Intelligent penis ring device, detection component and penis monitoring method

By combining silicone sensors and PPG photoelectric sensors in the smart penis ring device, multi-dimensional monitoring of penis health is achieved, the problem of single information dimensions in the existing technology is solved, and more accurate blood gas state and functional analysis is provided.

CN113520383BActive Publication Date: 2025-07-29SHANGHAI XINBO MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202010298189.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-04-16
Publication Date
2025-07-29
Estimated Expiration
2040-04-16

AI Technical Summary

Technical Problem

The existing intelligent penis ring device is relatively single in the monitoring information dimension and cannot meet more specific monitoring and analysis needs.

Method used

The combination of N silicone sensors and PPG photoelectric sensors is used to detect the radial size changes of the penis through the silicone sensor and generate deformation information, triggering the PPG photoelectric sensor to detect PPG signals and related blood gas parameters, and the controller collects and processes these information.

Benefits of technology

Provide multi-dimensional health monitoring information, which can more directly and accurately monitor the blood and gas status and functional status of the penis, and provide a more accurate basis for health analysis.

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Abstract

The present invention provides an intelligent penis ring device, a detection component and a penis monitoring method. The intelligent penis ring device includes: a controller, N silicone sensors and a PPG optoelectronic sensor; the silicone sensors are configured to: when the N silicone sensors are sleeved on the penis to be measured, deform along with the change of the radial dimension of the penis to be measured and generate change information of the deformation, and the PPG optoelectronic sensor is configured to: when triggered by the controller, detect the PPG signal of the penis to be measured and send the PPG signal or a blood gas parameter associated with the PPG signal to the controller; the controller is configured to: when in the acquisition mode, acquire the change information of the N silicone sensors; trigger the PPG optoelectronic sensor according to the change information fed back by at least some of the silicone sensors, and acquire the PPG signal sent after the PPG optoelectronic sensor is triggered or the blood gas parameter associated with the PPG signal.
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Description

Technical Field

[0001] The present invention relates to the field of human health detection devices, and particularly to an intelligent penis ring device, a detection component and a penis monitoring method. Background Art

[0002] An intelligent penis ring device can be understood as a penis ring device configured with a controller and thus having certain signal detection and data processing capabilities. The intelligent penis ring device can be configured with sensors, and further, through the detection of the sensors, data related to the penis can be obtained.

[0003] However, in the existing related technologies, an intelligent penis ring device usually only configures a tensile sensor, and further uses the tensile sensor to detect the expansion force generated when the size of the penis changes. Based on this, the health, function, etc. of the penis can be monitored.

[0004] It can be seen that the information dimension for monitoring the penis in the existing related technologies is relatively single and cannot meet more specific monitoring and analysis requirements. Summary of the Invention

[0005] The present invention provides an intelligent penis ring device, a detection component and a penis monitoring method to solve the problem of relatively single information dimension for monitoring the penis.

[0006] According to a first aspect of the present invention, there is provided an intelligent penis ring device, including: a controller, N silicone sensors and a PPG optoelectronic sensor; where N is an integer greater than or equal to 2; the controller is electrically connected to the N silicone sensors and the PPG optoelectronic sensor respectively;

[0007] The N silicone sensors are connected in sequence to form a ring, and the silicone sensors are used for:

[0008] When the N silicone sensors are sleeved on the penis to be measured, they deform with the change of the radial dimension of the penis to be measured and generate change information of the deformation, and the change information includes the deformation amount information of the deformation and / or the deformation force information associated with the deformation amount information;

[0009] The PPG optoelectronic sensor is used for:

[0010] When triggered by the controller, it detects the PPG signal of the penis to be measured and sends the PPG signal or the blood gas parameter associated with the PPG signal to the controller;

[0011] The controller is used for:

[0012] When in the acquisition mode, it acquires the change information of the N silicone sensors;

[0013] Trigger the PPG photoelectric sensor according to the change information fed back by at least part of the silicone sensor, and collect the PPG signal sent after the PPG photoelectric sensor is triggered or the blood gas parameters associated with the PPG signal.

[0014] Optionally, the controller triggers the PPG photoelectric sensor according to the change information fed back by at least part of the silicone sensor, specifically for:

[0015] If the change information fed back by at least part of the silicone sensor matches a preset numerical range, trigger the PPG photoelectric sensor.

[0016] Optionally, the intelligent penile ring device further includes a communication module connected to the controller, and the communication module can interact with a host computer;

[0017] The controller is further used for:

[0018] According to the configuration parameters sent by the host computer, enter any one of the following modes: the acquisition mode, the standby mode, and the data processing mode.

