Control method and device for household multifunctional oral health management tool

By combining a multi-functional home oral health management tool with AI dental mirror and electric toothbrush control methods, accurate identification and comprehensive prevention of oral diseases are achieved, solving the problem of the single function of electric toothbrushes and improving the effectiveness of oral health management.

CN121015337APending Publication Date: 2025-11-28ZHUHAI AICREATE MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202511132698.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2025-11-28

AI Technical Summary

Technical Problem

Current electric toothbrushes have limited functionality, cannot accurately detect oral diseases, lack data collection and personalized prevention plans, and have poor oral health protection effects.

Method used

Design a multifunctional home-use oral health management tool, including an AI dental mirror and an electric toothbrush. The AI ​​dental mirror is controlled via a touch screen to capture and collect oral images for disease identification and display the identification results. The electric toothbrush controls the data transmission of the brush head's movement trajectory and displays the real-time movement trajectory. Combined with an ultraviolet disinfection function, it achieves comprehensive oral health management.

Benefits of technology

It enables oral image acquisition, AI disease recognition, brushing motion trajectory monitoring, and cloud-based health record creation, enriching the functions of electric toothbrushes and improving oral health protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a control method and device for a household multifunctional oral health management tool. The method comprises the following steps: under the condition that a first instruction is received, controlling a touch screen of the multifunctional disinfection box to be in a first working mode according to the first instruction, carrying out oral disease AI identification on an oral image shot and collected by an AI dental mirror, and displaying an oral disease AI identification result image corresponding to the oral image; under the condition that a second instruction is received, the touch screen is controlled to be in a second working mode according to the second instruction, motion trail data generated by the toothbrush head of the electric toothbrush is transmitted, and the upper and lower jaw simulation images and the real-time motion trail of the toothbrush head in the upper and lower jaw simulation images are displayed; and under the condition that a third instruction is received, controlling the touch screen to be in a sleep mode and controlling the ultraviolet disinfection lamp to be in a working mode according to the third instruction. The technical problems that in the prior art, an electric toothbrush is single in function and poor in oral health protection effect are solved.
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Description

Technical Field

[0001] This invention relates to the field of oral disease prevention, and more specifically, to a control method and device for a home-use multifunctional oral health management tool. Background Technology

[0002] Electric toothbrushes, as a powerful tool in modern oral care, are gradually becoming the preferred choice for daily oral cleaning due to their unique advantages. Driven by a motor, they cause the brush head to vibrate or rotate, achieving efficient cleaning and significantly improving brushing effectiveness. The cleaning effect of electric toothbrushes is significantly superior to that of traditional manual toothbrushes. Their high-frequency motion can more effectively reach every corner of the teeth, easily tackling areas easily missed by manual brushing, such as the back teeth and interdental spaces, greatly reducing plaque residue and effectively preventing gum disease.

[0003] While electric toothbrushes have made some progress in oral hygiene, their functions remain limited under current technology. Most electric toothbrushes only perform basic cleaning actions; whether rotary toothbrushes rely on physical friction or sonic toothbrushes utilize high-frequency vibrations, they are limited to removing surface dirt and plaque. They struggle to provide a comprehensive solution for patients with oral diseases. In the screening stage, they cannot accurately detect early-stage lesions such as cavities and periodontitis; in terms of record-keeping, they lack the ability to collect and integrate user oral health data to create a systematic record; and in terms of prevention, they cannot provide personalized prevention plans based on individual oral conditions. For individuals with potential oral health risks, such limited-function electric toothbrushes cannot meet their comprehensive oral care needs. In summary, current electric toothbrushes suffer from technical problems such as limited functionality and poor health protection.

[0004] There is currently no effective solution to the above problems. Summary of the Invention

[0005] This invention provides a control method and device for a multifunctional home oral health management tool, which at least solves the technical problems of existing electric toothbrushes having limited functions and poor oral health protection effects.

[0006] According to one aspect of the present invention, a control method for a home-use multifunctional oral health management tool is provided. The method includes: upon receiving a first instruction, controlling a touch screen of a multifunctional disinfection box to be in a first working mode according to the first instruction, wherein the touch screen is disposed on a side surface of the multifunctional disinfection box, an AI dental mirror port and an electric toothbrush port are disposed on the bottom surface of the box body, an AI dental mirror is detachably disposed on the AI ​​dental mirror port and an electric toothbrush is detachably disposed on the electric toothbrush port, a control circuit is disposed inside the box body of the multifunctional disinfection box, the control circuit is respectively connected to the touch screen, the AI ​​dental mirror port and the electric toothbrush port, the control circuit is provided with a wireless network module and a Bluetooth signal module, the AI ​​dental mirror and the electric toothbrush are respectively connected to the control circuit via a network or via Bluetooth, the first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port; and when the touch screen is in the first working mode... The system performs AI-based oral disease recognition on the oral images captured by the AI ​​dental mirror, thereby displaying the corresponding AI-based oral disease recognition result image. Upon receiving a second instruction, the system controls the touch screen to enter a second working mode, wherein the second instruction is generated by the control circuit when the electric toothbrush is detached from the electric toothbrush port. While the touch screen is in the second working mode, the system transmits motion trajectory data generated by the toothbrush head, thereby displaying simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head in the simulated images. Upon receiving a third instruction, the system controls the touch screen to enter a sleep mode and controls the ultraviolet disinfection lamp to enter a working mode, wherein the ultraviolet disinfection lamp is located on the inner surface of the multifunctional disinfection box, and the third instruction is generated by the control circuit synchronously when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port.

[0007] Furthermore, the above method also includes: upon receiving a fourth instruction, controlling the touch screen to be in a split-screen working mode according to the fourth instruction, wherein the fourth instruction is generated by the control circuit when the AI ​​dental mirror is disconnected from the AI ​​dental mirror port and the electric toothbrush is disconnected from the electric toothbrush port.

