetrically opened on the limiting rubber in the upper and lower directions, and two limiting grooves corresponding to the structural grooves are opened in the baffle. A limiting axis slides in the limiting groove, and one side of the limiting axis is convex and conflicts with the inner wall of the corresponding structural groove.
[0019] Preferably, a plurality of interference grooves are provided on the outer diameter of the rotating disk, and the other end of the limiting shaft slides into the air-permeable cavity and has a rolling groove at the bottom, a rolling wheel is rotatably provided in the rolling groove, and the rolling wheel contacts the corresponding interference groove.
[0020] Preferably, a receiving groove is symmetrically provided on the outer side of the rotating disk, and both sides of the receiving groove are connected to the outer side of the rotating disk via a smoothly transitioned inclined surface.
[0021] In summary, this application includes at least one of the following beneficial technical effects: 1. The present invention combines a heating layer with a containing component and utilizes the oxidation heating principle of iron powder and carbon powder to heat the Chinese medicinal ingredients; the warm Chinese medicinal gas reaches the acupuncture points of the eyes directly through the vents at the contact end, promoting drug penetration, which can not only effectively relieve eye fatigue, dryness and other discomforts, but also significantly improve eye blood circulation and assist in the treatment of eye diseases.
[0022] Second, the present invention utilizes a breathable component, allowing patients to flexibly control the rotating disk to adjust the contact area between the heating layer and the air. This allows for a gradual increase in heating temperature, allowing patients to adapt smoothly and reducing waiting time, while also avoiding the risk of burns caused by sudden temperature increases, greatly improving user safety and comfort.
[0023] Third, this invention effectively solves the cleaning challenges of traditional eye masks by designing the contact end and baffle as detachable structures. Users can easily disassemble the components to deeply clean any Chinese medicine residue and dirt, preventing bacterial growth and ensuring product cleanliness and hygiene, extending the product's lifespan while providing a healthier and more secure user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The present invention will be further described below with reference to the accompanying drawings and examples.
[0025] Figure 1 It is a structural diagram of the main body of the present invention.
[0026] Figure 2 It is a cross-sectional view of the main body of the present invention.
[0027] Figure 3 It is a structural schematic diagram of the accommodation component of the present invention.
[0028] Figure 4 It is a cross-sectional view of a Chinese medicine bag of the present invention.
[0029] Figure 5 It is a structural schematic diagram of the installation assembly of the present invention.
[0030] Figure 6 This invention Figure 5 A magnified view of part of the structure at point A.
[0031] Figure 7 It is a schematic structural diagram of the ventilation component of the present invention.
[0032] Figure 8 It is a structural schematic diagram of the ventilation component of the present invention from another perspective.
[0033] Figure 9 It is a cross-sectional view of the limiting assembly of the present invention.
[0034] Figure 10 This invention Figure 9 A magnified view of part of the structure at point B.
[0035] Figure 11 It is a structural schematic diagram of the interference groove of the present invention.
[0036] Figure 12 It is a structural schematic diagram of the adjustment component of the present invention.
[0037] Figure 13 This invention Figure 12 A magnified view of part of the structure at point C in the middle.
[0038] Figure 14 It is a structural schematic diagram of the installation slot of the present invention.
[0039] In the figure, 1. eye mask base; 10. receiving groove; 11. baffle; 12. heating layer; 13. contact end; 14. elastic band; 2. receiving assembly; 20. Chinese medicine bag; 21. orbital acupoint area; 22. temple area; 23. lower orbital area; 24. arc frame; 25. sealing rubber; 3. mounting assembly; 30. annular groove; 31. limiting rubber; 4. breathable assembly; 40. breathable cavity; 41. ventilation groove; 42. rotating disk; 43. through groove ; 44. Dividing bar; 45. Rotating bar; 46. Rotating shaft; 47. Dial; 5. Limiting assembly; 50. Structural groove; 51. Limiting groove; 52. Limiting shaft; 53. Interference groove; 54. Rolling groove; 55. Rolling wheel; 56. Storage groove; 6. Adjusting assembly; 60. Arc groove; 61. Arc block; 62. Groove; 63. Insert plate; 64. Mounting groove; 65. Fixing ring; 66. Sliding rod; 67. Limiting frame; 68. Fixing nut. DETAILED DESCRIPTION
[0040] The following combination Figures 1 to 14 The embodiments of the present invention are described in detail.
