Intelligent nose physiotherapy device

By designing an external intelligent nasal therapy device with integrated heating and lighting functions, combined with biomagnetic powder magnetic field and AI control, the safety and user experience issues of existing nasal therapy devices are solved, and personalized nasal health management is achieved.

CN120605156APending Publication Date: 2025-09-09深圳呈乾科技有限公司
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Patent Information

Application Number
CN202510800463.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

The existing insertion-type design of nasal therapy devices has safety risks, strong foreign body sensation, poor user experience and low intelligence.

Method used

An external intelligent nasal therapy device is designed. It adopts a nasal mask structure and integrates a heating module, a light-emitting module, a control module and a biomagnetic powder magnetic field. It is fixed to the head via an elastic strap and supports voice interaction and Bluetooth connection to achieve personalized therapy plans and automatic adjustment.

Benefits of technology

It improves user experience, avoids the risk of nasal damage, enhances comfort, provides personalized nasal physiotherapy plans, coordinates the human body's physiological state, and improves the effect of nasal health maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

An intelligent nose physiotherapy device disclosed by the present invention comprises a nose mask, the nose mask is equipped with a heating module, a light-emitting module and a control module, the control module is electrically connected with the heating module to control the heating temperature and the heating time of the heating module, and the control module is electrically connected with the light-emitting module to control the flicker frequency and the light-emitting intensity of the light-emitting module. Compared with an existing plug-in nose physical therapy device in the market, the technical scheme is of an external wearing type, foreign body sensation and conflict emotion cannot be generated, the use experience of a user can be greatly improved, the heating range of the micro graphene heating piece covers the nose area of the human body, and after the micro graphene heating piece is heated, the nose area of the human body is not affected. A plurality of LED lamp beads are distributed on the two sides of the soft liner to enable the luminous range of the LED lamp beads to cover the nose wing area, the flicker frequency of the LED lamp beads is combined with the midnight-noon ebb-flow theory, and different light frequencies are set according to different organs of the human body corresponding to different hours.
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Description

Technical Field

[0001] The present invention relates to the technical field of nasal therapy devices, and in particular to an intelligent nasal therapy device. Background Art

[0002] In people's daily lives, nasal health issues are receiving more and more attention. With the intensification of environmental pollution, the accelerated pace of life and the improvement of people's health awareness, the demand for effective nasal physical therapy to prevent and improve nasal diseases and maintain nasal health is growing. As a non-drug intervention, nasal physical therapy plays an important role in relieving nasal congestion, reducing nasal inflammation, and promoting nasal mucosal repair. At present, most nasal physical therapy devices on the market are designed to be inserted into the nasal cavity. Such devices usually require users to insert the front part of the device deep into the nasal passage to achieve the purpose of directly acting on the internal tissues of the nasal cavity. However, this design has many significant defects in actual application;

[0003] From a safety perspective, the internal structure of the nasal cavity is complex and fragile, and the nasal mucosa is rich in blood vessels and nerve endings. When inserting the physiotherapy device into the nasal cavity, it is difficult to operate with absolute precision and gentleness, and it is easy for it to collide and rub against the sensitive tissues inside the nasal cavity, thereby damaging the nasal mucosa. Once the nasal mucosa is damaged, it is very likely to cause nasal bleeding, causing physical pain and unnecessary health risks to the user. This is especially true for people with more sensitive nasal cavities, such as children, the elderly, and patients with nasal diseases. The risk of nasal damage caused by improper operation is even higher;

[0004] From the perspective of user experience, insertable nasal therapy devices will give users a noticeable foreign body sensation and discomfort. The nasal cavity is a relatively sensitive part of the human body. When a foreign object enters, the human body's natural reaction will produce resistance. This foreign body sensation will not only affect the user's comfort, but may also make it difficult for the user to persist in using the therapy device for a long time, thereby reducing the therapy effect. In addition, wearing an insertable device for a long time may also interfere with the normal breathing rhythm, further aggravating the user's discomfort and limiting its use in daily life and work. Moreover, the existing nasal therapy devices are less intelligent and cannot be remotely controlled. Summary of the Invention

[0005] In order to overcome the deficiencies of the existing technical solutions, the present invention provides an intelligent nasal physiotherapy device that can effectively solve the technical problems raised by the background technology.