[0019] Optionally, the controller is further used for:

[0020] When in the data processing mode, perform a preset target process on the collected data to obtain processed data; the preset process includes at least one of the following: noise filtering, false message screening, data encryption;

[0021] Store the processed data in an external memory, and / or: send the processed data to the host computer through the communication module.

[0022] Optionally, after the controller sends the processed data to the host computer, it is further used for:

[0023] If a verification confirmation message sent by the host computer after successfully verifying the processed data is received, in response to the verification confirmation message, enter any one of the following modes again according to the configuration parameters of the host computer: the acquisition mode, the standby mode, and the data processing mode.

[0024] Optionally, the intelligent penile ring device further includes at least one control component, and the at least one control component is connected to the controller;

[0025] The controller is further used to implement at least one of the following:

[0026] When the control component is manipulated, confirm and store the received configuration parameters;

[0027] When the control component is manipulated, send at least part of the data stored in the memory to the host computer;

[0028] When the control component is manipulated, target processing is performed on the collected data, and the processed data obtained through the target processing is stored in a memory.

[0029] When the control component is manipulated, it is triggered to power on.

[0030] When the control component is manipulated, it is triggered to power off.

[0031] Optionally, the communication module includes a matching network and an antenna. The matching network is connected between the antenna and the controller, and the antenna can interact with the host computer.

[0032] Optionally, the blood gas parameters include at least one of the following:

[0033] Total hemoglobin amount, blood oxygen content, carboxyhemoglobin, methemoglobin, arterial blood flow.

[0034] Optionally, the intelligent penile ring device further includes a battery pack, a power module, and a charging module; the battery pack is electrically connected to the power module, and the power module is electrically connected to the controller; the power module is used to supply power from the battery pack to provide digital power and analog power to the controller; the charging module is connected to the battery pack for charging the battery pack.

[0035] According to a second aspect of the present invention, a detection component is provided, including the intelligent penile ring device involved in the first aspect and its optional solutions, and a host computer.

[0036] According to a third aspect of the present invention, a penile monitoring method is provided, which is applied to the controller of the intelligent penile ring device and includes:

[0037] If in the acquisition mode, then: acquire the change information of N silicone sensors; the N silicone sensors are connected in series to form a ring: the silicone sensors can deform as the radial dimension of the penis to be measured changes when the N silicone sensors are sleeved on the penis to be measured, and generate change information of the deformation, and the change information includes the amount of deformation information of the deformation and / or the deformation force information associated with the amount of deformation information;

[0038] According to the change information fed back by at least some of the silicone sensors, trigger the PPG photoelectric sensor, and acquire the PPG signal emitted by detecting the penis to be measured after the PPG photoelectric sensor is triggered or the blood gas parameters associated with the PPG signal.

[0039] Optionally, triggering the PPG photoelectric sensor according to the change information fed back by at least some of the silicone sensors includes:

[0040] If the change information fed back by the at least partial silicone sensor matches a preset numerical range, the PPG optoelectronic sensor is triggered.

[0041] Optionally, the penile monitoring method further includes:

[0042] Enter any one of the following modes according to the configuration parameters sent by the host computer: the acquisition mode, the standby mode, and the data processing mode.

[0043] Optionally, the penile monitoring method further includes:

[0044] When in the data processing mode, perform preset target processing on the collected data to obtain processed data; the preset processing includes at least one of the following: noise filtering, false message screening, and data encryption;

[0045] Store the processed data in an external memory, and / or: send the processed data to the host computer via a communication module.

[0046] Optionally, after sending the processed data to the host computer via a communication module, it further includes:

[0047] If a verification confirmation message sent by the host computer for successfully verifying the processed data is received, in response to the verification confirmation message, enter any one of the following modes again according to the configuration parameters of the host computer: the acquisition mode, the standby mode, and the data processing mode.

[0048] Optionally, the penile monitoring method further includes at least one of the following:

[0049] When the control component is manipulated, confirm and store the received configuration parameters;

[0050] When the control component is manipulated, send at least part of the data stored in the memory to the host computer;

[0051] When the control component is manipulated, perform target processing on the collected data and store the processed data obtained by the target processing in the memory;

[0052] When the control component is manipulated, it is triggered to turn on;

[0053] When the control component is manipulated, it is triggered to turn off.