[0041] The embodiment of the present application discloses an eye mask for patients with extraocular muscle paralysis. The eye mask is used in the process of eye care and auxiliary treatment of patients with extraocular muscle paralysis. The medicinal gas generated by heating traditional Chinese medicine can penetrate the eye acupuncture points, relieve eye fatigue, and improve eye microcirculation. Furthermore, the present application can also adjust the heating temperature through the breathable component to avoid discomfort caused by temperature discomfort to the patient. At the same time, the wearing angle of the eye mask can be flexibly adjusted through the adjustment component to improve the comfort and applicability of use.
[0042] Example 1: Reference Figure 1 and Figure 2 As shown, it includes an eye mask base 1 with an L-shaped cross-section, a receiving groove 10, a baffle 11, a receiving component 2, a heating layer 12, a contact end 13, a breathable component 4 and an elastic band 14. One side of the eye mask base 1 is an arc-shaped opening, and a receiving groove 10 is provided on the eye mask base 1. The receiving groove 10 runs through both sides of the eye mask base 1. A baffle 11 is installed in the receiving groove 10, and a receiving component 2 for receiving traditional Chinese medicine is installed on one side of the baffle 11. A heating layer 12 is also attached to one side of the receiving component 2 by adhesive, and a sealing sticker is also attached to one side of the heating layer 12 by adhesive. The contact end 13 is installed at the opening of the eye mask base 1 by a buckle, and the end face of the contact end 13 is arc-shaped.
[0043] During the implementation process, the baffle 11 is first installed in the receiving groove 10, and the Chinese medicine is first placed in the receiving component 2. Finally, the heating layer 12 is attached to the side of the receiving component 2 facing the eye socket by adhesive, and finally the sealing patch is attached to the heating layer 12. The sealing patch is in contact with the eye, and the heating layer 12 is composed of iron powder and carbon powder. After the heating layer 12 comes into contact with the air, it can generate heat to heat the Chinese medicine components in the receiving component 2. The curved surface of the contact end 13 is in contact with the eye socket, and several air holes are provided on the contact end 13. After the Chinese medicine components are heated, the Chinese medicine gas moves out of the receiving component 2 and contacts the acupuncture points around the human eye through the air holes on the contact end 13, which has the effect of external use of Chinese medicine, and the contact end 13 is used to separate the human eye from the heating layer 12 at a certain distance to avoid burns to the human eye.
[0044] When the sealing sticker is not in use, one side of the heating layer 12 is sealed to prevent the iron powder and carbon powder in the heating layer 12 from coming into contact with the air and causing the heating sticker to heat up. When in use, the sealing sticker is torn off, and then the contact end 13 is installed on one side of the eye mask base 1 through a buckle.
[0045] The baffle 11 is also provided with a breathable component 4 for allowing the heating layer 12 to fully contact with the air. After the eye mask base 1 is worn, the breathable component 4 can be opened to allow air to contact the heating layer 12, so that the iron powder and carbon powder in the heating layer 12 can fully react, and the heating layer 12 can heat the traditional Chinese medicine in the containing component 2.
[0046] Elastic bands 14 are installed on both sides of the eye mask base 1, and the patient can fix the eye mask base 1 on the eye socket by wearing the elastic bands 14 on the head.
[0047] Reference Figure 3 and Figure 4 As shown, the containing component 2 is used to contain Chinese medicine; specifically, the containing component 2 includes a Chinese medicine bag 20, an orbital acupoint area 21, a temple area 22, a lower orbital area 23, an arc frame 24 and a blocking rubber 25. The Chinese medicine bag 20 is attached to one side of the baffle 11 by adhesive, and the inside of the Chinese medicine bag 20 is divided into the orbital acupoint area 21, the temple area 22 and the lower orbital area 23 by stitching. The three areas are all used to fill Chinese medicine powder, and the Chinese medicine powder is composed of peach kernel, safflower, salvia miltiorrhiza, chuanxiong, scorpion and silkworm. Blood stasis, Salvia miltiorrhiza nourishes blood and invigorates blood circulation, Chuanxiong promotes qi and blood circulation, the combination of the four can effectively improve blood circulation around the eyes and promote the flow of qi and blood; Scorpion and Bombyx batryticatus are good at dispelling wind and unblocking meridians, relieving spasms and relieving pain, can relieve eye muscle tension, and reduce eye fatigue, dryness, soreness and other discomforts; a variety of Chinese medicines work together, and the medicinal gas generated after heating can better penetrate into the eye acupuncture points, so as to relieve eye fatigue, improve eye microcirculation, and assist in the treatment of eye diseases. The above content is known to the public, so only a brief description is given during this implementation process.