[0008] Furthermore, the above method also includes: upon receiving a fifth instruction, controlling the touch screen to be in a settings interface mode according to the fifth instruction, wherein the fifth instruction is generated by the touch screen touch sensing, and the settings interface mode includes at least one of the following interfaces: alarm settings interface, time settings interface, ultraviolet disinfection light intensity settings interface, voice settings interface, language settings interface, and charging settings interface.

[0009] Furthermore, the above method also includes: when the AI ​​dental mirror is detected to be inserted into the AI ​​dental mirror port, controlling the charging module to charge the AI ​​dental mirror, wherein the charging module is disposed in the control circuit and is electrically connected to both the AI ​​dental mirror port and the electric toothbrush port; and when the electric toothbrush is detected to be inserted into the electric toothbrush port, controlling the charging module to charge the electric toothbrush.

[0010] Furthermore, the above method also includes: generating an oral disease AI detection report based on the oral disease AI recognition result image; receiving the oral disease AI detection report sent by the multifunctional disinfection box through a cloud server and a mobile terminal when the multifunctional disinfection box is in network working mode, wherein the multifunctional disinfection box is connected to the cloud server, and the mobile terminal is connected to both the multifunctional disinfection box and the cloud server; and receiving oral health record information corresponding to the oral disease AI detection report sent by the cloud server.

[0011] Furthermore, when the touch screen is in the first working mode, the process of performing oral disease AI recognition on the oral images captured by the AI ​​dental mirror and displaying the corresponding oral disease AI recognition result image includes: capturing the oral images using a high-definition macro camera located at the front end of the AI ​​dental mirror; and performing oral disease AI recognition on the oral images using an AI image recognition module located inside the handle of the AI ​​dental mirror to obtain the oral disease AI recognition result image.

[0012] Furthermore, when the touch screen is in the second working mode, transmitting the motion trajectory data generated by the toothbrush head of the electric toothbrush to display the simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head in the simulated images of the upper and lower jaws includes: acquiring the motion trajectory signal of the toothbrush head according to the motion trajectory sensor installed inside the toothbrush head; and processing the motion trajectory signal according to the attitude calculation algorithm module installed inside the toothbrush head to obtain the motion trajectory data.

[0013] According to another aspect of the present invention, a control device for a home-use multifunctional oral health management tool is also provided. The device includes: a first control unit, configured to, upon receiving a first instruction, control the touch screen of a multifunctional disinfection box to be in a first working mode according to the first instruction, wherein the touch screen is disposed on the side surface of the multifunctional disinfection box, and an AI dental mirror port and an electric toothbrush port are disposed on the bottom surface of the box body. An AI dental mirror is detachably disposed on the AI ​​dental mirror port, and an electric toothbrush is detachably disposed on the electric toothbrush port. A control circuit is disposed inside the multifunctional disinfection box, and the control circuit is respectively connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit includes a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are respectively connected to the control circuit via a network or via Bluetooth. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port; and a first processing unit, configured to, when the touch screen is in the first working mode, take pictures of the AI ​​dental mirror. The system collects oral images and performs AI-based oral disease recognition to display the corresponding AI-based oral disease recognition result image. A second control unit, upon receiving a second instruction, controls the touchscreen to enter a second working mode according to the second instruction, wherein the second instruction is generated by the control circuit when the electric toothbrush is detached from the electric toothbrush port. A second processing unit, while the touchscreen is in the second working mode, transmits motion trajectory data generated by the toothbrush head of the electric toothbrush to display simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head in the simulated images. Further, the device includes a third control unit, upon receiving a third instruction, controls the touchscreen to enter a sleep mode and controls the ultraviolet disinfection lamp to enter a working mode according to the third instruction, wherein the ultraviolet disinfection lamp is disposed on the inner surface of the multifunctional disinfection box, and the third instruction is generated by the control circuit synchronously when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port.

[0014] Furthermore, the device also includes a fourth control unit, which, upon receiving a fourth instruction, controls the touch screen to be in a split-screen working mode according to the fourth instruction, wherein the fourth instruction is generated by the control circuit when the AI ​​dental mirror is disconnected from the AI ​​dental mirror port and the electric toothbrush is disconnected from the electric toothbrush port.

[0015] Furthermore, the aforementioned device also includes: a fifth control unit, configured to control the touch screen to be in a setting interface mode upon receiving a fifth instruction, wherein the fifth instruction is generated by the touch screen touch sensor, and the setting interface mode includes at least one of the following interfaces: alarm setting interface, time setting interface, ultraviolet disinfection light intensity setting interface, voice setting interface, language setting interface, and charging setting interface.

[0016] Furthermore, the device further includes: a sixth control unit, configured to control the charging module to charge the AI ​​dental mirror when the AI ​​dental mirror is detected to be inserted into the AI ​​dental mirror port, wherein the charging module is disposed in the control circuit and is electrically connected to both the AI ​​dental mirror port and the electric toothbrush port; and a seventh control unit, configured to control the charging module to charge the electric toothbrush when the electric toothbrush is detected to be inserted into the electric toothbrush port.

[0017] Furthermore, the aforementioned device also includes: a generation unit, configured to generate an oral disease AI detection report information based on the oral disease AI recognition result image; a first receiving unit, configured to receive the oral disease AI detection report information sent by the multifunctional disinfection box via a cloud server and a mobile terminal when the multifunctional disinfection box is in network working mode, wherein the multifunctional disinfection box is connected to the cloud server via a network, and the mobile terminal is connected to both the multifunctional disinfection box and the cloud server via a network; and a second receiving unit, configured to receive oral health record information corresponding to the oral disease AI detection report information sent by the cloud server.

[0018] Furthermore, the first processing unit includes: a first processing subunit, used to capture oral images by a high-definition macro camera located at the front end of the AI ​​dental mirror; and a second processing subunit, used to perform oral disease AI recognition on the oral images by an AI image recognition module located inside the handle of the AI ​​dental mirror, to obtain the oral disease AI recognition result image.

