CN104352226A - Wearable vital sign monitor and monitoring method - Google Patents

Wearable vital sign monitor and monitoring method Download PDF

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Publication number
CN104352226A
CN104352226A CN201410491676.5A CN201410491676A CN104352226A CN 104352226 A CN104352226 A CN 104352226A CN 201410491676 A CN201410491676 A CN 201410491676A CN 104352226 A CN104352226 A CN 104352226A
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CN
China
Prior art keywords
vital sign
fetal movement
sensing module
sign monitor
fetal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201410491676.5A
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Chinese (zh)
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CN104352226B (en
Inventor
张贯京
陈兴明
葛新科
王海荣
张少鹏
方静芳
程金兢
梁艳妮
周荣
徐之艳
周亮
徐菊红
付石柱
梁昊原
王家永
毛侃琅
蒋兴菊
杨青蓝
刘义
肖应芬
何晓霞
吴彬霞
郑慧华
唐小浪
张世导
李潇云
侯云超
赵学明
赵雪竹
刘国勇
付大楚
季雪剑
曾晨朵
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
E-Techno Information Technologies Co ltd
Shenzhen Anyuan Health Information Technology Co ltd
Original Assignee
Shenzhen Qianhai AnyCheck Information Technology Co Ltd
Shenzhen E Techco Information Technology Co Ltd
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Application filed by Shenzhen Qianhai AnyCheck Information Technology Co Ltd, Shenzhen E Techco Information Technology Co Ltd filed Critical Shenzhen Qianhai AnyCheck Information Technology Co Ltd
Priority to CN201410491676.5A priority Critical patent/CN104352226B/en
Priority to PCT/CN2014/087847 priority patent/WO2016045140A1/en
Publication of CN104352226A publication Critical patent/CN104352226A/en
Application granted granted Critical
Publication of CN104352226B publication Critical patent/CN104352226B/en
Expired - Fee Related legal-status Critical Current
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • A61B5/02411Detecting, measuring or recording pulse rate or heart rate of foetuses
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • A61B5/0255Recording instruments specially adapted therefor
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/11Measuring movement of the entire body or parts thereof, e.g. head or hand tremor, mobility of a limb
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2503/00Evaluating a particular growth phase or type of persons or animals
    • A61B2503/02Foetus

Abstract

The invention discloses a wearable vital sign monitor. The wearable vital sign monitor comprises a wearable main body and a tensile sensing module, a film pulsation sensing module, a microprocessor, a button module and a display module which are arranged on the wearable main body, wherein the microprocessor is respectively in electric connection with the tensile sensing module, the film pulsation sensing module, the button module and the display module; the tensile sensing module is used for detecting a pressure signal between the wearable main body and a pregnant woman and converting the pressure signal into a digital signal which can be processed by the microprocessor; the film pulsation sensing module is used for detecting the fetal heart rate, the fetal movement rate and the fetal movement strength of a fetus and respectively converting the fetal heart rate, the fetal movement rate and the fetal movement strength into digital signals which can be processed by the microprocessor. The invention further discloses a monitoring method. According to the invention, the vital sign information of the fetus can be safely and comprehensively detected.

Description

Wearable vital sign monitor and monitoring method
Technical field
The present invention relates to field of medical technology, particularly relate to a kind of wearable vital sign monitor and monitoring method.
Background technology
At present, the physical examination of anemia of pregnant woman and Confinement Time physical examination have regular physical checkups in society's health and hospital mostly.What mainly adopt the detection of the sign information of fetus is the fetal rhythm tester of ultrasonic doppler, and it is launched ultrasonic signal and limits the intensity of ultrasonic radiation, then detects fetal heart frequency by the change of the volume reflection of detection signal.
There is following defect in above-mentioned detection mode: if easily bring injury to anemia of pregnant woman and fetus when the restraint device of Ultrasonic Radiation intensity goes wrong on the one hand, on the other hand this restraint device is easily subject to the interference of the interference sources such as the power-supply fluctuation of outer signals and ultrasonic transmitter, there is the shortcomings such as the not high and measurement reproducibility of certainty of measurement is poor.Further, only detect fetal heart frequency, function is more single, such as use fetal rhythm tester cannot detect the fetal movement rate of fetus and fetal movement intensity, the sign information of more fetus cannot be obtained, thus total evaluation can not be carried out to the vital sign of fetus, there is certain limitation.