[0048] The Chinese medicine bag 20 has several openings on its exterior, each of which is connected to the eye socket area 21, the temple area 22, and the lower eye socket area 23. An arc-shaped frame 24 is provided on the bag opening, and a rubber seal 25 is inserted into the opening of the arc-shaped frame 24. The arc-shaped frame 24 also has several friction grooves that cooperate with the rubber seal 25. This allows Chinese medicine powder to be added to the corresponding area through the arc-shaped frame 24. The rubber seal 25 is then inserted into the arc-shaped frame 24 and cooperates with the friction grooves to increase friction. By sealing the arc-shaped frame 24, the corresponding eye socket area 21, the temple area 22, and the lower eye socket area 23 are sealed, preventing leakage of the Chinese medicine powder.
[0049] Because the material of the Chinese medicine bag 20 is cloth, the gas generated by the heating of the Chinese medicine can contact the eyes through the air holes on the Chinese medicine bag 20, the heating layer 12 and the contact end 13, thereby achieving the effect of Chinese medicine heating treatment. In addition, an arc-shaped frame 24 is installed on the opening of the medicine bag to provide rigid support for the sealing rubber 25 to prevent the sealing rubber 25 from being unable to directly seal the opening of the medicine bag. After the Chinese medicine is filled and sealed, the Chinese medicine bag 20 is attached to one side of the baffle 11 by glue, and then one side of the heating layer 12 is also attached to one side of the Chinese medicine bag 20 by glue, and then the baffle 11 is installed in the receiving groove 10.
[0050] Reference Figure 5 and Figure 6As shown, the baffle 11 is slidably connected to the receiving groove 10, and a mounting assembly 3 is provided between the receiving groove 10 and the baffle 11; specifically, the mounting assembly 3 includes an annular groove 30 and a limiting rubber 31, and the annular groove 30 with an annular cross-section is opened on the inner diameter of the receiving groove 10, and the opening of the annular groove 30 is away from the external end surface of the eye mask base 1, and a limiting rubber 31 located in the annular groove 30 is provided on the outside of the baffle 11, and the limiting rubber 31 is made of elastic material.
[0051] That is, when installing the baffle 11, the baffle 11 is inserted into the receiving groove 10 from the open end of the eye mask base 1, and the limiting rubber 31 on the outside of the baffle 11 will be inserted into the corresponding annular groove 30, and the limiting rubber 31 will undergo elastic deformation and be stuck in the recessed space of the annular groove 30, supporting and limiting the baffle 11 and the receiving assembly 2 and the heating layer 12 behind it. When disassembling, the limiting rubber 31 can be separated from the corresponding receiving groove 10 by applying a thrust on the outside of the baffle 11.
[0052] Reference Figure 7 and Figure 8 As shown, the ventilation component 4 is used to make the heating layer 12 fully contact with the air; specifically, the ventilation component 4 includes a ventilation cavity 40, a ventilation groove 41, a rotating disk 42, a through groove 43, a partition bar 44, a rotating bar 45, a rotating shaft 46 and a dial 47. The ventilation cavity 40 is opened inside the baffle 11, and the inner walls on both sides of the ventilation cavity 40 are provided with ventilation grooves 41 respectively connected to the two sides of the baffle 11, and a rotating disk 42 is rotated in the ventilation groove 41, and the rotating disk 42 is rotated. A plurality of through slots 43 are provided along the axis thereof and corresponding to the through slots 43. That is, the rotating disk 42 can rotate in the vent cavity 40 when driven by an external force, and during the rotation, the through slots 43 can correspond to or not correspond to the vent slots 41. When the through slots 43 correspond to the vent slots 41, external gas can enter the eye mask base 1 through the vent slots 41, the through slots 43 and the vent slots 41, so that the heating layer 12 contacts the air and is heated.
