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Wireless remote physiological signal monitoring and processing system and control method thereof

A remote monitoring and physiological signal technology, applied in the field of medical monitoring system, can solve problems such as nervousness, unnaturalness of patients, inaccurate data, etc., and achieve the effect of reducing inconvenience, convenient and timely processing, and improving quality of life

Inactive Publication Date: 2012-12-26
SHENYANG INST OF AUTOMATION - CHINESE ACAD OF SCI +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This traditional method of connecting detection equipment to the human body for monitoring will make patients feel unnatural and nervous, which will lead to inaccurate detected data
[0004] However, existing portable monitoring instruments, such as portable sphygmomanometers, portable oximeters, Holter monitors, etc., only realize the storage of physiological signals, but do not realize real-time analysis of signals and remote transmission of signals. When the patient's physiological signal is abnormal, the doctor cannot timely understand the patient's condition and make corresponding treatment

Method used

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  • Wireless remote physiological signal monitoring and processing system and control method thereof
  • Wireless remote physiological signal monitoring and processing system and control method thereof
  • Wireless remote physiological signal monitoring and processing system and control method thereof

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Experimental program
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Embodiment 1

[0035] Such as figure 1 As shown, it includes a user terminal 1 and a data server 2. The user terminal 1 has a physiological information collection module 11 and a device parameter collection module 12, which respectively pass through the first and second wireless sensor transmitting modules 13, 14 and the wireless sensor gateway node 15. Perform a wireless communication connection; the wireless sensor gateway node 15 is then connected to the data server 2 through a wired network interface 155; the wireless sensor gateway node 15 also has a mobile communication interface 156 (mobile communication interface types include GSM / GPRS / 3G, this embodiment It uses GPRS interface), which is connected to the first mobile communication module 16 (this embodiment uses GPRS module), and transmits the data of the physiological information collection module 11 to the data through the second mobile communication module 3 (this embodiment uses GPRS module) Server 2.

[0036] Such as Figure 4 As ...

Embodiment 2

[0056] Such as image 3 As shown, the difference from Embodiment 1 is that this embodiment applies the inventive system to hospital ward monitoring, where the user terminal 1 only includes the physiological information collection module 11, and the hospital can choose different routine physiological tests according to different patients. The signal detection module includes the blood oxygen detection module 111, the ECG detection module 112 and / or the body temperature detection module 113 in this embodiment.

[0057] The wireless sensor gateway node 15 can be installed in the ward, and is directly connected to the wired network (such as the Internet and telephone network) in the ward through its wired network interface 155. The data is transmitted to the ward via the wired network through the relay transmission of the wireless sensor gateway node 15 Data server 2. The data server 2 provides the nurse workstation login software. The PC of the nurse station can monitor the patient ...

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Abstract

The invention relates to a wireless remote physiological signal monitoring and processing system and a control method thereof. A physiological information acquisition module at a client is connected with a wireless sensor gateway node by a first wireless sensor emitting module in a wireless communication mode; the wireless sensor gateway node is connected with a data server by a wired network interface; and an equipment parameter acquisition module at the client is connected with the wireless sensor gateway node by a second wireless sensor emitting module in the wireless communication mode. The method comprises the following steps of: acquiring human body physiological information and equipment status information; preprocessing the information, performing characteristic matching on the information, and dividing the condition of a patient into stable phase monitoring and acute developing phase pre-warning; and if the patient is under the stable phase monitoring and the condition of the patient is not improved, prompting a doctor to modify a prescription, and storing the data of patient information at the same time. By using the wireless remote physiological signal monitoring and processing system and the control method thereof, monitored persons can break away from the limit of the traditional monitoring mode, the life quality of the monitored persons is improved, and the doctors can remotely and effectively guide the patients.

Description

Technical field [0001] The invention relates to a medical monitoring system, in particular to a wireless remote monitoring and processing system for physiological signals and a control method thereof. Background technique [0002] With the high integration of the three major technologies of network technology, low-power computing devices and micro-electromechanical systems, especially the development of wireless sensor networks and wireless communications, information technology has been increasingly used in various fields of production and life. Become an indispensable technology in the medical field. [0003] In our country, chronic non-communicable diseases have posed a serious threat to the health and lives of people, especially the elderly. Chronic diseases and degenerative diseases require long-term follow-up and treatment, but a large number of patients cannot stay in the hospital for treatment for a long time. Most of them can only take regular return to the hospital for f...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61B5/00G08C17/02A61B19/00A61B90/00
Inventor 李洪谊黄勇唐延东王乾隆张玉谦张明秋
Owner SHENYANG INST OF AUTOMATION - CHINESE ACAD OF SCI