[0054] In the intelligent penile ring device, detection component and penile monitoring method provided by the present invention, through N silicone sensors and PPG optoelectronic sensors, multi-dimensional information can be provided as a basis for the health monitoring of the penis, meeting more specific monitoring and analysis requirements. Further, based on the PPG optoelectronic sensor, it is convenient to directly monitor blood gas parameters or their associated PPG signals. Since blood gas parameters or PPG signals can directly characterize the blood gas state of the human penis, compared with the existing solutions for monitoring force, the present invention can more directly and accurately monitor the function of the penis during erection through the PPG optoelectronic sensor, and can also facilitate the characterization of the internal reasons for the good or bad function. At the same time, the present invention can also provide a more accurate, comprehensive and detailed basis for further health analysis. BRIEF DESCRIPTION OF THE DRAWINGS

[0055] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0056] Figure 1 is a schematic diagram of the structure of the intelligent penile ring device in an embodiment of the present invention Figure 1 ;

[0057] Figure 2 is a schematic diagram of the structure of the intelligent penile ring device and the host computer in an embodiment of the present invention;

[0058] Figure 3 is a schematic diagram of the structure of the intelligent penile ring device in an embodiment of the present invention Figure 2 ;

[0059] Figure 4 is a schematic diagram of the working process of the intelligent penile ring device in an embodiment of the present invention;

[0060] Figure 5 is a schematic diagram of the process of the penile monitoring method in an embodiment of the present invention Figure 1 ;

[0061] Figure 6 is a schematic diagram of the process of the penile monitoring method in an embodiment of the present invention Figure 2 。

[0062] Description of the reference numerals:

[0063] 1 - Intelligent penile ring device;

[0064] 101 - Controller;

[0065] 102 - Silicone;

[0066] 103 - PGG Photoelectric Sensor

[0067] 104 - Power Supply Module

[0068] 105 - Battery Pack

[0069] 106 - Charging Module

[0070] 107 - Control Component

[0071] 108 - Memory

[0072] 109 - Communication Module

[0073] 1091 - Matching Network

[0074] 1092 - Transmitting Antenna

[0075] 110 - Active Crystal Oscillator

[0076] 2 - Host Computer Specific Embodiment

[0077] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0078] The terms "first", "second", "third", "fourth", etc. (if any) in the specification and claims of the present invention and the above - mentioned accompanying drawings 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 under appropriate circumstances so that the embodiments of the present invention described herein can be implemented in an order different from those illustrated or described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non - exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0079] Next, the technical solutions of the present invention will be described in detail with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments.

[0080] Figure 1 is a schematic diagram of the structure of the intelligent penis ring device in an embodiment of the present invention Figure 1 .

[0081] Please refer to Figure 1 The intelligent penile ring device 1 includes: a controller 101, N silicone sensors 102 and a PPG optoelectronic sensor 103; where N is an integer greater than or equal to 2; the controller 101 is electrically connected to the N silicone sensors 102 and the PPG optoelectronic sensor 103 respectively. The connection can be a direct connection or an indirect connection through other devices or circuits.

[0082] The N silicone sensors 102 are connected in sequence to form a ring, and the silicone sensors 102 are used for:

[0083] When the N silicone sensors are sleeved on the penis to be measured, they deform as the radial dimension of the penis to be measured changes, and generate change information of the deformation. The change information includes the amount of deformation information of the deformation and / or the deformation force information associated with the amount of deformation information.

[0084] Among them, since the N silicone sensors 102 are connected in a ring, when the penis expands, the silicone sensors 102 therein can be understood as any structure that can be deformed by force, and the deformation can be, for example, a deformation that causes part or all of the structure of the silicone sensor 102 to be stretched along its length direction.

[0085] In one example, the deformed part can be the silicone body. In another example, the deformation can also be combined with elastic components such as springs. In a specific example, in the silicone sensor 102, electronic devices capable of detecting the amount of deformation of the silicone body can be provided. In some examples, electronic devices capable of converting the amount of deformation into deformation force information can also be provided.

[0086] In addition, the adjacent silicone sensors can be connected in any way, for example, a connection method that can achieve relative universal movement or a connection method that can achieve relative free rotation.

[0087] Regardless of the form of the structure adopted, it does not deviate from the scope of the embodiments of the present invention.

[0088] In addition, through the silicone sensor 102, the collection of data such as penile hardness and equivalent circumference data can be realized, which can be used for the restoration of three-dimensional dynamic distribution field data. For example, when the host computer 2 receives the data collected by the silicone sensor 102, the three-dimensional restoration of the penis can be performed.

[0089] The PPG optoelectronic sensor 103 is used for:

[0090] When triggered by the controller 101, it detects the PPG signal of the penis to be measured and sends the PPG signal or the blood gas parameter associated with the PPG signal to the controller.

