WO2017133689A1 - Équipement de physiothérapie de la prostate destiné à un système intelligent de physiothérapie de la prostate - Google Patents

Équipement de physiothérapie de la prostate destiné à un système intelligent de physiothérapie de la prostate Download PDF

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Publication number
WO2017133689A1
WO2017133689A1 PCT/CN2017/072897 CN2017072897W WO2017133689A1 WO 2017133689 A1 WO2017133689 A1 WO 2017133689A1 CN 2017072897 W CN2017072897 W CN 2017072897W WO 2017133689 A1 WO2017133689 A1 WO 2017133689A1
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physiotherapy
user
prostate
terminal
unit
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PCT/CN2017/072897
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English (en)
Chinese (zh)
Inventor
原晶
张柱
张彦武
李超
谢胜昔
张世民
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微传智能科技(上海)有限公司
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Publication of WO2017133689A1 publication Critical patent/WO2017133689A1/fr

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Definitions

  • the invention relates to the field of health care, in particular to a smart health care system, which comprises monitoring and controlling intelligent health care equipment, such as intelligent health care equipment, through a terminal, thereby performing rehabilitation training such as prostate rehabilitation training, urinary incontinence rehabilitation training, and sexual dysfunction rehabilitation training. And other preventive and therapeutic measures.
  • the invention further relates to an intelligent prostate physiotherapy system and a prosthetic physiotherapy device thereof.
  • the detection instrument and the rehabilitation instrument are two separate devices, so that the type or operation (or operation) parameter of the rehabilitation device cannot be adjusted in real time according to the detection result, so that it is difficult to assist the patient better.
  • the measurement results of existing testing equipment are often limited to being read only at the location of the device.
  • the device if the device is located in a medical facility, the patient can only know the measurement results when going to the medical facility, and even if the patient is Adding equipment to the home, in addition to the difficulty of self-interpretation of the measurement results, even if you want to consult a doctor will face communication and immediate effectiveness, so that patients still need to go to the medical institutions on a regular basis, otherwise they will not be able to track the disease for a long time. This brings a lot of inconvenience to the patient, and even brings more psychological pressure to the patient.
  • levator ani exercise can effectively improve the anal sphincter function, prevent anal relaxation, and at the same time drive the perineal muscle group to contract and relax, thereby effectively promoting perineum.
  • the blood circulation of the part improves the symptoms of prostate disease such as perineal pain and pain around the anus, and relieves inflammation of the prostate.
  • the existing prostate rehabilitation products usually stimulate the prostate only through the electrode piece or the vibration massage, thereby achieving the therapeutic and rehabilitation effects, not only the measurement, analysis, and long-term tracking of the prostate, but also the characteristics samples based on the population. For the analysis of prostate diseases, it is even more difficult to assist patients in the above rehabilitation training.
  • the existing levator muscle Kegel training is quite helpful for rehabilitation such as sexual dysfunction after prostate surgery, but because the patient begins to have difficulty in grasping the essentials of the movement, the specific position of the muscle and the training needs to be achieved.
  • the training process often requires the doctor's multiple guidance, and after many exercises can gradually master.
  • Kegel exercises are generally completed by the patient at home, in the case of unsupervised, the quantity and quality of the completion are often not guaranteed, and the effect of Kegel training is not well reflected.
  • existing health care (or rehabilitation) training systems or devices lack the collection and analysis of patient history health training data to provide a targeted health care training model for each specific patient to ensure that patients receive the best health care training results. Or the best prognosis. Further, existing health training systems or devices are not able to provide targeted health training models for different categories of patients, so that different types of patients can obtain the best health care training effect or the best prognosis.
  • Another object of the present invention is to provide a smart health care system that communicates (or connects) intelligent health care devices, terminals, and the cloud in a wireless (communication) manner, thereby making communication easier to implement, reducing usage restrictions, and improving convenience. Sex, change and scope.
  • Another object of the present invention is to provide a smart healthcare device, such as an intelligent healthcare device, having a communication unit that can communicate with the terminal, the cloud, and/or other intelligent healthcare devices in one or more wireless ways.
  • Another object of the present invention is to provide a smart healthcare device, such as an intelligent healthcare device, having a sensing unit that includes one or more sensing modules to perform relevant physiological testing as desired.
  • Another object of the present invention is to provide a smart health care device, such as an intelligent health care device, having a stimulation unit including one or more stimulation modules so that relevant stimulation or physiotherapy measures can be performed as needed.
  • Another object of the present invention is to provide a smart health care device, such as an intelligent health care device, which is small in size, low in cost, and can be carried and placed in a human body, thereby improving convenience in use, thereby increasing user's willingness to use and Lower the threshold for their use.
  • a smart health care device such as an intelligent health care device, which is small in size, low in cost, and can be carried and placed in a human body, thereby improving convenience in use, thereby increasing user's willingness to use and Lower the threshold for their use.
  • Another object of the present invention is to provide an intelligent healthcare system in which the intelligent healthcare device can operate independently.
  • Another object of the present invention is to provide an intelligent healthcare system capable of updating software or firmware through a terminal or the cloud, and/or updating its operation mode or parameters through software updates of the terminal or the cloud. effect.
  • Another object of the present invention is to provide a smart health care system that can obtain real-time detection data by communicating with a smart health care device, thereby achieving the effect of continuously monitoring specific physiological data of the user of the smart health care device.
  • Another object of the present invention is to provide an intelligent healthcare system capable of obtaining detection data by communicating with an intelligent healthcare device in the cloud, thereby enabling recording, tracking, and/or monitoring of a specific physiological condition of the user of the intelligent healthcare device. The effect of the data.
  • Another object of the present invention is to provide an intelligent health care system that enables a terminal user to change or set an operation mode or parameter of an intelligent health care device by communicating with the smart health care device.
  • Another object of the present invention is to provide a smart health care system capable of communicating with a smart health care device through a terminal, so that the terminal user can communicate and/or guide with the user of the smart health care device.
  • Another object of the present invention is to provide an intelligent healthcare system capable of communicating and interacting with users of the terminal, users of intelligent healthcare devices, and/or other authorized persons through the cloud as a communication platform. .
  • Another object of the present invention is to provide an intelligent health care device that can be given to a user through a stimulation unit. Reward incentives.
  • Another object of the present invention is to provide an intelligent health care system that can acquire and accumulate data by the cloud for analysis, statistics, and/or provision for research use.
  • Another object of the present invention is to provide a smart health care system that can communicate with an intelligent health care device through a cloud and/or a terminal, and real-time monitoring and adjustment of the smart health care device through the cloud and/or the terminal.
  • the effect of virtual reality is to provide a smart health care system that can communicate with an intelligent health care device through a cloud and/or a terminal, and real-time monitoring and adjustment of the smart health care device through the cloud and/or the terminal.
  • the present invention provides a sexual smart health care system comprising:
  • One or more intelligent health care devices adapted to be placed in the human body to communicate wireless signals
  • One or more terminals for providing a user interface to communicate wireless signals are provided.
  • One or more cloudy store the data obtained by communication for subsequent use.
  • the smart health care device comprises:
  • a computing unit that controls the smart health care device
  • a communication unit that communicates wireless signals
  • a sensing unit that detects itself and the state of the human body
  • a stimulation unit that stimulates the body.
  • the calculating unit further includes:
  • An analog to digital conversion module converts digital and analog signals for calculation, control, and/or transmission by the computing unit.
  • the smart health care system wherein one or more of the smart healthcare devices are wirelessly connected to one or more of the terminals.
  • the smart health care system wherein one or more of the terminals are wirelessly connected to one or more of the clouds.
  • Another aspect of the present invention provides a smart health care system and device control method, including the steps of:
  • the smart health care system and device control method wherein the (b) includes the following steps:
  • the smart health care system and device control method further includes the steps of:
  • Another aspect of the present invention also provides a smart health care system and device control method, including the steps of:
  • the smart health care system and device control method wherein the step (B) comprises the steps of:
  • the invention further provides an intelligent health care system comprising:
  • At least one terminal At least one terminal;
  • each of the smart healthcare devices includes at least a stimulation unit, wherein the smart healthcare device is configured to be in communication with the terminal, wherein the terminal is configured to send a control command to the smart healthcare device
  • the stimulus unit that controls the smart health care device applies a stimulus to a predetermined health care location of the user, wherein the stimulus corresponds to the control command.
  • the invention further provides an intelligent health care system comprising:
  • each of the smart healthcare devices includes at least a sensing unit, wherein the smart healthcare device is configured to be in communication with the terminal, wherein the sensing unit of the smart healthcare device is configured to detect At least one preset parameter of the at least one preset detection location of the user, wherein the terminal is configured to provide the user with at least one sexual health training mode according to the detection result of the sensing unit of the smart healthcare device.
