Rhinitis adjuvant therapy device
By designing an auxiliary treatment device for rhinitis that integrates air treatment and multiple functions, the problems of portability and limited functionality have been solved. This device achieves air purification and uniform drug distribution, improving user comfort and treatment effectiveness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2026-03-31
AI Technical Summary
Existing rhinitis auxiliary treatment devices lack portability and have limited functionality. They are also unable to effectively purify the surrounding air quality and affect treatment effectiveness when used in dry environments.
A rhinitis adjunctive treatment device was designed, comprising a head-mounted structure, an air processor, a control component, a filter, and a fan assembly. It features air purification and promotes air circulation through the fan assembly. Combined with a curved mask plate, it ensures uniform drug distribution. It is equipped with an external interface for connecting to a nebulizer, achieving multifunctional integration.
It provides a healthy breathing environment, improves portability and therapeutic efficacy, ensures uniform drug distribution, reduces waste, enhances user comfort, and allows for multi-functional use, making it suitable for use in any scenario.
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Figure CN224056397U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of auxiliary breathing therapy equipment for rhinitis, and in particular to an auxiliary treatment device for rhinitis. Background Technology
[0002] With changes in the modern living environment and declining air quality, the incidence of respiratory diseases such as rhinitis is increasing year by year. To alleviate rhinitis symptoms and improve patients' quality of life, various rhinitis treatment devices have emerged. Among them, rhinitis adjunctive treatment devices, as a common treatment tool, convert medication into tiny particles that act directly on the nasal mucosa, thereby achieving rapid absorption and reducing inflammation.
[0003] However, existing rhinitis adjunctive therapy devices have certain limitations in design and function. First, most products lack portability, are bulky, and require a fixed power supply, making them difficult for patients to carry when out or traveling, thus limiting their application scenarios. Second, traditional rhinitis adjunctive therapy devices have relatively limited functions, usually limited to drug nebulization therapy, failing to meet users' needs for comprehensive care. For example, they lack air processing capabilities, failing to effectively purify pollutants in the surrounding environment; simultaneously, they lack humidification functions, which may affect treatment effectiveness or even worsen nasal discomfort in dry seasons or environments due to excessively dry air. Utility Model Content
[0004] The technical problem to be solved by this utility model is that existing rhinitis auxiliary treatment devices lack portability and have relatively limited functions.
[0005] To address the aforementioned technical problems, this utility model provides an auxiliary treatment device for rhinitis, comprising a headband structure, an air processor, a control component, a filter, a fan assembly, and a curved mask panel. The air processor, control component, filter, and fan assembly are installed within the headband structure. The headband structure has an internal first flow channel, an air inlet communicating with the first flow channel, and an external interface for connecting an atomizing component. The mask panel has an internal second flow channel and an air outlet communicating with the second flow channel. Both ends of the mask panel are connected to the headband structure, and the first flow channel communicates with the second flow channel. The air processor is located between the first flow channel and the air inlet, and is connected to the external interface. The fan assembly is disposed in the first flow channel, and the filter is disposed between the air processor and the fan assembly. The control component is electrically connected to the air processor and the fan assembly.
[0006] Furthermore, the headband structure includes a headband and ear loops. The headband includes an arc-shaped headband and two connecting handles. The two connecting handles are located on both sides of the headband, and the two ear loops are respectively connected to the headband through the corresponding connecting handles. The two ends of the mask plate are respectively connected to the corresponding ear loops, and the external interface is provided on the headband.
[0007] Furthermore, the first flow channel includes a first sub-flow channel, a second sub-flow channel, and a third sub-flow channel connected in sequence. The first sub-flow channel is located inside the headband, the second sub-flow channel is located inside a connecting handle, and the third sub-flow channel is located inside the corresponding earpiece. The end of the third sub-flow channel away from the second sub-flow channel is connected to the second flow channel.
[0008] Furthermore, it also includes a battery. The control assembly includes a first control unit and a second control unit. The fan assembly includes a first fan and a second fan. The first fan is located at the connection between the headband and the connecting handle. The second fan is located at the connection between the connecting handle and the earpiece. The first control unit is located inside the headband. The first control unit is electrically connected to the first fan and the air processor. The second control unit and the battery are located inside the earpiece, and the second control unit is electrically connected to the second fan and the battery, respectively.
