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Cardiopulmonary coupling feedback method and device

A cardiopulmonary coupling and feedback unit technology, applied in the field of biofeedback, can solve problems such as the decline of cardiopulmonary coupling and coordination, failure to reflect training effects, and inability to reflect the internal connection of the system, so as to achieve the effect of improving synergy efficiency and enhancing cardiopulmonary coupling strength

Inactive Publication Date: 2015-07-08
张政波
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Problems solved by technology

[0004] Current biofeedback technology and devices often measure single signals, and biofeedback training is carried out only from the perspective of changes in a single physiological parameter, such as electromyography, electroencephalography, skin electricity, heart rate, blood pressure and other feedback instruments. To a certain extent, it can reflect the psychological and physiological changes of the human body, but a single-dimensional analysis often cannot reflect the internal relationship between systems
The human body is an open and complex giant system, and the correlation between systems is a direct and important information reflecting the state of the system. However, in the field of biofeedback, information on the interaction or coupling relationship between systems has not been effectively utilized.
There is another disadvantage of single physiological parameter feedback, such as heart rate feedback. Simply looking at the amplitude modulation process of heart rate and breathing cannot reflect the best training effect, because when the amplitude of heart rate and breathing oscillates to a certain extent, the relationship between heart and lung Decreased coupling and coordination, especially for some patients with cardiopulmonary diseases, such as COPD patients, asthmatics, heart failure patients, etc., not only can not achieve the purpose of regulating and treating the disease, but may induce the risk of cardiopulmonary disease attack

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  • Cardiopulmonary coupling feedback method and device

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Embodiment Construction

[0023] Next, the cardiopulmonary coupling feedback device and the cardiopulmonary coupling method of the present invention will be described in detail with reference to the accompanying drawings. Hereinafter, cardiovascular signals may also be referred to as cardiovascular physiological signals.

[0024] Such as figure 1 Shown is a system block diagram of the first embodiment of the cardiopulmonary coupling feedback device of the present invention.

[0025] figure 1 The shown cardiopulmonary coupling feedback device includes: a cardiovascular signal acquisition unit 41 , a respiratory signal acquisition unit 42 , a cardiopulmonary coupling strength calculation unit 20 , a control unit 10 , and a feedback unit 30 .

[0026] The cardiovascular signal acquiring unit 41 is used to acquire the cardiovascular signal of the user.

[0027] The respiratory signal acquisition unit 42 is used to acquire the user's respiratory signal.

[0028] The cardiopulmonary coupling strength cal...

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Abstract

A cardiopulmonary coupling feedback method comprises the steps that firstly, the cardiopulmonary coupling strength of an examinee is obtained by carrying out coupling analysis on cardiovascular signals and respiratory signals of the examinee; secondly, movement indicating signals are output to the examinee according to the cardiopulmonary coupling strength of the examinee so as to improve the cardiopulmonary coupling strength of the examinee. By means of a cardiopulmonary coupling feedback device and the cardiopulmonary coupling feedback method, a user can carry out specific movement under the guidance of the cardiopulmonary coupling strength to improve the cardiopulmonary coupling strength constantly. The synergic efficiency of the cardiopulmonary system is improved.

Description

technical field [0001] The present invention relates to biofeedback, and in particular to cardiopulmonary coupled feedback. Background technique [0002] Cardiopulmonary coupling refers to the internal coordination mechanism and function between the cardiovascular system and the respiratory system, also known as cardiopulmonary interaction, and its research involves a wide range of physiological, pathological and clinical application fields. There is a clear coupling relationship between the cardiovascular system and the respiratory system, such as the heart rate speeds up during inhalation and slows down during exhalation; the amplitude of the ECG signal also shows obvious amplitude modulation with the thoracic breathing movement; The amplitudes of blood pressure and pulse wave signals are also modulated by respiratory motion, exhibiting changes in amplitude with inspiratory and expiratory motion. On the one hand, the cardiopulmonary coupling phenomenon can be used to obta...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B5/0452A61B5/08
CPCA61B5/08A61B5/48A61B5/72A61B5/316A61B5/349
Inventor 张政波郑捷文柴晓珂梁洪
Owner 张政波
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