[0019] Furthermore, the second processing unit includes: a third processing subunit, used to acquire the motion trajectory signal of the toothbrush head based on the motion trajectory sensor installed inside the toothbrush head; and a fourth processing subunit, used to process the motion trajectory signal based on the attitude calculation algorithm module installed inside the toothbrush head to obtain the motion trajectory data.

[0020] In this embodiment of the invention, upon receiving a first instruction, the touch screen of the multifunctional disinfection box is controlled to enter a first working mode according to the first instruction. The touch screen is located on the side surface of the multifunctional disinfection box, and an AI dental mirror port and an electric toothbrush port are located on the bottom surface of the box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is located inside the multifunctional disinfection box, connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit includes a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are connected to the control circuit via a network or Bluetooth connection, respectively. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port. The oral cavity is captured by the AI ​​dental mirror while the touch screen is in the first working mode. The system performs AI-based oral disease recognition on images, thereby displaying the corresponding AI-based oral disease recognition results. Upon receiving a second instruction, it controls the touchscreen to enter a second working mode, where the second instruction is generated by the control circuit when the electric toothbrush is detached from the electric toothbrush port. While the touchscreen is in the second working mode, it transmits motion trajectory data generated by the toothbrush head, thereby displaying simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head within these simulated images. Upon receiving a third instruction, it controls the touchscreen to enter a sleep mode and the ultraviolet disinfection lamp to enter a working mode, where the ultraviolet disinfection lamp is located on the inner surface of the multi-functional disinfection box. The third instruction is generated by the control circuit synchronously when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port. The embodiments of the present invention achieve multiple purposes, including oral image acquisition, AI recognition of oral diseases, monitoring of brushing motion trajectory, establishment of cloud-based oral health records, comprehensive prevention of oral diseases, and networking, storage, charging, and disinfection of a multi-functional home oral health management tool. This achieves the technical effects of enriching the functional diversity of electric toothbrushes and their combinations, improving the oral health protection effect, and thus solving the technical problems of single function and poor oral health protection effect of existing electric toothbrushes. Attached Figure Description

[0021] The accompanying drawings, which are included to provide a further understanding of the invention and form part of this application, illustrate exemplary embodiments of the invention and, together with their description, serve to explain the invention and do not constitute an undue limitation thereof. In the drawings:

[0022] Figure 1 This is a flowchart illustrating an optional control method for a home-use multifunctional oral health management tool according to an embodiment of the present invention.

[0023] Figure 2 This is a flowchart illustrating a control method for another optional home-use multifunctional oral health management tool according to an embodiment of the present invention;

[0024] Figure 3 This is a flowchart illustrating another optional control method for a home-use multifunctional oral health management tool according to an embodiment of the present invention;

[0025] Figure 4 This is a flowchart illustrating another optional control method for a home-use multifunctional oral health management tool according to an embodiment of the present invention;

[0026] Figure 5 This is a schematic diagram of the structure of a control device for an optional home-use multifunctional oral health management tool according to an embodiment of the present invention;

[0027] Figure 6 This is a schematic diagram of the control device for another optional home-use multifunctional oral health management tool according to an embodiment of the present invention. Detailed Implementation

[0028] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention.

[0029] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of the invention described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0030] Example 1

[0031] According to an embodiment of the present invention, an embodiment of a control method for a home-use multifunctional oral health management tool is provided. It should be noted that the steps shown in the flowchart in the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions. Furthermore, although a logical order is shown in the flowchart, in some cases, the steps shown or described may be executed in a different order than that shown here.

[0032] Figure 1 This is a flowchart illustrating an optional control method for a home-use multifunctional oral health management tool according to an embodiment of the present invention. Figure 1 As shown, the method includes the following steps:

[0033] Step S102: Upon receiving the first instruction, the touch screen of the multi-functional disinfection box is controlled to enter the first working mode according to the first instruction. The touch screen is located on the side surface of the multi-functional disinfection box. An AI dental mirror port and an electric toothbrush port are provided on the bottom surface of the multi-functional disinfection box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is provided inside the multi-functional disinfection box. The control circuit is connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit is provided with a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are connected to the control circuit via a network or Bluetooth. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port.

[0034] Step S104: When the touch screen is in the first working mode, perform AI recognition of oral diseases on the oral images captured by the AI ​​dental mirror, and then display the corresponding AI recognition result image of oral diseases.

[0035] Step S106: Upon receiving the second instruction, control the touch screen to enter the second working mode according to the second instruction, wherein the second instruction is generated by the control circuit when the electric toothbrush is disconnected from the electric toothbrush port;

[0036] Step S108: When the touch screen is in the second working mode, the motion trajectory data generated by the toothbrush head of the electric toothbrush is transmitted, thereby displaying the upper and lower jaw simulation images and the real-time motion trajectory of the toothbrush head in the upper and lower jaw simulation images.

[0037] Step S110: Upon receiving a third instruction, the touch screen is controlled to enter sleep mode and the ultraviolet disinfection lamp is controlled to enter working mode according to the third instruction. The ultraviolet disinfection lamp is located on the inner surface of the multi-functional disinfection box. The third instruction is generated by the control circuit when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port simultaneously.

[0038] Alternatively, the touchscreen can be a 6-inch LED screen. A 6-inch LED screen is a moderate size, with high brightness and true color reproduction, ensuring clear display in various lighting conditions. At the same time, its low power consumption extends the device's battery life, meeting the needs of users for extended use, thus balancing practicality and comfort.

[0039] Optionally, the top or side of the multi-functional control box may be equipped with a pull-out or openable cover to facilitate the removal or insertion of the AI ​​dental mirror and electric toothbrush.

