A method and device for regulating air pressure of a breast enlargement device

The user's chest contour information is obtained through three-dimensional scanning technology, the massage area is divided and personalized air pressure parameters are generated, which solves the problem of unsuitable air pressure adjustment of existing breast augmentation instruments and achieves higher comfort and breast augmentation effects.

CN119097539BActive Publication Date: 2025-05-16XINYAN TIMES (GUANGZHOU) TECH CO LTD
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Patent Information

Application Number
CN202411247123.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-05-16
Estimated Expiration
2044-09-06

AI Technical Summary

Technical Problem

Existing breast enhancers are difficult to adaptively adjust the air pressure in the cup according to the actual shape of the user's chest, resulting in too large or too small air pressure, affecting the user's comfort and breast enhancement effect.

Method used

The user's chest contour information is obtained through three-dimensional scanning technology, a three-dimensional chest model is created, the chest is divided into different massage areas, specific initial air pressure parameters are generated for each area, and the air pressure parameters are dynamically adjusted according to the user's feedback information and air pressure data in real time.

Benefits of technology

It realizes the provision of personalized air pressure parameters according to individual differences of users, improves user comfort and breast augmentation effects, reduces breast asymmetry, and improves overall satisfaction.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application relates to a method and device for regulating air pressure of a breast enhancement device, including the following steps: using three-dimensional scanning technology to obtain the chest contour information of the user and create a three-dimensional model of the chest of the user; dividing the chest into several massage areas according to the three-dimensional model of the chest of the user, and generating specific initial air pressure parameters for each massage area; when receiving a massage start instruction, sending the air pressure parameters to a massage terminal, the massage terminal controls the air pressure of each massage area to change at a preset speed, and obtains the current user feedback information and the air pressure data of each massage area in real time; receiving a feedback signal sent by the massage terminal, and adjusting the air pressure parameters, and sending the adjusted air pressure parameters to the massage terminal immediately; the massage terminal iteratively adjusts the air pressure change range of each massage area according to the latest received air pressure parameters, and sends a new feedback signal. The present application has the effect of adaptively adjusting the air pressure in the cup according to the actual shape of the user's chest.
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Description

Technical Field

[0001] The present application relates to the technical field of breast enhancement apparatus, and in particular to an air pressure regulating method and device of a breast enhancement apparatus. Background Art

[0002] Common breast enhancement methods on the market mainly include surgery, drugs, massage, etc., but these methods have certain risks and side effects. In recent years, breast enhancement devices have gradually been favored by consumers due to their safety and non-invasive advantages. Breast enhancement devices usually adopt the principle of air pressure change to alternately inhale and inflate the cup, and produce an alternating suction and release force on the breast through the vibration of the cup and the change of internal air pressure. The intense and fine movement of the breast fully exercises the muscle tissue and stimulates the nervous system to secrete female estrogen. The estrogen secreted during the peak period of the human body is drained to the breast, thereby achieving a natural breast enhancement effect. In the prior art, it is difficult for breast enhancement devices to adaptively adjust the air pressure in the cup according to the actual shape of the user's chest, resulting in excessive air pressure that causes discomfort to the user, or too low air pressure that causes poor breast enhancement effect. Summary of the invention

[0003] In order to adaptively adjust the air pressure in the cup according to the actual shape of the user's chest and improve the user's comfort and breast enhancement effect, the present application provides an air pressure adjustment method and device for a breast enhancement device.

[0004] The above-mentioned invention objective of the present application is achieved through the following technical solutions:

[0005] A method for regulating air pressure of a breast enlargement device comprises the following steps:

[0006] When receiving the recognition start instruction, the user's chest contour information is obtained by using the three-dimensional scanning technology, and the user's chest three-dimensional model is created based on the user's chest contour information;

[0007] Divide the chest into several massage areas according to the user's chest three-dimensional model, and generate specific initial air pressure parameters for each massage area, wherein the air pressure parameters are effective variation range data of the air pressure;

[0008] When a massage start command is received, the air pressure parameters are sent to the massage terminal. The massage terminal controls the air pressure of each massage area to change at a preset speed according to the received air pressure parameters, and obtains the current user feedback information and the air pressure data of each massage area in real time;

[0009] Receive feedback signals from the massage terminal, adjust air pressure parameters, and send the adjusted air pressure parameters to the massage terminal immediately;

[0010] The massage terminal iteratively adjusts the air pressure variation range of each massage area according to the latest received air pressure parameters and sends out a new feedback signal.