[0091] Among them, PPG specifically refers to Photoplethysmography, which can be understood as a photoplethysmogram. Any signal obtained by monitoring the monitored object based on this principle can be understood as the PPG signal involved in the foregoing text. Its principle of action can be understood as follows: By using photoelectric induction, it is possible to detect the difference in the intensity of reflected light after being absorbed by human blood and tissues, and record changes such as blood vessel volume.

[0092] Based on the changes characterized by the PPG signal, combined with the analysis and experiments on blood vessels in this field, the relationship between the PPG signal and various blood gas parameters can be established in advance. Furthermore, based on the PPG signal, the blood gas parameters therein can be correspondingly extracted.

[0093] In one implementation, the blood gas parameters include at least one of the following:

[0094] Total hemoglobin amount, blood oxygen content, carboxyhemoglobin, methemoglobin, arterial blood flow.

[0095] In the embodiment of the present invention, the controller 101 is used for:

[0096] When in the acquisition mode, acquire the change information of the N silicone sensors;

[0097] According to the change information fed back by at least some of the silicone sensors, trigger the PPG photoelectric sensor, and acquire the PPG signal sent after the PPG photoelectric sensor is triggered or the blood gas parameters associated with the PPG signal.

[0098] Among them, the process of the controller acquiring the change information can be, for example: The controller 101 can sequentially poll the specific values of the change information detected by the N silicone sensors.

[0099] In the above solution, through the N silicone sensors and the PPG photoelectric sensor, multi-dimensional information can be provided as a basis for the health monitoring of the penis, meeting more specific monitoring and analysis requirements.

[0100] Furthermore, based on the PPG photoelectric sensor, it is convenient to directly monitor the blood gas parameters or the PPG signal associated therewith. Since the blood gas parameters or the PPG signal can directly characterize the blood gas state of the human penis, compared with the existing solutions for monitoring force, the present invention can more directly and accurately monitor the quality of the penis function during erection through the PPG photoelectric sensor, and can also facilitate the characterization of the internal reasons for the quality of the function. At the same time, the present invention can also provide a more accurate, comprehensive and detailed basis for further health analysis.

[0101] In addition, in the embodiments of the present invention, the detection of the PPG optoelectronic sensor is triggered based on the change information, which enables the PPG optoelectronic sensor to function only when the penis undergoes a certain change, can use the PPG optoelectronic sensor more efficiently, and is beneficial to energy conservation.

[0102] Figure 2 FIG. 4 is a schematic structural diagram of the intelligent penis ring device and the host computer in an embodiment of the present invention; Figure 3 FIG. 5 is a schematic structural diagram of the intelligent penis ring device in an embodiment of the present invention; Figure 2 .

[0103] Please refer to Figure 2 and Figure 3 . In one embodiment, the intelligent penis ring device 1 further includes a communication module 109 connected to the controller 101, and the communication module 109 can interact with the host computer 2.

[0104] In a further aspect, please refer to Figure 3 . The communication module 109 includes a matching network 1091 and an antenna. The antenna may include, for example, a transmitting antenna 1092. In one example, the transmitting antenna 1092 may also have the function of signal reception. In another example, the antenna may also include, for example, a receiving antenna, and the receiving antenna may also be connected to the matching network 1091. The matching network 1091 is connected between the antenna and the controller 101, and the antenna can interact with the host computer 2.

[0105] Through the matching network 1091, the control of the wireless output impedance of the controller can be realized, which is beneficial to achieving maximum transmission power, lower reflected power, more reliable signal transmission, etc. Through the antenna, the information interconnection between the controller and the host computer can be realized, and further, a hardware foundation can be provided for the implementation of the following processes: configuration parameter download, sensor recorded data upload, clock update.

[0106] In one embodiment, please refer to Figure 2 . The intelligent penis ring device 1 further includes a battery pack 105, a power supply module 104, and a charging module 106; the battery pack 105 is electrically connected to the power supply module 104, and the power supply module 104 is electrically connected to the controller 101.

[0107] The power supply module 104 is used to supply power from the battery pack 105 to provide digital power and analog power to the controller 101; in some aspects, the power supply module 104 may also be connected to at least one of the silicone sensor 102, the PPG optoelectronic sensor 103, and the communication module 109 to provide power for it. The power supply may include digital power or analog power, and the analog power may specifically be a low-noise analog power.

[0108] The charging module 106 is connected to the battery pack and is used to charge the battery pack.