[0040] Optionally, real-time monitoring of the brushing trajectory of the electric toothbrush head can accurately capture the brush head's movement path within the mouth. Its function is to record the area of ​​teeth covered by the brush head, the dwell time, and the movement speed through sensors, combined with algorithms to analyze blind spots. Effectively, it can provide real-time feedback on missed areas, such as the inner surfaces of molars and the gingival sulcus, ensuring thorough brushing and improving cleaning efficiency by over 30%. For users, this monitoring can correct bad habits such as excessive force and insufficient brushing time, reducing the risk of gum damage. Data archiving creates a personal oral hygiene report, helping to track long-term oral health changes and providing a scientific basis for preventing tooth decay and periodontitis, making it especially suitable for children, orthodontic patients, and other groups requiring standardized brushing.

[0041] In this embodiment of the invention, upon receiving a first instruction, the touch screen of the multifunctional disinfection box is controlled to enter a first working mode according to the first instruction. The touch screen is located on the side surface of the multifunctional disinfection box, and an AI dental mirror port and an electric toothbrush port are located on the bottom surface of the box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is located inside the multifunctional disinfection box, connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit includes a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are connected to the control circuit via a network or Bluetooth connection, respectively. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port. The oral cavity is captured by the AI ​​dental mirror while the touch screen is in the first working mode. The system performs AI-based oral disease recognition on images, thereby displaying the corresponding AI-based oral disease recognition results. Upon receiving a second instruction, it controls the touchscreen to enter a second working mode, where the second instruction is generated by the control circuit when the electric toothbrush is detached from the electric toothbrush port. While the touchscreen is in the second working mode, it transmits motion trajectory data generated by the toothbrush head, thereby displaying simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head within these simulated images. Upon receiving a third instruction, it controls the touchscreen to enter a sleep mode and the ultraviolet disinfection lamp to enter a working mode, where the ultraviolet disinfection lamp is located on the inner surface of the multi-functional disinfection box. The third instruction is generated by the control circuit synchronously when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port. The embodiments of the present invention achieve multiple purposes, including oral image acquisition, AI recognition of oral diseases, monitoring of brushing motion trajectory, establishment of cloud-based oral health records, comprehensive prevention of oral diseases, and networking, storage, charging, and disinfection of a multi-functional home oral health management tool. This achieves the technical effects of enriching the functional diversity of electric toothbrushes and their combinations, improving the oral health protection effect, and thus solving the technical problems of single function and poor oral health protection effect of existing electric toothbrushes.

[0042] Optionally, ultraviolet (UV) disinfection lamps are highly efficient disinfection tools that utilize 254nm short-wave ultraviolet light to destroy the DNA structure of microorganisms, making them crucial for the cleaning and maintenance of electric toothbrushes and AI dental mirrors. The released UV light can penetrate the cell membranes of bacteria and viruses, breaking down nucleic acid molecules and thoroughly killing streptococci and Porphyromonas gingivalis residues on toothbrush heads, as well as saliva bacteria contaminated with dental mirror lenses. During disinfection, the electric toothbrush and AI dental mirror are placed in a multi-functional disinfection box, allowing the UV light to cover every nook and cranny, effectively removing biological contaminants that are difficult to remove with traditional water washing. These UV disinfection lamps are compact and typically equipped with a timer function (adjustable from 3 to 10 minutes), creating a sterile barrier for devices that frequently come into contact with the oral cavity and reducing the risk of cross-infection.

[0043] Optionally, the method further includes: upon receiving a fourth instruction, controlling the touchscreen to enter a split-screen working mode according to the fourth instruction, wherein the fourth instruction is generated by the control circuit synchronously when the AI ​​dental mirror is disconnected from the AI ​​dental mirror port and the electric toothbrush is disconnected from the electric toothbrush port. Specifically, when the touchscreen is controlled to enter the split-screen working mode, one screen can display an AI recognition result image of oral diseases corresponding to the oral cavity image, and the other screen can display simulated images of the upper and lower jaws and the real-time movement trajectory of the toothbrush head in the simulated images of the upper and lower jaws.

[0044] Optionally, the method further includes: upon receiving a fifth instruction, controlling the touch screen to enter a settings interface mode according to the fifth instruction, wherein the fifth instruction is generated by touch screen touch sensing, and the settings interface mode includes at least one of the following interfaces: alarm settings interface, time settings interface, ultraviolet disinfection light intensity settings interface, voice settings interface, language settings interface, and charging settings interface.

[0045] Optionally, the method further includes: when the AI ​​dental mirror is detected to be inserted into the AI ​​dental mirror port, controlling the charging module to charge the AI ​​dental mirror, wherein the charging module is disposed in the control circuit and is electrically connected to both the AI ​​dental mirror port and the electric toothbrush port; and when the electric toothbrush is detected to be inserted into the electric toothbrush port, controlling the charging module to charge the electric toothbrush.

[0046] Optionally, Figure 2 This is a flowchart illustrating an optional control method for another home-use multifunctional oral health management tool according to an embodiment of the present invention, such as... Figure 2 As shown, the method also includes:

[0047] Step S202: Generate an AI detection report information for oral diseases based on the AI ​​recognition result image of oral diseases;

[0048] Step S204: When the multi-functional disinfection box is in network working mode, the oral disease AI detection report information sent by the multi-functional disinfection box is received through the cloud server and the mobile terminal. The multi-functional disinfection box is connected to the cloud server, and the mobile terminal is connected to the network of both the multi-functional disinfection box and the cloud server.

[0049] Step S206: Receive oral health record information sent by the cloud server that corresponds to the oral disease AI detection report information.

[0050] Optionally, after the AI ​​dental endoscope acquires oral images, the built-in image recognition module analyzes the characteristics of lesions such as dental caries and gingivitis, generating recognition result images that include the coordinates of the lesion area, the lesion type, and the risk level. The system extracts key data from the images and automatically generates an AI detection report for oral diseases, which includes a schematic diagram of the lesion site, AI diagnostic conclusions, and treatment suggestions.

[0051] Optionally, the multi-functional disinfection box can activate a network connection, accessing a cloud server via Wi-Fi and simultaneously establishing a network connection with the user's mobile phone. The storage box encrypts the test report information and uploads it to the cloud, which then simultaneously pushes it to the mobile app for real-time viewing. Doctors can retrieve the report from the cloud using an authorized account to assist in remote diagnosis and treatment.