[0011] By adopting the above technical solution, the user's chest contour information is obtained through three-dimensional scanning technology, and a three-dimensional chest model of the user is created based on the user's chest contour information, the chest is divided into different massage areas, and specific initial air pressure parameters are generated for each area. The effective range of change of air pressure is determined, so that the breast enhancement device can provide personalized air pressure parameters according to the individual differences of the user, thereby ensuring a certain breast enhancement effect, and obtaining user feedback information and air pressure data in real time during the massage process, so as to dynamically adjust and optimize the air pressure parameters according to the user's specific needs and feedback, thereby improving the massage effect and user comfort.

[0012] In a preferred example of the present application, the massage area includes an upper chest area, a lower chest area, an outer area and an inner area. The chest is divided into several massage areas according to the three-dimensional chest model of the user, and after the step of generating specific initial air pressure parameters for each massage area, the step further includes:

[0013] Identify whether the outer area and the inner area are symmetrical, and output air pressure compensation parameters according to the shape difference between the outer area and the inner area;

[0014] The air pressure compensation parameter is combined with the initial air pressure parameter corresponding to the outer area or the inner area, and the corrected air pressure parameter of the area is output.

[0015] By adopting the above technical solution, the two sides of asymmetrical breasts may require different massage strategies. By identifying whether the outer and inner areas of the chest are symmetrical and outputting air pressure compensation parameters according to the shape difference between the outer and inner areas, the breast enhancement device can provide personalized air pressure compensation for the thinner side of the user's chest according to the degree of breast asymmetry, thereby helping the user's breasts to develop evenly on both sides, reducing asymmetry and improving the user's overall satisfaction.

[0016] In a preferred example of the present application, when a massage start instruction is received, the air pressure parameters are sent to the massage terminal, and the massage terminal controls the air pressure of each massage area to change at a preset speed according to the received air pressure parameters, and obtains the current user feedback information and the air pressure data of each massage area in real time, which specifically includes the steps of:

[0017] When a massage start instruction is received, a massage mode screening table is sent to the massage terminal;

[0018] The user selects massage speed level information based on the massage mode screening table, and the massage terminal outputs preset air pressure change speed data according to the massage speed level information;

[0019] The air pressure parameters are sent to the massage terminal, and the massage terminal controls the air pressure of each massage area to change within an effective change range at a preset air pressure change speed according to the air pressure parameters;

[0020] The massage terminal obtains current user feedback information and air pressure data of each massage area in real time.

[0021] By adopting the above technical solution, different users may have different preferences for the intensity and rhythm of massage. By sending a massage mode screening table to the massage terminal, users can independently select the desired massage speed level. The selection of massage speed can affect the effect of massage. Different massage speeds can be used for different purposes, such as relaxation, recovery or strengthening. This enables the breast enhancement device to provide multiple massage modes. Fast massage may help promote blood circulation, while slow massage may focus more on relaxation of deep tissues. Users can choose the most suitable massage speed according to their needs to meet the needs of different users.

[0022] In a preferred example of the present application, the massage terminal is pre-installed with an air pressure sensor and a physiological signal sensor, and the massage terminal obtains the current user feedback information and the air pressure data of each massage area in real time, specifically including the steps of:

[0023] Identify the user's current heart rate data and breathing rate data through physiological signal sensors;

[0024] The air pressure data of each massage area is identified through the air pressure sensor.

[0025] By adopting the above technical solution, changes in heart rate and respiratory rate can reflect the user's comfort and adaptability, and evaluate the user's physiological state when using the breast enhancement device in real time. If the heart rate or respiratory rate increases abnormally, it may indicate that the user feels uncomfortable or stressed, which can help the breast enhancement device take timely measures, such as reducing air pressure or stopping massage, to reduce potential health risks.

[0026] In a preferred example of the present application, the step of receiving the feedback signal from the massage terminal, adjusting the air pressure parameter, and sending the adjusted air pressure parameter to the massage terminal in real time specifically includes the following steps:

[0027] When the massage terminal recognizes that the change rate of the user's heart rate data and / or breathing rate data is higher than a preset threshold, a negative feedback signal is issued;

[0028] The highest safety threshold of air pressure is preset, and when a negative feedback signal from the massage terminal is received, the current air pressure data of each massage area is compared with the highest safety threshold of air pressure;

[0029] If the air pressure data of a massage area is higher than the highest safety threshold of air pressure, reduce the air pressure parameters of the massage area;

[0030] The reduced air pressure parameters are sent to the massage terminal instantly.