  • the invention further provides a control method for an intelligent health care device, comprising the steps of:
  • the invention further provides a prostate physiotherapy system comprising:
  • At least one terminal At least one terminal;
  • each of the prostate physiotherapy devices includes at least a stimulation unit, wherein the prostate physiotherapy device is configured to be in communication with the terminal, wherein the terminal is configured to send a control command to the prostate physiotherapy device to control the
  • the stimulation unit of the prostatic physiotherapy device applies a stimulus to a predetermined physiotherapy site of the user, wherein the stimulus corresponds to the control command.
  • the present invention further provides a prostate physiotherapy apparatus for an intelligent prostate physiotherapy system, comprising:
  • a stimulation unit wherein the computing unit is electrically connectable to the communication unit and the stimulation unit, wherein the communication unit is configured to receive a control command from a terminal of the smart prostate therapy system, and transmit the control command to the computing unit And wherein the computing unit is configured to control the stimulation unit to apply a stimulus to a predetermined physiotherapy site of the user according to the control command.
  • the present invention further provides a prostate physiotherapy apparatus for an intelligent prostate physiotherapy system, comprising:
  • a sensing unit wherein the computing unit is electrically connected to the sensing unit, the sensing unit being configured to detect at least one preset parameter of at least one preset detection location of the user, wherein the computing unit is configured to According to the detection result of the sensing unit, a physical therapy mode is selected.
  • the invention further provides a control method for a prostate physiotherapy device, comprising the steps of:
  • FIG. 1 is a block diagram of an intelligent healthcare device of a smart healthcare system in accordance with a preferred embodiment of the present invention.
  • FIG. 2 is a connection diagram of a smart healthcare system in accordance with the above-described preferred embodiment of the present invention.
  • FIG. 3 is a schematic diagram of the application of the smart healthcare system in accordance with the above-described preferred embodiment of the present invention.
  • FIG. 4 is a schematic flow chart of a smart health care system and device control method in accordance with a first preferred embodiment of the present invention.
  • Figure 5 is a schematic flow diagram of a smart health care system and device control method in accordance with a second preferred embodiment of the present invention Cheng Tu.
  • FIG. 6 is a schematic flow chart of a smart health care system and device control method in accordance with a third preferred embodiment of the present invention.
  • a smart healthcare device such as the smart healthcare device 11
  • the computing unit 111 is a computing unit having a central processing unit, a matching line device, a memory and a flash memory, and is electrically connected to the communication unit 112, the sensing unit 113, and the stimulation unit 114.
  • the power supply unit 115 is configured to calculate, process, store, and regulate the foregoing components in the smart healthcare device 11 and the data received, received, fed back, or generated.
  • the computing unit 111 also includes an analog to digital conversion module 1111 for converting analog signals and digital signals to each other, thereby being suitable for controlling other units, transmissions, and/or data processing, and the like. It should be understood by those skilled in the art that the implementation of the computing unit 111 described above should not be considered as a limitation of the present invention. In practical applications, the computing unit 111 may also be implemented as other similar or similar functions.
  • the component for example, replaces its flash memory with a magnetic card or the like.
  • physiotherapy generally refers to the use of physical factors such as touch, tapping, massage, hot compress, cold compress, pressing, electrical stimulation, cupping, vibration, etc., acting on the human body to cause a favorable reaction, thereby A method of achieving the purpose of preventing and treating diseases.
  • physiotherapy may be limited to physical use and for rehabilitation purposes, and the present invention is directed to providing a variety of detection and/or stimulation modes with wireless connectivity, expandability, and interactivity, and through such detection and/or stimulation.
  • a system for assisting the user of the smart health care device 11 , a medical professional, a companion of the user, or other related personnel to perform various applications may include, besides physically applying the application for rehabilitation purposes, Assist in diagnosis, monitoring rehabilitation training, guiding training activities, discussing the condition, collecting research data, assisting users to interact with others, correcting or temporarily giving users specific functions or status, improving users' mental health or status, etc.
  • the "physiotherapy" in the invention is not limited to the narrow definition of the purpose of physically achieving the purpose of rehabilitation.
  • the intelligent health care device of the present invention can further provide corresponding improved physical therapy to the patient according to the detected physical therapy effect and according to the detected result, thereby causing interaction between the intelligent health care device of the present invention and the patient.
  • the communication unit 112 is implemented as a wireless high-fidelity (Wi-Fi) signal transmission unit in the present embodiment for communicating (connecting) with other devices through Wi-Fi signals, thereby causing the smart health care device 11 to Ability to communicate wirelessly with other devices or networks.
  • Wi-Fi wireless high-fidelity
  • the communication (communication) herein is not limited to direct communication (communication), in other words, the communication unit 112 can also be implemented in an actual application to communicate (connect) through the Wi-Fi signal indirectly.
  • Other devices such as wireless signal boosters, routers, or relay signals, connect to communicate (connect) target devices or communicate (connect) other devices through internal and external networks.
  • the wireless transmission mode of the communication unit 112 can be replaced or added to be implemented as Bluetooth, Bluetooth Low Energy (BLE), Near Field Communication (NFC), and infrared data association standards in addition to Wi-Fi.
  • BLE Bluetooth Low Energy
  • NFC Near Field Communication
  • IrDA ZigBee
  • WiMAX Worldwide Interoperability for Microwave Access
  • the power supply unit 115 is implemented as a lithium polymer battery unit in the embodiment, including a battery module and a power control module, wherein the power control module has a security device and a wireless charging device, thereby ensuring the smart health device 11 Long-term and safe operation.
  • the power supply unit 115 is connected to the computing unit 111 to regulate power supply to other components of the smart healthcare device 11 through the computing unit 111 to achieve an energy use optimization effect. It should be understood by those skilled in the art that the implementation of the power supply unit 115 in this embodiment does not constitute a limitation of the present invention. In actual applications, the power supply unit 115 can also be implemented as other types of batteries, such as lithium ions.
  • the power unit 115 is only connected to the computing unit 111, so that the manner of regulating the power supply to other components of the smart healthcare device 11 through the computing unit 111 can also be changed to the smart healthcare device 11 .
  • Some or all of the components are directly connected to the power supply unit 115, or other connection manners that can be obtained by the power supply unit 115, such as parallel connection.
  • the sensing unit 113 is configured to detect a specific physiological state of the user of the smart healthcare device 11 .
  • the sensing unit 113 is configured to have a pressure sensing module, a temperature sensing module, and a photoelectric sensing module. And a unit of a camera module.
  • the pressure sensing module has four sets of non-membrane pressure sensors distributed on the surface of the smart health care device 11 for detecting the use when the user places the smart health care device 11 at the anus thereof. Sphincter contraction and muscle strength.
  • the temperature sensing module has three sets of pass temperature sensors located in the front middle and rear sections of the smart health care device 11 for detecting temperatures at different locations in the user's body, such as temperatures near the prostate.
  • the photoelectric sensing module includes a photoelectric sensor for detecting blood oxygen at different positions or parts in the user, such as blood oxygen of the prostate in a hyperemic state.
  • the camera module includes two sets of cameras located at the front end of the smart health care device 11, so that stereo or multi-angle images can be taken by the two cameras for inspection. Measure physiological or pathological conditions at different locations in the user's body, such as the physiological or pathological condition of the prostate. It should be understood by those skilled in the art that the implementation of the sensing unit 113 in this embodiment does not constitute a limitation of the present invention.
  • the sensing unit 113 may be implemented to have different types, quantities, or
  • the sensing module of the setting mode for example, the pressure sensor may also have a membrane pressure sensing module, or in addition to the above sensing module, instead of or adding other sensing modules, such as an acceleration sensing module, a gyroscope, and a humidity sensing module. , power sensing module, ultrasonic sensing module, etc., or other related sensing module, such as a specific biological or chemical detection module that requires consumables to detect if there is bleeding, whether there is a specific infection, whether a specific Secretion and so on.
  • the stimulation unit 114 is configured to stimulate the user of the smart health care device 11 to achieve or help one or more of physical therapy, detection, notification, reward, interaction, etc. based on different stimulation modes or combinations of effects on the user.
  • the stimulation unit 114 is implemented in the present embodiment as a unit having a set of vibration modules, a set of discharge modules, and a set of infrared light illumination modules.
  • the vibration module includes a vibration motor and a fixing bracket thereof for vibrating the intelligent health care device 11.
  • the discharge module includes three pairs of electrodes on the surface of the smart health care device 11, a storage and discharge device, and a security device for enabling the smart health care device 11 within a specific voltage, current, frequency, and the like.
  • the infrared light illumination module has an infrared light illuminator located in front of the smart health care device 11 for improving the temperature of a specific part of the user by means of infrared light illumination, thereby performing physical therapy or auxiliary detection.
  • the stimulation unit 114 in this embodiment does not constitute a limitation of the present invention. In actual applications, the stimulation unit 114 may also be implemented in different types, quantities, or settings.
  • the stimulation module for example, increasing or decreasing the number or position of the electrode or infrared illuminator, or the like, or replacing or adding other stimulation modules, such as setting an electric heating module to maintain the temperature of the device, and setting the illumination module to provide Alerting and setting an electromagnetic movement module for moving or relatively moving the intelligent health care device 11 so that different parts of the user can be detected or treated, or the rotation module including the motor and the related transmission device and the bracket can be removed and set.
