Multi-physiological-parameter long-term wireless non-invasive observation system based on short message service

A technology for physiological parameters and monitoring systems, applied in the field of medical monitoring systems, can solve the problems of cumbersome solutions, time-consuming and energy-consuming, and difficult to adhere to for a long time, and achieve significant social benefits, economic value, and cost-saving effects.

Inactive Publication Date: 2007-08-08
SHANGHAI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0006] Obviously, the above solutions are cumbersome, time-consuming and energy-consuming, and difficult to persist for a long time, especially fo

Method used

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  • Multi-physiological-parameter long-term wireless non-invasive observation system based on short message service
  • Multi-physiological-parameter long-term wireless non-invasive observation system based on short message service
  • Multi-physiological-parameter long-term wireless non-invasive observation system based on short message service

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Embodiment Construction

[0037] Below in conjunction with accompanying drawing a preferred embodiment of the present invention is described in detail as follows:

[0038] Referring to Fig. 1, the long-term wireless non-invasive monitoring system for multiple physiological parameters based on short message service is mainly composed of a portable multiple physiological parameter measurement device 1 carried by a subject 10, a GSM network 2, a remote server end, and a mobile communication device 12. Medical service personnel 11, Internet / WWW network 7 and handheld device or desktop device 8 supporting Internet / WWW network. Wherein the remote server is mainly composed of a short message server 4 configured with a GSM modem 3, a database server 5 and a web server 6. Servers 4, 5, and 6 can be independent servers, or share one server. GSM modem 3 adopts Baiyi's dual-SIM industrial-grade GSM wireless modem, which is equipped with 360-degree rotatable and foldable high-sensitivity antenna and service driver...

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Abstract

The invention relates to a multi-physiological parameter long-time wireless nondestructive detecting system based on short message service, SMS. The invention comprises a sensor terminal and a server terminal, wherein, the sensor terminal is a portable multi-physiological detector carried by the detected user; the server terminal comprises a remote server, a movable communicator handed by medical staff, a hand-held device and a desk device. The invention detects the multiply physiological parameters of user, to be transmitted via the movable communication network with the remote server; the hand-held device and the desk device are via local network accessed into the computer network to connect the remote server; the medical staff via the movable communicator and movable communication network can transmit signals with the portable multi-physiological detector and the remote server. The invention builds a platform formed by the portable character detector and a movable communication network short message server, to realize full-automatic detection.

Description

technical field [0001] The invention relates to a medical monitoring system, in particular to a long-term wireless non-invasive monitoring system for multiple physiological parameters based on short message service. Background technique [0002] Blood pressure is the lateral pressure of blood on the vessel wall when blood flows in the blood vessel. It is divided into arterial pressure and venous blood pressure, of which arterial pressure is particularly important. Arterial pressure is divided into systolic and diastolic pressure. When the heart contracts to eject blood to the arteries, blood pressure rises, and its highest value is called systolic pressure (highest pressure); when the ventricles relax, blood pressure drops, and the blood pressure at the end of myocardial diastole is the lowest, called diastolic pressure (lowest pressure). Systolic blood pressure mainly depends on the size of the myocardial contractility and the amount of cardiac output; diastolic blood pres...

Claims

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Application Information

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IPC IPC(8): A61B5/00A61B19/00H04Q7/22
Inventor 严壮志
Owner SHANGHAI UNIV
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