[北方地区青少年有效心律生物反馈参数脑电图振荡的个体类型反应性]。

IF 0.2 4区 医学 Q4 NEUROSCIENCES
E V Krivonogova, L V Poskotinova, D B Demin
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引用次数: 0

摘要

为了增加迷走神经对心律和脑电图的影响,在14-17岁明显健康的年轻人和青少年中进行了单次心率变异性(HRV)生物反馈。在成功的HRV生物反馈过程中,脑电图频谱功率的不同变体被确定。在脑电图活动I变体的情况下,α -、β -、β -成分的功率谱增加发生在大脑的所有部位。在脑电活动II变体的情况下,观察到大脑各部分α -, β -, β -活性的功率谱减少。脑电图活动的I型和II型变体引起更密集的皮层-皮层下相互作用。在脑电活动III变型时,生物反馈成功伴随着大脑中央、前部和前额叶区α活性的增加,表明神经网络丘脑皮质关系的形成,以优化植物对心脏功能的调节。IV型脑电活动期间,顶叶、中央、额叶和颞叶的α -和β -活性增加,从而缓解了神经网络信息处理的沟通。由于脑电活动的V变异,导致两个大脑半球的中央和额叶的θ活动功率谱增加,因此它与皮层-海马相互作用相关联,实现了成功的生物反馈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Individual Types Reactivity of EEG Oscillations in Effective Heart Rhythm Biofeedback Parameters in Adolescents and Young People in the North].

A single session of heart rate variability (HRV) biofeedback in apparently healthy young people and adolescents aged 14-17 years in order to increase vagal effects on heart rhythm and also electroencephalograms were carried out. Different variants of EEG spectral power during the successful HRV biofeedback session were identified. In the case of I variant of EEG activity the increase of power spectrum of alpha-, betal-, theta-components takes place in all parts of the brain. In the case of II variant of EEG activity the reduction of power spectrum of alpha-, betal-, theta-activity in all parts of the brain was observed. I and II variants of EEG activity cause more intensive regime of cortical-subcortical interactions. During the III variant of EEG activity the successful biofeedback is accompanied by increase of alpha activity in the central, front and anteriofrontal brain parts and so indicates the formation of thalamocortical relations of neural network in order to optimize the vegetal regulation of heart function. There was an increase in alpha- and beta1-activity in the parietal, central, frontal and temporal brain parts during the IV variant of EEG activity and so that it provides the relief of neural networks communication for information processing. As a result of V variance of EEG activity there was the increase of power spectrum of theta activity in the central and frontal parts of both cerebral hemispheres, so it was associated with the cortical-hippocampal interactions to achieve a successful biofeedback.

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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
9
审稿时长
6-12 weeks
期刊介绍: Information not localized
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