  • the front section of the smart health care device 11 can be rotated or twisted relative to the rear section to detect or physiotherapy or the like to different parts of the user.
  • the smart health care device 11 can carry different sensing units 113 and/or the stimulation unit 114 as needed, and implement devices with different appearances, such as Gourd, strip, C-ring or other shape.
  • the smart health care device 11 can be implemented as a male prostate multifunctional physiotherapy device, wherein the sensing unit 113 includes a film pressure sensor, an acceleration sensor and a gyroscope, a temperature sensor, and a photoelectric device. a sensor, and a camera, the computing unit 111 having a smartphone application, the communication Unit 112 has a Bluetooth master controller.
  • the film pressure sensor is used for detecting the contraction muscle strength of the user's sphincter
  • the acceleration sensor and the gyroscope are used to test the use posture of the intelligent health care device 11
  • the temperature sensor is used for testing the prostate temperature of the user
  • the optical sensor It is used to measure blood oxygen of the user's prostate.
  • the calculating unit 111 performs an algorithm processing on the acquired signal to obtain various indexes for the prostate region of the user, the muscle group region such as the levator ani muscle, and the sphincter.
  • the acquired values are stored in the memory of the computing unit 111, and/or wirelessly transmitted to a smartphone implemented as a terminal 12 as shown in FIG. 3 for further analysis processing, thereby
  • the user is provided with prostate physiotherapy and anal rehabilitation training.
  • the smart health care system 1 As shown in FIG. 2 and FIG. 3, the smart health care system 1 according to the above preferred embodiment of the present invention, wherein the smart healthcare device 11 is wirelessly connected to one or two terminals 12 through the communication unit 112, thereby mutually Communicate (connected), and the terminal 12 can also be wirelessly connected to a cloud 13 to communicate (connect) with each other.
  • the number of the smart health care device 11, the terminal 12, and the cloud 13 connected to each other does not constitute a limitation of the present invention. In actual applications, the number may be changed as needed. In other words, one of the smart health care devices 11 can also be connected to multiple terminals 12 at the same time.
  • One terminal 12 can also be connected to multiple clouds 13 at the same time, and one cloud 13 can also be connected to multiple terminals 12 at the same time, one terminal. 12 can also be connected simultaneously with a plurality of said smart healthcare devices 11. For example, if the user of a terminal 12 is a urologist, the terminal 12 may be connected at the same time to monitor and control the intelligent healthcare device 11 of a plurality of patients. For another example, the intelligent health care device 11 of a certain patient may also be connected and monitored by the terminal 11 belonging to the rectal department and the urologist at the same time, and monitored by the terminal 11 of the partner but not controlled, and also subject to the self. Monitoring and partial control of the terminal 11.
  • the terminal 12 exists independently of the smart healthcare device 11 and can be implemented as various wireless application devices, such as mobile phones, desktop computers, tablet computers, smart wearable devices, intelligent robots, mobile devices with wireless transmission functions, or
  • the input device or the like is implemented as an independent or dedicated monitoring device for communicating (connecting) the smart healthcare device 11 as a user interface through a wireless signal.
  • the cloud 13 is a data node, and can be implemented as various physical devices or virtual systems with connection and storage functions, such as a server, a wireless base station, a peer-to-peer network system, a NAS (Network Attached Storage) device, and the like.
  • the device that can be implemented as the terminal 12 can also be implemented or concurrently implemented as the cloud 13 .
  • a desktop computer can simultaneously serve the terminal 12 and the cloud 13 .
  • the terminal 12 and the cloud 13 are not limited to a specific device or a single device.
  • the smart healthcare device 11 and a wireless network router without a storage device may also become one cloud 13 for itself.
  • other said smart health care device 11, said terminal 12, or even said The cloud 13 accesses the data.
  • a plurality of the terminals 12 may constitute the cloud 13 or the like in a centerless peer-to-peer network system.
  • the terminal 12 and the cloud 13 can be implemented by installing a specific application on one or more devices, and the application can be upgraded, so that even for the existing smart health device 11
  • the communication (communication) and regulation can be communicated in different ways to maintain the advanced physiotherapy methods used by the smart health care system 1.
  • the smart healthcare device 11 can also actively or passively update its own software or firmware through the terminal 12 and/or the cloud 13 at any time.
  • the cloud 13 and/or the terminal 12 communicates (connects) with the smart healthcare device 11 and through the cloud 13 and/or the terminal 12 for the smart
  • the real-time monitoring and adjustment of the sexual health equipment 11 can also achieve the effect of virtual reality.
  • a patient can feel his own rectal wall in real time by the action of the matching stimulation unit 114 of the smart health care device 11 by clicking on the rectal wall displayed on the screen of a tablet computer implemented as the terminal 12. Being touched and so on.
  • the implementation of the virtual reality is not limited to the above manner, and can be implemented in combination with other devices or systems.
  • the smart health care system 1 can also implement remote guidance or interaction in one or more ways, for example, a doctor can issue a specific stimulus through his terminal 12, such as vibrating or discharging a particular location of the patient's smart healthcare device 11. Etc., to indicate or remind the patient of the focus of rehabilitation training, or the doctor through his terminal 12 from the image of the camera of the patient's intelligent health care device 11 to observe whether the patient has exercised the correct muscle or exercised the muscle in the correct manner, And in real time through the cloud 13, the patient's terminal 12 to give text, voice, video or other means of prompting or guidance, thereby directly teaching the patient the most correct way of rehabilitation training.
  • a doctor can issue a specific stimulus through his terminal 12, such as vibrating or discharging a particular location of the patient's smart healthcare device 11. Etc., to indicate or remind the patient of the focus of rehabilitation training, or the doctor through his terminal 12 from the image of the camera of the patient's intelligent health care device 11 to observe whether the patient has exercised the correct muscle or exercised the muscle in
  • the present invention is based on its intelligent system, and measures such as the above-mentioned guidance, online interaction, rewards, and the like can also be performed purely by software provided in one or more devices in the smart health care system 1, thereby obtaining similar effects and saving professionalism. The time and energy of the medical staff.
  • the smart health care device 11 may perform rehabilitation training for the patient alone or in combination with the specific terminal 12 and/or the cloud 13 according to the order of the doctor, the patient or the family, and the like, and by pre-recording or pre-setting, Even with the procedure that has been corrected by the doctor in advance, the patient is given a specific stimulus, and the patient is instructed or reminded of the focus of the rehabilitation training, or the image of the camera of the patient's intelligent health care device 11 is also read to observe whether the patient is exercising. The correct muscles or the muscles are trained in the right way, and then the text, voice, image or other means of prompting or guiding are given in the cloud 13 and the patient's terminal 12 in real time, thereby directly teaching the patient the most correct rehabilitation training method.
  • the patient can also enter the text or voice information in the terminal 12 by means of question and answer, and then judged by the software in the system. Should, for example, display or play on the patient terminal 12 in words, pictures, sounds or images, and/or to control the patient's intelligent health care device 11 to perform a specific stimulation mode, such as electric shock to a specific part, thereby realizing real-time interaction or online interaction, Answer patient questions or communicate with patients.
  • a method similar to the above-mentioned method can also be implemented by the smart health care system 1. For example, after the software parameters are set by the doctor according to the patient's condition, the non-medical professional interacts with the patient through the software to reach, for example, remind the patient to be correct. Perform rehabilitation training or reward patients.
  • the patient uses the correct muscle for rehabilitation training, it is continuously detected and recorded by the specific pressure sensor of the intelligent health care device 11, and the software can automatically give affirmation, encouragement or reward in real time, such as A piece of text, music, video, etc. is played through the terminal 12 of the patient, the instant information is sent to the patient via the network, or the user is given a massage for a period of time by the smart health care device 11.
  • connection between the terminal 12 and the cloud 13 is not limited to one-to-one.
  • a cloud 13 implemented as a hospital intranet server may simultaneously provide multiple medical personnel, multiple patients, and multiple users. The patient's family, and the terminal 12 of a plurality of researchers, are connected to acquire data, perform feedback, analyze or record, and the like.
  • a terminal 13 implemented as a mobile phone of a urologist may simultaneously communicate (connect) a cloud 13 implemented as a hospital intranet server, and a server implemented as a urinary intranet server.
  • the cloud 13, a cloud 13 or the like implemented as an internet server, thereby synchronously storing or backing up data or assisting in analysis, retrieval, and the like.
  • a network in which one or both of them are connected may be regarded as one of the clouds 13.
  • the cloud terminals 13 When the cloud terminals 13 are connected to each other, one of the clouds 13 may be regarded as one of the terminals 12, or two of the clouds 13 may be regarded as one.
  • the cloud 13 may have an effect extending to the function based on its storage and analysis function, such as data tracking, so that the terminal 12 like a doctor does not need to store data of all the patients at all times, but may choose to only load
  • the data can be obtained through the cloud 13 for data tracking.