[0006] The technical solution adopted by the present invention to solve its technical problems is: an intelligent nasal physiotherapy device, including a nasal mask, which is a mask structure that fits the contour of the human nose. The nasal mask is integrally formed using biomagnetic powder through an injection molding process. The molded nasal mask has a magnetic field generated by the biomagnetic powder. A soft pad that contacts the nose skin is provided on the inner side of the nasal mask. The nasal mask is equipped with a heating module, a light-emitting module and a control module. The control module integrates a human-computer interaction module, an AI intelligent control module and a Bluetooth communication module. The control module is electrically connected to the heating module to control the heating temperature and heating time of the heating module. The control module is electrically connected to the light-emitting module to control the flashing frequency and light intensity of the light-emitting module.

[0007] Furthermore, the nose mask is equipped with at least one elastic strap, and the nose mask is fixed to the human head through the elastic strap.

[0008] Furthermore, the outer side of the nose mask is equipped with at least one shaping strip, which is used to adapt to the contour of the nose to ensure the fit between the nose mask and the nose.

[0009] Furthermore, the soft pad is connected to the nasal mask magnetic buckle, and the middle part of the soft pad is recessed inward to form a cavity for placing medicine, and a microporous breathable membrane is provided at the bottom of the cavity.

[0010] Furthermore, the heating module includes a micro graphene heating sheet, and a mounting shell for mounting the micro graphene heating sheet is provided in the middle of the nose mask, so that the heating range of the micro graphene heating sheet covers the nose area of ​​the human body.

[0011] Furthermore, the light emitting module includes a plurality of LED lamp beads, and the plurality of LED lamp beads are distributed on both sides of the soft pad, so that the light emitting range of the LED lamp beads covers the nose area.

[0012] Furthermore, a shielding layer is provided on the inner side of the nose mask, and the shielding layer is used to reflect the light of the light emitting module.

[0013] Furthermore, the outside of the installation shell is equipped with buttons and a touch display screen, the inside of the installation shell is equipped with a microphone and a speaker, and the human-computer interaction module is integrated with a voice command recognition module. The microphone is used to collect the user's voice commands. The voice command recognition module recognizes the voice commands collected by the microphone and converts them into electrical signals and transmits them to the human-computer interaction module. The user inputs the desired heating temperature, heating time, LED lamp bead flashing frequency and LED lamp bead luminous intensity through three methods: buttons, touch display screen or voice. The human-computer interaction module transmits the input instructions and information to the control module, and the control module controls the heating module and the light-emitting module according to the instructions.

[0014] Furthermore, the AI ​​intelligent control module is trained based on a large amount of screened and labeled data, generates optimized working parameters based on the data uploaded by the user, and passes these parameters to the control module. The control module automatically adjusts the heating module and the light-emitting module based on the received parameters.

[0015] Furthermore, the Bluetooth communication module is used to establish a wireless connection with an external mobile terminal and realize two-way transmission of data through a mobile application, and the user can set parameters on the mobile application.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. The nasal mask is a mask structure that fits the contour of the human nose. The nasal mask is equipped with at least one elastic strap, which fixes the nasal mask to the human head. Compared with the existing plug-in nasal therapy devices on the market, this technical solution is externally worn, which does not produce a foreign body sensation or cause resistance, and can greatly improve the user experience;

[0018] 2. By assembling a heating module on the nasal mask, the heating range of the micro-graphene heating sheet covers the human nose area. The micro-graphene heating sheet uses the excellent electrothermal conversion characteristics of graphene to quickly convert electrical energy into thermal energy. When the micro-graphene heating sheet heats up, the heat is transferred to the nasal tissue, causing the nasal blood vessels to expand due to the heat. When the blood flow is accelerated, it can bring more oxygen and nutrients to the nasal tissue, promoting the metabolism of nasal cells;

