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An innovative technology of an athlete’s organism functional reserves increase based on bioacoustical stimulation of the respiratory system

机译:基于生物理刺激的呼吸系统的运动员有机体功能储备的创新技术

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摘要

In order to increase an athlete’s organism functional reserves we created the innovative technology based on low-frequency vibrations influence on respiratory system. First we measured acoustic impedance of an athlete’s organism for three phases of respiration at polyharmonic acoustic signal within the range of frequency from 3 Hz to 51 Hz. After that during 2 weeks we organized six sessions of bioacoustical stimulation among the group of 20 athletes, divided into subgroups with an effective (130 dB) and placebo (60 dB) effect. It was stated that six-fold effect of a scanning tonal signal with the level of sound pressure 130 dB within the range 22-36 Hz led to resonance frequency of respiratory system increase, respiratory system sound vibrations imbibitio coefficient decrease and its resistance to sound wave increase because of reserve alveoli opening and the increase of area of cross section of alveolar ways and respiratory bronchial tubes.
机译:为了增加运动员的有机体功能储备,我们创建了基于低频振动对呼吸系统影响的创新技术。首先,我们在频率范围内的多球声学信号范围为3Hz至51Hz的多球声学信号中测量运动员生物体的声阻抗。之后,在2周内,我们在20名运动员组中组织了六次生物调谐刺激,分为亚组,分为有效(130 dB)和安慰剂(60 dB)效应。据指出,扫描色调信号的六倍效应在22-36Hz范围内具有声压130dB的水平导致呼吸系统的谐振频率增加,呼吸系统声音振动吸收性系数减小及其对声波的抵抗力由于储备肺泡开放和肺部横截面和呼吸支气管管的横截面的增加而增加。

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