  • the cloud 13 finds such a situation to be noted according to the data that it continuously acquires and stores, it may push The relevant alert information is to the terminal 12, such as a doctor and/or patient.
  • the rules in such data may be built in by the smart health care system 1 software or set by the user, such as a doctor, or suggested by the software or set by the user, and then changed by the user. .
  • Parameters such as doctor-set parameters or rules, or data stored in the cloud 13 can be further integrated over time to obtain settings that are more suitable for users of various ethnic groups, ages, regions, or other characteristics. Parameters and related characteristics or medical data for subsequent system development upgrades or scientific research.
  • the connection manner between the terminal 12 and the cloud 13 is not limited to a wireless connection, and may be partially or completely connected in a wired manner based on considerations such as security or convenience of installation.
  • any connection of the smart healthcare device 11, the terminal 12, and the cloud 13 may be provided with different permission differences, for example, only a specific terminal 12 is allowed to connect to a specific cloud 13 And a specific intelligent healthcare device 11, and in a particular terminal 12 that is allowed to connect to a particular smart healthcare device 11, some terminals 12 can obtain all of the detection data and have full authority to remotely control the particular smart healthcare device 11, Some terminals 12 can only obtain partial detection data and/or partial control rights.
  • a doctor's terminal 12 has complete detection data and control authority of the patient's intelligent health care device 11; a researcher's terminal 12 has detection data of all the hospital's cloud 13 and all intelligent health care devices 11 in a certain area.
  • the terminal 12 of a device engineer only has the right to update the software and firmware of all the cloud 13 and intelligent health care device 11 that need to be upgraded in a certain area. , but did not access data and control permissions.
  • the terminal 12 and the cloud 13 can also be temporarily authorized to increase the flexibility of application. For example, when the intelligent health care device 11 of a patient temporarily loses connection, the attending physician can still issue a detection such as a certain detection through the terminal 12.
  • the instruction of the stimulus is performed twice, and the instruction is temporarily or permanently stored in a commonly connected cloud 13 or other terminal 12 like the patient's family, even if the terminal 12 of the attending physician is offline, once
  • the patient's smart health care device 11 is connected to the cloud 13 or the patient's family terminal 12, or the terminal 12 of the patient's smart health care device 11 is connected to the cloud 13 or the patient's family terminal 12, then The instructions will still be released to the patient's smart healthcare device 11 so that the device is judged and executed in accordance with the content of the instructions.
  • the smart health care system and device control method 1000 is based on the smart health care system and device of the above embodiment, and includes the following steps:
  • the step (a) is that the applicable smart health care device 11 is placed in a physiotherapy site required by the user, such as an anus. This step can be performed by a professional, such as a healthcare professional, by the patient himself, or by others, depending on the condition, physical therapy site, or other needs.
  • the step (b) is performed by the smart health care device 11 according to its default or set program and the composition of the sensing unit 113, etc., to perform one or more detection operations at the physical therapy site.
  • the step (b) may also include the step (b1) of setting the detecting operation by the terminal and the step (b2) detecting the state of the physiotherapy part according to the setting.
  • the step (c) is to enable the terminal 12 to communicate (connect) the smart healthcare device 11 through a direct or indirect wireless connection established between the terminal 12 and the smart healthcare device 11 to obtain the intelligence.
  • the health care device 11 passes the detection data obtained in the step (b).
  • the terminal 12 After the data is detected, there may be various applications. For example, if the user of the terminal 12 is a doctor, the data may be directly interpreted or diagnosed, or the user of the terminal 12 is the patient himself, and then the terminal 12 may be further used. Internal or external software further analyzes or processes the data.
  • the smart health care system and device control method 2000 is based on the smart health care system and device of the above embodiment, and includes the following steps:
  • step (A) is the same as step (a).
  • the step (B) is performed by the smart health care device 11 according to its default or set program and the composition of the stimulation unit 114, etc., to perform one or more stimulation tasks at the physical therapy site.
  • the step (B) may also include the step (B1) of setting the stimulation work by the terminal and the step (B2) setting the stimulation treatment site.
  • the step (C) is to enable the terminal 12 to communicate (connect) the smart health care device 11 through a direct or indirect wireless connection established between the terminal 12 and the smart healthcare device 11, thereby controlling (including changing The smart health device 11 stimulates the physiotherapy site.
  • the smart health care system and device control method 3000 is based on the smart health care system and device of the above embodiment, and includes the following steps:
  • the steps (a), (b), and (c) are the same as described above.
  • the step (d) is that the terminal user, such as a doctor, considers that there is a need for change or repeated detection according to the detection data of the step (c), so the terminal controls the smart health device to change the detection mode or parameter, or repeats
  • the detection may also be returned to the step (b).
  • the step (c) the data of the abnormal pressure is transmitted, and the doctor controls the smart health care device to start the camera that is not activated by the terminal to check whether the appearance of the part is abnormal.
  • step (c) data of abnormal temperature is transmitted, and the doctor controls the intelligent health care device to increase the detection frequency of the temperature sensor through the terminal to more accurately track and verify the temperature change of the physiotherapy site.
  • the step (e) is an end user, such as a doctor, according to the detection data of the step (c), it is considered that the physiotherapy part should be stimulated, and the stimulation unit of the intelligent health care device is controlled by the terminal to perform the corresponding Stimulate the action to stimulate the physiotherapy site.
  • the control of the step (d) and the step (e) is not necessarily an immediate reaction, and the type or parameter of the stimulus or the change of the parameter may be detected, or set as described above, such as when a certain temperature is detected. Wait.
  • the present invention provides an intelligent healthcare system comprising at least one intelligent healthcare device 11 and at least one terminal 12, wherein each The smart healthcare device 11 includes at least a stimulation unit 114, wherein the smart healthcare device 11 is configured to be in communication with the terminal 12, respectively, wherein the terminal 12 is configured to send a control command to the smart healthcare device 11 to
  • the stimulation unit 114 that controls the smart healthcare device 11 applies a stimulus to a predetermined health care location of the user, wherein the stimulus corresponds to the control command.
  • the presuppositional health care part in this article refers to the sexual health care part of the patient (or user), such as the male prostate, the prostate-related sphincter, the levator ani muscle, the levator ani muscle, and the female vagina ( Or pelvic floor muscles, clitoris, haze, breasts and other sexually sensitive parts or sexual organs.
  • the stimulation unit 114 herein refers to a physical therapy or health training capable of providing or applying physical stimulation to the predetermined health care site, such as touching, tapping, massaging, hot compressing, cold compressing, pressing, electrical stimulation, cupping, and/or vibration. Devices and/or components.
  • a terminal in this document refers to any electronic device capable of transmitting a control command to the smart health care device 11, wherein the terminal may be a portable desktop, a control host, or the like, or may be a portable device such as a smart phone, a tablet, or a portable computer.
  • the intelligent healthcare device 11 herein is provided to be in communication with the terminal 12, respectively, to mean that the smart healthcare device 11 and the terminal 12 are signalably coupled together by wire or wireless means. Therefore, the smart health care device 11 of the intelligent health care system of the present invention can be electrically connected to the terminal 12 in a wired manner, or can be connected through an electronic communication network.
  • the electronic communication network herein can be any electronic communication network that implements communication between the intelligent healthcare device 11 and the terminal 12.
  • the electronic communication network may be one of a local area network (LAN), a metropolitan area network (MAN), a wide area network (WAN), and the like.
  • the electronic communication network may also be another communication network capable of realizing communication between the intelligent healthcare device 11 and the terminal 12, such as GSM, 3G mobile communication networks (CDMA, CDMA 200, TD-CDMA, WCDMA, etc.), 4G mobile. Communication networks (TD-LTE, FDD-LTE, etc.), 5G mobile communication networks, satellite communication and other communication networks.
  • the terminal 12 is also available via wireless local area network (WLAN or Wi-Fi), Near Field Communication (NFC), Infrared Data Association Standard (IrDA), ZigBee, Worldwide Interoperability for Wi-Fi (WiMAX), Bluetooth (Bluetooth)
  • WLAN wireless local area network
  • NFC Near Field Communication
  • IrDA Infrared Data Association Standard
  • ZigBee Worldwide Interoperability for Wi-Fi
  • WiMAX Bluetooth
  • Bluetooth Bluetooth
  • a communication network such as Hot Point or the like communicates with the intelligent healthcare device 11.
  • the smart healthcare device 11 and the terminal 12 pass through a wireless local area network, Near Field Communication (NFC), ZigBee, Bluetooth or Hot Point.
  • the communication network realizes communication and signal transmission.
  • the terminal 12 is configured to provide a user interface and provide at least one sexual health training mode to the user through the user interface, wherein the terminal 12 is configured to allow a user to provide from the terminal 12 through the user interface. Selecting at least one sexual health training mode in the sexual health training mode, and generating a corresponding control instruction according to the sexual health training mode selected by the user, thereby controlling the stimulation unit 114 of the smart health care device 11 to the user.