Foregoing, only for auxiliary understanding technical scheme of the present invention, does not represent and admits that foregoing is prior art.
Summary of the invention
Main purpose of the present invention is detection safety and the comprehensive technical problem not solving fetus sign information in prior art.
For achieving the above object, the invention provides a kind of wearable vital sign monitor, described wearable vital sign monitor comprises to be dressed body and is arranged at pull sensing module on described wearing body, thin film pulsation sensing module, microprocessor, key-press module and display module, and pulse with described pull sensing module, thin film respectively sensing module, key-press module and display module of described microprocessor is electrically connected;
Described pull sensing module is for detecting the pressure signal between described wearing body and anemia of pregnant woman, and described pressure signal is converted to the treatable digital signal of described microprocessor, described Fetal Heart Rate, fetal movement rate and fetal movement intensity for detecting the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity, and are converted to the treatable digital signal of described microprocessor by described thin film pulsation sensing module respectively.
Preferably, described pull sensing module comprises the pulling force sensor, the first wave filter and the first analog to digital conversion circuit that are electrically connected successively, described thin film pulsation sensing module comprises the thin film fluctuation sensor, the second wave filter and the second analog to digital conversion circuit that are electrically connected successively, and the outfan of described first analog to digital conversion circuit and the second analog to digital conversion circuit is electrically connected with the input of described microprocessor respectively.
Preferably, described pull sensing module also comprises the first differential amplifier circuit, and described first differential amplifier circuit is electrically connected between described first analog to digital conversion circuit and described first wave filter; Described thin film pulsation sensing module also comprises the second differential amplifier circuit, and described second differential amplifier circuit is electrically connected between described second analog to digital conversion circuit and described second wave filter.
Preferably, described wearable vital sign monitor also comprises wireless connections module, for being connected with terminal wireless, and the Fetal Heart Rate after microprocessor processes, fetal movement rate and fetal movement intensity are sent to described terminal, to be sent to Telemedicine System by described terminal.
Preferably, described wearable vital sign monitor also comprises reminding module, and described reminding module is electrically connected with described microprocessor, points out accordingly for the scope residing for the pressure signal after microprocessor processes.
Preferably, described thin film fluctuation sensor is active thin film fluctuation sensor, and it comprises a power circuit, and the supply voltage ripple of described power circuit is less than 50 millivolts.
Preferably, described power circuit is secondary mu balanced circuit or three grades of mu balanced circuits.
Preferably, described wearing body is textile.
In addition, for achieving the above object, the present invention also provides a kind of monitoring method, and for monitoring vital sign information, described monitoring method comprises the following steps:
When vital sign monitor is worn on anemia of pregnant woman with it time, detect the pressure signal between described vital sign monitor and anemia of pregnant woman by the pull sensing module be arranged on described vital sign monitor and show;
When described pressure signal is within the scope of the dynamics preset, detect the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity by the thin film pulsation sensing module be arranged on described vital sign monitor;
Show described Fetal Heart Rate, fetal movement rate and fetal movement intensity.
Preferably, described monitoring method also comprises:
Described Fetal Heart Rate, fetal movement rate and fetal movement intensity are sent to Telemedicine System;
Receive recommendation information or information that described Telemedicine System returns according to described Fetal Heart Rate, fetal movement rate and fetal movement intensity.
A kind of wearable vital sign monitor of the present invention and monitoring method, the pressure signal dressed between body and anemia of pregnant woman is detected by pull sensing module, thin film pulsation sensing module detects the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity, Fetal Heart Rate, microprocessor is to the Fetal Heart Rate after pressure signal and process, after fetal movement rate and the process of fetal movement intensity, can be shown on display module, and pass through key-press module, user can carry out input instruction, check the operations such as display information, the force value of dressing between body and anemia of pregnant woman can be checked by display module, and the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity.Vital sign monitor of the present invention, is worn on the sign information that namely anemia of pregnant woman can detect fetus with it at home, is not needed special society's health and hospital, safe ready.In addition, the sign information of fetus is detected by thin film pulsation sensing module, compared to the fetus tester of traditional ultrasonic doppler, because it does not need the ultrasound wave launching certain amplitude, radiation reduces greatly, safer, and the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity can be detected simultaneously, obtain more comprehensive sign information, conveniently overall estimation is carried out to the vital sign of fetus.