[0031] By adopting the above technical solution, when the massage terminal recognizes that the change rate of the user's heart rate data and / or respiratory rate data is higher than the preset threshold, it indicates that the user's respiratory rate and heart rate have undergone abnormal mutations. At this time, a negative feedback signal is issued, and the air pressure data of each current massage area is compared with the highest safety threshold of the air pressure. When the air pressure data is higher than the safety threshold, it indicates that it is necessary to lower the air pressure parameters. When the air pressure data is lower than the safety threshold, it indicates that the user's heart rate changes may be caused by factors other than the breast enhancement device. Therefore, comparison with the highest safety threshold can further confirm whether there is excessive air pressure, thereby reducing unnecessary adjustments. If the air pressure data of a massage area is higher than the highest safety threshold of the air pressure, the air pressure parameters of the massage area are lowered. This method of comparing first and then adjusting enables the breast enhancement device to provide an effective massage experience while ensuring the safety of the user, and make adjustments when necessary to adapt to the specific needs and feedback of the user.

[0032] In a preferred example of the present application: if the air pressure data of a massage area is higher than the highest safety threshold of the air pressure, after the step of reducing the air pressure parameter of the massage area, the step further includes:

[0033] If the air pressure data of a massage area is lower than the highest safety threshold of air pressure, a confirmation request to reduce air pressure is sent to the massage terminal;

[0034] The user selects whether to reduce the air pressure parameter based on the air pressure reduction confirmation request;

[0035] When receiving the air pressure reduction instruction sent by the massage terminal, the air pressure parameters of the massage area are reduced.

[0036] By adopting the above technical solution, if the air pressure data of a massage area is lower than the highest safe threshold of the air pressure, it means that the current air pressure will not cause harm to the user. At this time, a confirmation request to reduce the air pressure is sent to the massage terminal, and the user is allowed to choose whether to reduce the air pressure parameters. If the changes in the user's heart rate and breathing rate are indeed caused by excessive air pressure, you can choose to reduce the air pressure parameters to alleviate the user's discomfort. If the user expects a better breast enhancement effect, you can choose to maintain the original air pressure parameters while ensuring the user's safety. This enables the breast enhancement device to ensure the safety of the user while providing the most effective massage possible.

[0037] In a preferred example of the present application, the massage terminal iteratively adjusts the air pressure variation range of each massage area according to the latest received air pressure parameter and sends a new feedback signal before the step further includes the following steps:

[0038] When the massage terminal recognizes that the stable duration of the user's heart rate data and breathing rate data exceeds a preset threshold, a positive feedback signal is issued;

[0039] When receiving a positive feedback signal from the massage terminal, the air pressure parameter of the massage area is gradually increased in a preset manner until the initial air pressure parameter is restored;

[0040] The increased air pressure parameters are sent to the massage terminal instantly.

[0041] By adopting the above technical solution, when the massage terminal recognizes that the stable duration of the user's heart rate data and respiratory rate data exceeds the preset threshold, it means that the user is well adapted to the breast enhancement device and a positive feedback signal is sent. If the air pressure parameter has been lowered according to the negative feedback signal before, the air pressure parameter of the massage area can be gradually increased in a preset manner according to the positive feedback signal until the initial air pressure parameter is restored, so as to appropriately increase the air pressure parameter according to the user's feedback and avoid the massage effect becoming lower and lower due to the air pressure parameter only decreasing but not increasing during the massage.

[0042] The second object of the invention is achieved by the following technical solutions:

[0043] An air pressure regulating device for a breast enlargement device, comprising:

[0044] The recognition module is used to obtain the user's chest contour information by using the three-dimensional scanning technology, and to create the user's chest three-dimensional model based on the user's chest contour information;

[0045] An analysis module, used for dividing the chest into a number of massage areas according to the three-dimensional chest model of the user, and generating specific initial air pressure parameters for each massage area;

[0046] The control module is used to send the initial air pressure parameter to the massage terminal when receiving the massage start instruction, and the massage terminal controls the air pressure of each massage area to change at a preset speed according to the received air pressure parameter;

[0047] Feedback module, used to obtain current user feedback information and air pressure data of each massage area in real time, and send feedback signals;

[0048] The regulating module is used to receive the feedback signal, adjust the air pressure parameters, and send the adjusted air pressure parameters to the massage terminal in real time.

[0049] By adopting the above technical solution, the device realizes adaptive adjustment of the air pressure of the breast enhancement device through the coordinated work of the identification module, the analysis module, the control module, the feedback module and the adjustment module, thereby improving the user's comfort and breast enhancement effect.

[0050] The third objective of the present application is achieved through the following technical solutions:

[0051] A computer device comprises a memory, a processor and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the air pressure regulating method of the breast enlargement device are implemented.

[0052] The fourth objective of the present application is achieved through the following technical solutions:

[0053] A computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the air pressure regulating method of the above-mentioned breast augmentation device are implemented.