  • the predetermined health care site applies the stimulus, wherein the stimulus corresponds to the sexual health training mode selected by the user.
  • the user interface of the terminal herein refers to any physical or virtual interface that allows one-way information to be provided to the user or interact with the user.
  • the user interface may be an operation interface provided by a programmed electronic device through a display screen, or may be a voice control device composed of a programd electronic device such as an audio and a microphone.
  • the sexual health training mode in this article refers to the user can carry out sexual health training, exercise or presupposition health part physical therapy, such as levator ani exercise, abdomen exercise, squat exercise, prostate massage, perineal massage, perineal heat Etc., procedures or guidance.
  • the sexual health training mode may involve levator ani exercise (prostate care), and the sexual health training mode may involve the time of levator ani exercise (such as before going to bed every night), frequency (such as 10 times per minute), Duration (such as 10 minutes each time) and so on.
  • the appropriate sexual health training model for each patient is very different in probability. According to the actual situation of each person, providing multiple sexual health training modes and selecting the applicable sexual health training mode by the user is very necessary for the patient, which can greatly improve the patient experience, pleasure and self-confidence. heart.
  • the terminal 12 is further configured to allow a user to input user personal information through the user interface and to recommend a sexual health training mode to the corresponding user based on the user's personal information.
  • the terminal 12 is further configured to collect historical health training data of the user, and automatically recommend a sexual health training mode to the corresponding user based on the collected historical health training data.
  • the sexual health training mode selected by the user is unchanged for a long period of time, and the terminal 12 is set to automatically recommend the health training mode to the corresponding user, which can prevent the user from performing each time.
  • health training through selective software operations, selective health training mode and progressive health training can be carried out.
  • each of the smart health care devices 11 of the intelligent health care system of the present invention further includes a sensing unit 113, wherein the sensing unit 113 of the smart healthcare device 11 is configured to enable Detecting at least one preset parameter of at least one preset detection location of the user, wherein the terminal 12 is configured to transmit the smart health care device 11 to the smart health care device 11 according to the detection result of the sensing unit 113 of the smart health care device 11 Controlling instructions to control the predetermined health care part of the stimulation unit 114 of the smart health care device 11 to the user Apply the stimulus.
  • the preset detection location in this document refers to the detection location corresponding to the smart health care device 11, for example, when the smart health care device 11 is a prostate health care device, the preset detection site may be The prostate, sphincter, levator ani muscle, levator ani muscle, etc., the corresponding preset parameters may be temperature, ultrasonic penetration, light reflection characteristics, electrical conductivity, development and/or sphincter contractility.
  • the preset health care part and the preset detection part may be the same or different.
  • the intelligent health care system of the present invention further includes a cloud 13 configured to be respectively connectable to the terminal 12 via an electronic communication network, wherein the terminal 12 is configured to The cloud 13 transmits at least one request information, and the cloud 13 is configured to provide the terminal 12 with a sexual health training mode corresponding to the request information according to the request information, wherein the terminal 12 is configured to allow a user to pass the terminal 12
  • the user interface selects at least one sexual health training mode from the sexual health training mode provided by the cloud 13 and generates a corresponding control instruction according to the sexual health training mode selected by the user, thereby controlling the smart health care device 11
  • the stimulation unit 114 applies the stimulus to the predetermined health care site of the user, wherein the stimulus corresponds to the sexual health training mode selected by the user.
  • the request information in this document includes at least one request and information related to the request, and the request may be a command for requesting the cloud 13 to provide a sexual health training mode, and the request information may be determining the property provided by the cloud 13
  • the type or type of the health training mode may also be the basis or basis of the category or type of the social health training mode that the cloud 13 provides to the terminal 12, such as the patient's personal information.
  • the cloud 13 is configured to collect historical health training data of each user through the terminal 12, and to use the terminal 12 according to the collected historical health training data and user classification of the user.
  • the recommended health care training mode wherein the terminal 12 is configured to provide the user with the sexual health training mode recommended by the cloud 13 to the user through the user interface thereof, wherein the cloud 13 recommends the sexual health training to the user.
  • the pattern corresponds to the category in which the user is located.
  • the cloud 13 is configured to collect historical health training data of each patient (or user) through the terminal 12, and analyze the collected historical health training data of the user to determine different types of
  • the user has a sexual health training model with positive health training results (or good health training results) and recommends or provides the sexual health training model to the appropriate type of patient.
  • the cloud 13 is configured to collect and analyze the big data of the sexual health training of each patient (or user), thereby obtaining the best or better health training mode for or adapting to different types of patients. And provide it to the user to guide the user to get the best sexual health effects or physiotherapy prognosis. It can be understood that the cloud 13 provides a sexual health training mode according to the user's historical health training data, and the sexual health training mode provided by the cloud 13 according to the request information.
  • the sexual health training mode provided by the cloud 13 according to the individual situation and the sexual health training mode provided by the terminal 12 according to the detection result of the sensing unit 113 of the smart health care device 11 may be identical to each other or may be different.
  • the stimulation unit 114 of the intelligent health care device 11 of the intelligent health care system of the present invention further comprises a vibration module, a discharge module, an infrared illumination module, an electric heating module, a magnetic therapy module, and a massage. Module, fire extraction module and / or cold pack module.
  • the vibration module includes a vibration motor and a fixing bracket for enabling the smart health care device 11 to vibrate, and the vibration is provided or applied to the preset health care part by the smart health care device 11;
  • the discharge module Including at least one pair of electrodes, accumulators, and security modules located on the surface of the smart healthcare device 11 for providing or applying specific voltages, currents, and frequencies to different locations of the user's predetermined health care site, such as a sphincter.
  • the infrared light illuminating module includes an infrared illuminator, wherein the infrared illuminator is disposed in a front portion of the smart health device 11, wherein the infrared illuminator is capable of improving the user by infrared light irradiation
  • the temperature of the pre-set health care site thereby physiotherapy or ancillary treatments for the pre-determined health care site.
  • the stimulation unit 114 can also be embodied as a stimulation module having different kinds, numbers or settings, such as increasing or decreasing the number of the electrodes or infrared illuminators, changing their setting positions, or using other stimulation modules.
  • the smart health care device 11 can carry different stimulation units 114 as needed, and implement devices with different appearances, such as gourd, strip, C-shape or other. Suitable shape.
  • the intelligent health care device 11 of the intelligent health care system of the present invention further includes a sensing unit 113 for detecting a physiological state of the user.
  • the sensing unit 113 further includes a pressure sensing module, a temperature sensing module, a photoelectric sensing module, a camera module and/or an ultrasonic sensing module, wherein the pressure sensing module comprises a pressure sensor, the pressure sensor of the pressure sensing module is adapted to detect a muscle contraction force of the predetermined detection portion of the user, wherein the temperature sensing module comprises at least three temperature sensors, the temperature sensing module
  • the temperature sensors are respectively disposed in the front, middle and rear sections of the smart health care device 11, so that when the smart health care device 11 is placed in the preset detection site, the difference of the preset detection sites of the user can be detected.
  • the photoelectric sensing module comprises a set of photoelectric sensors, wherein the photoelectric sensor is adapted to detect blood oxygen at different positions of the preset detection portion of the user when the intelligent health care device 11 is placed in the body
  • the camera module includes a set of cameras, the camera of the camera module is They are respectively disposed in the front stage of the smart health care device 11, so that when the smart health care device 11 is placed in the body, the physiological or pathological condition of the preset detection site of the user can be photographed through the camera at multiple angles. Therefore, the preset parameter of the preset detection portion may be pressure (or contraction force), temperature, blood oxygen content, radio and television characteristics, image or development, wave reflection or echo, and the like.
  • the intelligent healthcare device 11 of the intelligent health care system of the present invention further includes a computing unit 111 and a communication unit 112, wherein the computing unit 111 is a central processing unit. a computing unit having matching functions of a line, a memory, a memory, and a flash memory, wherein the computing unit 111 is electrically connected (or electrically connected) to the communication unit 112, the sensing unit 113, and the stimulation unit 114 to It is used for calculating, processing, storing, and regulating data of information transmission, feedback, or generation of the above-mentioned electronic components in the smart health care device 11.
  • the computing unit 111 further includes an analog to digital conversion module 1111 for converting the analog signal to the digital signal to be suitable for controlling other modular units, transmitting and/or processing data, and the like. It should be understood by those skilled in the art that the above embodiment of the computing unit 111 should not be construed as limiting the invention. In practical applications, the computing unit 111 can also be implemented as other components having the same or similar functions. For example, the flash memory is replaced with a magnetic card or the like.
  • the smart health care device 11 of the intelligent health care system of the present invention further includes a power supply unit 115, wherein the computing unit 111 is electrically connected (or electrically connected) to the power supply unit. 115, to control the power supply of the power unit 115 to the respective electronic modules of the smart healthcare device 11.