Accompanying drawing explanation
Fig. 1 is the high-level schematic functional block diagram of the present invention's wearable vital sign monitor first embodiment;
Fig. 2 is the structural representation of the wearable vital sign monitor of the present invention;
Fig. 3 is the high-level schematic functional block diagram of the present invention's wearable vital sign monitor second embodiment;
Fig. 4 is the high-level schematic functional block diagram of the wearable vital sign monitor of the present invention the 3rd embodiment;
Fig. 5 is the circuit diagram of wireless connections module in Fig. 4;
Fig. 6 is the circuit diagram of the second filter in Fig. 4, the second analog to digital conversion circuit and the second differential amplifier circuit;
Fig. 7 is the schematic flow sheet of monitoring method first embodiment of the present invention;
Fig. 8 is the schematic flow sheet of monitoring method second embodiment of the present invention.
The realization of the object of the invention, functional characteristics and advantage will in conjunction with the embodiments, are described further with reference to accompanying drawing.
Detailed description of the invention
Should be appreciated that specific embodiment described herein only in order to explain the present invention, be not intended to limit the present invention.
The invention provides a kind of wearable vital sign monitor, with reference to Fig. 1 and Fig. 2, in one embodiment, this wearable vital sign monitor comprises: dress body 01 and be arranged at the pull sensing module 10 of dressing on body 01, thin film pulsation sensing module 20, microprocessor 50, key-press module 60 and display module 70.The vital sign monitor of the present embodiment is worn on anemia of pregnant woman with it near the position of fetus by dressing body 01, and can regulate the tightness of wearing by dressing body 01, when tightness is suitable, can detect the sign information of fetus.
Preferably, dressing body 01 is textile.
For greater safety, the sign information of fetus is detected exactly, wearing body 01 is provided with a pull sensing module 10, pressure signal for detecting the pressure signal dressed between body 01 and anemia of pregnant woman, and is converted to the treatable digital signal of microprocessor 50 by pull sensing module 10.If vital sign monitor dresses tension, easily injure fetus, cross the sign information that pine then can not detect fetus exactly.When only having the pressure between vital sign monitor and anemia of pregnant woman suitable, just by thin film pulsation sensing module 20 safety, the sign information detecting fetus exactly.
Thin film pulsation sensing module 20 comprises thin film fluctuation sensor, thin film fluctuation sensor is a kind of dynamic strain formula sensor, to the detection of Dynamic Signal, there is larger susceptiveness, for 3-5 times of usual pressure sensor, be applicable to the life signal be applied to human skin or inside of human body to detect, especially to the detection of the signals such as breath signal, heart rate signal and pulsation.In the present embodiment, the output sensitivity of thin film fluctuation sensor is not less than 2 microvolts, and temperature coefficient is less than 500PPM.Thin film fluctuation sensor is for detecting the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity, be the corresponding signal of telecommunication by Fetal Heart Rate, fetal movement rate and fetal movement intensity-conversion, then by wave filter, D/A converting circuit, the Fetal Heart Rate collected by thin film fluctuation sensor, fetal movement rate and fetal movement intensity be converted to the treatable digital signal of microprocessor 50 respectively.Wherein, thin film fluctuation sensor does not need to launch the sign information that namely ultrasound wave can detect fetus.
The vital sign monitor of the present embodiment, the pressure signal dressed between body and anemia of pregnant woman is detected by pull sensing module, thin film fluctuation sensor detects the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity, Fetal Heart Rate, fetal movement rate and fetal movement intensity send to microprocessor after treatment, microprocessor is to this pressure signal and Fetal Heart Rate, after fetal movement rate and the process of fetal movement intensity, can be shown on display module, and pass through key-press module, user can carry out input instruction, Fetal Heart Rate is checked in selection, the operations such as fetal movement rate and fetal movement intensity, the force value of dressing between body and anemia of pregnant woman can be shown by display module, and the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity.
The vital sign monitor of the present embodiment, is worn on the sign information that namely anemia of pregnant woman can detect fetus with it at home, is not needed special society's health and hospital, safe ready.
In addition, the sign information of fetus is detected by thin film pulsation sensing module, compared to the fetal rhythm tester of traditional ultrasonic doppler, because it does not need the ultrasound wave launching certain amplitude, radiation reduces greatly, safer, and the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity can be detected simultaneously, obtain more comprehensive sign information, conveniently total evaluation is carried out to the vital sign of fetus.