[0009] Furthermore, the earpiece includes an earpiece base and a flexible pad, the flexible pad being mounted on the earpiece base, and the earpiece base being connected to the connecting handle and the mask plate respectively.
[0010] Furthermore, the surface of the flexible pad is coated with an antibacterial coating, and the surface of the flexible pad has multiple pressure-relieving holes.
[0011] Furthermore, the connecting handle includes a handle body and a silicone hose, with the silicone hose disposed within the handle body.
[0012] Furthermore, the headband surface is coated with an antibacterial coating.
[0013] Furthermore, the headband is provided with a removable cover plate at the corresponding position of the filter element.
[0014] Furthermore, the headband structure and the mask panel are connected by magnetic attraction.
[0015] Compared with the prior art, the beneficial effects of this utility model embodiment of the rhinitis auxiliary treatment device are as follows:
[0016] This invention utilizes an air processor to purify inhaled air, removing harmful particles and other pollutants. Combined with a filter, it purifies the air after it has passed through the air processor, solving the problem of traditional nebulizers' inability to handle ambient air quality. This provides users with a healthier breathing environment. A fan assembly promotes airflow, pushing the treated air from the first and second flow channels into the mask plate, and then releasing it into the nasal cavity through the outlet. This ensures stable and fluid airflow, facilitating even distribution and rapid absorption of the medication. Simultaneously, the curved mask plate conforms to the facial contours, especially around the nose, creating a relatively sealed space. This allows the atomized medication to concentrate its effect on the nasal cavity, improving drug delivery efficiency, reducing waste, and enhancing user comfort. Furthermore, the headband structure of this embodiment provides a comfortable and stable wearing method, ensuring that the device will not easily move during use, thereby guaranteeing the treatment effect. It also improves portability, allowing users to easily carry and use it anywhere without holding it, freeing up their hands. It is also equipped with an external connector, allowing external nebulizers (such as nebulized medications for treating rhinitis, air humidifiers, etc.) to be connected to the system to convert liquid medications into tiny particles, achieving multi-functional integration, that is, in addition to air purification, it can also perform drug nebulization therapy. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of the rhinitis auxiliary treatment device provided in this embodiment of the utility model;
[0018] Figure 2 This is a schematic diagram of the head-mounted structure provided in an embodiment of the present invention;
[0019] Figure 3 This is provided along with the embodiments of the present utility model. Figure 2 A cross-sectional view along the AA direction;
[0020] In the diagram, 1. Headband structure; 11. First flow channel; 111. First sub-flow channel; 112. Second sub-flow channel; 113. Third sub-flow channel; 12. Air inlet; 13. Headband; 131. Headband; 1311. Cover plate; 132. Connecting handle; 1321. Handle body; 1322. Silicone hose; 14. Ear loop; 141. Ear loop seat; 142. Flexible pad; 2. Air processor; 3. Control assembly; 31. First control unit; 32. Second control unit; 4. Filter; 5. Fan assembly; 51. First fan; 52. Second fan; 6. Mask plate; 61. Second flow channel; 62. Air outlet. Detailed Implementation
[0021] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.
[0022] like Figures 1 to 3 As shown, this utility model provides an auxiliary treatment device for rhinitis, including a headband structure 1, an air processor 2, a control component 3, a filter 4, a fan assembly 5, and a curved mask plate 6. The air processor 2, control component 3, filter 4, and fan assembly 5 are installed inside the headband structure 1. The headband structure 1 has a first flow channel 11 located inside, an air inlet 12 communicating with the first flow channel 11, and an external interface for connecting an atomizing component. The mask plate 6 has a second flow channel 61 located inside and an air outlet 62 communicating with the second flow channel 61. Both ends of the mask plate 6 are connected to the headband structure 1, and the first flow channel 11 and the second flow channel 61 are connected. The air processor 2 is located between the first flow channel 11 and the air inlet 12, and the air processor 2 is connected to the external interface. The fan assembly 5 is disposed in the first flow channel 11, the filter 4 is disposed between the air processor 2 and the fan assembly 5, and the control component 3 is electrically connected to the air processor 2 and the fan assembly 5.
