Quality judgement method and quality judgement system for electrocardiogram

A quality judgment, electrocardiogram technology, applied in the directions of diagnosis, electrical digital data processing, diagnostic recording/measurement, etc., can solve the problem of not having the function of judging the quality of the lead signal, reducing the reliability of the lead signal, and reducing the effectiveness of the lead signal acquisition system Issues such as usability and usability

Inactive Publication Date: 2017-04-26
SUZHOU INST OF NANO TECH & NANO BIONICS CHINESE ACEDEMY OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Existing electrocardiogram equipment only has the function of lead signal acquisition and does not have the function of lead signal quality evaluation. to judge
Moreover, during the acquisition process of the lead signal, the quality of the lead signal is easily affected by human

Method used

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  • Quality judgement method and quality judgement system for electrocardiogram
  • Quality judgement method and quality judgement system for electrocardiogram
  • Quality judgement method and quality judgement system for electrocardiogram

Examples

Experimental program
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no. 1 example

[0026] figure 1 is a flow chart of the method for judging the quality of an electrocardiogram according to the first embodiment of the present invention.

[0027] refer to figure 1 , in step S1, receive twelve-lead signals constituting the electrocardiogram.

[0028] In this embodiment, the twelve lead signals include: the first standard limb lead signal (ie standard I lead signal), the second standard limb lead signal (ie standard II lead signal), the third standard limb lead signal Limb lead signal (i.e. standard III lead signal), the first pressurized limb lead signal (aVR lead signal), the second pressurized limb lead signal (aVL lead signal), the third pressurized limb lead signal Signal (aVF lead signal), first chest lead signal (V1 lead signal), second chest lead signal (V2 lead signal), third chest lead signal (V3 lead signal), fourth chest lead signal Lead signal (V4 lead signal), fifth chest lead signal (V5 lead signal), sixth chest lead signal (V6 lead signal). ...

no. 2 example

[0058] Figure 4 is a flow chart of a method for judging the quality of an electrocardiogram according to the second embodiment of the present invention.

[0059] refer to Figure 4 , in step S1, receive twelve-lead signals constituting the electrocardiogram.

[0060] In this embodiment, the twelve lead signals include: the first standard limb lead signal (ie standard I lead signal), the second standard limb lead signal (ie standard II lead signal), the third standard limb lead signal Limb lead signal (i.e. standard III lead signal), the first pressurized limb lead signal (aVR lead signal), the second pressurized limb lead signal (aVL lead signal), the third pressurized limb lead signal Signal (aVF lead signal), first chest lead signal (V1 lead signal), second chest lead signal (V2 lead signal), third chest lead signal (V3 lead signal), fourth chest lead signal Lead signal (V4 lead signal), fifth chest lead signal (V5 lead signal), sixth chest lead signal (V6 lead signal). ...

no. 3 example

[0103] Figure 7 It is a block diagram of an electrocardiogram quality judgment system according to a third embodiment of the present invention.

[0104] refer to Figure 7 According to the third embodiment of the present invention, the ECG quality judging system includes: a receiving module 10 , a valid or invalid judging module 20 , a quality judging module 30 , a grading module 40 , and a processing module 50 .

[0105] The receiving module 10 is configured to receive twelve-lead signals constituting an electrocardiogram. Please refer to the description in the above step S1 for specific signal types included in the twelve lead signals.

[0106] The valid or invalid judging module 20 is configured to judge whether the electrocardiogram is valid or not according to the twelve-lead signals. In this embodiment, the valid or invalid judging module 20 is further configured to judge whether the electrocardiogram is valid or not by using the method in step S2 above.

[0107] If...

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Abstract

The invention provides a quality judgment method for electrocardiogram. The method comprises the following steps: receiving a 12-lead signal forming electrocardiogram; judging whether the electrocardiogram is valid or not according to the 12-lead signal; and judging the quality of the electrocardiogram according to the 12-lead signal if the electrocardiogram is valid. The invention further provides a quality judgment system for electrocardiogram. When the quality judgement system and quality judgement method for electrocardiogram are applied to electrocardiogram equipment, the electrocardiogram equipment has a lead signal collection function and a lead signal quality judgment function. Furthermore, according to the quality judgement system and quality judgement method, the electrocardiogram of which the quality does not achieve a preset standard is graded, so that important information of the electrocardiogram of which the quality does not achieve the preset standard can be better maintained.

Description

technical field [0001] The invention belongs to the technical field of electrocardiogram judgment, and in particular relates to a quality judgment method and a quality judgment system of an electrocardiogram. Background technique [0002] A lead signal constituting an electrocardiogram (ECG for short) is a weak biological signal, wherein the lead signal will be subjected to electromagnetic interference from the body and instruments during the collection process to generate noise. For doctors, the worst-quality ECGs can be ignored and taken again; the poorer ones can be roughly used to diagnose disease. However, for a computer, the quality of the electrocardiogram has a greater impact on the diagnosis of a disease. Therefore, it is necessary to judge the quality of lead signals before preprocessing, feature extraction and disease diagnosis of ECG. [0003] Existing electrocardiogram equipment only has the function of lead signal acquisition and does not have the function of...

Claims

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Application Information

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IPC IPC(8): A61B5/0402G06F19/00
Inventor 李慧慧董军
Owner SUZHOU INST OF NANO TECH & NANO BIONICS CHINESE ACEDEMY OF SCI
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