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Testing the Specificity of EEG Neurofeedback Training on First- and Second-Order Measures of Attention

机译:通过一阶和二阶注意力测验测试脑电神经反馈训练的特异性

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During electroencephalography (EEG) neurofeedback training, individuals learn to willfully modulate their brain oscillations. Successful modulation has been shown to be related to cognitive benefits and wellbeing. The current paper addresses the specificity of three neurofeedback protocols in influencing first- (basic Stroop effect) and second-order (Gratton effect) measures of attentional control. The data come from two previously presented studies that included the Stroop task to assess attentional control. The three neurofeedback protocols were upregulation of frontal alpha, sensorimotor (SMR), and mid-frontal theta oscillations. The results show specific effects of different EEG neurofeedback protocols on attentional control and are modulated by the cognitive effort needed in the Stroop task. To summarize, in less-demanding versions of the Stroop task, alpha training improves first- and second-order attentional control, whereas SMR and theta training had no effect. In the demanding version of the Stroop task, theta training improves first-order, but not second-order control and SMR training has no effect on either. Using a drift diffusion model-based analysis, it is shown that only alpha and theta training modulate the underlying cognitive processing, with theta upregulation enhancing evidence accumulation. Although the current results need to be interpreted with caution, they support the use of different neurofeedback protocols to augment specific aspects of the attentional system. Recommendations for future work are made.
机译:在脑电图(EEG)神经反馈训练期间,人们学会故意调节他们的大脑振动。业已证明,成功的调节与认知益处和幸福感有关。本文探讨了三种神经反馈方案在影响注意力控制的第一(基本Stroop效应)和第二(Gratton效应)措施方面的特异性。数据来自之前提出的两项研究,其中包括Stroop任务以评估注意力控制。三种神经反馈方案是额叶α,感觉运动(SMR)和额中叶theta振荡的上调。结果显示了不同的脑电图神经反馈协议对注意力控制的特定影响,并受到Stroop任务所需的认知努力的调节。总而言之,在要求不高的Stroop任务版本中,alpha训练可以改善一阶和二阶注意力控制,而SMR和theta训练则没有效果。在苛刻的Stroop任务版本中,theta训练可以改善一阶控制,但不能改善二阶控制,而SMR训练对这两者都没有影响。使用基于漂移扩散模型的分析,结果表明只有alpha和theta训练可调节潜在的认知过程,theta上调可增强证据积累。尽管当前的结果需要谨慎解释,但它们支持使用不同的神经反馈协议来增强注意力系统的特定方面。提出了对未来工作的建议。

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