[0023] Based on the above structure, this embodiment utilizes the air processor 2 to purify the inhaled air, removing harmful particulate matter and other pollutants. Combined with the filter 4, it purifies the air after passing through the air processor 2, solving the problem that traditional nebulizers cannot handle ambient air quality. This provides users with a healthier breathing environment. The fan assembly 5 promotes airflow, helping to push the treated air from the first flow channel 11 and the second flow channel 61 into the mask plate 6, and then releasing it into the nasal cavity through the air outlet 62. This ensures the stability and fluidity of the airflow, contributing to the even distribution and rapid absorption of the medication. Simultaneously, the curved mask plate 6 conforms to the facial contours, especially the area around the nose, to form a relatively sealed space, allowing the atomized medication to concentrate its effect on the nasal cavity, improving drug delivery efficiency, reducing drug waste, and enhancing user comfort. Furthermore, the headband structure 1 of this embodiment provides a comfortable and stable wearing method, ensuring that the device will not move easily during use, thereby guaranteeing the treatment effect. It also improves portability, allowing users to easily carry and use it anywhere without holding it, freeing up their hands. It is also equipped with an external connector, allowing external nebulizing devices (such as nebulized medications for treating rhinitis, air humidifiers, etc.) to be connected to the system to convert liquid medications into tiny particles, achieving multi-functional integration, that is, in addition to air purification, it can also perform drug nebulization therapy.
[0024] Furthermore, the headband structure 1 includes a headband 13 and ear loops 14. The headband 13 includes an arc-shaped headband 131 and two connecting handles 132. The two connecting handles 132 are located on both sides of the headband 131, and the two ear loops 14 are respectively connected to the headband 131 through the corresponding connecting handles 132. The two ends of the mask plate 6 are respectively connected to the corresponding ear loops 14, and the external interface is provided on the headband 131.
[0025] In this embodiment, the headband 131 is designed in an arc shape to conform to the user's head curve, providing a comfortable wearing experience and ensuring that the entire device is securely fixed on the user's head. This helps to distribute pressure and avoid excessive local pressure that could cause discomfort, while also ensuring comfort during prolonged wear. The ear loops 14 are connected to the connecting handles 132 and extend to both ends of the mask plate 6, thereby fixing the mask plate 6 in the appropriate position. This allows the mask plate 6 to fit closely to the facial contours, especially the area around the nose, ensuring that medication or purified air can be effectively delivered into the nasal cavity. Furthermore, the ear loops 14 can also help distribute some of the weight, reducing pressure on the top of the head.
[0026] Furthermore, the first flow channel 11 includes a first sub-flow channel 111, a second sub-flow channel 112, and a third sub-flow channel 113 connected in sequence. The first sub-flow channel 111 is located inside the headband 131 and serves as the starting point for airflow. The first sub-flow channel 111 is responsible for receiving the air purified by the air processor 2 and guiding it to the subsequent flow channel. The second sub-flow channel 112 is located inside a connecting handle 132 and serves as a transition, smoothly transferring the airflow from the headband 131 to the earpiece 14. Since the connecting handle 132 is the component connecting the headband 131 and the ear loop 14, the second sub-channel 112 ensures the continuity and stability of the airflow path. The third sub-channel 113 is located in the corresponding ear loop 14. The end of the third sub-channel 113 away from the second sub-channel 112 is connected to the second channel 61. The third sub-channel 113 directly guides the treated air to the second channel 61, and then delivers it to the user's nasal cavity through the air outlet 62 of the mask plate 6. The above structure ensures that the airflow can be smoothly transmitted from the headband 131 to the mask plate 6, forming a complete airflow path. This not only maintains the continuity of the airflow, but also makes the operation of each sub-channel more coordinated and consistent, improves treatment efficiency, reduces airflow loss, and ensures that the drug can be effectively utilized.
[0027] Furthermore, the fan assembly 5 includes a first fan 51 and a second fan 52. The first fan 51 is located at the connection between the headband 131 and the connecting handle 132. As the first driving force for airflow, the first fan 51 is responsible for pushing the air purified by the air processor 2 from the first sub-flow channel 111 in the headband 131 to the second sub-flow channel 112 in the connecting handle 132. The second fan 52 is located at the connection between the connecting handle 132 and the ear loop 14. After the airflow passes through the second sub-flow channel 112, the second fan 52 accelerates the airflow again and pushes it to the third sub-flow channel 113, and finally reaches the inside of the mask plate 6.