[0054] In summary, the present application includes at least one of the following beneficial technical effects:

[0055] 1. The user's chest contour information is obtained through 3D scanning technology, and a 3D chest model of the user is created based on the user's chest contour information. The chest is divided into different massage areas, and specific initial air pressure parameters are generated for each area. The effective range of air pressure variation is determined, so that the breast enhancement instrument can provide personalized air pressure parameters according to the individual differences of the user, thereby ensuring a certain breast enhancement effect. During the massage process, user feedback information and air pressure data are obtained in real time, so that the air pressure parameters are dynamically adjusted and optimized according to the user's specific needs and feedback, thereby improving the massage effect and user comfort;

[0056] 2. Asymmetrical breasts may require different massage strategies. By identifying whether the outer and inner areas of the chest are symmetrical and outputting air pressure compensation parameters according to the shape difference between the outer and inner areas, the breast enhancement device can provide personalized air pressure compensation for the thinner side of the user's chest according to the degree of chest asymmetry, thereby helping the user's breasts to develop evenly on both sides, reducing asymmetry and improving the user's overall satisfaction.

[0057] 3. When the massage terminal recognizes that the change rate of the user's heart rate data and / or respiratory rate data is higher than the preset threshold, it indicates that the user's respiratory rate and heart rate have abnormal mutations. At this time, a negative feedback signal is issued, and the current air pressure data of each massage area is compared with the highest safety threshold of the air pressure. When the air pressure data is higher than the safety threshold, it indicates that it is necessary to reduce the air pressure parameters. When the air pressure data is lower than the safety threshold, it indicates that the user's heart rate change may be caused by other factors other than the breast enhancement device. Therefore, the comparison with the highest safety threshold can further confirm whether there is too high air pressure, thereby reducing unnecessary adjustments. If the air pressure data of a massage area is higher than the highest safety threshold of the air pressure, the air pressure parameters of the massage area are reduced. This method of comparison first and then adjustment enables the breast enhancement device to provide an effective massage experience while ensuring the safety of the user, and make adjustments when necessary to adapt to the specific needs and feedback of the user;

[0058] 4. When the massage terminal recognizes that the stable duration of the user's heart rate data and respiratory rate data exceeds the preset threshold, it means that the user is well adapted to the breast enhancement device and sends a positive feedback signal. If the air pressure parameter has been lowered according to the negative feedback signal before, the air pressure parameter of the massage area can be gradually increased in a preset manner according to the positive feedback signal until the initial air pressure parameter is restored, so as to appropriately increase the air pressure parameter according to the user's feedback and avoid the massage effect becoming lower and lower due to the air pressure parameter only decreasing but not increasing during the massage. BRIEF DESCRIPTION OF THE DRAWINGS

[0059] Figure 1 It is a flow chart of an embodiment of an air pressure regulating method and device of a breast enlargement device of the present application;

[0060] Figure 2 This is a flowchart of an implementation of step S20 in an embodiment of a method and device for regulating air pressure of a breast enlargement device of the present application;

[0061] Figure 3 This is a flowchart of an implementation of step S40 in an embodiment of a method and device for adjusting air pressure of a breast enlargement device of the present application;

[0062] Figure 4 It is a schematic diagram of an air pressure regulating device of a breast enlargement device of the present application;

[0063] Figure 5 This is a principle block diagram of a computer device of the present application. DETAILED DESCRIPTION

[0064] The present application is further described in detail below in conjunction with the accompanying drawings.

[0065] In the following embodiments, Figure 1-3 As shown, the present application discloses a method for regulating air pressure of a breast enhancement device, which specifically comprises the following steps:

[0066] S10: When receiving the recognition start instruction, using three-dimensional scanning technology to obtain the user's chest contour information, and creating the user's chest three-dimensional model according to the user's chest contour information;

[0067] S20: Dividing the chest into a number of massage areas according to the three-dimensional chest model of the user, and generating specific initial air pressure parameters for each massage area, wherein the air pressure parameters are effective variation range data of the air pressure;

[0068] S30: When a massage start instruction is received, the air pressure parameter is sent to the massage terminal, and the massage terminal controls the air pressure of each massage area to change at a preset speed according to the received air pressure parameter, and obtains the current user feedback information and the air pressure data of each massage area in real time;

[0069] S40: receiving a feedback signal from the massage terminal, adjusting the air pressure parameter, and sending the adjusted air pressure parameter to the massage terminal immediately;

[0070] S50: The massage terminal iteratively adjusts the air pressure variation range of each massage area according to the latest received air pressure parameters, and sends a new feedback signal.

[0071] In this embodiment, the massage terminal is the cup part of the breast enhancement device that actually contacts the user's chest. The cup is provided with a variety of sensors for subsequent monitoring of air pressure and user status. The interior of the cup can be alternately inhaled and inflated, and the cup vibration and internal air pressure change produce an alternating suction and release force on the breast. The intense and fine movement of the breast fully exercises the muscle tissue and stimulates the nervous system to secrete female estrogen. The estrogen secreted by the human body during the peak period is drained to the breast, thereby achieving a natural breast enhancement effect.

