CN207444934U - A kind of wireless network physiological parameter monitors system - Google Patents

A kind of wireless network physiological parameter monitors system Download PDF

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Publication number
CN207444934U
CN207444934U CN201621445500.7U CN201621445500U CN207444934U CN 207444934 U CN207444934 U CN 207444934U CN 201621445500 U CN201621445500 U CN 201621445500U CN 207444934 U CN207444934 U CN 207444934U
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module
physiological parameter
blood oxygen
blood pressure
mcu
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孙斌
应致标
武晓龙
符灵建
金衍昆
林乐建
徐永富
鲍淑娟
刘响响
黄震
李双龙
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Zhejiang Helowin Medical Technology Co ltd
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ZHEJIANG HELLOWIN MEDICAL TECHNOLOGY Co Ltd
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Abstract

A kind of wireless network physiological parameter monitors system, it includes at least one monitor that can gather monitoring object physiological parameter in real time, the monitor is uploaded to center detection work station by wireless network connection and by the physiological parameter collected, the monitor includes the housing of a master controller CPU for being built-in with responsible whole system function scheduling, it is also equipped with being responsible for each physiological parameter data of acquisition in housing and is transferred to the coprocessor unit MCU of connected master controller CPU, the coprocessor unit MCU has been respectively connected with mounted on the in vivo blood pressure module of shell, ECG module, breathe module and blood oxygen module;It has rational in infrastructure, compact, and use is easy to operate, practical, convenient for carrying, the features such as carrying out Human Physiology multi-parameter real time monitoring.

