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首页> 外文期刊>Bulletin of experimental biology and medicine >Synergetic fMRI-EEG Brain Mapping in Alpha-Rhythm Voluntary Control Mode
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Synergetic fMRI-EEG Brain Mapping in Alpha-Rhythm Voluntary Control Mode

机译:阿尔法节奏自愿控制模式下的协同功能磁共振成像脑电图。

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For the first time in neurobiology-related issues, the synergistic spatial dynamics of EEG and fMRI (BOLD phenomenon) was studied during cognitive alpha biofeedback training in the operant conditioning mode (acoustic reinforcement of alpha-rhythm development and stability). Significant changes in alpha-rhythm intensity were found in T6 electrode area (Brodmann area 37). Brodmann areas related to solving alpha-training tasks and maximally involved in the formation of new neuronal network were middle and superior temporal gyri (areas 21, 22, and 37), fusiform gyrus, inferior frontal gyrus (areas 4, 6, and 46), anterior cingulate gyrus (areas 23 and 24), cuneus, and precuneus (area 7). Wide involvement of Brodmann areas is determined by psychological architecture of alpha-rhythm generating system control that includes complex cognitive activities: decision making, retrieval of long-term memory, evaluation of the reward and control efficiency during alpha-EEG biofeedback.
机译:首次在神经生物学相关问题中,在认知阿尔法生物反馈训练中,以操作性调节模式(声学增强阿尔法节奏的发展和稳定性)研究了脑电图和功能磁共振成像(BOLD现象)的协同空间动力学。在T6电极区域(Brodmann区域37)发现了α节奏强度的显着变化。与解决alpha训练任务有关并最大程度参与新神经元网络形成的Brodmann区域为中上颞颞回(区域21、22和37),梭状回,额额下回(区域4、6和46)。 ,前扣带回(区域23和24),楔形肌和前突(区域7)。 Brodmann地区的广泛参与是由阿尔法节奏产生系统控制的心理架构决定的,该系统结构包括复杂的认知活动:决策,长期记忆的检索,对阿尔法脑电图生物反馈过程中奖励和控制效率的评估。

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