[0072] Specifically, after the user puts on the cup, the cup uses 3D scanning technology (such as laser scanning, structured light scanning or sensor matrix) to obtain detailed size and contour information of the chest, and converts the scanning results into digital data to create an accurate 3D model of the chest; the chest is divided into several massage areas, and specific initial air pressure parameters are generated for each massage area. For example, the upper chest may require higher air pressure to promote growth, while the lower chest may require lower air pressure to avoid excessive compression. For areas that need to be shaped, the air pressure will be increased accordingly, and for sensitive or weaker areas, the air pressure will be weakened; when a massage start command is received, the air pressure parameters are sent to The massage terminal controls the air pressure to change at a preset speed. The preset speed can be determined by the breast enhancement mode selected by the user in advance. For example, if the gentle mode is selected, the corresponding preset speed is lower, and if the strong mode is selected, the corresponding preset speed is higher. During the massage, user feedback information and air pressure data are obtained in real time. The instrument will dynamically adjust the air pressure according to the real-time feedback. If the user expresses discomfort, the system will reduce the air pressure as a whole or partially, or change the massage mode. The adjusted air pressure parameters will immediately act on the cup, and the user can feel the change and provide further feedback. The entire feedback system forms a closed loop, continuously receiving new monitoring data and user feedback, and making iterative adjustments.

[0073] In one embodiment, step S20 specifically includes the steps of:

[0074] S21: Dividing the chest into a plurality of massage areas according to the three-dimensional chest model of the user, the massage areas including an upper chest area, a lower chest area, an outer area, and an inner area;

[0075] S22: Identify whether the outer area and the inner area are symmetrical, and output an air pressure compensation parameter according to the shape difference between the outer area and the inner area;

[0076] S23: combining the air pressure compensation parameter with the initial air pressure parameter corresponding to the outer area or the inner area, and outputting the corrected air pressure parameter of the area.

[0077] In this embodiment, based on the anatomical knowledge of the chest, the chest is divided into an upper chest area, a lower chest area, an outer area and an inner area, which correspond to the physiological structure of the breast. The air pressure compensation parameter is a specific air pressure increment, the initial air pressure parameter is the effective range of air pressure variation, the corrected air pressure parameter is the corrected effective range of air pressure variation, the two end values ​​of the initial air pressure parameter are respectively added to the air pressure compensation parameter, and the two end values ​​of the corrected air pressure parameter are output.

[0078] Specifically, the chest is divided into upper chest area, lower chest area, outer area and inner area according to the user's chest three-dimensional model, and it is identified whether the outer area and the inner area are symmetrical. For example, it is identified that the inner area of ​​the left chest is thinner, and the output air pressure compensation parameter is 10 mmHg according to the difference between the inner area and the outer area of ​​the left chest. The initial air pressure parameters of the inner area of ​​the left chest and the outer area of ​​the left chest are 20-30 mmHg, and the corrected air pressure parameter of the inner area of ​​the left chest is 30-40 mmHg.

[0079] In one embodiment, step S30 specifically includes the following steps:

[0080] S31: When a massage start instruction is received, a massage mode screening table is sent to the massage terminal;

[0081] S32: The user selects massage speed level information based on the massage mode screening table, and the massage terminal outputs preset air pressure change speed data according to the massage speed level information;

[0082] S33: sending the air pressure parameters to the massage terminal, and the massage terminal controls the air pressure of each massage area to change within an effective change range at a preset air pressure change speed according to the air pressure parameters;

[0083] S34: The massage terminal obtains the current user feedback information and the air pressure data of each massage area in real time.

[0084] In this embodiment, the user can select the desired massage speed level based on the massage mode filter table, such as slow, medium, and fast. Each level corresponds to a preset air pressure change speed. In addition, the user can also choose to switch the massage speed level and customize the massage time.

[0085] Specifically, when the user starts the massage function, the breast enhancement device sends a filter table containing multiple massage modes and speed levels to the massage terminal. This filter table allows the user to choose a suitable massage mode according to their needs and preferences. The user selects a specific massage speed level based on the information in the massage mode filter table. The massage terminal outputs the corresponding preset air pressure change speed data according to the massage speed level selected by the user. The massage terminal controls the air pressure in each massage area according to these parameters, so that it changes at a preset air pressure change speed within the effective change range. The massage terminal obtains the current user's feedback information and the air pressure data of each massage area in real time. These data can help the massage terminal monitor the user's comfort and air pressure changes, so as to adjust the air pressure parameters in time to ensure the safety and effectiveness of the massage.