Description

A kind of wireless network physiological parameter monitors system
Technical field
The present invention relates to a kind of wireless network physiological parameter monitors, belong to medical detection technique and family health care is protected Strong technical field.
Background technology
Currently used medical treatment detection device is electrocardiograph, and this conventional electrocardiograph has the disadvantage that:
First, electrocardiograph heaviness is irremovable by traditional bed;Do not possess backstage network savvy;
Second is that portable cardiac equipment currently on the market:Function is single, and real-time is poor;
Third, portable device, inconvenient for operation, after no screen abnormal prompt is, it is necessary to which medical practitioner exported to by data Platform;
Fourth, the portable device of current market does not possess defibrillating function, use environment is single, it is impossible to while take into account hospital Dynamic is tested outside Intensive Care Unit and institute.
The content of the invention
It is an object of the invention to overcome the shortcomings of the prior art, and offer is a kind of rational in infrastructure, compact, uses behaviour Make it is simple, it is practical, convenient for carrying, the wireless network physiological parameter monitoring of Human Physiology multi-parameter real time monitoring can be carried out Instrument.
The purpose of the present invention is by following technical solution to complete, and a kind of wireless network physiological parameter monitors system, It includes at least one monitor that can gather monitoring object physiological parameter in real time, and the monitor is by wireless network connection and incites somebody to action The physiological parameter collected is uploaded to center detection work station so that the monitor is built-in with responsible whole system work(including one Can scheduling master controller CPU housing, be also equipped in housing being responsible for each physiological parameter data of acquisition and be transferred to connected The coprocessor unit MCU of master controller CPU, the coprocessor unit MCU have been respectively connected with mounted on the in vivo blood of shell Die block, ECG module, breathing module and blood oxygen module, and the master controller CPU comes with memory module, and respectively It is connected with mounted on the in vivo LCD display module of shell, WiFi module and 3G module and the adopting in housing sidewall that be connected Collect function button, touch screen input switch, blood pressure module in vivo with shell, ECG module are additionally provided in housing sidewall and is exhaled Inhale the respective digital independent interface that module and blood oxygen module connect respectively.
As preferred:The digital independent interface includes:ECG module and breathing module are connected by cardiac diagnosis lead-line Electrocardio interface, be connected to by blood oxygen on line the blood oxygen interface of blood oxygen module;And the peace of blood pressure module is connected by cuff Blood pressure metal connector on housing;The coprocessor unit MCU can interpolate that whether lead has and come off, and pass through Each connected blood pressure module, ECG module, breathing module and blood oxygen module carry out electrocardiosignal, breath signal, blood pressure letter Number and blood oxygen signal acquisition and data transmission;
The master controller CPU is mainly controlled by the LED display module of connection, reads the touch input of user;It is logical It crosses the WiFi module of connection and 3G module controls and the connection of miscellaneous equipment.
As preferred:The LED display module is circumscribed with the LED display that can show user interface and ecg wave form;
The electrocardiogram acquisition and Breath collection module carry lead-fail detector detection function, it will by magnifier Electrocardiosignal carries out difference extraction and amplifies output voltage signal, is extracted by high-pass filtering, blocking, low-pass filtering and amplification Reflect the voltage of heart fluctuating range, the A D interface of access MCU coprocessors is handled;Wherein by electrocardiosignal pass through with It after amplification, then is sampled, judges whether lead-fail detector;By coupling carrier wave on the electrode, then after filter and amplification, obtain To breath data, sampled by the A D interface of MCU coprocessors;
The blood pressure acquisition module is by connected coprocessor MCU control air pumps and air valve, and inflation is suppressed for cuff And deflation;After the filtered amplification of output voltage signal of baroceptor, by being blood pressure after the AD port processings of coprocessor Data;
The blood oxygen module is that the data of blood oxygen are collected by blood oxygen transducer, sends MCU coprocessors to, then It is transmitted to MCU master controllers.
The present invention has rational in infrastructure, compact, and use is easy to operate, practical, convenient for carrying, and can carry out Human Physiology The features such as multi-parameter monitors in real time.
Description of the drawings
Fig. 1 is the system principle of compositionality figure of the present invention.
Fig. 2 is the structure diagram of monitor of the present invention.
Fig. 3 is the internal module connection diagram of monitor of the present invention.
Specific embodiment
Below in conjunction with attached drawing, the present invention will be described in detail:Shown in Fig. 1, a kind of wireless network life of the present invention Parameter monitoring system is managed, it includes at least one monitor 1 that can gather monitoring object physiological parameter in real time, and the monitor 1 is logical It crosses wireless network 2 to connect and the physiological parameter collected is uploaded to center detection work station 3, Fig. 1 includes multiple monitors 4 For multiple monitoring objects.