[0109] The charging module 106 therein may include a wired charging module or a wireless charging module. Regardless of the charging method adopted, it does not deviate from the description of the above embodiments. At the same time, if a wireless charging module is adopted, it is beneficial to reduce the physical connector plug-in ports between the device and the outside world and improve the safety of the device.

[0110] The quantity and specifications of the battery pack 105 therein can be arbitrarily configured according to requirements. In one example, the battery pack can have a built-in protection board function, and thus can have the function of monitoring and protecting the charging and discharging process of the battery. For example, a monitoring and protection module for monitoring and protecting the charging and discharging process can be connected between the battery pack and the charging module 106.

[0111] In one embodiment, an oscillator may also be connected to the periphery of the controller 101, and it can be an active oscillator 110 as shown in Figure 3 Through the active oscillator 110, the working timing can be provided for the system controller, thereby providing a real-time clock for the system.

[0112] In one embodiment, the intelligent penis ring device may also include at least one control component 107. The at least one control component 107 is connected to the controller 101. The control component 107 therein can be, for example, Figure 3 the input button 1071 shown in the figure. At the same time, in other alternative embodiments of the present invention, the control component 107 can also adopt other arbitrarily controllable components such as a knob, a toggle key, a touch screen, etc. Through the control component, at least one of the following can be achieved: storing the information interconnection parameters of the host computer, saving the system configuration parameters, storing the data after the controller processes the data, uploading the user data, and so on.

[0113] In one embodiment, the intelligent penis ring device may further include a memory 108. The memory 108 is connected to the controller 101. Through the memory 108, any collected and calculated data can be locally stored.

[0114] Regarding the functions of the above memory and control component, more specific descriptions will be given later in combination with various data processing processes of the controller.

[0115] Figure 3 is a schematic diagram of the structure of the intelligent penis ring device in an embodiment of the present invention Figure 2 .

[0116] Please refer to Figure 3, in one implementation, when the controller 101 triggers the PPG optoelectronic sensor 103 according to the change information fed back by at least part of the silicone sensors, it is specifically configured to:

[0117] If the change information fed back by at least part of the silicone sensors matches a preset numerical range, then trigger the PPG optoelectronic sensor.

[0118] In one example, the preset numerical range can be designed for a single silicone sensor. Then, when comparing the change information with the numerical range, the change information polled one by one can be compared with the numerical range to determine whether there is a match. Furthermore, when all the change information or a certain proportion of the change information is within the numerical range, it is determined that the change information matches the preset numerical range.

[0119] In another example, the preset numerical range can also be designed for N silicone sensors. Then, when comparing the change information with the numerical range, the sum of the change information can be compared with the numerical range.

[0120] In a further example, the change information can be directly compared with the numerical range. In other examples, the change information can also be converted into other information for comparison.

[0121] It can be seen that as long as one of the bases for the comparison process is the change information (such as the deformation amount information or the deformation force information), it does not deviate from the scope of the embodiments of the present invention.

[0122] In an example of a specific application scenario, taking Figure 3 as an example, the controller can poll the values from silicone sensor to silicone sensor. When the change information Δt1 to Δtn polled is within the preset numerical range, the controller 101 can trigger the PPG optoelectronic sensor 103 to perform optoelectronic acquisition, that is, trigger it to detect the PPG signal or its associated qi and blood parameters. Furthermore, the data on the blood supply situation of human tissues can be collected for data processing.

[0123] The controller 101 is further configured to:

[0124] According to the configuration parameters sent by the host computer 2, enter any one of the following modes:

[0125] The acquisition mode, which can be understood as Figure 4 the mode 3 shown;

[0126] The standby mode, which can be understood as Figure 4 the mode 2 shown;

[0127] The data processing mode, which can be understood as Figure 4 the mode 1 shown.

[0128] In one implementation, the controller 101 is further configured to:

[0129] When in the data processing mode, perform a preset target processing on the collected data to obtain processed data; the preset processing includes at least one of the following: noise filtering, false message screening, data encryption;

[0130] Store the processed data in an external memory, and / or: send the processed data to the host computer via the communication module.

[0131] In the acquisition mode (i.e., mode 3), for the controller, it can be understood as starting a physical acquisition instruction. Furthermore, as mentioned above, the values of the silicone sensors 1 to silicone sensors n can be polled. When the polling variables Δt1 to Δtn are not within the preset value range, a standby instruction can be executed to enter the standby mode (i.e., mode 2); when the polling variables Δt1 to Δtn are within the preset value range, the system performs optoelectronic acquisition, that is, acquires the PPG signal and / or qi and blood parameters, so as to acquire the data on the blood supply situation of human tissues and provide the required data for data processing in the data processing mode (i.e., mode 1).