[0052] Optionally, the cloud server can access the user's historical oral health data, integrating the current test report, brushing records from the past three months, and previous medical history to generate dynamically updated oral health records, which are then sent to the mobile app. The records support a timeline viewing function, allowing users and doctors to track health changes and providing data support for personalized care plans.

[0053] Optionally, by performing steps S202 to S206, the detection, report transmission and record management of oral diseases are integrated, thereby improving the convenience and accuracy of oral health management.

[0054] Optionally, Figure 3 This is a flowchart illustrating another optional control method for a home-use multifunctional oral health management tool according to an embodiment of the present invention. Figure 3 As shown, step S104 is executed, which involves performing AI-based oral disease recognition on the oral images captured by the AI ​​dental mirror when the touch screen is in the first working mode, thereby displaying the corresponding AI-based oral disease recognition result image, including:

[0055] Step S302: Acquire oral images using a high-definition macro camera set at the front end of the AI ​​dental mirror;

[0056] Step S304: Perform oral disease AI recognition on the oral image based on the AI ​​image recognition module set inside the handle of the AI ​​dental mirror to obtain an oral disease AI recognition result image.

[0057] For example, the AI ​​dental mirror can be equipped with a 12-megapixel high-definition macro camera at the front end, with a lens using 7 layers of optical glass and an LED ring light (adjustable to 3 brightness levels). When the user holds the AI ​​dental mirror into their mouth, the camera automatically focuses and captures images of teeth, gums, and oral mucosa within a focal length range of 5-15mm. The image resolution can reach 4000×3000 pixels, clearly showing details such as plaque distribution, gum redness and swelling, and early tooth decay texture. The acquisition time for a single image is ≤0.5 seconds.

[0058] Optionally, the AI ​​dental endoscope handle can be equipped with an AI image recognition module based on the ARM Cortex-A73 architecture, integrating a trained oral disease recognition model (containing 100,000+ labeled samples). After receiving image data transmitted from the camera, the module uses feature extraction algorithms to identify lesion features such as dental caries (enamel demineralization, cavities) and gingivitis (gingival bleeding points, swollen areas), marks the bounding box of the lesion area (accuracy ±0.2mm), and generates an AI recognition result image with superimposed lesion type labels (such as "superficial caries" and "marginal gingivitis") and confidence level (≥92%). The entire recognition process takes ≤2 seconds.

[0059] Optionally, performing steps S302 and S304 can provide reliable technical support for early screening of oral diseases through the synergy of high-definition acquisition and accurate identification.

[0060] Optionally, Figure 4 This is a flowchart illustrating another optional control method for a home-use multifunctional oral health management tool according to an embodiment of the present invention. Figure 4 As shown, in step S108, when the touch screen is in the second working mode, the motion trajectory data generated by the toothbrush head of the electric toothbrush is transmitted, thereby displaying the upper and lower jaw simulation images and the real-time motion trajectory of the toothbrush head in the upper and lower jaw simulation images, including:

[0061] Step S402: Collect the motion trajectory signal of the toothbrush head according to the motion trajectory sensor installed inside the toothbrush head;

[0062] Step S404: The motion trajectory signal is processed by the attitude calculation algorithm module set inside the toothbrush head to obtain motion trajectory data.

[0063] Optionally, in step S402, a nine-axis motion trajectory sensor (including a three-axis accelerometer, a three-axis gyroscope, and a three-axis magnetometer) can be embedded inside the toothbrush head. The sampling frequency is set to 100Hz, the accelerometer range is ±16g, and it can capture the acceleration changes of the brush head's up-and-down and left-and-right swinging motion; the gyroscope range is ±2000° / s, and it can record the rotation angle of the brush head; the magnetometer uses the Earth's magnetic field to assist in calibrating directional deviation. The sensor collects the motion trajectory signal of the brush head in the oral cavity in real time, including translation, rotation, and vibration data, and outputs a set of raw electrical signals every 10ms.

[0064] Optionally, in step S404, the toothbrush head can have a built-in attitude calculation algorithm module based on Kalman filtering. After receiving the motion trajectory sensor signal, it first removes brushing vibration noise through low-pass filtering, and then fuses acceleration, angular velocity, and magnetic field data to calculate the real-time coordinates (error ≤ 0.5mm) and attitude angles (pitch angle, yaw angle, roll angle, accuracy ±1°) of the toothbrush head in three-dimensional space. The attitude calculation algorithm module converts the processed data into standardized motion trajectory data, including timestamps, position coordinates, and motion direction vectors, generating a trajectory segment every 50ms to provide basic data for subsequent brushing effect analysis.

[0065] Optionally, steps S402 and S404 are executed to achieve precise capture and analysis of the brush head's motion trajectory, providing data support for optimizing the brushing path.

[0066] In this embodiment of the invention, upon receiving a first instruction, the touch screen of the multifunctional disinfection box is controlled to enter a first working mode according to the first instruction. The touch screen is located on the side surface of the multifunctional disinfection box, and an AI dental mirror port and an electric toothbrush port are located on the bottom surface of the box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is located inside the multifunctional disinfection box, connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit includes a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are connected to the control circuit via a network or Bluetooth connection, respectively. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port. The oral cavity is captured by the AI ​​dental mirror while the touch screen is in the first working mode. The system performs AI-based oral disease recognition on images, thereby displaying the corresponding AI-based oral disease recognition results. Upon receiving a second instruction, it controls the touchscreen to enter a second working mode, where the second instruction is generated by the control circuit when the electric toothbrush is detached from the electric toothbrush port. While the touchscreen is in the second working mode, it transmits motion trajectory data generated by the toothbrush head, thereby displaying simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head within these simulated images. Upon receiving a third instruction, it controls the touchscreen to enter a sleep mode and the ultraviolet disinfection lamp to enter a working mode, where the ultraviolet disinfection lamp is located on the inner surface of the multi-functional disinfection box. The third instruction is generated by the control circuit synchronously when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port. The embodiments of the present invention achieve multiple purposes, including oral image acquisition, AI recognition of oral diseases, monitoring of brushing motion trajectory, establishment of cloud-based oral health records, comprehensive prevention of oral diseases, and networking, storage, charging, and disinfection of a multi-functional home oral health management tool. This achieves the technical effects of enriching the functional diversity of electric toothbrushes and their combinations, improving the oral health protection effect, and thus solving the technical problems of single function and poor oral health protection effect of existing electric toothbrushes.