Fig. 2, shown in 3, monitor 1 of the present invention includes a main control for being built-in with responsible whole system function scheduling The housing 5 of device CPU is also equipped in housing 5 being responsible for each physiological parameter data of acquisition and is transferred to connected master controller CPU's Coprocessor unit MCU, the coprocessor unit MCU are respectively connected with blood pressure module 6, electrocardio in housing 5 Module 7, breathing module 8 and blood oxygen module 9, and the master controller CPU comes with memory module 10, and be respectively connected with LCD display module 11, WiFi module 12 in housing 5 and 3G module 13 and it is connected on 5 side wall of housing Acquisition function button, touch screen input switch, are additionally provided with blood pressure module 6 in vivo with shell, ECG module 7 in housing sidewall The respective digital independent interface connected respectively with breathing module 8 and blood oxygen module 9.
Digital independent interface of the present invention includes:ECG module is connected by cardiac diagnosis lead-line and breathes the heart of module Electrical interface, the blood oxygen interface that blood oxygen module is connected to by blood oxygen on line;And being mounted on for blood pressure module is connected by cuff Blood pressure metal connector on housing;The coprocessor unit MCU can interpolate that whether lead has and come off, and pass through each Connected blood pressure module 6, ECG module 7, breathing module 8 and blood oxygen module 9 carries out electrocardiosignal, breath signal, blood pressure letter Number and blood oxygen signal acquisition and data transmission;
The master controller CPU is mainly controlled by the LED display module of connection, reads the touch input of user;It is logical It crosses the WiFi module 12 of connection and 3G module 13 controls and the connection of miscellaneous equipment.
LCD display module 11 of the present invention is circumscribed with the LED display that can show user interface and ecg wave form;
The electrocardiogram acquisition and Breath collection module carry lead-fail detector detection function, it will by magnifier Electrocardiosignal carries out difference extraction and amplifies output voltage signal, is extracted by high-pass filtering, blocking, low-pass filtering and amplification Reflect the voltage of heart fluctuating range, the A D interface of access MCU coprocessors is handled;Wherein by electrocardiosignal pass through with It after amplification, then is sampled, judges whether lead-fail detector;By coupling carrier wave on the electrode, then after filter and amplification, obtain To breath data, sampled by the A D interface of MCU coprocessors;
The blood pressure acquisition module is by connected coprocessor MCU control air pumps and air valve, and inflation is suppressed for cuff And deflation;After the filtered amplification of output voltage signal of baroceptor, by being blood pressure after the AD port processings of coprocessor Data;
The blood oxygen module is that the data of blood oxygen are collected by blood oxygen transducer, sends MCU coprocessors to, then It is transmitted to MCU master controllers.
Embodiment:The present invention realizes having wireless WIFI signal to carry out interacting with back-end data in real time by WIFI module, In addition outside institute or without WIFI signal environment, carried out and backstage real-time, interactive data by 3G;
Heart rate, breathing, pulse frequency, blood oxygen, blood pressure measuring multiple parameters are carried out, and are led to by cardiac diagnosis lead-line, blood oxygen line, cuff Cross 4.3 cun of five parameter values of TFT real-time displays;Can carry out 24 it is small when dynamic holter monitoring;
Shown in Fig. 3:
1)Power control unit:Power supply control for entire product provides power supply, including lithium battery, voltage conversion circuit and respectively Partial power ON-OFF control circuit;Can power supply be opened and closed by power switch button.
2)Main control unit CPU, it is responsible for the function scheduling of whole system, including following function:
The power supply of control signal collecting unit and powered-down;
Control the storage of user data;
The display of LCD is controlled, reads the touch input of user;
Control the connection of WiFi module and other equipment;
Control the connection of 3G module and other equipment;
The input of acquisition function button;
Control LED light and buzzer;
User is reminded to charge in time;
3)Coprocessor unit MCU, is responsible for the data of acquisition various pieces, and is transferred to master controller;Including following work( Energy:Determine whether lead-fail detector;
Complete acquisition and the data transmission of electrocardiosignal;
Complete acquisition and the data transmission of breath signal;
Complete acquisition and the data transmission of blood pressure signal;
Complete acquisition and the data transmission of blood oxygen signal;
4)Storage unit, it includes three parts:When DDR2 memories, for the RAM, space size 256MB of master controller; Second is that NAND Flash, the program firmware of master controller, space size 256MB are stored;Third, the users such as SD card, storage electrocardio Data;
5)LCD display unit, it can show user interface and ecg wave form etc., and with touch function, and user can be with Input some configuration informations;
6)WiFi module and 3G module are networked by WIFI or 3G, and it is whole that the Multi-parameter data of acquisition is sent host computer End;
7)ECG is gathered, lead-fail detector detection and Breath collection module, by magnifier that electrocardiosignal progress is poor Divide and extract and amplify output voltage signal, reflection heart fluctuation width is extracted by high-pass filtering, blocking, low-pass filtering and amplification The voltage of degree, the A D interface of access MCU coprocessors are handled.By electrocardiosignal after following amplification, then adopted Sample judges whether lead-fail detector.By coupling carrier wave on the electrode, then after filter and amplification, breath data is obtained, by MCU The A D interface of coprocessor is sampled.
8)Blood pressure acquisition module, MCU coprocessor controls air pump and air valve are suppressed inflatable and deflatable for cuff.Air pressure transmission It is blood pressure data by the AD port processings of coprocessor after the filtered amplification of output voltage signal of sensor;
9)Blood oxygen module, blood oxygen transducer collect the data of blood oxygen, send MCU coprocessors to, are then passed to MCU master Controller;
10)Button, LED and buzzer, button can realize the pattern switching between cardioelectric monitor and blood pressure measurement, may be used also To send SOS danger help signal;LED provides visual alarm signal or state instruction;Buzzer provides audible alert signal.

