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Pulse-taking instrument capable of executing spectroscopic analysis

A technology of spectrum analysis and pulse diagnosis instrument, applied in the field of pulse diagnosis instrument, can solve the problems of low reliability of pulse diagnosis, affecting the reliability of detection results, unable to produce objective analysis results, etc.

Inactive Publication Date: 2010-08-18
CHINA MEDICAL UNIVERSITY(TW)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] 1. The basis of traditional Chinese medicine diagnosis is to judge the attributes of qi, blood, yin and yang, and the basic requirement of palpation is to understand the "position, number, shape, and potential" of the pulse. Among them, the pulse shape and pulse potential require more sensitive fingering. Inductive measurement, but today's pulse diagnosis instruments mainly analyze pulse shape and pulse number, lack the function of analyzing pulse potential or pulse gas, for example, as shown in Figure 1-a and Figure 1-b, respectively for normal Pulse diagnosis with abnormal stomach, although you can see the pulse wave diagram on the monitor, but you can only understand the pulse wave diagram initially, and cannot further analyze the pulse wave signal. The gas operation status cannot produce objective analysis results, and has the disadvantages that the overall analysis level cannot be improved and the reliability of pulse diagnosis is low.
[0007] 2. Most of the detection brackets (not shown) of the existing pulse diagnosis instrument can not be flexibly displaced, and may only be displaced in one direction, so that sometimes the patient needs to cooperate and move his hand to be conveniently connected with the pulse diagnosis instrument. A sensing device (not shown in the figure) is in contact with each other, but in the process of moving the patient's hand, it may affect the smoothness of the blood flow, thereby affecting the reliability of the detection results, and it is inconvenient to use. missing

Method used

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  • Pulse-taking instrument capable of executing spectroscopic analysis
  • Pulse-taking instrument capable of executing spectroscopic analysis
  • Pulse-taking instrument capable of executing spectroscopic analysis

Examples

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specific example 1

[0055] Referring to Fig. 9-a and Fig. 9-b, it is the pulsation signal acquired by the pulse diagnosis instrument 2 from the right joint of the person with an abnormal stomach (Fig. 9-a) and a normal stomach (Fig. 9-b) respectively. The pulse wave diagram, Fig. 10-a (abnormal stomach) and Fig. 10-b (normal stomach) are the 0-50Hz spectrum diagrams formed by converting the pulse signal through the software in the host computer 71 of the computer unit 7 , and then referring to Figure 11-a and Figure 11-b, the filter is used to completely filter out the spectrum in the 0-10Hz range, and only keep the spectrum in the 10-50Hz range, so as to clearly present the spectrum in the 13-50Hz range. Through the pulse wave diagrams in Figure 9-a and Figure 9-b, and the 0-50Hz spectrum diagrams in Figure 10-a and Figure 10-b, it is still impossible to clearly distinguish between those with abnormal stomach and normal stomach, but borrow From Figure 11-a (abnormal stomach) and Figure 11-b (nor...

specific example 2

[0057]Refer to Figure 12-a (before treatment) and Figure 12-b (after treatment), for the same patient with sore throat before treatment and after treatment, take the pulse wave chart of the right inch, although the pulse wave after treatment The baseline of the wave diagram is relatively stable, and the size of the main wave is relatively consistent, but it is still indistinguishable. Refer to Figure 13-a (before treatment) and Figure 13-b (after treatment), which are also for this patient before and after treatment. The pulsation signal of the right hand inch was converted into a spectrum diagram, and the spectrum diagram of the 13-50Hz range was extracted. It can be found that the signal strength before treatment was significantly higher. After treatment, the patient felt that the throat disease improved, reflecting On the spectrogram, the signal strength is also significantly reduced. Therefore, the changes before and after treatment can be seen through the spectrogram, espe...

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Abstract

The invention discloses a pulse diagnosis instrument for spectral analysis, which is used for measuring a pulsation signal of a human body and comprises a base unit, a displacement adjustment mechanism arranged on the base unit, a sensing unit arranged on the displacement adjustment mechanism, and a computer unit electrically connected with the sensing unit. The displacement adjustment mechanism can displace relative to a radial artery of the human body. The sensing unit comprises a mechanical force gauge arranged on the displacement adjustment mechanism, and a pulsation sensor which is linked with the mechanical force gauge. The computer unit comprises a host which is electrically connected with the pulsation sensor, and a display which is electrically connected with the host, wherein the host has a conversion software which can convert the pulsation signal into spectrograms with frequency ranges of between 0 and 50Hz, between 0 and 10Hz, and between 13 and 50Hz, thereby providing a quick and clear pulse analysis result to improve the quality of scientific pulse diagnosis.

Description

technical field [0001] The invention relates to a pulse diagnosis instrument, in particular to a pulse diagnosis instrument capable of frequency spectrum analysis. Background technique [0002] Pulse diagnosis is an important diagnostic method for diagnosing diseases and monitoring curative effects in traditional Chinese medicine. At present, the traditional Chinese medicine pulse detection method is to place three fingers of one hand (mainly the index finger, middle finger and ring finger) on the radial artery of the patient's wrist, and then Apply different degrees of pressure to use your fingers to feel the reaction state of the patient's blood vessels under different pressures, and then perform pulse analysis. [0003] Diagnosing the pulse must first distinguish the "pulse position". The main parts are the Cun, Guan and Chi parts of the left and right wrists. half a mile or in. The second is to judge the "pulse number", which refers to the rate of the pulse. Clinically...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61B5/00A61B5/02
Inventor 黄进明
Owner CHINA MEDICAL UNIVERSITY(TW)
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