Ávila-Garibay Adrián, González-Garrido Andrés A, Gómez-Velázquez Fabiola R, Brofman-Epelbaum Jacobo J, Vélez-Pérez Hugo, Romo-Vázquez Rebeca, Gallardo-Moreno Geisa B
Instituto de Neurociencias, CUCBA, Universidad de Guadalajara, México. Francisco de Quevedo 180, 44130, Guadalajara, Jalisco, México. Universidad de Guadalajara Instituto de Neurociencias Universidad de Guadalajara GuadalajaraJalisco Mexico.
Universidad Panamericana, Escuela de Pedagogía, México. Álvaro del Portillo 49, 45010, Zapopan, Jalisco, México. Universidad Panamericana Universidad Panamericana Escuela de Pedagogía ZapopanJalisco Mexico.
Int J Psychol Res (Medellin). 2025 Jul 24;18(1):59-68. doi: 10.21500/20112084.6690. eCollection 2025 Jan-Jun.
Fasting might affect attentional processes; however, its effects on quantitative electroencephalographic activity (qEEG) remain unclear. We used an n-back task to assess the effects of an 18-hour fasting period on behavior and qEEG absolute power. 26 participants performed the experimental task with two cognitive load levels during fasting and regular breakfast in different sessions. Artifact-free EEG epochs were selected for further analysis between conditions. The higher cognitive load affected accuracy, which decreased, while frontal and parietal theta power increased. We also found greater absolute theta power magnitudes for the left-frontocentral locations and a significant interaction between cognitive load and recording site, reflecting the greater increase in left-central parietal locations. Alpha increased in left-frontocentral locations. Although fasting did not consider- ably vary EEG power, there was a relevant fasting-related increase in theta power over frontal areas, probably reflecting transient changes in cognitive control mechanisms.
禁食可能会影响注意力过程;然而,其对定量脑电图活动(qEEG)的影响仍不清楚。我们使用n-back任务来评估18小时禁食期对行为和qEEG绝对功率的影响。26名参与者在不同时段的禁食期间和正常早餐期间,在两种认知负荷水平下执行实验任务。选择无伪迹的脑电图片段进行不同条件之间的进一步分析。较高的认知负荷影响准确性,准确性降低,而额叶和顶叶的θ波功率增加。我们还发现左额中央位置的绝对θ波功率幅度更大,并且认知负荷与记录部位之间存在显著交互作用,这反映出左中央顶叶位置的增加幅度更大。左额中央位置的α波增加。尽管禁食并未使脑电图功率发生显著变化,但额叶区域的θ波功率存在与禁食相关的显著增加,这可能反映了认知控制机制的短暂变化。