[0019] 3. By assembling a light-emitting module on the nose mask, multiple LED lamp beads are distributed on both sides of the soft pad, so that the light-emitting range of the LED lamp beads covers the nose area. The flashing frequency of the LED lamp beads is combined with the meridian flow theory. Different light frequencies are set according to different organs of the human body corresponding to different times. Therefore, the flashing frequency of the LED lamp beads will be adjusted with the change of time to adapt to the physiological state of the human body in different time periods, which can better coordinate the functions of various systems of the human body and maintain the body's balance.

[0020] 4. The control module is electrically connected to the heating module to control the heating temperature and heating time of the heating module. The control module is electrically connected to the light-emitting module to control the flashing frequency and luminous intensity of the light-emitting module. The control module is integrated with a human-computer interaction module. The human-computer interaction module is integrated with a voice command recognition module. The microphone is used to collect the user's voice commands. The voice command recognition module recognizes the voice commands collected by the microphone and converts them into electrical signals for transmission to the human-computer interaction module. The user can input the desired heating temperature, heating time, LED lamp bead flashing frequency and LED lamp bead luminous intensity and other parameters through three methods: buttons, touch display or voice. The human-computer interaction module transmits the instructions and information input by the user to the control module. The control module controls the heating module and the light-emitting module accordingly according to these instructions. At the same time, the control module feeds back the real-time working status information of the nasal physiotherapy device to the human-computer interaction module. The human-computer interaction module displays the real-time working status to the user through the touch display or speaker, thereby realizing real-time interaction between the user and the nasal physiotherapy device.

[0021] The control module integrates a Bluetooth communication module and an AI intelligent control module. The Bluetooth communication module is used to wirelessly connect to an external mobile terminal and realize two-way data transmission through a mobile application. Users can set parameters on the mobile application, such as creating a personalized therapy plan, setting the heating temperature and light-emitting module working parameters for different time periods, etc., and synchronize these settings to the device. In addition, users can also control the heating module and the light-emitting module accordingly through the mobile application. The Bluetooth communication module also supports uploading data such as user habits, nasal health status and environmental information to the cloud server. The AI ​​intelligent control module is trained based on a large amount of screened and labeled data, and can generate optimized working parameters based on the data uploaded by the user, and pass these parameters to the control module. The control module automatically adjusts the heating module and the light-emitting module according to the received parameters. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 A three-dimensional diagram of an intelligent nasal therapy device from a front perspective;

[0023] Figure 2 A three-dimensional diagram of an intelligent nasal therapy device from a rear perspective;

[0024] Figure 3 for Figure 2 A magnified view of the structure of part A;

[0025] Figure 4 This is a simplified connection diagram of the control module in an intelligent nasal therapy device.

[0026] Numbers in the figure:

[0027] 1. Display screen; 2. Mounting shell; 3. Molding strip; 4. Elastic strap; 5. Nose mask; 6. Micro graphene heating plate; 7. Button; 8. Shielding layer; 9. LED lamp beads; 10. Microporous breathable membrane; 11. Soft padding; 12. Chamber. DETAILED DESCRIPTION

[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] like Figure 1-4 As shown, the present invention provides an intelligent nasal therapy device, including a nasal mask 5, which is a mask structure that fits the contour of the human nose. The nasal mask 5 is integrally formed by using biomagnetic powder through an injection molding process. The formed nasal mask 5 has a magnetic field generated by the biomagnetic powder, which acts on the nasal area of ​​the human body, thereby promoting blood circulation in the nasal area of ​​the human body. In addition, the nasal mask 5 is provided with air holes to achieve good air permeability, thereby ensuring that the user can breathe normally during wearing and reducing the feeling of stuffiness and discomfort. The inner side of the nasal mask 5 is provided with a soft pad 11 that contacts the nasal skin. The nasal mask 5 is equipped with a heating module, a light-emitting module, a control module and a power module. The control module is electrically connected to the heating module to control the heating temperature and heating time of the heating module, and the control module is electrically connected to the light-emitting module to control the flashing frequency and light-emitting intensity of the light-emitting module.