In a preferred embodiment, as shown in Figure 3, on the basis of the embodiment of above-mentioned Fig. 1, pull sensing module 10 comprises pulling force sensor 101, first wave filter 102 and the first analog to digital conversion circuit 103 that are electrically connected successively, the outfan that thin film pulsation sensing module 20 comprises thin film fluctuation sensor 201, second wave filter 202 and the second analog to digital conversion circuit 203, first analog to digital conversion circuit 103 and the second analog to digital conversion circuit 203 be electrically connected successively is electrically connected with the input of microprocessor 50 respectively.
Wherein, thin film fluctuation sensor 201 is multiple, and after anemia of pregnant woman dresses vital sign monitor, thin film fluctuation sensor 201 is close on anemia of pregnant woman's belly.
Wherein, the input of the first wave filter 102 is electrically connected with pulling force sensor 101, for pressure signal is carried out filtering; The input of the second wave filter 202 with and thin film fluctuation sensor 201 be electrically connected, for the signal of telecommunication corresponding to Fetal Heart Rate, fetal movement rate and fetal movement intensity is carried out filtering, filtering interfering and noise signal are to improve signal to noise ratio.
The input of the first analog to digital conversion circuit 103 is electrically connected with the outfan of the first wave filter 102, for the analog electrical signal corresponding through filtered pressure signal is converted to digital signal respectively; The input of the second analog to digital conversion circuit 203 is electrically connected with the outfan of the second wave filter 202, for filtered Fetal Heart Rate, fetal movement rate and fetal movement intensity being converted to respectively corresponding digital signal.
The outfan of microprocessor 50 and the first analog to digital conversion circuit 103, the outfan of the second analog to digital conversion circuit 203, key-press module 60 and display module 70 are electrically connected.
In the present embodiment, filtering and the analog-digital conversion function of the first wave filter 102, first analog to digital conversion circuit 103, second wave filter 202 and the second analog to digital conversion circuit 203 correspondence are same as the prior art, repeat no more herein.
In a preferred embodiment, as shown in Figure 4, on the basis of the embodiment of above-mentioned Fig. 3, described wearable vital sign monitor also comprises wireless connections module 80, for being connected with terminal wireless, and Fetal Heart Rate, fetal movement rate and the fetal movement intensity after processing through microprocessor 50 is sent to terminal, to be sent to Telemedicine System by terminal.
In the present embodiment, wireless connections module 80 can be bluetooth module or infrared module, and vital sign monitor sets up wireless connections by wireless connections module 80 and outside terminal, and terminal can be mobile phone, computer or other smart machines etc.
As shown in Figure 5, wireless connections module 80 is made up of communication chip SP3232 and relevant 0.1UF/36V capacity cell.Wherein, USART RX and USART TX are the interfaces be connected with microprocessor 50, and OUT RX and OUT TX is the interface with the terminal communication of outside.
Fetal Heart Rate, fetal movement rate and fetal movement intensity after processing through microprocessor 50 is sent to terminal by wireless connections module 80 by vital sign monitor, then Telemedicine System is sent it to by terminal, information or the nutrition recommendation informations etc. such as the health check-up date that Telemedicine System can be correlated with according to Fetal Heart Rate, fetal movement rate and fetal movement intensity feedback, further, anemia of pregnant woman can also carry out communication by terminal and doctor.
In a preferred embodiment, as shown in Figure 4, pull sensing module 10 also comprises the first differential amplifier circuit 104, first differential amplifier circuit 104 and is electrically connected between the first analog to digital conversion circuit 103 and the first wave filter 102; Thin film pulsation sensing module 20 also comprises the second differential amplifier circuit 204, second differential amplifier circuit 204 and is electrically connected between the second analog to digital conversion circuit 203 and the second wave filter 202.
In the present embodiment, consider that Fetal Heart Rate signal may be more small and weak, signal can be amplified by differential amplifier circuit, and then improve the sensitivity of vital sign monitor.
In conjunction with consulting Fig. 6, first wave filter 102 receives the pressure signal of pulling force sensor 101 output by the first passage of AINP1 and AINN1 two port compositions, filter network through being made up of R11, R15, C13, C15, C19 carries out filtering, filtered pressure signal is after the first differential amplifier circuit 104 amplifies, pressure signal after amplification is converted to microprocessor 50 through the first analog to digital conversion circuit 103 can identify, analyze and the digital signal processed, exports microprocessor 50 to finally by DOUT port.