[0067] Example 2

[0068] According to another aspect of the present invention, a structural embodiment of a control device for a home-use multifunctional oral health management tool is also provided. Figure 5 This is a schematic diagram of the structure of a control device for an optional home-use multifunctional oral health management tool according to an embodiment of the present invention, such as... Figure 5 As shown, the device includes:

[0069] The first control unit 501 is used to control the touch screen of the multi-functional disinfection box to be in a first working mode according to the first instruction received. The touch screen is located on the side surface of the multi-functional disinfection box. An AI dental mirror port and an electric toothbrush port are located on the bottom surface of the box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is located inside the multi-functional disinfection box and is connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit includes a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are connected to the control circuit via a network or Bluetooth connection, respectively. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port. The first processing unit 503 is used to perform AI recognition of oral diseases on the oral images captured by the AI ​​dental mirror when the touch screen is in the first working mode. The system displays the AI-generated image of oral diseases corresponding to the oral cavity image; the second control unit 505 is used to control the touch screen to enter a second working mode according to the second instruction received, wherein the second instruction is generated by the control circuit when the electric toothbrush is disconnected from the electric toothbrush port; the second processing unit 507 is used to transmit the motion trajectory data generated by the toothbrush head of the electric toothbrush when the touch screen is in the second working mode, thereby displaying the simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head in the simulated images of the upper and lower jaws; the third control unit 509 is used to control the touch screen to enter a sleep mode and control the ultraviolet disinfection lamp to enter a working mode according to the third instruction received, wherein the ultraviolet disinfection lamp is set on the inner surface of the multifunctional disinfection box, and the third instruction is generated by the control circuit when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port simultaneously.

[0070] Optionally, the device further includes: a fourth control unit, configured to control the touch screen to be in a split-screen working mode according to the fourth instruction received, wherein the fourth instruction is generated by the control circuit when the AI ​​dental mirror is disconnected from the AI ​​dental mirror port and the electric toothbrush is disconnected from the electric toothbrush port simultaneously.

[0071] Optionally, the device further includes: a fifth control unit, used to control the touch screen to be in a setting interface mode according to the fifth instruction received, wherein the fifth instruction is generated by the touch screen touch sensing, and the setting interface mode includes at least one of the following interfaces: alarm setting interface, time setting interface, ultraviolet disinfection light intensity setting interface, voice setting interface, language setting interface, and charging setting interface.

[0072] Optionally, the device further includes: a sixth control unit, used to control the charging module to charge the AI ​​dental mirror when the AI ​​dental mirror is detected to be inserted into the AI ​​dental mirror port, wherein the charging module is disposed in the control circuit and is electrically connected to both the AI ​​dental mirror port and the electric toothbrush port; and a seventh control unit, used to control the charging module to charge the electric toothbrush when the electric toothbrush is detected to be inserted into the electric toothbrush port.

[0073] Optionally, the device further includes: a generation unit for generating an AI detection report information for oral diseases based on the AI ​​recognition result image of oral diseases; a first receiving unit for receiving the AI ​​detection report information for oral diseases sent by the multifunctional disinfection box through a cloud server and a mobile terminal when the multifunctional disinfection box is in a network working mode, wherein the multifunctional disinfection box is connected to the cloud server, and the mobile terminal is connected to both the multifunctional disinfection box and the cloud server via the network; and a second receiving unit for receiving oral health record information corresponding to the AI ​​detection report information for oral diseases sent by the cloud server.

[0074] Optionally, the first processing unit includes: a first processing subunit, used to capture oral images by a high-definition macro camera set at the front end of the AI ​​dental mirror; and a second processing subunit, used to perform oral disease AI recognition on the oral images by an AI image recognition module set inside the handle of the AI ​​dental mirror, to obtain an oral disease AI recognition result image.

[0075] Optionally, the second processing unit includes: a third processing subunit, used to collect motion trajectory signals of the toothbrush head based on a motion trajectory sensor installed inside the toothbrush head; and a fourth processing subunit, used to process the motion trajectory signals based on an attitude calculation algorithm module installed inside the toothbrush head to obtain motion trajectory data.

[0076] Optionally, Figure 6 This is a schematic diagram of the control device for another optional home-use multifunctional oral health management tool according to an embodiment of the present invention, such as... Figure 6 As shown, the device includes an AI dental mirror 601, an electric toothbrush 602, a CPU 603, a first WIFI module 604, a Bluetooth module 605, a lithium battery 606, an ultraviolet disinfection module 607, a charging and power management module 608, a second WIFI module / 4G module 609, a 6-inch LED display 610, and an AI cloud system 611. As an optional embodiment, Figure 6The CPU 603, first WIFI module 604, Bluetooth module 605, lithium battery 606, ultraviolet disinfection module 607, charging and power management module 608, second WIFI module / 4G module 609, and 6-inch LED display 610 are all hardware components constituting the multi-functional disinfection box. The AI ​​dental mirror 601 and electric toothbrush 602 establish WIFI or Bluetooth network connections with the first WIFI module 604 and Bluetooth module 605 respectively. The second WIFI module / 4G module 609 establishes a network connection with the AI ​​cloud system 611 to obtain cloud services. The 4G module can also be upgraded to a 5G module under certain conditions. The 6-inch LED display 610 can be a touch screen, the ultraviolet disinfection module 607 enables ultraviolet disinfection, and the charging and power management module 608 charges the AI ​​dental mirror 601 and electric toothbrush 602.

