Dynamic pulse wave simulation module

A pulse wave and dynamic technology, applied in the field of medical teaching, can solve the problems of less clinical data, difficult pulse signals, and inability to reflect physiological process information, and achieve the effect of dynamic simulation

Active Publication Date: 2018-05-18
TIANJIN TELLYES SCI
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AI Technical Summary

Problems solved by technology

[0004] It is difficult to collect the real pulse signal in emergency situations, and there are few clinical data. In the emergency simulation training, the change of the human pulse signal reflects the important information of the human physiological process. However, in the existing emergency simulation products, the simulated pulse signal is only fixed It can only adjust the rate, but cannot reflect the sharply changing physiological process information of the human body, and cannot

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Embodiment Construction

[0022] Such as figure 1 As shown, the overall workflow of a dynamic pulse wave simulation module includes:

[0023] 1. Generate the initial simulated pulse wave and extract the characteristic parameters:

[0024] 1) Obtain pulse wave data: The clinical pulse data is a pulse map: draw points on the pulse map, extract the coordinate values ​​of the pulse waveform, and use the linear interpolation method to perform abscissa homogenization linear interpolation processing on the coordinate values, and then obtain uniformly sampled pulse wave data; The clinical pulse data is an electrical signal: the pulse wave data is obtained by monitoring the sensor;

[0025] 2) Reconstruction of the pulse wave: the pulse wave can be considered as the superposition of the main wave, the dicrotic wave and the dicrotic front wave, and each characteristic wave of the pulse wave is approximated by a Gaussian function, then each pulse wave is composed of three Gaussian function to reconstruct, by...

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Abstract

The invention provides a dynamic pulse wave simulation module, and relates to the field of medical teaching. The dynamic pulse wave simulation module includes a feature acquisition module, a vital sign simulation module, a dynamic simulation module and a display module, pulse wave data come from clinical practice, through the feature acquisition module, feature acquisition can be performed on pulse data of different clinical case conditions to obtain pulse wave features of different cases, when medical students perform training operation, the life sign simulation module simulates changes of physiological parameters in real time, data are transmitted to the dynamic simulation module, corresponding dynamic adjustment of pulse waves is performed in real time, dynamic simulation of the pulse waves is realized, and output display is performed through the display module.

Description

technical field [0001] The invention relates to the field of medical teaching, in particular to a dynamic pulse wave simulation module. Background technique [0002] The pulse is the arterial pulsation, and the pulse frequency is the pulse rate. The pulse rate of normal people is regular, and there will be no phenomenon of different pulse intervals. The pulse wave of the human body can be recorded by a special pulse recorder. Branch A and descending branch K form. The ascending branch reflects the passive dilation of the rapidly ejecting internal artery of the ventricle, and the descending branch reflects the retraction of the late blood. Then the ventricles diastole, the intraventricular pressure is lower than the aortic blood pressure, so the arterial blood flows back, causing the aortic valve to close, and the descending branch notch N is formed on the curve, also called the descending gorge or the heavy wave trough. Due to the closure of the aortic valve, the backflow ...

Claims

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Application Information

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IPC IPC(8): G09B9/00
CPCG09B9/00
Inventor 关红彦尚双双马培培
Owner TIANJIN TELLYES SCI
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