[0086] In one embodiment, step S34 specifically includes the steps of:

[0087] S341: The massage terminal is preset with an air pressure sensor and a physiological signal sensor, and the user's current heart rate data and breathing frequency data are identified through the physiological signal sensor;

[0088] S342: Identify the current air pressure data of each massage area through the air pressure sensor.

[0089] In this embodiment, the physiological signal sensor can monitor multiple physiological indicators of the user, such as heart rate data and breathing rate data.

[0090] Specifically, the massage terminal is pre-installed with an air pressure sensor and a physiological signal sensor. Through the physiological signal sensor, the massage terminal can identify the user's current heart rate data and breathing rate data in real time. These data reflect the user's physiological state and can help the massage terminal evaluate the user's comfort and safety. Through the air pressure sensor, the massage terminal can identify the current air pressure data of each massage area in real time. These data can help the massage terminal monitor air pressure changes and adjust air pressure parameters as needed to provide the best massage effect.

[0091] In one embodiment, step S40 specifically includes the steps of:

[0092] S41: When the massage terminal recognizes that the change speed of the user's heart rate data and / or breathing rate data is higher than a preset threshold, a negative feedback signal is issued;

[0093] S42: Preset the highest safety threshold of air pressure, and when receiving the negative feedback signal from the massage terminal, compare the current air pressure data of each massage area with the highest safety threshold of air pressure;

[0094] S43: if the air pressure data of a massage area is higher than the highest safety threshold of the air pressure, reduce the air pressure parameter of the massage area;

[0095] S44: The reduced air pressure parameters are immediately sent to the massage terminal.

[0096] In this embodiment, the highest safety threshold of the air pressure is the maximum value of the air pressure within a range that is harmless to the human body, so as to ensure that the device does not exceed the safety limit during operation.

[0097] Specifically, when the massage terminal detects that the change rate of the user's heart rate data and / or breathing rate data exceeds a preset threshold, a negative feedback signal is issued, indicating that the user may feel uncomfortable or overly stressed. When the massage terminal receives the negative feedback signal, the current air pressure data of each massage area is compared with the preset maximum safety threshold. If the air pressure data of a massage area is higher than the maximum safety threshold, in order to ensure the safety of the user, the breast enhancement device will automatically lower the air pressure parameters of the area. This adjustment can quickly reduce pressure and prevent potential discomfort or injury. The adjusted air pressure parameters will be immediately sent to the massage terminal so that it can update the control parameters and continue to provide massage services. This instant adjustment mechanism helps to maintain user comfort and ensure that the operation of the equipment is always within a safe range.

[0098] In one embodiment, step S43 specifically includes the steps of:

[0099] S431: if the air pressure data of a massage area is higher than the highest safety threshold of the air pressure, reduce the air pressure parameters of the massage area;

[0100] S432: If the air pressure data of a massage area is lower than the highest safety threshold of the air pressure, a confirmation request for reducing the air pressure is sent to the massage terminal;

[0101] S433: The user selects whether to reduce the air pressure parameter based on the air pressure reduction confirmation request;

[0102] S434: When receiving the air pressure reduction instruction sent by the massage terminal, reduce the air pressure parameters of the massage area.

[0103] In this embodiment, the user can issue an instruction to reduce the air pressure or an instruction to maintain the air pressure by confirming the request to reduce the air pressure.

[0104] Specifically, when the breast enhancement device detects that the air pressure data of a certain massage area is higher than the preset maximum safety threshold, in order to ensure the safety of the user, the breast enhancement device will automatically lower the air pressure parameters of the area. If the air pressure data of a certain massage area is lower than the maximum safety threshold of the air pressure, the breast enhancement device will send a confirmation request to reduce the air pressure to the massage terminal. The user will make a choice based on the confirmation request to reduce the air pressure and decide whether to reduce the air pressure parameters. This gives the user a certain degree of control and allows them to make adjustments based on their own feelings and needs. Upon receiving the command to reduce the air pressure, the breast enhancement device will immediately reduce the air pressure parameters of the massage area. If the user expects a better breast enhancement effect, he or she can choose to maintain the original air pressure parameters while ensuring the user's safety. This enables the breast enhancement device to ensure the safety of the user while providing the most effective massage possible.

[0105] In one embodiment, step S40 further includes the steps of:

[0106] S45: When the massage terminal recognizes that the stable duration of the user's heart rate data and breathing rate data exceeds a preset threshold, a positive feedback signal is issued;

[0107] S46: when receiving the positive feedback signal sent by the massage terminal, gradually increasing the air pressure parameter of the massage area in a preset manner until the initial air pressure parameter is restored;

[0108] S47: The increased air pressure parameters are immediately sent to the massage terminal.