[0077] In this embodiment of the invention, upon receiving a first instruction, the touch screen of the multifunctional disinfection box is controlled to enter a first working mode according to the first instruction. The touch screen is located on the side surface of the multifunctional disinfection box, and an AI dental mirror port and an electric toothbrush port are located on the bottom surface of the box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is located inside the multifunctional disinfection box, connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit includes a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are connected to the control circuit via a network or Bluetooth connection, respectively. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port. The oral cavity is captured by the AI ​​dental mirror while the touch screen is in the first working mode. The system performs AI-based oral disease recognition on images, thereby displaying the corresponding AI-based oral disease recognition results. Upon receiving a second instruction, it controls the touchscreen to enter a second working mode, where the second instruction is generated by the control circuit when the electric toothbrush is detached from the electric toothbrush port. While the touchscreen is in the second working mode, it transmits motion trajectory data generated by the toothbrush head, thereby displaying simulated images of the upper and lower jaws and the real-time motion trajectory of the toothbrush head within these simulated images. Upon receiving a third instruction, it controls the touchscreen to enter a sleep mode and the ultraviolet disinfection lamp to enter a working mode, where the ultraviolet disinfection lamp is located on the inner surface of the multi-functional disinfection box. The third instruction is generated by the control circuit synchronously when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port. The embodiments of the present invention achieve multiple purposes, including oral image acquisition, AI recognition of oral diseases, monitoring of brushing motion trajectory, establishment of cloud-based oral health records, comprehensive prevention of oral diseases, and networking, storage, charging, and disinfection of a multi-functional home oral health management tool. This achieves the technical effects of enriching the functional diversity of electric toothbrushes and their combinations, improving the oral health protection effect, and thus solving the technical problems of single function and poor oral health protection effect of existing electric toothbrushes.

[0078] The sequence numbers of the above embodiments of the present invention are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.

[0079] In the above embodiments of the present invention, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions of other embodiments.

[0080] In the several embodiments provided in this application, it should be understood that the disclosed technical content can be implemented in other ways. The device embodiments described above are merely illustrative; for example, the division of units can be a logical functional division, and in actual implementation, there may be other division methods. For instance, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the displayed or discussed mutual coupling, direct coupling, or communication connection may be through some interfaces; the indirect coupling or communication connection between units or modules may be electrical or other forms.

[0081] The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.

[0082] Furthermore, the functional units in the various embodiments of the present invention can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The integrated unit can be implemented in hardware or as a software functional unit.

[0083] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, read-only memory (ROM), random access memory (RAM), portable hard drives, magnetic disks, or optical disks.

[0084] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A control method for a home-use multifunctional oral health management tool, characterized in that, include: Upon receiving a first instruction, the touch screen of the multifunctional disinfection box is controlled to enter a first working mode according to the first instruction. The touch screen is located on the side surface of the multifunctional disinfection box. An AI dental mirror port and an electric toothbrush port are provided on the bottom surface of the box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is provided inside the box. The control circuit is connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit is equipped with a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are respectively connected to the control circuit via a network or Bluetooth. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port. When the touch screen is in the first working mode, the oral images captured by the AI ​​dental mirror are subjected to AI recognition of oral diseases, thereby displaying the corresponding oral disease AI recognition result image. Upon receiving a second instruction, the touch screen is controlled to enter a second working mode according to the second instruction, wherein the second instruction is generated by the control circuit when the electric toothbrush is disengaged from the electric toothbrush port; When the touch screen is in the second working mode, the motion trajectory data generated by the toothbrush head of the electric toothbrush is transmitted, thereby displaying the upper and lower jaw simulation images and the real-time motion trajectory of the toothbrush head in the upper and lower jaw simulation images; Upon receiving a third instruction, the touch screen is controlled to enter a sleep mode and the ultraviolet disinfection lamp is controlled to enter a working mode according to the third instruction. The ultraviolet disinfection lamp is located on the inner surface of the multi-functional disinfection box. The third instruction is generated by the control circuit when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port simultaneously.

2. The control method for the home-use multifunctional oral health management tool according to claim 1, characterized in that, The method further includes: Upon receiving a fourth instruction, the touch screen is controlled to enter a split-screen working mode according to the fourth instruction. The fourth instruction is generated by the control circuit when the AI ​​dental mirror is disconnected from the AI ​​dental mirror port and the electric toothbrush is disconnected from the electric toothbrush port.

3. The control method for the home-use multifunctional oral health management tool according to claim 1, characterized in that, The method further includes: Upon receiving a fifth instruction, the touchscreen is controlled to enter a settings interface mode according to the fifth instruction. The fifth instruction is generated by the touchscreen's touch sensing. The settings interface mode includes at least one of the following interfaces: alarm settings interface, time settings interface, ultraviolet disinfection light intensity settings interface, voice settings interface, language settings interface, and charging settings interface.

4. The control method for the home-use multifunctional oral health management tool according to claim 1, characterized in that, The method further includes: When the AI ​​dental mirror is detected to be inserted into the AI ​​dental mirror port, the charging module is controlled to charge the AI ​​dental mirror. The charging module is disposed in the control circuit and is electrically connected to both the AI ​​dental mirror port and the electric toothbrush port. When the electric toothbrush is detected to be inserted into the electric toothbrush port, the charging module is controlled to charge the electric toothbrush.

5. The control method for the home-use multifunctional oral health management tool according to claim 1, characterized in that, The method further includes: Generate an AI-based oral disease detection report based on the images obtained from the AI-based oral disease recognition; When the multifunctional disinfection box is in network working mode, it receives oral disease AI detection report information sent by the multifunctional disinfection box through a cloud server and a mobile terminal. The multifunctional disinfection box is connected to the cloud server, and the mobile terminal is connected to both the multifunctional disinfection box and the cloud server. Receive oral health record information sent by the cloud server that corresponds to the oral disease AI detection report information.