[0030] The nose mask 5 is equipped with at least one elastic strap 4, and the nose mask 5 is fixed to the human head through the elastic strap 4. The elastic strap 4 can also be a Velcro strap with adjustable length. The two ends of the Velcro strap are respectively fixed to the two sides of the nose mask 5. The tightness of the strap can be changed by adjusting the fitting position of the Velcro.

[0031] The outer side of the nose mask 5 is equipped with at least one shaping strip 3, which is used to adapt to the contour of the nose to ensure the fit between the nose mask 5 and the nose. The shaping strip 3 is made of a material with a certain hardness and toughness, such as a metal wire. The user can bend the shaping strip 3 to make the nose mask 5 better adapt to the individual's nose contour, thereby improving the fit and comfort of wearing.

[0032] The soft pad 11 is connected to the nasal mask 5 by a magnetic buckle. The middle part of the soft pad 11 is recessed inward to form a chamber 12 for placing medicine. A microporous breathable membrane 10 is provided at the bottom of the chamber 12. The microporous breathable membrane 10 can prevent the leakage of medicine and allow the ingredients of the medicine to be slowly released to the nasal skin.

[0033] The heating module includes a micrographene heating sheet 6. A mounting shell 2 for mounting the micrographene heating sheet 6 is provided in the middle of the nasal mask 5, so that the heating range of the micrographene heating sheet 6 covers the human nose area. The micrographene heating sheet 6 utilizes the excellent electrothermal conversion characteristics of graphene to quickly convert electrical energy into thermal energy. When the micrographene heating sheet 6 heats up, the heat is transferred to the nasal tissue, causing the nasal blood vessels to expand due to the heat. After the blood flow is accelerated, it can bring more oxygen and nutrients to the nasal tissue, and promote the metabolism of nasal cells.

[0034] The light-emitting module includes multiple LED lamp beads 9, and the multiple LED lamp beads 9 are distributed on both sides of the soft pad 11, so that the light-emitting range of the LED lamp beads 9 covers the nose area. The flashing frequency of the LED lamp beads 9 is combined with the meridian flow theory, and different light frequencies are set according to different organs of the human body corresponding to different hours. Therefore, the flashing frequency of the LED lamp beads 9 will be adjusted with the change of time to adapt to the physiological state of the human body in different time periods, and can better coordinate the functions of various systems of the human body and maintain the body's balance.

[0035] A shielding layer 8 is provided on the inner side of the nose mask 5 , and the shielding layer 8 is used to reflect the light of the light emitting module.

[0036] The outside of the mounting shell 2 is equipped with a button 7 and a touch display screen 1, and the inside of the mounting shell 2 is equipped with a microphone and a speaker. The control module is integrated with a human-computer interaction module, and the human-computer interaction module is integrated with a voice command recognition module. The microphone is used to collect the user's voice commands. The voice command recognition module recognizes the voice commands collected by the microphone and converts them into electrical signals for transmission to the human-computer interaction module. The user can input the desired heating temperature, heating time, LED lamp bead 9 flashing frequency and LED lamp bead 9 luminous intensity and other parameters through three methods: button 7 or touch display screen 1 or voice. The human-computer interaction module transmits the instructions and information input by the user to the control module, and the control module controls the heating module and the light-emitting module accordingly according to these instructions. At the same time, the control module feeds back the real-time working status information of the nasal physiotherapy device to the human-computer interaction module, and the human-computer interaction module displays the real-time working status to the user through the touch display screen 1 or the speaker, thereby realizing real-time interaction between the user and the nasal physiotherapy device.