[0132] In the standby mode (i.e., mode 2), the controller can turn off the external device power supply and execute system standby. According to the pre-defined standby mode, the processing performed by the controller can be arbitrary. For example, it can be defined as disabling some or all functions, turning off some or all circuits, or it can also be defined as changing the frequency at which the controller or some circuits are awakened, etc. Any existing or improved configuration method for the standby mode can be applied to the embodiments of the present invention and fall within its scope.

[0133] In the data processing module (i.e., mode 1), taking Figure 4 as an example, the controller can enter a data processing instruction to analyze noise filtering, false message screening, and data encryption verification for the collected data. Then, it can enter a data storage instruction. The storage instruction includes storing the data processing message on an external memory and / or operating on the data on the external memory. In one example, if a storage instruction is performed, a storage processing instruction can be performed. If the data storage instruction is not executed, a wireless transmission instruction can be entered. The controller can activate the matching network and the transmitting antenna to perform data transmission with the host computer terminal. After the transmission instruction is completed, a verification confirmation instruction is performed on the transmitted data. If the verification confirmation passes, a return instruction is executed. If there is no abnormality in the return instruction, the system returns to execute the packet mode instruction. If there is an abnormality in the return instruction, a termination instruction is executed.

[0134] It can be seen that in one implementation, after the controller 101 sends the processed data to the host computer, it is further configured to:

[0135] If the verification confirmation information sent by the host computer after successfully verifying the processed data is received, in response to the verification confirmation information, enter any of the following modes again according to the configuration parameters of the host computer (which can be the previously received ones or the ones received again after verification): the acquisition mode, the standby mode, and the data processing mode.

[0136] In one implementation, the controller 101 is further configured to implement at least one of the following:

[0137] When the control component is manipulated, confirm and store the received configuration parameters;

[0138] When the control component is manipulated, send at least part of the data stored in the memory to the host computer;

[0139] When the control component is manipulated, perform target processing on the collected data and store the processed data obtained through the target processing in the memory;

[0140] When the control component is manipulated, be triggered to power on;

[0141] When the control component is manipulated, be triggered to power off.

[0142] In addition, in one example, the implementation processes related to manipulation described above can correspond to the same control component, that is, the number of control components is one. Furthermore, by manipulating the control component at different times, different processes can be correspondingly implemented. In another example, some or all of the implementation processes described above can correspond to different control components.

[0143] In addition, please refer to Figure 4 , before entering Mode 1, Mode 2, and Mode 3, power on the controller. After its software system is initialized, it can enter a state where it can be interconnected with the host computer information. The host computer configures information such as user parameters and broadcasts passwords downward. Through the action of wireless transmission and matching network, the controller can identify the data and make a response with the host computer, then save the host computer configuration parameters, generate a working mode based on the configuration parameters, enter the grouping mode, and after the grouping in the grouping mode, it can enter one of Mode 1, Mode 2, and Mode 3, and then implement the related processing described above.

[0144] The embodiment of the present invention also provides a detection component, including the intelligent penile ring device involved in the above optional solutions and a host computer.

[0145] Figure 5 is the flow schematic of the penile monitoring method in an embodiment of the present invention Figure 1 ; Figure 6 is the flow schematic of the penile monitoring method in an embodiment of the present inventionFigure 2 。

[0146] Based on the working process of the above intelligent penile ring device, a penile monitoring method can be formed, which can be applied to the controller 101 of the intelligent penile ring device 1 involved in the above optional solutions, including:

[0147] S301: Whether it is in the acquisition mode;

[0148] When the result of step S301 is yes, step S302 can be implemented: Collect the change information of N silicone sensors; the N silicone sensors are connected in series to form a ring: the silicone sensors can deform as the radial size of the penis to be measured changes when the N silicone sensors are sleeved on the penis to be measured, and generate the change information of the deformation, and the change information includes the deformation amount information of the deformation and / or the deformation force information associated with the deformation amount information;

[0149] S303: According to the change information fed back by at least some of the silicone sensors, trigger the PPG optoelectronic sensor, and collect the PPG signal emitted by the PPG optoelectronic sensor after being triggered to detect the penis to be measured or the blood gas parameters associated with the PPG signal.

[0150] Among them, triggering the PPG optoelectronic sensor according to the change information fed back by at least some of the silicone sensors may include:

[0151] If the change information fed back by the at least some of the silicone sensors matches the preset numerical range, then trigger the PPG optoelectronic sensor.