  • the present invention further provides an intelligent healthcare system, optionally comprising a terminal 12 and an intelligent healthcare device 11
  • Each of the smart healthcare devices 11 includes at least a sensing unit 113, wherein the smart healthcare device 11 is disposed in communication with the terminal 12, respectively, wherein the sensing unit 113 of the smart healthcare device 11 is configured to enable Detecting at least one preset parameter of at least one preset detection portion of the user, wherein the terminal 12 is configured to provide at least one sexual health care to the user according to the detection result of the sensing unit 113 of the smart health care device 11 Training mode.
  • the terminal 12 is configured to provide a user interface and provide a sexual health training mode to the user through the user interface, wherein the terminal 12 is configured to allow a user to navigate from the terminal 12 through the user interface through the user interface. At least one sexual health training mode is selected in the sexual health training mode provided by the user, and the user is provided with corresponding sexual health training guidance according to the sexual health training mode selected by the user.
  • the health training guidance herein refers to the terminal 12 assisting or prompting the patient (or user) to conduct sexual health training through its user interface through sound, text and/or images.
  • the present invention further provides a control method for an intelligent health care device, comprising the steps of:
  • control method for the smart health care device of the present invention comprises the following steps:
  • step (a1) recommending a sexual health training mode to the corresponding user based on the collected historical health training data of the user, wherein the step (a1) is located before the step (a).
  • control method for the smart health care device of the present invention further comprises the following steps:
  • step (a2) recommending a sexual health training mode to the corresponding user according to the user's personal information, wherein the step (a2) is located before the step (a).
  • control method for the smart health care device of the present invention further comprises the following steps:
  • step (a5) providing the user with a sexual health training mode fed back according to the request information to the user, wherein the steps (a4) and (a5) are located before the step (a).
  • control method for the smart health care device of the present invention comprises the following steps:
  • a prostate physiotherapy system includes at least one prostate physiotherapy device 11 and at least one terminal 12, each of which The prostate physiotherapy device 11 comprises at least a stimulation unit 114, wherein the prostate physiotherapy device 11 is arranged to be in communication with the terminal 12, respectively, wherein the terminal 12 is arranged to send a control command to the prostate physiotherapy device 11 to control the prostate treatment
  • the stimulation unit 114 of the device 11 applies a stimulus to a predetermined physiotherapy site of the user, wherein the stimulus corresponds to the control command.
  • the preset physiotherapy site in this article refers to the prostate physiotherapy site of the patient (or user), such as the male prostate, the prostate-related sphincter, the levator ani muscle and/or the levator ani muscle.
  • the stimulation unit 114 herein refers to being able to provide or apply physical stimulation to the predetermined physical therapy site, such as touching, tapping, massaging, and heat.
  • Devices and/or components for physiotherapy or health training such as application, cold compress, compression, electrical stimulation, cupping and/or vibration. Accordingly, the stimuli herein may be well known to those skilled in the art, including the above-described physical stimuli, any stimuli that impart positive feedback to the predetermined physiotherapy site.
  • a terminal herein refers to any electronic device capable of transmitting a control command to the prostate physiotherapy device 11, wherein the terminal may be a portable desktop, a control host, or the like, or may be a portable electronic device such as a smart phone, a tablet, or a portable computer. device.
  • the prosthetic physiotherapy device 11 herein is provided in communication with the terminal 12, respectively, to mean that the prostate physiotherapy device 11 and the terminal 12 are signalably coupled together by wire or wireless means. Therefore, the prostate physiotherapy device 11 of the prostate physiotherapy system of the present invention can be electrically connected to the terminal 12 in a wired manner, or can be connected through an electronic communication network.
  • the electronic communication network herein may be any electronic communication network that enables communication between the prostate physiotherapy device 11 and the terminal 12.
  • the electronic communication network may be one of a local area network (LAN), a metropolitan area network (MAN), a wide area network (WAN), and the like.
  • the electronic communication network may also be other communication networks capable of realizing communication between the prostate physiotherapy device 11 and the terminal 12, such as GSM, 3G mobile communication networks (CDMA, CDMA 200, TD-CDMA, WCDMA, etc.), 4G mobile communication. Network (TD-LTE, FDD-LTE, etc.), 5G mobile communication network, satellite communication and other communication networks.
  • the terminal 12 is also available via wireless local area network (WLAN or Wi-Fi), Near Field Communication (NFC), Infrared Data Association Standard (IrDA), ZigBee, Worldwide Interoperability for Wi-Fi (WiMAX), Bluetooth (Bluetooth)
  • WLAN wireless local area network
  • NFC Near Field Communication
  • IrDA Infrared Data Association Standard
  • ZigBee Worldwide Interoperability for Wi-Fi
  • WiMAX Bluetooth
  • a communication network such as Hot Point or the like communicates with the prostate physiotherapy device 11.
  • the prostate physiotherapy device 11 and the terminal 12 implement communication and signal transmission through a communication network such as wireless local area network, near field communication (NFC), ZigBee, Bluetooth or Hot Point.
  • the terminal 12 is configured to provide a user interface and provide at least one physiotherapy mode to the user through the user interface, wherein the terminal 12 is configured to allow the user to provide the physiotherapy from the terminal 12 through the user interface Selecting at least one physical therapy mode in the mode, and generating a corresponding control command according to the physical therapy mode selected by the user, thereby controlling the stimulation unit 114 of the prostate physical therapy device 11 to apply the stimulation to the predetermined physical therapy portion of the user.
  • the stimulus corresponds to the physiotherapy mode selected by the user.
  • the user interface of the terminal herein refers to any physical or virtual interface that allows one-way information to be provided to the user or interact with the user.
  • the user interface may be an operation interface provided by a programmed electronic device through a display screen, or may be a voice control device composed of a programd electronic device such as an audio and a microphone.
  • the physiotherapy mode in this article refers to the procedure by which the user can perform prophylactic physiotherapy, exercise or preset physical therapy physiotherapy, such as levator ani exercise, abdomen exercise, squat exercise, prostate massage, perineal massage, perineal heat, etc. Or guidance.
  • the physiotherapy mode may involve levator ani exercise (prostate physiotherapy), then the physiotherapy mode may It refers to the time of levator ani exercise (such as every night before going to bed), frequency (such as 10 times per minute), duration (such as 10 minutes each time).
  • levator ani exercise such as every night before going to bed
  • frequency such as 10 times per minute
  • duration such as 10 minutes each time.
  • the physiotherapy mode applicable to each patient is very different in probability. According to the actual situation of each person, providing multiple physiotherapy modes and selecting the physiotherapy mode that the user applies is very necessary for the patient, which can greatly improve the user experience, pleasure and self-confidence.
  • the terminal 12 is further configured to allow a user to input user personal information through the user interface and to recommend a physical therapy mode to the corresponding user based on the user's personal information.
  • the terminal 12 is further configured to collect historical physiotherapy data of the user and automatically recommend a physiotherapy mode to the corresponding user based on the collected historical physiotherapy data.
  • the physiotherapy mode selected by the user is constant for a relatively long period of time, and the terminal 12 is set to automatically recommend the physiotherapy mode to the corresponding user, which can avoid the user going through the prostate physiotherapy every time. Complex software operations are required to select a physiotherapy mode and perform prostate physiotherapy.
  • each of the prostate physiotherapy devices 11 of the prostate physiotherapy system of the present invention further includes a sensing unit 113, wherein the sensing unit 113 of the prostate physiotherapy device 11 is configured to detect a user At least one preset parameter of at least one preset detection location, wherein the terminal 12 is configured to transmit the control command to the prostate physiotherapy device 11 according to the detection result of the sensing unit 113 of the prostate physiotherapy device 11, thereby controlling
  • the stimulation unit 114 of the prostate physiotherapy device 11 applies the stimulus to the predetermined physiotherapy site of the user.
  • the preset detection site herein refers to a detection site corresponding to the prostate physiotherapy device 11, for example, the preset detection site may be a prostate, a sphincter, an levator ani, an levator ani muscle, etc.
  • the preset parameters may be temperature, ultrasonic penetration, light reflection characteristics, electrical conductivity, development and/or sphincter contractility, and the like.
  • the preset physiotherapy site and the preset detecting site may be the same or different.
  • the prostate physiotherapy system of the present invention further includes a cloud 13 wherein the cloud 13 is configured to be in communication with the terminal 12 via an electronic communication network, wherein the terminal 12 is configured to The cloud 13 transmits at least one request information, and the cloud 13 is configured to provide the terminal 12 with a physiotherapy mode corresponding to the request information according to the request information, wherein the terminal 12 is configured to allow a user to pass the user interface of the terminal 12.
  • the request information in this document includes at least one request and information related to the request
  • the request may be a command to request the cloud 13 to provide a physiotherapy mode
  • the request information may be a category or a type of determining a physiotherapy mode provided by the cloud 13 or a basis for the cloud 13 to provide the terminal 12 with a category or type of a physiotherapy mode. Or based on, such as the patient's personal information.