[0053] However, if the through groove 43 is not connected to the ventilation groove 41, after the patient wears the eye mask base 1 on the eyes, the heating layer 12 cannot come into contact with the air, resulting in a poor heating effect. If the heating layer 12 is exposed to the air and reaches a certain temperature before being worn, the patient may not be able to directly adapt to the higher temperature.
[0054] Therefore, the cooperation between the through groove 43 and the ventilation groove 41 can achieve the effect of allowing the heating layer 12 to generate heat, and the heating effect increases from low to high so that the patient gradually adapts to the heating temperature, while also saving the patient's waiting time. After the temperature reaches the standard, the rotating disk 42 is driven to rotate so that the through groove 43 and the ventilation groove 41 no longer correspond to each other. At this time, the end face of the baffle 11 is completely blocked. Through the cooperation of the eye mask base 1 and the baffle 11, one eye of the patient can be blocked, which can avoid binocular vision double vision and is beneficial to the patient's daily life.
[0055] On both sides of the rotating disk 42 are provided with dividing bars 44 located between the two through grooves 43, and a rotating groove is opened on the dividing bar 44, and rotating bars 45 on the inner walls of the two sides of the air permeable cavity 40 rotate in the rotating groove, that is, the rotating disk 42 can synchronously drive the dividing bars 44 to rotate along its axis, and the rotating bars 45 can also rotate under contact with the inner wall of the air permeable cavity 40 while following the synchronous movement of the dividing bars 44, and the two rotating bars 45 can have a sealing effect, that is, when the through groove 43 no longer corresponds to the ventilation groove 41, in order to prevent air from passing through the gap between the rotating disk 42 and the air permeable cavity 40 and communicating with the inside of the eye mask base 1, the rotating bar 45 can block the through groove 43 on one side through the cooperation of the dividing bar 44 to prevent gas from entering or the temperature inside the eye mask base 1 from leaking, and the reason why the rotating bar 45 can rotate is to avoid hard friction between the dividing bar 44 and the air permeable cavity 40.
[0056] A rotating shaft 46 that rotates through the outside of the baffle 11 is also provided on one side of the rotating disk 42. A dial 47 is provided on the outside of the rotating shaft 46. The patient can rotate the rotating shaft 46 by hand, and the rotating shaft 46 can drive the rotating disk 42 to rotate. The dial 47 is used to seal the installation gap between the rotating shaft 46 and the baffle 11, and can also seal the side of several dividing strips 44 toward the axis of the rotating disk 42 to prevent gas from entering the air permeable cavity 40 through the gap between the rotating shaft 46 and the baffle 11.
[0057] Reference Figure 9 、 Figure 10 and Figure 11 As shown, a limiting component 5 is provided between the baffle 11 and the limiting rubber 31 for further limiting the baffle 11 and the rotating disk 42; specifically, the limiting component 5 includes a structural groove 50, a limiting groove 51, a limiting shaft 52, a contact groove 53, a rolling groove 54, a rolling wheel 55 and a storage groove 56, two structural grooves 50 symmetrically distributed up and down are opened on the outside of the limiting rubber 31, and two limiting grooves 51 corresponding to the structural grooves 50 are opened in the baffle 11, and a limiting shaft 52 slides in the limiting groove 51, and one side of the limiting shaft 52 is convex and contacts the inner wall of the corresponding structural groove 50.
[0058] That is, the structural groove 50 prevents one side of the limiting rubber 31 from contacting the baffle 11, while the other areas are still in contact with the outside of the baffle 11 and achieve a fixing effect. The limiting shaft 52 can move in the limiting groove 51 toward and away from the axis of the rotating disk 42. When the limiting shaft 52 moves toward the direction of the corresponding structural groove 50, its protruding end can contact the corresponding section of the limiting rubber 31, so that the corresponding section of the limiting rubber 31 is deformed and firmly stuck in the corresponding annular groove 30. That is, at this time, even if a thrust is applied to one side of the baffle 11, the baffle 11 cannot be removed from the accommodating groove 10. When it needs to be removed, the limiting shaft 52 no longer contacts the corresponding structural groove 50.