[0028] This embodiment utilizes a dual-fan structure to ensure efficient airflow throughout the system, reducing airflow loss and turbulence, thereby improving overall performance. Furthermore, the fans promote air circulation, allowing the air processor 2 and filter 4 to work more effectively, thus enhancing air purification efficiency.
[0029] Furthermore, the control component 3 includes a first control unit 31 and a second control unit 32. The first control unit 31 is located inside the headband 131 and is electrically connected to the first fan 51 and the air processor 2. The second control unit 32 is located inside the earpiece 14 and is electrically connected to the second fan 52.
[0030] In this embodiment, the first control unit 31 manages the operating status of the air processor 2, including starting, stopping, and adjusting the purification intensity. It also controls the rotation speed of the first fan 51 to ensure that the treated air is pushed to the subsequent flow path at an appropriate speed. The second control unit 32 is mainly responsible for adjusting the operation of the second fan 52 to ensure that the airflow reaches the air outlet 62 inside the mask plate 6 at the optimal speed and direction, thereby improving the accuracy and effectiveness of drug delivery. Based on the above structure, each control unit manages the function of a specific area, improving the system's response speed and efficiency. Simultaneously, users can adjust the operating parameters of each part according to different needs to achieve personalized treatment plans.
[0031] Furthermore, it also includes a battery located within the earpiece 14 and connected to the control component 3, providing necessary power to all electronic components, including the air processor 2, fan assembly 5, and control component 3. This embodiment, with its built-in battery, allows users to operate the device without an external power source, greatly enhancing its portability and versatility. Moreover, placing the battery within the earpiece 14 not only makes full use of space but also avoids the added burden of the headband 131 or mask panel 6, maintaining the overall lightweight and compact structure. This makes the device more ergonomic and comfortable to wear, without compromising aesthetics or comfort due to the presence of the battery.
[0032] Furthermore, the earpiece 14 includes an earpiece base 141 and a flexible pad 142. The flexible pad 142 is mounted on the earpiece base 141, which is connected to the connecting handle 132 to form a complete headband structure 1, ensuring that the entire device can be securely fixed to the user's head. The other end of the earpiece base 141 is connected to the mask plate 6, fixing the mask plate 6 in the appropriate position to ensure a close fit to the facial contours, especially the area around the nose. In this embodiment, the earpiece base 141 provides the necessary physical support, preventing the entire device from easily sliding or shifting, thus ensuring stability during treatment. The flexible pad 142 is made of a soft and elastic material, which can apply uniform pressure to the ear, reducing local pressure and improving comfort during long-term wear. Because the flexible pad 142 has a certain degree of elasticity, it can adapt to different users' ear shapes, providing a personalized fit and avoiding discomfort caused by improper size.
[0033] Furthermore, the surface of the flexible pad 142 is coated with an antibacterial coating, which can effectively inhibit the growth of bacteria, fungi and other microorganisms on the surface of the flexible pad 142, reducing the risk of cross-infection caused by long-term use or sharing by multiple people. The surface of the flexible pad 142 has multiple pressure relief holes, which makes the pressure on the ear more evenly distributed, avoids local pressure, improves the comfort of wearing for a long time, and reduces the discomfort or pain that users may feel during long-term wear by relieving the continuous pressure applied to the ear, making it particularly suitable for scenarios that require continuous use.
[0034] Furthermore, the connecting handle 132 includes a handle body 1321 and a silicone hose 1322. The silicone hose 1322 is disposed inside the handle body 1321 to form part of the airflow channel.
[0035] The handle 1321 of this embodiment provides a physical connection, firmly connecting the headband 131 and the ear loop 14 together, ensuring that the device will not easily loosen or shift during use. The silicone hose 1322 has good flexibility, allowing for a certain degree of bending and deformation while maintaining its shape, adapting to different head movements of the user without affecting the transmission of airflow.
[0036] Furthermore, the headband 131 is coated with an antibacterial coating, which can effectively inhibit the growth of bacteria, fungi and other microorganisms on the surface of the headband 131, reducing the risk of cross-infection caused by long-term use or sharing by multiple people.