Fetal Heart Rate, fetal movement rate and fetal movement strength signal that second wave filter 202 is exported by the second channel reception thin film fluctuation sensor 201 of AINP2 and AINN2 two port compositions, filter network through being made up of R10, R14, C12, C14, C18 carries out filtering, filtered Fetal Heart Rate, fetal movement rate and fetal movement strength signal are after the second differential amplifier circuit 204 amplifies, signal after amplification is converted to microprocessor 50 through the second analog to digital conversion circuit 203 can identify, analyze and the digital signal processed, exports microprocessor 50 to finally by DOUT port.
In the present embodiment, the first differential amplifier circuit 104, second differential amplifier circuit 204, first analog to digital conversion circuit 103 and the second analog to digital conversion circuit 203 are realized by chip ADS1232.
Wherein, A0 is the control end of microprocessor 50, and it is that first passage exports or second channel exports that microprocessor 50 carrys out control output end DOUT by control A0.
In a preferred embodiment, as shown in Figure 4, wearable vital sign monitor also comprises reminding module 100, and reminding module 100 is electrically connected with microprocessor 50, points out accordingly for the scope residing for the pressure signal after microprocessor 50 process.
In the present embodiment, reminding module 100 can be LED, LCD, charactron or tri-color tube etc., if LED, LCD, during charactron, it can be multiple, be such as three, it is respectively red, green and yellow, often kind of Color pair answers the scope of a pressure signal, available redness represents pressure tension, moderate pressure is represented by green, represent that pressure is less by yellow, regulate by regulating the tightness dressing body 01, then the prompting of tightness is also carried out with reminding module 100, finally make the moderate pressure between vital sign monitor and anemia of pregnant woman's health, easy to use and directly perceived.
Preferably, incorporated by reference to consulting Fig. 2, dress body 01 and comprise the first noumenon 011 and the second body 012, wherein, the first above-mentioned wave filter 102, first differential amplifier circuit 104, first analog to digital conversion circuit 103 and the second wave filter 202, second differential amplifier circuit 204, second analog to digital conversion circuit 203, microprocessor 50, wireless connections module 80 is placed in the inside of the first noumenon 011, key-press module 60, display module 70 and reminding module 100 are placed in the surface of the first noumenon 011, pulling force sensor 101 is arranged at the second body 012 and the position of close the first noumenon 011, multiple thin film fluctuation sensor 201 is arranged on the second body 012.
In a preferred embodiment, thin film fluctuation sensor 201 is active device, and it comprises a power circuit, and the supply voltage of power circuit is the safe voltage that human body can bear, and is namely less than 36 volts, and ripple is less than 50 millivolts.The voltage that the thin film fluctuation sensor 201 of the present embodiment uses is the stable voltage of less than 36 volts, and ripple is less than 50 millivolts, can improve the signal to noise ratio of sensor, reduces power supply noise signal to the interference of thin film fluctuation sensor 201 measuring-signal.
Preferably, multistage mu balanced circuit or the voltage regulation unit such as secondary voltage stabilizing or three grades of voltage stabilizings can be adopted in power circuit, mu balanced circuit or voltage regulation unit can be DC-DC mu balanced circuits of the prior art, in one embodiment, power circuit comprises the first voltage regulation unit and second voltage regulation unit of electrical connection, the stable output voltage of the first voltage regulation unit is 4.4 volts, and the stable output voltage of described second voltage regulation unit is 3.3 volts.In another embodiment, power circuit comprises the first voltage regulation unit, the second voltage regulation unit and the 3rd voltage regulation unit that are electrically connected successively, the stable output voltage of the first voltage regulation unit is 5.0 volts, the stable output voltage of the second voltage regulation unit is 4.4 volts, and the stable output voltage of the 3rd voltage regulation unit is 3.3 volts.
The invention provides a kind of monitoring method, for monitoring vital sign information, with reference to Fig. 7, in one embodiment, this monitoring method comprises:
Step S101, when vital sign monitor is worn on anemia of pregnant woman with it time, detect the pressure signal between described vital sign monitor and anemia of pregnant woman by the pull sensing module be arranged on described vital sign monitor and show;
The vital sign monitor of the present embodiment may be worn on anemia of pregnant woman with it near the position of fetus, and can regulate the tightness of wearing, then can detect the sign information of fetus.
