Vital sign processing apparatus and vital sign processing system

An information processing device and information processing system technology, applied in the direction of electrical digital data processing, special data processing applications, telemetry patient monitoring, etc., can solve problems such as low reliability, not necessarily beneficial, and difficulty in biological information, so as to improve reliability Effect

Inactive Publication Date: 2005-09-28
PANASONIC CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] In the existing living body information collection system under such circumstances, the collected measurement data includes low reliability measurement data in which the measurement conditions deviate from the expected conditions.
Therefore, it is not necessarily beneficial to analyze information produced from a database constructed from such low-reliability measurement data
[0009] In this way, when collecting measurement data for database construction, it is very difficult to correctly collect measurement data based on certain measurement conditions, and the authority or determination depends on the biological information of the measurer.
[0010] In addition, the measurer needs to pay the price in order to obtain the measurement sample of biological information or the analysis result based on the biological information, which constitutes the main reason why it is difficult to widely collect measurement data

Method used

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  • Vital sign processing apparatus and vital sign processing system
  • Vital sign processing apparatus and vital sign processing system
  • Vital sign processing apparatus and vital sign processing system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment approach 1

[0065] figure 2 It is a block diagram showing the configuration of a wrist-type blood pressure monitor as the biological information processing device 101 according to the embodiment of the present invention.

[0066] This sphygmomanometer is a device that wraps the main body around the wrist and presses the wrist to measure blood pressure. It roughly includes a biological information measurement unit 102, a measurement condition recognition unit 103, an additional information input unit 106, a measurer notification unit 107 serving as a designated condition notification unit and a presentation unit, a designated condition storage unit 121, a measurement condition comparison unit 108, and a compliance unit. The level creation unit 115 , the information storage unit 116 , the remeasurement information creation unit 120 , and the information analysis unit 112 .

[0067] The biological information measuring unit 102 is composed of a pulse sensor that detects pulse information a...

Embodiment approach 2

[0106] Figure 7 It is a block diagram showing the living body information processing system in the embodiment of the present invention. This living body information processing system includes a plurality of living body information measuring devices 101 and a living body information collecting device 110 connected to the living body information measuring devices 101 through a communication network as an intermediary, and is capable of collecting and processing living body information widely. system. in addition, Figure 7 One living body information measurement device 101 is described in , but other measurement devices 101 not shown also have the same configuration and are connected to the communication network 130 .

[0107] The biological information measurement device 101 is installed near the measurer and transmits biological information and measurement conditions during measurement to the biological information collection device 110, and generally includes a biological ...

Embodiment approach 3

[0164] Next, an embodiment using the biological information measurement unit 102 equipped with a blood glucose meter will be described. The description of parts that perform the same functions and operations as those in the above-mentioned embodiment is omitted.

[0165] The blood sugar level changes at any time during the day due to meals, exercise, and other reasons, but for normal people, it is adjusted within a certain range (60-109mg / dl on an empty stomach, less than 2 hours after a meal) 140mg / dl). Normally, the reference range of blood sugar levels during fasting is used for blood sugar evaluation. However, even when fasting blood sugar levels are normal, blood sugar levels may become high after meals. When determining diabetes treatment guidelines, it is necessary to grasp daily fluctuations.

[0166] Figure 15 It is a graph showing the intraday variation graph of each of the normal person, the patient A who exhibited hyperglycemia after a meal, and the patient B wh...

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PUM

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Abstract

The vital sign processing apparatus in the present invention includes: a vital sign measurement unit that measures a vital sign of a subject; a designated condition notification unit that notifies the subject of a designated condition to be followed during measurement of the vital sign using the vital sign measurement unit; a measurement condition recognition unit that recognizes, without input from the subject, a measurement condition at a time the vital sign is measured by the subject using the vital sign measurement unit; a condition comparison unit that compares the designated condition notified by the designated condition notification unit, with the measurement condition recognized by the measurement condition recognition unit; and a presentation unit that presents a comparison result from the condition comparison unit.

Description

technical field [0001] The present invention relates to a living body information processing device and a living body information processing system, which collect data after matching the living body information of a measurer with the measurement conditions when measuring the living body information. Background technique [0002] As a conventional data collection system, a measurer transmits measurement data, a data collection device collects the data, and manages and processes the collected data (for example, refer to Patent Document 1). [0003] figure 1 The conventional data collection system and data collection method described in the said patent document 1 are shown. [0004] figure 1 Among them, the data measurer uses the data measurement device 10 to measure the measurement data 50 of the biological information of the measurement object, and directly sends the measurement data 50 to the data collection device 20 through the wireless communication link 60, and the dat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B5/00A61B5/021
CPCA61B5/14546A61B5/021A61B5/0002A61B5/14532A61B2560/0261A61B2560/0242
Inventor 权丈纪子河村达朗龟井明仁
Owner PANASONIC CORP
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