  • the cloud 13 is configured to collect historical physiotherapy data of each user through the terminal 12, and recommend a physiotherapy mode to the user through the terminal 12 according to the collected historical physiotherapy data and user classification of the user.
  • the terminal 12 is configured to provide the physiotherapy mode recommended by the cloud 13 to the user to the user through the user interface thereof, wherein the physiotherapy mode recommended by the cloud 13 to the user corresponds to the user's classification.
  • the cloud 13 is configured to collect historical physiotherapy data of each patient (or user) through the terminal 12, and analyze the collected historical physiotherapy data of the user to determine that different types of users have yang The physiotherapy pattern of prostate physiotherapy results (or good health training results) and recommend or provide the physiotherapy mode to the appropriate type of patient.
  • the cloud 13 is configured to collect and analyze the prostate physiotherapy big data of each patient (or user), thereby obtaining the best or preferred physiotherapy mode for or adapting to different types of patients, and Provide users to guide users to get the best prostate physiotherapy or physiotherapy prognosis. It can be understood that the cloud 13 provides a physiotherapy mode according to the user's historical physiotherapy data, a physiotherapy mode provided by the cloud 13 according to the request information, a physiotherapy mode provided by the cloud 13 according to a personal situation, and the terminal 12 is according to the prostate physiotherapy.
  • the physiotherapy modes provided by the detection results of the sensing unit 113 of the device 11 may be identical to each other or may be different.
  • the stimulation unit 114 of the prostate physiotherapy device 11 of the prostate physiotherapy system of the present invention further comprises a vibration module, a discharge module, an infrared illumination module, an electric heating module, a magnetic therapy module, a massage module, Fire the module and / or cold pack.
  • the vibration module includes a vibration motor and a fixing bracket for vibrating the prostate physiotherapy device 11 and providing or applying the vibration to the preset physiotherapy site through the prostate physiotherapy device 11;
  • the discharge module includes at least one An electrode, an accumulator, and a security module located on a surface of the prostatic physiotherapy device 11 for providing or applying electrical stimulation having a specific voltage, current, frequency, etc.
  • the infrared light illuminating module includes an infrared illuminator, wherein the infrared illuminator is disposed at a front portion of the prostate physiotherapy device 11, wherein the infrared illuminator is capable of enhancing a preset physiotherapy portion of the user by infrared light irradiation.
  • the temperature is such that the predetermined physiotherapy site is treated or assisted.
  • the stimulation unit 114 can also be embodied as a stimulation module having different kinds, numbers or settings, such as increasing or decreasing the number of the electrodes or infrared illuminators, changing their setting positions, or using other stimulation modules.
  • adding other stimulation modules such as adding an electrothermal module to maintain device temperature, adding a lighting module to provide an alert, and adding an electromagnetic movement module to move or relatively move the prostate treatment device 11 Can detect or physiosize different parts of the user, or help remove and add packages
  • the motion module of the motor and the associated transmission device enables the front section of the prostate physiotherapy device 11 to be rotated or twisted relative to the posterior segment to detect or physiotherapy different parts of the user.
  • the prostate physiotherapy device 11 can be equipped with different stimulation units 114 as needed, and implemented as devices having different shapes, such as a gourd shape, a strip shape, a C shape or the like. shape.
  • the prostate physiotherapy apparatus 11 of the prostate physiotherapy system of the present invention further includes a sensing unit 113 for detecting a physiological state of the user.
  • the sensing unit 113 further includes a pressure sensing module, a temperature sensing module, a photoelectric sensing module, a camera module and/or an ultrasonic sensing module, wherein the pressure sensing module comprises a pressure sensor, the pressure sensor of the pressure sensing module is adapted to detect a muscle contraction force of the predetermined detection portion of the user, wherein the temperature sensing module comprises at least three temperature sensors, the temperature sensing module Temperature sensors are respectively disposed in the front, middle and rear sections of the prostate physiotherapy device 11, so that when the prostate physiotherapy device 11 is placed at the preset detection site, the different positions of the predetermined detection site of the user can be detected.
  • the photoelectric sensing module comprises a set of photoelectric sensors, wherein the photoelectric sensor is adapted to detect blood oxygen at different positions of the preset detecting portion when the prostate physiotherapy device 11 is placed in the body, wherein the camera module A set of cameras is included, the cameras of the camera module are respectively disposed at the front of the prostate physiotherapy device 11, thereby Prostate treatment device 11 is placed in the body, the user can shoot the predetermined site of physiological or pathological conditions detected by the multi-angle camera. Therefore, the preset parameter of the preset detection portion may be pressure (or contraction force), temperature, blood oxygen content, radio and television characteristics, image or development, wave reflection or echo, and the like.
  • the prostate physiotherapy apparatus 11 of the prostate physiotherapy system of the present invention further includes a computing unit 111 and a communication unit 112, wherein the computing unit 111 is a central processor and is matched thereto.
  • a modular unit having a computing function of a line, a memory, a memory, and a flash memory, wherein the computing unit 111 is electrically connected (or electrically connectable) to the communication unit 112, the sensing unit 113, and the stimulation unit 114 for use in Data for transceiving, feeding, or generating information of the electronic components in the prostate physiotherapy device 11 is calculated, processed, stored, and regulated.
  • the computing unit 111 further includes an analog to digital conversion module 1111 for converting the analog signal to the digital signal to be suitable for controlling other modular units, transmitting and/or processing data, and the like. It should be understood by those skilled in the art that the above embodiment of the computing unit 111 should not be construed as limiting the invention. In practical applications, the computing unit 111 can also be implemented as other components having the same or similar functions. For example, the flash memory is replaced with a magnetic card or the like.
  • the prostate physiotherapy apparatus 11 of the prostate physiotherapy system of the present invention further includes a power supply unit 115, wherein the calculation unit 111 is electrically connected (or electrically connected) to the power supply unit 115, The power supply unit 115 is controlled to supply power to the respective electronic modules of the prostate physiotherapy device 11.
  • the present invention further provides a prostate physiotherapy system, optionally comprising a terminal 12 and a prostate physiotherapy device 11, wherein Each of the prostate physiotherapy devices 11 includes at least a sensing unit 113, wherein the prostate physiotherapy device 11 is disposed in communication with the terminal 12, respectively, wherein the sensing unit 113 of the prostate physiotherapy device 11 is configured to detect at least a user At least one preset parameter of a predetermined detection site, wherein the terminal 12 is configured to provide at least one physical therapy mode to the user according to the detection result of the sensing unit 113 of the prostate physiotherapy device 11.
  • the terminal 12 is configured to provide a user interface and provide a physiotherapy mode to the user through the user interface, wherein the terminal 12 is configured to allow a user to communicate from the terminal 12 through the user interface to the user through the user interface At least one physiotherapy mode is selected from the provided physiotherapy mode, and the user is provided with a corresponding prostate physiotherapy guide according to the physiotherapy mode selected by the user.
  • the health training guide herein refers to the terminal 12 assisting or prompting the patient (or user) to guide the prostate physiotherapy through its user interface, using sound, text and/or images.
  • the present invention further provides a control method for a prostate physiotherapy apparatus, comprising the steps of:
  • control method for the prostate physiotherapy apparatus of the present invention comprises the following steps:
  • step (a1) recommending a physiotherapy mode to the corresponding user based on the collected user history physiotherapy data, wherein the step (a1) is located before the step (a).
  • control method for the prostate physiotherapy device of the present invention further comprises the following steps:
  • step (a2) recommending a physiotherapy mode to the corresponding user based on the user's personal information, wherein the step (a2) is located before the step (a).
  • control method for the prostate physiotherapy device of the present invention further comprises the following steps:
  • the method for controlling a prostate physiotherapy device of the present invention comprises the following steps:
  • the present invention further provides a prostate physiotherapy apparatus 11 for a smart prostate physiotherapy system, comprising a computing unit 111, a communication unit 112 and a stimulation unit 114, wherein the calculation unit 111 can Connected to the communication unit 112 and the stimulation unit 114 energized, wherein the communication unit 112 is configured to receive a control command from the terminal 12 of the smart prostate therapy system, and transmit the control command to the computing unit 111, wherein The computing unit 111 is arranged to control the stimulation unit 114 to apply a stimulus to a predetermined physiotherapy site of the user in accordance with the control command.
  • the computing unit of the prostate physiotherapy device 11 is configured to process data and control the stimulation unit 114 to provide physiotherapy stimulation to the physiotherapy site of the user, such as to the prostate, sphincter, and the like.
  • the communication unit 112 of the prostate physiotherapy apparatus 11 of the present invention for a smart prostate physiotherapy system is in communication with a terminal of the intelligent prostate physiotherapy system, wherein a user passes through the user of the terminal 12 After the interface selects the physiotherapy mode, the terminal 12 generates the control command according to the physiotherapy mode, and transmits the control command to the computing unit 111 through the communication unit 112, so that the calculating unit 111 is configured to control the stimulating unit 114 according to the control instruction.