Detect the sign information of fetus for greater safety, exactly, the pressure signal between vital sign monitor and anemia of pregnant woman can be detected.If vital sign monitor dresses tension, easily injure fetus, cross the sign information that pine then can not detect fetus exactly.When only having the pressure between vital sign monitor and anemia of pregnant woman suitable, could safety, detect the sign information of fetus exactly.
In the present embodiment, by being presented at the force value between itself and the anemia of pregnant woman on the display module of vital sign monitor, anemia of pregnant woman can regulate the tightness dressing vital sign monitor; In addition, can also pointing out in conjunction with reminding module, pointing out as undertaken by LED, the LCD of different colours, charactron or tri-color tube etc. the tightness dressed, easy to use and directly perceived.This force value also can be presented on display module intuitively.
Step S102, when described pressure signal is within the scope of the dynamics preset, detects the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity by the thin film pulsation sensing module be arranged on described vital sign monitor;
In the present embodiment, when only having the pressure between vital sign monitor and anemia of pregnant woman suitable, just by thin film pulsation sensing module safety, the Fetal Heart Rate detecting fetus exactly, fetal movement rate and fetal movement intensity.And be provided with thin film fluctuation sensor in thin film pulsation sensing module, do not need to launch the sign information that namely ultrasound wave can detect fetus.
In addition, by the button of the setting on vital sign monitor, user can carry out input instruction, checks the operations such as display information.
Step S103, shows described Fetal Heart Rate, fetal movement rate and fetal movement intensity.
The vital sign detector of the present embodiment, can be presented at the Fetal Heart Rate collected, fetal movement rate and fetal movement intensity on display module, in real time so that anemia of pregnant woman observes surveyed data in time.
The vital sign monitor of the present embodiment, the pressure signal between itself and anemia of pregnant woman can be detected, when pressure between vital sign monitor and anemia of pregnant woman is suitable, thin film pulsation sensing module detects the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity, Fetal Heart Rate, fetal movement rate and fetal movement intensity.The vital sign monitor of the present embodiment, is worn on the sign information that namely anemia of pregnant woman can detect fetus with it at home, is not needed special society's health and hospital, safe ready.
In addition, the sign information of fetus is detected by thin film pulsation sensing module, compared to the fetus tester of traditional ultrasonic doppler, because it does not need the ultrasound wave launching certain amplitude, radiation reduces greatly, safer, and the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity can be detected simultaneously, obtain more comprehensive sign information, conveniently overall estimation is carried out to the vital sign of fetus.
In a preferred embodiment, as shown in Figure 8, on the basis of the embodiment of above-mentioned Fig. 7, this monitoring method also comprises:
Step S104, is sent to Telemedicine System by described Fetal Heart Rate, fetal movement rate and fetal movement intensity;
Step S105, receives recommendation information or information that described Telemedicine System returns according to described Fetal Heart Rate, fetal movement rate and fetal movement intensity.
In the present embodiment, Fetal Heart Rate, fetal movement rate and fetal movement intensity can be sent to outside terminal by vital sign monitor, then Telemedicine System is sent it to by terminal, information or the nutrition recommendation informations etc. such as the health check-up date that Telemedicine System can be correlated with according to Fetal Heart Rate, fetal movement rate and fetal movement intensity feedback, further, anemia of pregnant woman can also carry out communication by terminal and doctor.
These are only the preferred embodiments of the present invention; not thereby the scope of the claims of the present invention is limited; every utilize description of the present invention and accompanying drawing content to do equivalent structure or equivalent flow process conversion; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present invention.

Claims (10)

1. a wearable vital sign monitor, it is characterized in that, described wearable vital sign monitor comprises to be dressed body and is arranged at pull sensing module on described wearing body, thin film pulsation sensing module, microprocessor, key-press module and display module, and pulse with described pull sensing module, thin film respectively sensing module, key-press module and display module of described microprocessor is electrically connected;
Described pull sensing module is for detecting the pressure signal between described wearing body and anemia of pregnant woman, and described pressure signal is converted to the treatable digital signal of described microprocessor, described Fetal Heart Rate, fetal movement rate and fetal movement intensity for detecting the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity, and are converted to the treatable digital signal of described microprocessor by described thin film pulsation sensing module respectively.
2. wearable vital sign monitor as claimed in claim 1, it is characterized in that, described pull sensing module comprises the pulling force sensor, the first wave filter and the first analog to digital conversion circuit that are electrically connected successively, described thin film pulsation sensing module comprises the thin film fluctuation sensor, the second wave filter and the second analog to digital conversion circuit that are electrically connected successively, and the outfan of described first analog to digital conversion circuit and the second analog to digital conversion circuit is electrically connected with the input of described microprocessor respectively.