[0037] The control module integrates a Bluetooth communication module and an AI intelligent control module. The Bluetooth communication module is used to wirelessly connect to an external mobile terminal and realize two-way data transmission through a mobile application. Users can set parameters on the mobile application, such as creating a personalized therapy plan, setting the heating temperature and light-emitting module working parameters for different time periods, etc., and synchronize these settings to the device. In addition, users can also control the heating module and the light-emitting module accordingly through the mobile application. The Bluetooth communication module also supports uploading data such as user habits, nasal health status and environmental information to the cloud server. The AI ​​intelligent control module is trained based on a large amount of screened and labeled data, and can generate optimized working parameters based on the data uploaded by the user, and pass these parameters to the control module. The control module automatically adjusts the heating module and the light-emitting module according to the received parameters.

[0038] 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 invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. An intelligent nasal therapy device, characterized in that: It includes a nasal mask, which is a mask structure that fits the contour of the human nose. The nasal mask is integrally formed using biomagnetic powder through an injection molding process. The molded nasal mask has a magnetic field generated by the biomagnetic powder. A soft pad that contacts the nose skin is provided on the inner side of the nasal mask. The nasal mask is equipped with a heating module, a light-emitting module and a control module. The control module integrates a human-computer interaction module, an AI intelligent control module and a Bluetooth communication module. The control module is electrically connected to the heating module to control the heating temperature and heating time of the heating module. The control module is electrically connected to the light-emitting module to control the flashing frequency and light intensity of the light-emitting module.

2. The intelligent nasal therapy device according to claim 1, characterized in that: The nose mask is equipped with at least one elastic strap, and the nose mask is fixed to the human head through the elastic strap.

3. The intelligent nasal therapy device according to claim 2, characterized in that: The outer side of the nose mask is equipped with at least one shaping strip, which is used to adapt to the contour of the nose to ensure the fit between the nose mask and the nose.

4. The intelligent nasal therapy device according to claim 1, characterized in that: The soft pad is connected to the nasal mask magnetic buckle, and the middle part of the soft pad is concave inward to form a cavity for placing medicine, and a microporous breathable membrane is provided at the bottom of the cavity.

5. The intelligent nasal physiotherapy device according to claim 1, characterized in that: The heating module includes a micro graphene heating sheet, and a mounting shell for mounting the micro graphene heating sheet is provided in the middle of the nose mask, so that the heating range of the micro graphene heating sheet covers the nose area of ​​the human body.

6. The intelligent nasal physiotherapy device according to claim 1, characterized in that: The light emitting module includes a plurality of LED lamp beads, and the plurality of LED lamp beads are distributed on both sides of the soft pad so that the light emitting range of the LED lamp beads covers the nose area.

7. The intelligent nasal therapy device according to claim 1, characterized in that: A shielding layer is provided on the inner side of the nose mask, and the shielding layer is used to reflect the light of the light emitting module.

8. The intelligent nasal therapy device according to claim 1, characterized in that: The outside of the installation shell is equipped with buttons and a touch display screen, and the inside of the installation shell is equipped with a microphone and a speaker. The human-computer interaction module is integrated with a voice command recognition module. The microphone is used to collect the user's voice commands. The voice command recognition module recognizes the voice commands collected by the microphone and converts them into electrical signals for transmission to the human-computer interaction module. The user inputs the desired heating temperature, heating time, LED lamp bead flashing frequency and LED lamp bead luminous intensity through three methods: buttons, touch display screen or voice. The human-computer interaction module transmits the input commands and information to the control module, and the control module controls the heating module and the light-emitting module according to the commands.

9. The intelligent nasal physiotherapy device according to claim 1, characterized in that: The AI ​​intelligent control module is trained based on a large amount of screened and labeled data. It generates optimized working parameters based on the data uploaded by the user and passes these parameters to the control module. The control module automatically adjusts the heating module and the light-emitting module based on the received parameters.

10. The intelligent nasal therapy device according to claim 1, characterized in that: The Bluetooth communication module is used to establish a wireless connection with an external mobile terminal and realize two-way data transmission through a mobile application. Users can set parameters on the mobile application.