  • the user's preset physiotherapy site applies stimulation. Accordingly, the stimulus corresponds to the physiotherapy mode selected by the user.
  • the physical therapy mode selected by the user through the user interface of the terminal 12 is transmitted to the computing unit 111 through the communication unit 112, so that the computing unit 111 is configured to control the stimulation unit 114 according to the physical therapy mode selected by the user. Stimulation is applied to the user's predetermined physiotherapy site.
  • the prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system further includes a sensing unit 113, wherein the sensing unit 113 and the computing unit 111 are electrically connected, wherein The sensing unit 113 is configured to detect at least one preset parameter of at least one preset detection portion of the user, and the calculation unit 111 is configured to control the stimulation unit 114 according to the detection result of the sensing unit 113 according to the control.
  • the command applies the stimulus to the predetermined physiotherapy site of the user.
  • the computing unit 111 controls the communication unit 112 to transmit the detection result of the sensing unit 113 to the terminal 12, and the terminal 12 generates a control instruction according to the detection result of the sensing unit 113, and passes the communication unit 112.
  • the control command is sent to the computing unit 111 such that the computing unit 111 is configured to control the stimulation unit 114 to apply stimulation to the user's predetermined physiotherapy site in accordance with the control command.
  • the communication unit 112 of the prostate physiotherapy apparatus 11 of the present invention for an intelligent prostate physiotherapy system is further provided to be capable of communicating with the cloud of the intelligent prostate physiotherapy system via an electronic communication network.
  • 13 is connected, wherein the computing unit 111 is configured to send at least one request information to the cloud 13 through the communication unit 112, and control the stimulation unit 114 according to the physiotherapy mode corresponding to the request information provided by the cloud 13
  • the stimulus is applied to the predetermined physiotherapy site of the user.
  • the communication unit 112 of the prostate physiotherapy device 11 communicates with the cloud 13 through the terminal 12, wherein the computing unit 111 is configured to send at least one request message to the cloud 13 through the communication unit 112 and the terminal 12.
  • the terminal 12 generates the control instruction according to the physiotherapy mode provided by the cloud 13 corresponding to the request information, so that the calculating unit 111 can control the physiotherapy part of the stimulating unit 114 to the user according to the control instruction. Apply stimulation.
  • the stimulation unit 114 of the prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system includes a vibration module, a discharge module, an infrared illumination module, an electric heating module, a magnetic therapy module, and a massage module. , fire extraction module and / or cold pack module.
  • the sensing unit 113 of the prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system includes a pressure sensing module, a temperature sensing module, a photoelectric sensing module, a camera module, and / Ultrasonic sensing module.
  • the pressure sensing module comprises a set of pressure sensors, the pressure sensor of the pressure sensing module is adapted to detect a muscle contraction force of the predetermined detection portion of the user, wherein the temperature sensing module comprises at least three temperatures a sensor, the temperature sensor of the temperature sensing module is respectively disposed in a front section, a middle section and a rear section of the prostate physiotherapy apparatus 11, so that when the prostate physiotherapy apparatus 11 is placed at the preset detection site, the user can be detected Presetting the temperature of different positions of the detecting portion, wherein the photoelectric sensing module comprises a set of photoelectric sensors, wherein the photoelectric sensor is adapted to detect a difference of the preset detecting portion of the user when the prostate physiotherapy device 11 is placed in the body Blood oxygen in the position, wherein the camera module comprises a set of cameras, the cameras of the camera module are respectively disposed in front of the prostate physiotherapy device 11, so that when the prostate physiotherapy device 11 is placed in the body, the camera can be passed through The angle is taken by the
  • the prostate physiotherapy device 11 further comprises a data storage module, wherein the data storage module is arranged to be electrically connectable to the computing unit 111, wherein the data storage module stores at least one physiotherapy mode and allows calculation
  • the unit 111 acquires at least one physical therapy mode from the data storage module, wherein the control instruction is generated according to the physical therapy mode acquired by the computing unit 111 from the data storage module.
  • the prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system further includes a power supply unit 115, wherein the calculation unit 111 and the power supply unit 115 are electrically connected to control the The power supply unit 115 supplies power to the communication unit 112, the calculation unit 111, the stimulation unit 114, and the sensing unit 113.
  • the computing unit 111 further includes an analog to digital conversion module for effecting mutual conversion of the analog signal and the digital signal.
  • the present invention further provides a prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system, optionally comprising a computing unit 111 and a sensing unit 113, wherein the computing unit 111 Connected to the sensing unit 113 electrically, the sensing unit 113 is configured to detect at least one preset parameter of at least one preset detection location of the user, wherein the computing unit 111 is configured to be capable of being based on the sensing unit 113 results, choose a physiotherapy mode.
  • a prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system optionally comprising a computing unit 111 and a sensing unit 113, wherein the computing unit 111 Connected to the sensing unit 113 electrically, the sensing unit 113 is configured to detect at least one preset parameter of at least one preset detection location of the user, wherein the computing unit 111 is configured to be capable of being based on the sensing unit 113 results, choose a physiotherapy mode.
  • the prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system of the present invention further includes a communication unit 112, wherein the communication unit 112 is electrically connected to the calculation unit 111, wherein the calculation The unit 111 is arranged to control the communication unit 112 to transmit the physiotherapy mode selected by the computing unit 111 to the terminal 12 of the smart prostate physiotherapy system, thereby enabling the terminal 12 to pass the physiotherapy mode selected by the computing unit 111 through the terminal.
  • the user interface of 12 provides the user with corresponding health training guidance.
  • the computing unit 111 controls the communication unit 112 to transmit the selection information of the computing unit 111 to the terminal 12 of the smart prostate physiotherapy system, thereby enabling the terminal 12 to pass the terminal 12 according to the selection information of the computing unit 111.
  • the user interface provides the user with appropriate health training guidance.
  • the communication unit 112 of the prostate physiotherapy apparatus 11 of the present invention for an intelligent prostate physiotherapy system is further provided to be connectable to the cloud 13 of the intelligent prostate physiotherapy system via an electronic communication network.
  • the computing unit 111 is configured to send at least one request information to the cloud 13 to enable the cloud 13 to provide at least one physical therapy mode according to the request information, so that the user can access the cloud 13 through the user interface of the terminal 12.
  • At least one physiotherapy mode is selected from the physiotherapy mode provided.
  • the calculating unit 111 is configured to select at least one physical therapy mode from the physical therapy mode provided by the cloud 13 according to the detection result of the sensing unit 113.
  • the communication unit 112 of the prostate physiotherapy apparatus 11 of the present invention for an intelligent prostate physiotherapy system is further provided to be connectable to the cloud 13 of the intelligent prostate physiotherapy system via an electronic communication network.
  • the cloud 13 In order for the cloud 13 to collect historical physiotherapy data for each user through the communication unit 112.
  • the prostate physiotherapy apparatus 11 for an intelligent prostate physiotherapy system further includes a data storage module, wherein the data storage module is disposed to be electrically connected to the computing unit 111, wherein The data storage module stores at least one physiotherapy mode and allows the computing unit 111 to acquire at least one physiotherapy mode from the data storage module, wherein the control command is generated according to the physiotherapy mode acquired by the computing unit 111 from the data storage module.
  • the calculation unit 111 can also be based on the detection result of the sensing unit 113. At least one physiotherapy mode is selected from the data storage module.

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Abstract

La présente invention concerne un équipement de physiothérapie de la prostate (11) destiné à un système intelligent de physiothérapie de la prostate (1), comprenant une unité de calcul (111), une unité de communication (112) et une unité de stimulation (114). L'unité de calcul (111) peut être électriquement connectée à l'unité de communication (112) et à l'unité de stimulation (114) ; l'unité de communication (112) est conçue pour être apte à recevoir une instruction de commande en provenance d'un terminal (12) du système intelligent de physiothérapie de la prostate (1) et à transmettre l'instruction de commande à l'unité de calcul (111) ; et l'unité de calcul (111) est conçue pour être apte à commander, selon l'instruction de commande, l'unité de stimulation (114) en vue d'appliquer une stimulation à un site de physiothérapie prédéfini d'un utilisateur.
PCT/CN2017/072897 2016-02-05 2017-02-04 Équipement de physiothérapie de la prostate destiné à un système intelligent de physiothérapie de la prostate WO2017133689A1 (fr)

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WO2020041830A1 (fr) * 2018-08-27 2020-03-05 Cosmetic Edge Pty Ltd Dispositif pour traiter la dysfonction érectile
CN111104535A (zh) * 2019-11-20 2020-05-05 中国第一汽车股份有限公司 一种数据管理系统及数据管理方法
CN111658291A (zh) * 2020-06-11 2020-09-15 四川大学华西医院 一种骨科护理用循环式冷敷装置及方法
EP4331487A1 (fr) * 2022-08-30 2024-03-06 Sword Health, S.A. Étalonnage pour mesures de capteur de pression intracorporelle sur la base de son orientation

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