3. wearable vital sign monitor as claimed in claim 2, it is characterized in that, described pull sensing module also comprises the first differential amplifier circuit, and described first differential amplifier circuit is electrically connected between described first analog to digital conversion circuit and described first wave filter; Described thin film pulsation sensing module also comprises the second differential amplifier circuit, and described second differential amplifier circuit is electrically connected between described second analog to digital conversion circuit and described second wave filter.
4. the wearable vital sign monitor as described in claim 1,2 or 3, it is characterized in that, described wearable vital sign monitor also comprises wireless connections module, for being connected with terminal wireless, and the Fetal Heart Rate after microprocessor processes, fetal movement rate and fetal movement intensity are sent to described terminal, to be sent to Telemedicine System by described terminal.
5. the wearable vital sign monitor as described in claim 1,2 or 3, it is characterized in that, described wearable vital sign monitor also comprises reminding module, described reminding module is electrically connected with described microprocessor, points out accordingly for the scope residing for the pressure signal after microprocessor processes.
6. wearable vital sign monitor as claimed in claim 2, is characterized in that, described thin film fluctuation sensor is active thin film fluctuation sensor, and it comprises a power circuit, and the supply voltage ripple of described power circuit is less than 50 millivolts.
7. wearable vital sign monitor as claimed in claim 6, is characterized in that, described power circuit is secondary mu balanced circuit or three grades of mu balanced circuits.
8. wearable vital sign monitor as claimed in claim 1, is characterized in that, described wearing body is textile.
9. a monitoring method, for monitoring vital sign information, is characterized in that, described monitoring method comprises the following steps:
When vital sign monitor is worn on anemia of pregnant woman with it time, detect the pressure signal between described vital sign monitor and anemia of pregnant woman by the pull sensing module be arranged on described vital sign monitor and show;
When described pressure signal is within the scope of the dynamics preset, detect the Fetal Heart Rate of fetus, fetal movement rate and fetal movement intensity by the thin film pulsation sensing module be arranged on described vital sign monitor;
Show described Fetal Heart Rate, fetal movement rate and fetal movement intensity.
10. monitoring method as claimed in claim 9, it is characterized in that, described monitoring method also comprises:
Described Fetal Heart Rate, fetal movement rate and fetal movement intensity are sent to Telemedicine System;
Receive recommendation information or information that described Telemedicine System returns according to described Fetal Heart Rate, fetal movement rate and fetal movement intensity.
CN201410491676.5A 2014-09-23 2014-09-23 Wearable vital sign monitor and monitoring method Expired - Fee Related CN104352226B (en)

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CN105286822A (en) * 2015-09-18 2016-02-03 北京交通大学 Intelligent equipment worn in rail transit train worker
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CN110115571A (en) * 2019-04-12 2019-08-13 铂元智能科技(北京)有限公司 Wireless sign monitoring device and its wireless connecting establishment method
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CN104615859A (en) * 2015-01-10 2015-05-13 深圳市前海安测信息技术有限公司 Wearable equipment with health prompt function and health prompt method
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CN104873201A (en) * 2015-05-26 2015-09-02 深圳微语医疗技术有限公司 Fetal movement detecting device and detecting method
CN105286822A (en) * 2015-09-18 2016-02-03 北京交通大学 Intelligent equipment worn in rail transit train worker
WO2017124772A1 (en) * 2016-01-22 2017-07-27 纳智源科技(唐山)有限责任公司 Fetal heart and fetal movement monitoring strap, fetal heart and fetal movement monitoring device and system
CN106805960A (en) * 2017-02-17 2017-06-09 四川康特立医疗科技有限公司 Portable fetus patient monitor
CN109350073A (en) * 2018-12-11 2019-02-19 永康国科康复工程技术有限公司 Intelligent fetal monitoring band
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CN110115571A (en) * 2019-04-12 2019-08-13 铂元智能科技(北京)有限公司 Wireless sign monitoring device and its wireless connecting establishment method
CN110974187A (en) * 2019-11-12 2020-04-10 深圳市松恩电子科技有限公司 Health monitoring system for person under guardianship
CN110840449A (en) * 2019-11-26 2020-02-28 郑伟 Fetal health data monitoring equipment

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