[0059] Several interference grooves 53 are provided on the outer diameter of the rotating disk 42, and the other end of the limiting shaft 52 is slidably passed into the air permeable cavity 40 and a rolling groove 54 is provided at the bottom. A rolling wheel 55 is rotatably provided in the rolling groove 54, and the rolling wheel 55 is in contact with the corresponding interference groove 53. The outer side of the rotating disk 42 is symmetrically provided with a receiving groove 56, and the two sides of the receiving groove 56 are connected to the outer side of the rotating disk 42 by a smoothly transitioned inclined surface.
[0060] That is, in the initial state, the two receiving grooves 56 correspond to the bottom of the limit shaft 52, and the limit shaft 52 does not interfere with the corresponding structural groove 50. After the baffle 11 is installed in the accommodating groove 10, the rotating disk 42 is driven to rotate by the rotating shaft 46, and the rolling wheel 55 at the bottom of the limit shaft 52 can be synchronously rotated along the extension section of the receiving groove 56, driving the limit shaft 52 to move toward the structural groove 50 along the extension surface of the receiving groove 56, and then interfere with the corresponding structural groove 50. Then, when the outer side of the rotating disk 42 contacts the roller, the rotating disk 42 continues to rotate, allowing the roller to enter the interference groove 53. At the same time, under the deformation interference of the corresponding limit rubber 31, the limit shaft 52 can drive the roller to be inserted into the interference groove 53 to engage and limit the rotating disk 42, thereby preventing the rotating disk 42 from rotating accidentally.
[0061] It should be noted that the baffle 11 is limited only by the cooperation between the limiting rubber 31 and the annular groove 30. Since there is a certain gap between the heating layer 12 on one side and the contact end 13, the contact end 13 cannot limit one side of the baffle 11 through the heating layer 12 and the storage assembly. Therefore, when the patient manipulates the rotating shaft 46 to rotate, a certain driving force may be generated on the rotating shaft 46, thereby causing the limiting rubber 31 on the outside of the baffle 11 to detach from the corresponding annular groove 30. Therefore, the limiting rubber 31 can be further limited by the limiting shaft 52, and the reverse driving force generated after the limiting rubber 31 is deformed can also indirectly clamp and limit the rotating shaft 46 through the limiting shaft 52, further improving the practicality of the limiting shaft 52.
[0062] The above embodiment 1 describes in detail the structure and principle of the eye mask for patients with extraocular muscle paralysis. In addition, the contact end 13 of the present invention is connected to the eye mask base 1 by a buckle, and the baffle 11 is connected to the receiving groove 10 by a sliding connection and fixed by the mounting assembly 3. This design allows the contact end 13 and the baffle 11 to be easily removed; after using it for a period of time, the user can conveniently disassemble it and deeply clean each component, effectively avoiding the impact of traditional Chinese medicine residues, dirt accumulation, etc. on the use effect and sanitary conditions, greatly improving the cleaning convenience and service life of the product.
[0063] Example 2: Reference Figure 12 、 Figure 13 and Figure 14 As shown, on the basis of embodiment 1, in order to be able to adjust the position of both sides of the elastic band 14, so that when the patient wears the eye mask base 1, the angle of the eye mask base 1 can be changed by adjusting the elastic band 14 while the wearing angle of the elastic band 14 remains unchanged, two adjustment components 6 are symmetrically provided on both sides of the eye mask base 1; specifically, the adjustment component 6 includes an arc groove 60, an arc block 61, a groove 62, an insertion plate 63, an installation groove 64, a fixing ring 65, a sliding rod 66, a limit frame 67 and a fixing nut 68, two arc grooves 60 are respectively provided on both sides of the eye mask base 1, and an arc block 61 is slid on the inner wall of the arc groove 60, a groove 62 is also provided on the inner wall of the arc groove 60, and two sides of the arc block 61 are also provided with inserts inserted into the corresponding grooves The plug-in plate 63 in 62, the arc block 61 can move in the arc groove 60 when driven by external force, and the arc block 61 can be limited and guided by the cooperation of the plug-in plate 63 and the groove 62 during movement to prevent the arc block 61 from leaving the corresponding arc groove 60. Since the plug-in plate 63 is made of rubber, the outer side of the plug-in plate 63 can fit with the inner wall of the groove 62 in the initial state, and the plug-in plate 63 limits the arc block 61 through the friction between the plug-in plate 63 and the inner wall of the groove 62. Therefore, the plug-in plate 63 can slide in the groove 62 only when the arc block 61 is driven by external force. When the arc block 61 is not driven by external force, the arc block 61 is limited by the friction between the plug-in plate 63 and the groove 62, and the arc block 61 will not slide in the arc groove 60.
