[CORRECTION OF HEART RATE VARIABILITY USING DIAPHRAGMATIC BREATHING MODE BIOFEEDBACK IN HEALTHY PEOPLE.]

V P Feketa, L A Gleba, O S Palamarchuk, Ju M Savka, K B Kivezhdi
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引用次数: 1

Abstract

The research is an attempt to explain the use of portable computer devices aiming to correct heart rate variability (HRV) of healthy young men. According to the data, used deep diaphragmatic breathing in mode of biofeedback harmonizes breathing and blood circulation which positively affects the body's adaptive potential. However, developers present the portable instruments of biofeedback primarily as a means of psychological relaxation. The aim of this study is to determine whether such devices are able to significantly affect heart rate variability and how long this effect lasts. There were 30 males aged 18 to 20 years that participated in this study. They were randomly divided into three equal groups with up to 10 people in each of them. Members of the first group were doing breathing exercises using a portable biofeedback StressEraser device, the second group used Em-Wave2, and the third one used hardware and software system MyCalmBeat. Each session lasted from 10 to 15 minutes. There were 10 sessions held daily in the morning. HRV was recorded by remote heart rate monitor Polar RS800CX and software Polar ProTrainer5. 5-minutes' stationary segments of the curve chest electrocardiogram removal were used in order to calculate the HRV indexes. It was found that 15 minutes deep breathing in mode of biofeedback significantly affects the heart rate variability of healthy young people. In particular, it increases the overall heart rate variability according to the statistical and spectral analysis. It was established that in all 3 groups of experiment participants the spectral curve low-range "Low frequency" (LF) suffered the major shifts. These shifts reflect the activity level of the sympathetic autonomic nervous system (ANS) as well as vascular-motor center according to the conventional interpretation. It was found that all three groups suffered a specific weight decrease of Very Low Frequency (VLF)% respectively 11.8±2.2%;(p <0,01); 6.6 ± 2.8%; (p <0,02) and 6.8 ± 2.4% (p <0,05). This means that activity redistribution between different regulatory components of heart rate occurred in favour of the peripheral ANS parts. Heart rate variability changes of this kind remained valid for at least one month after the experiment. The greatest influence on heart rate variability was observed in the group of people who used the device StressEraser.

[利用横膈膜呼吸模式生物反馈校正健康人心率变异性]
这项研究试图解释使用便携式电脑设备来纠正健康年轻男性的心率变异性(HRV)。数据显示,采用生物反馈模式的深层膈肌呼吸能协调呼吸和血液循环,对人体的适应潜能有积极的影响。然而,开发人员提出便携式生物反馈仪器主要是作为一种心理放松的手段。这项研究的目的是确定这些设备是否能够显著影响心率变异性,以及这种影响持续多久。有30名年龄在18到20岁之间的男性参与了这项研究。他们被随机分成三组,每组最多10人。第一组成员使用便携式生物反馈压力激光设备进行呼吸练习,第二组使用Em-Wave2,第三组使用硬件和软件系统MyCalmBeat。每次会议持续10到15分钟。每天上午举行10次会议。采用Polar RS800CX远程心率监测仪和Polar ProTrainer5软件记录HRV。采用曲线胸心电图去除5分钟静止段计算HRV指数。研究发现,在生物反馈模式下深呼吸15分钟对健康年轻人的心率变异性有显著影响。特别是,根据统计和频谱分析,它增加了整体心率变异性。结果表明,在所有3组实验参与者中,光谱曲线低频“低频”(LF)发生了较大的偏移。根据传统的解释,这些变化反映了交感自主神经系统(ANS)和血管运动中枢的活动水平。结果发现,三组患者的体重比分别下降了11.8±2.2% (p
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