[0109] In this embodiment, if the air pressure parameter has been lowered according to the negative feedback signal before, the current air pressure parameter must be lower than the initial air pressure parameter. When the positive feedback signal is received, the current air pressure parameter is increased at a preset speed until the initial air pressure parameter is restored. It is worth noting that the air pressure parameter corrected in step S23 is regarded as the initial air pressure parameter here.

[0110] Specifically, when the massage terminal recognizes that the stable duration of the user's heart rate data and respiratory rate data exceeds a preset threshold, it indicates that the user is well adapted to the breast enhancement device and sends a positive feedback signal. When the positive feedback signal is received, the current air pressure parameter is increased at a preset speed until the initial air pressure parameter is restored, so as to appropriately increase the air pressure parameter according to the user's feedback and avoid the massage effect becoming lower and lower due to the air pressure parameter only decreasing but not increasing during the massage.

[0111] It should be understood that the size of the serial numbers of the steps in the above embodiments does not mean the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present application.

[0112] In one embodiment, a pressure regulating device for a breast enhancement device is provided, which corresponds one-to-one to a pressure regulating method for a breast enhancement device in the above embodiment. Figure 4 As shown, the device comprises:

[0113] The recognition module is used to obtain the user's chest contour information by using the three-dimensional scanning technology, and to create the user's chest three-dimensional model based on the user's chest contour information;

[0114] An analysis module, used for dividing the chest into a number of massage areas according to the three-dimensional chest model of the user, and generating specific initial air pressure parameters for each massage area;

[0115] The control module is used to send the initial air pressure parameter to the massage terminal when receiving the massage start instruction, and the massage terminal controls the air pressure of each massage area to change at a preset speed according to the received air pressure parameter;

[0116] Feedback module, used to obtain current user feedback information and air pressure data of each massage area in real time, and send feedback signals;

[0117] The regulating module is used to receive the feedback signal, adjust the air pressure parameters, and send the adjusted air pressure parameters to the massage terminal in real time.

[0118] For the specific definition of the air pressure regulating device of a breast enlargement device, please refer to the definition of the air pressure regulating method of a breast enlargement device mentioned above, which will not be repeated here. Each module in the air pressure regulating device of the above-mentioned breast enlargement device can be implemented in whole or in part by software, hardware and a combination thereof. The above-mentioned modules can be embedded in or independent of the processor in the computer device in the form of hardware, or can be stored in the memory of the computer device in the form of software, so that the processor can call and execute the operations corresponding to the above modules.

[0119] In one embodiment, a computer device is provided. The computer device may be a server, and its internal structure diagram may be as follows: Figure 5 As shown. The computer device includes a processor, a memory, a network interface and a database connected through a system bus. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The network interface of the computer device is used to communicate with an external terminal through a network connection. When the computer program is executed by the processor, a method for adjusting air pressure of a breast augmentation device is implemented.

[0120] In one embodiment, a computer device is provided, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the computer program, a method for regulating air pressure of a breast enhancement device is implemented;

[0121] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When the computer program is executed by a processor, a method for adjusting air pressure of a breast augmentation device is implemented.

[0122] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by instructing the relevant hardware through a computer program, and the computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above-mentioned methods. Among them, any reference to memory, storage, database or other media used in the embodiments provided in this application can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. As an illustration and not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM).

[0123] Those skilled in the art can clearly understand that for the convenience and simplicity of description, only the division of the above-mentioned functional units and modules is used as an example. In actual applications, the above-mentioned functions can be distributed and completed by several functional units and modules as needed, that is, the internal structure of the device can be divided into several functional units or modules to complete all or part of the functions described above.

[0124] The embodiments described above are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, a person skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. Such modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application, and should all be included in the protection scope of the present application.

Claims

1. A method for regulating air pressure of a breast enlargement device, characterized in that: Includes steps: When receiving the recognition start instruction, the user's chest contour information is obtained by using the three-dimensional scanning technology, and the user's chest three-dimensional model is created based on the user's chest contour information; Divide the chest into several massage areas according to the user's chest three-dimensional model, and generate specific initial air pressure parameters for each massage area, wherein the air pressure parameters are effective variation range data of the air pressure; When a massage start instruction is received, the air pressure parameter is sent to the massage terminal, and the massage terminal controls the air pressure of each massage area to change at a preset speed according to the received air pressure parameter; Sending a massage mode screening table to a massage terminal, the user selects massage speed level information based on the massage mode screening table, and the massage terminal outputs preset air pressure change speed data according to the massage speed level information; The air pressure parameters are sent to the massage terminal, and the massage terminal controls the air pressure of each massage area to change within the effective change range at a preset air pressure change speed according to the air pressure parameters; the massage terminal obtains the current user feedback information and the air pressure data of each massage area in real time; Receive feedback signals from the massage terminal, adjust air pressure parameters, and send the adjusted air pressure parameters to the massage terminal immediately; The massage terminal iteratively adjusts the air pressure variation range of each massage area according to the latest received air pressure parameters and sends out a new feedback signal.