[0064] The eye mask base 1 is also provided with a mounting groove 64 that is connected to the corresponding arc groove 60 and groove 62, that is, the arc block 61 and the insertion plate 63 can be slid to correspond to the mounting groove 64, and then the arc block 61 and the insertion plate 63 can be taken out from the mounting groove 64 for replacement. Similarly, the arc block 61 and the insertion plate 63 can be inserted from the mounting groove 64 into the arc groove 60 and the groove 62.
[0065] A fixing ring 65 is provided on one side of the arc block 61, and a sliding rod 66 is rotatably inserted in the fixing ring 65. A limit frame 67 is provided on the upper end of the sliding rod 66, and the two sides of the elastic band 14 are respectively arranged in the corresponding limit frames 67 in a detachable manner. Furthermore, a fixing nut 68 is threadedly connected to the bottom of the sliding rod 66. The arc block 61 supports the sliding ring rod through the fixing ring 65, and the sliding rod 66 can move in the fixing ring 65, and the fixing nut 68 can limit the bottom of the sliding rod 66 to prevent the sliding rod 66 from detaching from the corresponding fixing ring 65. When in use, by adjusting the distance between the fixing nut 68 and the fixing ring 65, the length of the sliding rod 66 can be limited, and the lateral support point of the elastic band 14 can be adjusted.
[0066] During use, the two sides of the elastic band 14 are respectively installed in the corresponding limit frames 67, and then the elastic band 14 and the eye mask base 1 are worn on the head. The sliding rod 66 can also rotate in the fixing ring 65 so that the end of the elastic band 14 is hinged to the eye mask base 1 through the limit frame 67 and the sliding rod 66, and can be adaptively rotated so that the eye mask base 1 fits on the eye socket. According to the patient's wearing angle requirement, the position of the adjustable arc block 61 in the arc groove 60 can be moved, so that the patient can adjust the wearing angle of the eye mask base 1 or the elastic band 14 respectively without changing the angle of the elastic band 14 or the wearing angle of the eye mask base 1, thereby further increasing the applicability of the present application.
[0067] During operation: First, add the Chinese medicine powder to the eye socket area 21, the temple area 22 and the lower eye socket area 23 of the Chinese medicine bag 20 through the arc frame 24, and then insert the sealing rubber 25 to seal it.
[0068] In the second step, the heating layer 12 is attached to the side of the Chinese medicine bag 20 facing the human eyes by adhesive, and then a sealing sticker is affixed.
[0069] In the third step, the baffle 11 is inserted into the receiving groove 10 from the open end of the eye mask base 1 so that the limiting rubber 31 is locked into the annular groove 30.
[0070] In the fourth step, the dial 47 is rotated to drive the rotating disk 42 so that the through slot 43 corresponds to the vent slot 41 and the vent assembly 4 is opened.
[0071] In the fifth step, both ends of the elastic band 14 are installed in the limiting frame 67 , and the length of the sliding rod 66 and the position of the arc block 61 in the arc groove 60 are adjusted as needed.
[0072] In the sixth step, the sealing sticker is removed, and the contact end 13 is mounted on the opening of the eye mask base 1 via a buckle. The eye mask is then worn and secured to the head via the elastic band 14. Through the above process, the heated medicinal vapor of traditional Chinese medicine can be effectively utilized for eye care, while the usage method can be flexibly adjusted to enhance comfort and therapeutic effect.
[0073] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as exemplary and non-restrictive.
[0074] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. An eye mask for patients with extraocular muscle paralysis, comprising an eye mask base (1) with an L-shaped cross-section, characterized in that: One side of the eye mask base (1) is in an arc-shaped opening, and a receiving groove (10) is provided on the eye mask base (1), the receiving groove (10) passes through both sides of the eye mask base (1), a baffle (11) is installed in the receiving groove (10), and a receiving component (2) for receiving Chinese medicine is installed on one side of the baffle (11), a heating layer (12) is adhered to one side of the receiving component (2) by adhesive, and a sealing sticker is attached to one side of the heating layer (12) by adhesive, and a contact end (13) is installed at the opening of the eye mask base (1) by a buckle, and the end face of the contact end (13) is in an arc shape; The baffle (11) is also provided with a ventilation component (4) for allowing the heating layer (12) to fully contact with air; Elastic bands (14) are installed on both sides of the eye mask base (1).