Claims (3)

1. a kind of wireless network physiological parameter monitors system, it can gather monitoring object physiological parameter in real time including at least one Monitor, which is uploaded to center detection work station by wireless network connection and by the physiological parameter collected, special Sign is that the monitor includes the housing of a master controller CPU for being built-in with responsible whole system function scheduling, in housing It is also equipped with being responsible for each physiological parameter data of acquisition and is transferred to the coprocessor unit MCU of connected master controller CPU, it is described Coprocessor unit MCU be respectively connected with mounted on the in vivo blood pressure module of shell, ECG module, breathing module and blood oxygen mould Block, and the master controller CPU comes with memory module, and be respectively connected with mounted on the in vivo LCD display module of shell, WiFi module and 3G module and the acquisition function button being connected in housing sidewall, touch screen input switch, in housing Be additionally provided on side wall blood pressure module in vivo with shell, ECG module and breathing module and blood oxygen module be connected respectively it is respective Digital independent interface.
2. wireless network physiological parameter according to claim 1 monitors system, it is characterised in that the digital independent connects Mouth includes:ECG module and the electrocardio interface for breathing module are connected by cardiac diagnosis lead-line, blood oxygen is connected to by blood oxygen on line The blood oxygen interface of module;And the blood pressure metal connector being mounted on housing of blood pressure module is connected by cuff;Described Coprocessor unit MCU can interpolate that whether lead has and come off, and pass through each connected blood pressure module, ECG module, breathing Module and blood oxygen module carry out acquisition and the data transmission of electrocardiosignal, breath signal, blood pressure signal and blood oxygen signal;
The master controller CPU is mainly controlled by the LED display module of connection, reads the touch input of user;Pass through company The control of WiFi module and 3G module and the connection of miscellaneous equipment connect.
3. wireless network physiological parameter according to claim 2 monitors system, it is characterised in that the LED display module The LED display of user interface and ecg wave form can be shown by being circumscribed with;
The electrocardiogram acquisition and Breath collection module are with lead-fail detector detection function, it is by magnifier by electrocardio Signal carries out difference extraction and amplifies output voltage signal, and reflection is extracted by high-pass filtering, blocking, low-pass filtering and amplification The voltage of heart fluctuating range, the A D interface of access MCU coprocessors are handled;Wherein electrocardiosignal is put by following It after big, then is sampled, judges whether lead-fail detector;By coupling carrier wave on the electrode, then after filter and amplification, exhaled Data are inhaled, are sampled by the A D interface of MCU coprocessors;
The blood pressure module is by connected coprocessor MCU control air pumps and air valve, is suppressed for cuff inflatable and deflatable;Gas After the filtered amplification of output voltage signal of pressure sensor, by being blood pressure data after the AD port processings of coprocessor;
The blood oxygen module is that the data of blood oxygen are collected by blood oxygen transducer, sends MCU coprocessors to, is then passed to MCU master controllers.
CN201621445500.7U 2016-12-27 2016-12-27 A kind of wireless network physiological parameter monitors system Active CN207444934U (en)

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109011148A (en) * 2018-08-29 2018-12-18 复旦大学 Portable closed loop brain depth stimulator system with intelligent adaptive function
CN110684641A (en) * 2019-10-16 2020-01-14 宁夏大学 Intelligent spore capturing analyzer
CN113413160A (en) * 2021-06-21 2021-09-21 浙江好络维医疗技术有限公司 Physiological parameter acquisition electrocardiograph with wireless network

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109011148A (en) * 2018-08-29 2018-12-18 复旦大学 Portable closed loop brain depth stimulator system with intelligent adaptive function
CN109011148B (en) * 2018-08-29 2021-12-28 复旦大学 Portable closed-loop deep brain stimulator system with intelligent self-adaptive function
CN110684641A (en) * 2019-10-16 2020-01-14 宁夏大学 Intelligent spore capturing analyzer
CN113413160A (en) * 2021-06-21 2021-09-21 浙江好络维医疗技术有限公司 Physiological parameter acquisition electrocardiograph with wireless network

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