[0037] Furthermore, the headband 131 is provided with a detachable cover plate 1311 at the corresponding position of the filter element 4. In this embodiment, by providing a detachable cover plate 1311, the filter element 4 can be replaced, and the accumulation of dust can be avoided from affecting the air intake of the filter element 4.
[0038] Furthermore, the headband structure 1 and the mask panel 6 are connected by magnetic attraction, which facilitates the detachable installation of the headband structure 1 and the mask panel 6, making it easy to replace, repair or carry.
[0039] In summary, this utility model provides an auxiliary treatment device for rhinitis, which solves the problem that traditional nebulizers cannot handle the surrounding air quality, providing users with a healthier breathing environment. It also ensures that the device does not easily move during use, thus guaranteeing the treatment effect. Furthermore, it improves portability, allowing users to easily carry and use it anywhere without holding it, freeing their hands. It is also equipped with an external connector, allowing external nebulizing devices (such as nebulized medications for rhinitis, air humidifiers, etc.) to be connected to the system to convert liquid medications into tiny particles. This achieves multi-functional integration, meaning that in addition to air purification, it can also perform drug nebulization therapy.
[0040] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.
Claims
1. A rhinitis adjunctive therapy device, characterized in that, The head-mounted structure, air processor, control assembly, filter, fan assembly and mask plate with curvature are provided, the air processor, control assembly, filter and fan assembly are installed in the head-mounted structure, the head-mounted structure has a first flow channel inside, an air inlet communicating with the first flow channel and an external interface for connecting an atomizing element, the mask plate has a second flow channel inside and an air outlet communicating with the second flow channel, two ends of the mask plate are connected with the head-mounted structure, the first flow channel communicates with the second flow channel, the air processor is located between the first flow channel and the air inlet, the air processor is connected with the external interface, the fan assembly is arranged in the first flow channel, the filter is arranged between the air processor and the fan assembly, and the control assembly is electrically connected with the air processor and fan assembly.
2. The rhinitis adjunctive therapy device according to claim 1, wherein, The head-mounted structure includes a headband part and ear-mounted parts, the headband part includes a headband in an arc shape and two connecting handles, the two connecting handles are located at two sides of the headband, and the two ear-mounted parts are connected with the headband through the corresponding connecting handles respectively, two ends of the mask plate are connected with the corresponding ear-mounted parts respectively, and the external interface is arranged on the headband.
3. The rhinitis adjunctive therapy device according to claim 2, wherein, The first flow channel includes a first sub-flow channel, a second sub-flow channel and a third sub-flow channel which communicate with each other in sequence, the first sub-flow channel is located in the headband, the second sub-flow channel is located in one of the connecting handles, and the third sub-flow channel is located in the corresponding ear-mounted part, and one end of the third sub-flow channel away from the second sub-flow channel communicates with the second flow channel.
4. The rhinitis adjunct therapy device according to claim 2 or 3, characterized in that A battery is further provided, the control assembly includes a first control unit and a second control unit, the fan assembly includes a first fan and a second fan, the first fan is located at the connection between the headband and the connecting handle, the second fan is located at the connection between the connecting handle and the ear-mounted part, the first control unit is located in the headband, the first control unit is electrically connected with the first fan and the air processor, the second control unit is located in the ear-mounted part together with the battery, and the second control unit is electrically connected with the second fan and the battery respectively.
5. The rhinitis adjunctive therapy device according to claim 2, wherein, The ear-mounted part includes an ear-mounted seat and a flexible pad, the flexible pad is mounted on the ear-mounted seat, and the ear-mounted seat is connected with the connecting handle and the mask plate respectively.
6. The rhinitis adjunct therapy device according to claim 5, wherein, The surface of the flexible pad is coated with an antibacterial coating, and the surface of the flexible pad has a plurality of pressure release holes.
7. The rhinitis adjunctive therapy device according to claim 2, wherein, The connecting handle includes a handle body and a silica gel hose, and the silica gel hose is arranged in the handle body.
8. The rhinitis adjunctive therapy device according to claim 2, wherein, The surface of the headband is coated with an antibacterial coating.
9. The rhinitis adjunctive therapy device according to claim 2, wherein, The headband is provided with a detachable cover plate at a corresponding position of the filter.
10. The rhinitis adjunctive therapy device according to claim 2, wherein, The head-mounted structure and the mask plate are connected through magnetic attraction.