2. The air pressure regulating method of a breast enlargement device according to claim 1, characterized in that: The massage area includes an upper chest area, a lower chest area, an outer area and an inner area. After the step of dividing the chest into a plurality of massage areas according to the three-dimensional chest model of the user and generating a specific initial air pressure parameter for each massage area, the step further includes: Identify whether the outer area and the inner area are symmetrical, and output air pressure compensation parameters according to the shape difference between the outer area and the inner area; The air pressure compensation parameter is combined with the initial air pressure parameter corresponding to the outer area or the inner area, and the corrected air pressure parameter of the area is output.

3. The air pressure regulating method of a breast enlargement device according to claim 1, characterized in that: The massage terminal is pre-installed with an air pressure sensor and a physiological signal sensor, and the massage terminal obtains the current user feedback information and the air pressure data of each massage area in real time, specifically including the steps of: Identify the user's current heart rate data and breathing rate data through physiological signal sensors; The air pressure data of each massage area is identified through the air pressure sensor.

4. The air pressure regulating method of a breast enlargement device according to claim 3, characterized in that: The step of receiving the feedback signal sent by the massage terminal, adjusting the air pressure parameter, and sending the adjusted air pressure parameter to the massage terminal in real time specifically includes the following steps: When the massage terminal recognizes that the change rate of the user's heart rate data and / or breathing rate data is higher than a preset threshold, a negative feedback signal is issued; The highest safety threshold of air pressure is preset, and when a negative feedback signal from the massage terminal is received, the current air pressure data of each massage area is compared with the highest safety threshold of air pressure; If the air pressure data of a massage area is higher than the highest safety threshold of air pressure, reduce the air pressure parameters of the massage area; The reduced air pressure parameters are sent to the massage terminal instantly.

5. The air pressure regulating method of a breast enlargement device according to claim 4, characterized in that: After the step of reducing the air pressure parameter of a massage area if the air pressure data of the massage area is higher than the highest safety threshold of the air pressure, the step further includes: If the air pressure data of a massage area is lower than the highest safety threshold of air pressure, a confirmation request to reduce air pressure is sent to the massage terminal; The user selects whether to reduce the air pressure parameter based on the air pressure reduction confirmation request; When receiving the air pressure reduction instruction sent by the massage terminal, the air pressure parameters of the massage area are reduced.

6. The air pressure regulating method of a breast enlargement device according to claim 1, characterized in that: The massage terminal iteratively adjusts the air pressure variation range of each massage area according to the latest received air pressure parameter and sends a new feedback signal before the step of: When the massage terminal recognizes that the stable duration of the user's heart rate data and breathing rate data exceeds a preset threshold, a positive feedback signal is issued; When receiving a positive feedback signal from the massage terminal, the air pressure parameter of the massage area is gradually increased in a preset manner until the initial air pressure parameter is restored; The increased air pressure parameters are sent to the massage terminal instantly.

7. An air pressure regulating device for a breast enlargement device, characterized in that: include: The recognition module is used to obtain the user's chest contour information by using the three-dimensional scanning technology, and to create the user's chest three-dimensional model based on the user's chest contour information; An analysis module, used for dividing the chest into a number of massage areas according to the three-dimensional chest model of the user, and generating specific initial air pressure parameters for each massage area, wherein the air pressure parameters are effective variation range data of the air pressure; A control module, for sending an initial air pressure parameter to a massage terminal when receiving a massage start instruction, the massage terminal controlling the air pressure of each massage area to change at a preset speed according to the received air pressure parameter, sending a massage mode screening table to the massage terminal, the user selecting massage speed level information based on the massage mode screening table, the massage terminal outputting preset air pressure change speed data according to the massage speed level information, sending the air pressure parameter to the massage terminal, the massage terminal controlling the air pressure of each massage area to change at a preset air pressure change speed within an effective change range according to the air pressure parameter, and the massage terminal acquiring current user feedback information and air pressure data of each massage area in real time; Feedback module, used to obtain current user feedback information and air pressure data of each massage area in real time, and send feedback signals; The regulating module is used to receive the feedback signal, adjust the air pressure parameters, and send the adjusted air pressure parameters to the massage terminal in real time.

8. A computer device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that: When the processor executes the computer program, the steps of the air pressure adjustment method of the breast augmentation device as described in any one of claims 1 to 6 are implemented.

9. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the steps of the air pressure regulating method of a breast augmentation device as claimed in any one of claims 1 to 6 are implemented.

Citation Information

Patent Citations

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