2. The eye mask for patients with extraocular muscle paralysis according to claim 1, characterized in that: The containing component (2) includes a Chinese medicine bag (20) attached to one side of the baffle (11) by adhesive, and the inside of the Chinese medicine bag (20) is divided into an eye socket area (21), a temple area (22) and a lower eye socket area (23) by means of sutures, wherein the three areas are all used for filling Chinese medicine powder.
3. The eye mask for patients with extraocular muscle paralysis according to claim 2, characterized in that: The outer side of the Chinese medicine bag (20) is provided with a plurality of medicine bag openings, and the medicine bag openings are respectively connected to the eye socket area (21), the temple area (22) and the lower eye socket area (23); An arc frame (24) is provided on the opening of the medicine bag, a sealing rubber (25) is inserted into the opening of the arc frame (24), and a plurality of friction patterns matching the sealing rubber (25) are provided in the opening of the arc frame (24).
4. The eye mask for patients with extraocular muscle paralysis according to claim 1, characterized in that: The baffle (11) is slidably connected to the receiving groove (10), and a mounting assembly (3) is provided between the receiving groove (10) and the baffle (11). The mounting assembly (3) includes an annular groove (30) with an annular cross-section formed on the inner diameter of the receiving groove (10), and the opening of the annular groove (30) is away from the external end surface of the eye mask base (1). A limiting rubber (31) is provided on the outside of the baffle (11) and is located in the annular groove (30).
5. The eye mask for patients with extraocular muscle paralysis according to claim 4, characterized in that: The limiting rubber (31) is made of elastic material.
6. The eye mask for patients with extraocular muscle paralysis according to claim 4, characterized in that: The ventilation assembly (4) includes a ventilation cavity (40) provided in the baffle (11), and ventilation grooves (41) are provided on the inner walls on both sides of the ventilation cavity (40) and are respectively connected to the two sides of the baffle (11), and a rotating disk (42) rotates in the ventilation groove (41), and the rotating disk (42) is provided with a plurality of through grooves (43) distributed along its axis and corresponding to the through grooves (43).
7. The eye mask for patients with extraocular muscle paralysis according to claim 6, characterized in that: A dividing bar (44) is provided on both sides of the rotating disk (42) and is located between the two through grooves (43). A rotating groove is provided on the dividing bar (44), and rotating bars (45) on the inner walls of both sides of the air permeable cavity (40) rotate in the rotating groove. A rotating shaft (46) that rotates and penetrates the outside of the baffle (11) is further provided on one side of the rotating disk (42), and a dial (47) is sleeved on the outside of the rotating shaft (46).
8. The eye mask for patients with extraocular muscle paralysis according to claim 6, characterized in that: A limiting assembly (5) for further limiting the baffle (11) and the rotating disk (42) is provided between the baffle (11) and the limiting rubber (31). The limiting assembly (5) includes two structural grooves (50) symmetrically provided on the limiting rubber (31) in an upper and lower direction. Two limiting grooves (51) corresponding to the structural grooves (50) are provided in the baffle (11). A limiting shaft (52) slides in the limiting groove (51), and one side of the limiting shaft (52) is convex and contacts the inner wall of the corresponding structural groove (50).
9. The eye mask for patients with extraocular muscle paralysis according to claim 8, characterized in that: A plurality of conflict grooves (53) are provided on the outer diameter of the rotating disk (42), and the other end of the limiting shaft (52) is slidably inserted into the air-permeable cavity (40) and provided with a rolling groove (54) at the bottom. A rolling wheel (55) is rotatably provided in the rolling groove (54), and the rolling wheel (55) contacts the corresponding conflict groove (53).
10. The eye mask for patients with extraocular muscle paralysis according to claim 9, characterized in that: The outer side of the rotating disk (42) is symmetrically provided with a receiving groove (56), and both sides of the receiving groove (56) are connected to the outer side of the rotating disk (42) by a smoothly transitioned inclined surface.
Citation Information
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