6. The control method for the home-use multifunctional oral health management tool according to claim 1, characterized in that, When the touch screen is in the first working mode, the process of performing AI-based oral disease identification on the oral images captured by the AI ​​dental mirror, and then displaying the corresponding AI-based oral disease identification result image, includes: The oral cavity images are captured by a high-definition macro camera located at the front end of the AI ​​dental mirror; The AI ​​image recognition module, located inside the handle of the AI ​​dental mirror, performs AI recognition of oral diseases on the oral image to obtain the AI ​​recognition result image of the oral disease.

7. The control method for the home-use multifunctional oral health management tool according to claim 1, characterized in that, When the touch screen is in the second working mode, transmitting the motion trajectory data generated by the toothbrush head of the electric toothbrush to display the upper and lower jaw simulation images and the real-time motion trajectory of the toothbrush head in the upper and lower jaw simulation images includes: The motion trajectory signal of the toothbrush head is collected by a motion trajectory sensor installed inside the toothbrush head; The motion trajectory signal is processed by the attitude calculation algorithm module located inside the toothbrush head to obtain the motion trajectory data.

8. A control device for a home-use multifunctional oral health management tool, characterized in that, include: A first control unit is configured to, upon receiving a first instruction, control the touch screen of a multi-functional disinfection box to be in a first working mode according to the first instruction. The touch screen is disposed on the side surface of the multi-functional disinfection box. An AI dental mirror port and an electric toothbrush port are disposed on the bottom surface of the box. An AI dental mirror is detachably mounted on the AI ​​dental mirror port, and an electric toothbrush is detachably mounted on the electric toothbrush port. A control circuit is disposed within the multi-functional disinfection box. The control circuit is connected to the touch screen, the AI ​​dental mirror port, and the electric toothbrush port. The control circuit includes a wireless network module and a Bluetooth signal module. The AI ​​dental mirror and the electric toothbrush are respectively connected to the control circuit via a network or Bluetooth. The first instruction is generated by the control circuit when the AI ​​dental mirror is detached from the AI ​​dental mirror port. The first processing unit is configured to perform oral disease AI recognition on the oral images captured by the AI ​​dental mirror when the touch screen is in the first working mode, thereby displaying the oral disease AI recognition result image corresponding to the oral images; The second control unit is configured to control the touch screen to be in a second working mode according to the second instruction received, wherein the second instruction is generated by the control circuit when the electric toothbrush is disengaged from the electric toothbrush port; The second processing unit is used to transmit motion trajectory data generated by the toothbrush head of the electric toothbrush when the touch screen is in the second working mode, thereby displaying the upper and lower jaw simulation images and the real-time motion trajectory of the toothbrush head in the upper and lower jaw simulation images. The third control unit is used to control the touch screen to enter a sleep mode and control the ultraviolet disinfection lamp to enter a working mode according to the third instruction received. The ultraviolet disinfection lamp is disposed on the inner surface of the multi-functional disinfection box. The third instruction is generated by the control circuit when the AI ​​dental mirror is inserted into the AI ​​dental mirror port and the electric toothbrush is inserted into the electric toothbrush port simultaneously.

9. The control device for the home-use multifunctional oral health management tool according to claim 8, characterized in that, The device further includes: The fourth control unit is used to control the touch screen to be in a split-screen working mode according to the fourth instruction received, wherein the fourth instruction is generated by the control circuit when the AI ​​dental mirror is disconnected from the AI ​​dental mirror port and the electric toothbrush is disconnected from the electric toothbrush port.

10. The control device for the home-use multifunctional oral health management tool according to claim 8, characterized in that, The device further includes: The fifth control unit is used to control the touch screen to be in a setting interface mode according to the fifth instruction received, wherein the fifth instruction is generated by the touch screen touch sensing, and the setting interface mode includes at least one of the following interfaces: alarm setting interface, time setting interface, ultraviolet disinfection light intensity setting interface, voice setting interface, language setting interface, and charging setting interface.

11. The control device for the home-use multifunctional oral health management tool according to claim 8, characterized in that, The device further includes: The sixth control unit is used to control the charging module to charge the AI ​​dental mirror when the AI ​​dental mirror is detected to be inserted into the AI ​​dental mirror port. The charging module is disposed in the control circuit and is electrically connected to both the AI ​​dental mirror port and the electric toothbrush port. The seventh control unit is used to control the charging module to charge the electric toothbrush when it is detected that the electric toothbrush is inserted into the electric toothbrush port.

12. The control device for the home-use multifunctional oral health management tool according to claim 8, characterized in that, The device further includes: The generation unit is used to generate an oral disease AI detection report information based on the oral disease AI recognition result image; The first receiving unit is configured to receive oral disease AI detection report information sent by the multifunctional disinfection box through a cloud server and a mobile terminal when the multifunctional disinfection box is in network working mode. The multifunctional disinfection box is connected to the cloud server, and the mobile terminal is connected to both the multifunctional disinfection box and the cloud server. The second receiving unit is used to receive oral health record information corresponding to the oral disease AI detection report information sent by the cloud server.

13. The control device for the home-use multifunctional oral health management tool according to claim 8, characterized in that, The first processing unit includes: The first processing subunit is used to capture oral images based on high-definition macro cameras set at the front end of the AI ​​dental mirror; The second processing subunit is used to perform oral disease AI recognition on the oral image based on the AI ​​image recognition module installed inside the handle of the AI ​​dental mirror, and obtain the oral disease AI recognition result image.

14. The control device for the home-use multifunctional oral health management tool according to claim 8, characterized in that, The second processing unit includes: The third processing subunit is used to collect the motion trajectory signal of the toothbrush head according to the motion trajectory sensor installed inside the toothbrush head. The fourth processing subunit is used to process the motion trajectory signal according to the attitude calculation algorithm module set inside the toothbrush head to obtain the motion trajectory data.