[0152] Please refer to Figure 6 , in one of the implementation manners, before step S301, it may further include:

[0153] S304: According to the configuration parameters sent by the host computer, enter any one of the following modes: the acquisition mode, the standby mode, and the data processing mode;

[0154] S305: Whether it is in the data processing module;

[0155] When the result of step S305 is yes, step S306 can be implemented: When in the data processing mode, perform preset target processing on the collected data to obtain processed data; the preset processing includes at least one of the following: noise filtering, false message screening, data encryption;

[0156] S307: Store the processed data in an external memory;

[0157] S308: Send the processed data to the host computer through the communication module.

[0158] The above steps S307 and S308 can both be implemented, or either one can be implemented.

[0159] After step S308, it may further include:

[0160] S309: Whether a verification confirmation message is received, where the verification confirmation message is sent by the host computer after successfully verifying the processed data;

[0161] When the result of step S309 is yes, step S310 can be implemented: In response to the verification confirmation message, enter any one of the following modes again according to the configuration parameters of the host computer: the acquisition mode, the standby mode, and the data processing mode.

[0162] In one implementation, the penile monitoring method further includes at least one of the following:

[0163] When the control component is manipulated, confirm and store the received configuration parameters;

[0164] When the control component is manipulated, send at least part of the data stored in the memory to the host computer;

[0165] When the control component is manipulated, perform target processing on the collected data and store the processed data obtained through the target processing in the memory;

[0166] When the control component is manipulated, it is triggered to turn on;

[0167] When the control component is manipulated, it is triggered to turn off.

[0168] For the technical terms, technical features, optional implementation manners, and technical effects involved in the above steps, reference can be made to the relevant descriptions of the intelligent penile ring device and the detection component in the previous text. For repetitive content, it will not be repeated here.

[0169] In summary, in the intelligent penile ring device, detection component, and penile monitoring method provided by the present invention, through N silicone sensors and PPG optoelectronic sensors, multi-dimensional information can be provided as a basis for the health monitoring of the penis, meeting more specific monitoring and analysis requirements. Further, based on the PPG optoelectronic sensor, it is convenient to directly monitor blood gas parameters or their associated PPG signals. Since blood gas parameters or PPG signals can directly characterize the blood gas state of the human penis, compared with the existing solutions for monitoring force, the embodiments of the present invention can more directly and accurately monitor the quality of the penis function during erection through the PPG optoelectronic sensor, and can also facilitate characterizing the internal reasons for the quality of the function. At the same time, the embodiments of the present invention can also provide a more accurate, comprehensive, and detailed basis for further health analysis.

[0170] Those of ordinary skill in the art will understand that all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions. The foregoing program can be stored in a computer-readable storage medium. When the program is executed, it performs the steps including the above method embodiments; and the foregoing storage medium includes: various media such as ROM, RAM, magnetic disk, or optical disc that can store program code.

[0171] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. An intelligent penis ring device, characterized in that, Comprising: A controller, N silicone sensors and a PPG optoelectronic sensor; Wherein N is an integer greater than or equal to 2; the controller is electrically connected to the N silicone sensors and the PPG optoelectronic sensor respectively; The N silicone sensors are connected in sequence to form a loop, and the silicone sensors are used for: When the N silicone sensors are sleeved on the penis to be measured, they deform with the change of the radial dimension of the penis to be measured and generate change information of the deformation, and the change information includes the deformation amount information of the deformation and / or the deformation force information associated with the deformation amount information; The PPG optoelectronic sensor is used for: When triggered by the controller, detecting the PPG signal of the penis to be measured and sending the PPG signal or the blood gas parameter associated with the PPG signal to the controller; The controller is used for: When in the acquisition mode, acquiring the change information of the N silicone sensors, and also obtaining the hardness and equivalent circumference data of the penis to be measured according to the change information; Triggering the PPG optoelectronic sensor according to the change information fed back by at least some of the silicone sensors, and acquiring the PPG signal sent after the PPG optoelectronic sensor is triggered or the blood gas parameter associated with the PPG signal.

2. The smart penis ring device according to claim 1, wherein: The controller triggers the PPG optoelectronic sensor according to the change information fed back by at least some of the silicone sensors, specifically for: If the change information fed back by the at least some of the silicone sensors matches a preset numerical range, triggering the PPG optoelectronic sensor.

3. The intelligent penis ring device according to claim 1, wherein, It further includes a communication module connected to the controller, and the communication module can interact with a host computer; The controller is further used for: According to the configuration parameters sent by the host computer, entering any one of the following modes: the acquisition mode, the standby mode and the data processing mode.

