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通过行为和脑电图评估注意力缺陷受试者的持续注意力以及双耳节拍刺激的影响。

Sustained attention in attention-deficit subjects and the impact of binaural beat stimulation evaluated by behavior and EEG.

作者信息

Alves-Castro Gabriel, Bonnefond Anne, Pham Bich-Thuy, Hutt Axel

机构信息

MLMS, ICube Laboratory, University of Strasbourg - CNRS - Inria, NextMed Building, 2 rue Marie Hemm, 67000, Strasbourg, France.

MIMESIS, INRIA Center at University of Lorraine, NextMed Building, 2 rue Marie Hemm, 67000, Strasbourg, France.

出版信息

Exp Brain Res. 2025 Sep 12;243(10):211. doi: 10.1007/s00221-025-07154-0.

Abstract

Recent research on binaural beat stimulation has raised the question whether it can improve sustained attention. Neurotypicals and subjects with attention deficits of single gender performed a visual attention task under auditory noise, monoaural and binaural beat stimulation, while recording electroencephalographic activity. We found that subjects with attention deficits perform with longer reaction times than neurotypical subjects. To explore EEG activity, two periods of interest were distinguished: before a correct detection and before a miss, supposed to reflect respectively moments of engagement versus disengagement of attention. Under noise stimulation, neurotypicals have larger frontal ERP-components P300 and α-spectral power and lower parietal [Formula: see text] spectral power ratio in correct trials than in missed trials, whereas subjects with attention deficits show the inverse relation. Moreover, neurotypicals exhibit a negative relation of frontal δ-power and [Formula: see text] ratio in a time window of 6s before targets, whereas subjects with attention deficits show positively related δ- and α-power in this time window. Binaural beats diversify these results. Neurotypical subjects respond with a longer reaction time compared to noise stimulation, while attention-deficit subjects respond equally. Moreover, frontal P300 and α-power and parietal [Formula: see text] ratio resemble corresponding results under noise stimulation, whereas brain activity in subjects with attention deficits is rather heterogeneous. In addition, in attention-deficit subjects frontal and parietal δ- and α-power are positively related in a 6s time window before targets. In sum, under noise stimulation we found behavioral and electrophysiological biomarkers, which were inverse in neurotypicals and subjects with attention deficits. Binaural beats break up these relations in both subject groups and they have not been found to be beneficial, neither in behavior nor in electrophysiological biomarkers.

摘要

近期关于双耳节拍刺激的研究引发了一个问题,即它是否能改善持续注意力。神经典型个体和单性别注意力缺陷受试者在听觉噪声、单耳和双耳节拍刺激下执行视觉注意力任务,同时记录脑电图活动。我们发现,注意力缺陷受试者的反应时间比神经典型受试者更长。为了探究脑电图活动,区分了两个感兴趣的时间段:在正确检测之前和未检测到之前,分别 supposed 反映注意力参与和脱离的时刻。在噪声刺激下,神经典型个体在正确试验中比在未检测到的试验中具有更大的额叶事件相关电位成分P300和α频谱功率,以及更低的顶叶[公式:见正文]频谱功率比,而注意力缺陷受试者则呈现相反的关系。此外,神经典型个体在目标出现前6秒的时间窗口内额叶δ功率与[公式:见正文]比值呈负相关,而注意力缺陷受试者在该时间窗口内δ功率和α功率呈正相关。双耳节拍使这些结果多样化。与噪声刺激相比,神经典型受试者的反应时间更长,而注意力缺陷受试者的反应时间相同。此外,额叶P300和α功率以及顶叶[公式:见正文]比值与噪声刺激下的相应结果相似,而注意力缺陷受试者的大脑活动则相当不均匀。此外,在注意力缺陷受试者中,额叶和顶叶的δ功率和α功率在目标出现前6秒的时间窗口内呈正相关。总之,在噪声刺激下,我们发现了行为和电生理生物标志物,它们在神经典型个体和注意力缺陷受试者中是相反的。双耳节拍打破了两组受试者中的这些关系,并且在行为和电生理生物标志物方面均未发现其有益之处。

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