Multi-parameter physiological monitoring ringTechnical Field
The invention relates to a multi-parameter physiological monitoring ring, belonging to medical equipment.
Background
The current algorithms for measuring physiological indexes include: the ECG algorithm technology, the pulse rate algorithm technology, the heart rate algorithm technology, the Spo2 algorithm technology, the body movement algorithm technology, the blood pressure algorithm technology and the like can measure the physiological indexes through the algorithms, but the current instrument for measuring the physiological indexes has a complex structure due to the design, cannot measure the physiological indexes of the human body in real time, and is inconvenient to use. Therefore, the portable multi-parameter physiological monitoring ring is designed to facilitate the patient to view the physiological indexes of the patient, such as ECG or Spo2 data and blood pressure data, anytime and anywhere, and is portable.
Disclosure of Invention
The invention aims to overcome the defects and provide a multi-parameter physiological monitoring ring which is simple in structure, convenient to wear and capable of measuring and displaying physiological indexes at any time and any place.
The purpose of the invention is achieved by the following technical scheme: a multi-parameter physiological monitoring ring comprises a monitoring ring body, wherein the body is composed of a girdle ring for decoration at the outer side and a processing chip ring arranged at the inner side of the girdle ring and tightly attached to the girdle ring, clamping rings which are wrapped and embedded at the outer side of the girdle ring are respectively arranged at the two opposite sides of the processing chip ring, an MCU control unit, an acquisition unit, an LED light acquisition unit and a data storage unit are arranged in the processing chip ring, wherein the receiving end of the MCU control unit is connected with the output end of the acquisition unit, the acquired information is transmitted to the MCU for signal conversion, the acquisition unit acquires data through a contact electrode arranged on the monitoring ring body and the LED light acquisition unit, the contact electrode is arranged at the two sides of the bottom of the processing chip ring, the LED light acquisition unit is arranged at the middle position of the contact electrodes at the two sides, a communication chip is arranged in the MCU control unit, and the data can be transmitted to a mobile device in an external mode through Bluetooth or purple bee in the communication chip or directly transmitted to the data storage unit The storage unit stores the data.
Preferably, the method comprises the following steps: the collecting unit comprises an ECG signal collecting unit and a PPG signal collecting unit, wherein the ECG signal collecting unit is connected with a contact electrode, the PPG signal collecting unit is connected with an LED light collecting unit, the LED light collecting unit comprises an LED light emitter and an LED light receiver, data are collected through the LED light emitter and the LED light receiver, the contact electrode comprises an LA electrode plate, an RL electrode plate and an RA electrode plate, and the LA electrode plate, the RL electrode plate, the RA electrode plate, the LED light emitter and the LED light receiver form a set of complete posture detecting unit.
Preferably, the method comprises the following steps: a red light emitting unit, an infrared light emitting unit and a green light emitting unit are integrated in the LED light emitter.
Preferably, the method comprises the following steps: the ECG signal acquisition unit, the PPG signal acquisition unit, the LED light acquisition unit and the MCU control unit are all controlled by independent power supply units.
Preferably, the method comprises the following steps: the ECG signal acquisition unit, the PPG signal acquisition unit, the posture monitoring unit and the data storage unit are communicated and transmitted through an SPI or 12C protocol.
The invention has the advantages of simple structure, convenient wearing, wide application range and the like, and can measure and display physiological indexes at any time and any place.
Drawings
Fig. 1 is a schematic structural view of the present invention.
FIG. 2 is a schematic diagram of the internal structure of a processing chip ring according to the present invention.
Detailed Description
The invention will be described in detail below with reference to the following figures: as shown in fig. 1-2, the object of the present invention is achieved by the following technical solutions: a multi-parameter physiological monitoring ring comprises amonitoring ring body 1, wherein thebody 1 consists of aring belt 2 for decoration at the outer side and aprocessing chip ring 3 which is arranged at the inner side of thering belt 2 and clings to thering belt 2, two opposite sides of theprocessing chip ring 3 are respectively provided with aclamping ring 4 which is wrapped and embedded at the outer side of thering belt 2, anMCU control unit 5, anacquisition unit 6, an LEDlight acquisition unit 10 and a data storage unit 8 are arranged in theprocessing chip ring 3, wherein the receiving end of theMCU control unit 5 is connected with the output end of theacquisition unit 6, the acquired information is transmitted to the MCU for signal conversion, theacquisition unit 6 acquires data through acontact electrode 9 and an LEDlight acquisition unit 10 which are arranged on themonitoring ring body 1, thecontact electrodes 9 are arranged on two side edges at the bottom of theprocessing chip ring 3, the LEDlight acquisition unit 10 is arranged at the middle position of thecontact electrodes 9 at two sides, theMCU control unit 5 is internally provided with acommunication chip 11, and data can be transmitted to an externalmobile device 12 or directly transmitted to the data storage unit 8 for storage through a Bluetooth or zigbee transmission mode in thecommunication chip 11.
Theacquisition unit 6 is composed of an ECGsignal acquisition unit 13 and a PPG signal acquisition unit 14, wherein the ECGsignal acquisition unit 13 is connected with acontact electrode 9, the PPG signal acquisition unit 14 is connected with an LEDlight acquisition unit 10, the LEDlight acquisition unit 10 is composed of anLED light emitter 15 and anLED light receiver 16, data are collected through theLED light emitter 15 and theLED light receiver 16, thecontact electrode 9 is composed of anLA electrode sheet 17, anRL electrode sheet 18 and anRA electrode sheet 19, and theLA electrode sheet 17, theRL electrode sheet 18, theRA electrode sheet 19, theLED light emitter 15 and theLED light receiver 16 form a set of completeposture detection unit 20.
TheLED light emitter 15 is internally integrated with a redlight emitting unit 21, an infraredlight emitting unit 22 and a greenlight emitting unit 23.
The ECGsignal acquisition unit 13, the PPG signal acquisition unit 14, the LEDlight acquisition unit 10 and theMCU control unit 5 are all controlled by an independentpower supply unit 7.
Preferably, the method comprises the following steps: the ECGsignal acquisition unit 13, the PPG signal acquisition unit 14, theposture monitoring unit 20 and the data storage unit 8 are communicated and transmitted through SPI or 12C protocols.
The invention can facilitate the patient to check the physiological indexes of the patient, such as ECG or Spo2 data and blood pressure data, and is convenient to wear. Wherein:
monitoring the activity state of the heart of a human body by an ECG function, and finding out pathological conditions in time;
spo2 function monitoring blood oxygen content, pulse rate and perfusion index of human body;
3. in addition the device supports monitoring blood pressure, body movement data (e.g. number of steps), apnea, sleep quality, HRV.
The invention can check the body state in real time and can be worn with a user, and has the advantages of simple structure, convenient use and wide application range.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention are also included in the scope of the present invention.