4. The intelligent penis ring device according to claim 3, characterized in that, The controller is further used for: When in the data processing mode, performing preset target processing on the acquired data to obtain processed data; the preset target processing includes at least one of the following: noise filtering, false message screening, data encryption; Storing the processed data in an external memory, and / or: sending the processed data to the host computer through the communication module.

5. The smart penis ring device according to claim 4, wherein: After the controller sends the processed data to the host computer, it is further used for: If receiving the verification confirmation information sent by the host computer after successfully verifying the processed data, in response to the verification confirmation information, entering any one of the following modes again according to the configuration parameters of the host computer: the acquisition mode, the standby mode and the data processing mode.

6. The intelligent penile ring device according to claim 3, wherein It further includes at least one control component, and the at least one control component is connected to the controller; The controller is further used to implement at least one of the following: When the control component is manipulated, confirming and storing the received configuration parameters; When the control component is manipulated, sending at least part of the data stored in the memory to the host computer; When the control component is manipulated, performing target processing on the acquired data and storing the processed data obtained through the target processing in the memory; When the control component is manipulated, being triggered to turn on. When the control component is manipulated, the shutdown is triggered.

7. The intelligent penile ring device according to any one of claims 3 to 6, characterized in that The communication module includes a matching network and an antenna. The matching network is connected between the antenna and the controller, and the antenna can interact with the host computer.

8. The smart penis ring device according to any one of claims 1 to 6, characterized in that: The blood gas parameters include at least one of the following: Total hemoglobin amount, blood oxygen content, methemoglobin, arterial blood flow.

9. The intelligent penile ring device according to any one of claims 1 to 6, characterized in that, It further includes a battery pack, a power supply module and a charging module; the battery pack is electrically connected to the power supply module, and the power supply module is electrically connected to the controller; the power supply module is used to supply power from the battery pack to provide digital power and analog power to the controller; the charging module is connected to the battery pack for charging the battery pack.

10. A detection component, characterized in that: It includes the intelligent penis ring device according to any one of claims 1 to 9, and a host computer.

11. A penile monitoring method, applied to the controller of the intelligent penile ring device according to any one of claims 1 to 9, characterized in that, It includes: If in the acquisition mode, then: acquire the change information of N silicone sensors, and also obtain the hardness and equivalent circumference data of the penis to be measured according to the change information; the N silicone sensors are sequentially connected in a ring: the silicone sensors can deform with the change of the radial size of the penis to be measured when the N silicone sensors are sleeved on the penis to be measured, and generate the change information of the deformation, and the change information includes the deformation amount information of the deformation and / or the deformation force information associated with the deformation amount information; According to the change information fed back by at least some of the silicone sensors, trigger the PPG photoelectric sensor, and acquire the PPG signal detected by the PPG photoelectric sensor after being triggered to detect the penis to be measured or the blood gas parameters associated with the PPG signal.

12. The penis monitoring method according to claim 11, characterized in that: Triggering the PPG photoelectric sensor according to the change information fed back by at least some of the silicone sensors includes: If the change information fed back by at least some of the silicone sensors matches a preset numerical range, then trigger the PPG photoelectric sensor.

13. The penis monitoring method according to claim 11, characterized in that: It further includes: According to the configuration parameters sent by the host computer, enter any one of the following modes: the acquisition mode, the standby mode and the data processing mode.

14. The penile monitoring method according to claim 13, characterized in that, It further includes: When in the data processing mode, perform preset target processing on the acquired data to obtain processed data; The preset target processing includes at least one of the following: noise filtering, false message screening, data encryption; Store the processed data in an external memory, and / or: send the processed data to the host computer via the communication module.

15. The penile monitoring method according to claim 14, characterized in that, After sending the processed data to the host computer via the communication module, it further includes: If receiving the verification confirmation information sent by the host computer after successfully verifying the processed data, then in response to the verification confirmation information, enter any one of the following modes again according to the configuration parameters of the host computer: the acquisition mode, the standby mode and the data processing mode.

16. The penile monitoring method according to claim 14, characterized in that, It further includes at least one of the following: When the control component is manipulated, confirm and store the received configuration parameters; When the control component is manipulated, send at least part of the data stored in the memory to the host computer; When the control component is manipulated, perform target processing on the acquired data, and store the processed data obtained by the target processing in the memory; When the control component is manipulated, it is triggered to turn on. When the control component is manipulated, the shutdown is triggered.

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