Gutiérrez-Zamora Velasco Gabriela, Fernández Thalía, Silva-Pereyra Juan, Reynoso-Alcántara Vicenta, Castro-Chavira Susana A
Doctorado en Investigaciones Cerebrales, Centro de Investigaciones Cerebrales, Universidad Veracruzana, Xalapa 91190, Mexico.
Laboratorio de Psicofisiología, Instituto de Neurobiología, Universidad Nacional Autónoma de México, Juriquilla, Querétaro 76230, Mexico.
Brain Sci. 2021 Mar 1;11(3):308. doi: 10.3390/brainsci11030308.
This study aims to examine how two levels of cognitive reserve, as evidenced by reading syntactic skill, modify performance and neural activity in a two-load-level (high vs. low) working memory (WM) task. Two groups of participants with different reading skills, high and low, were obtained from clustering analysis. We collected the P300 event-related potential component during the performance of the WM Sternberg task. The high reading performance (HRP) group showed a higher percentage of correct answers than the low reading performance (LRP) group in the negative probes of the WM task, which were probe stimuli not included in the memory set presented immediately before. Both groups showed P300 amplitude modulations, that is, larger WM-related P300 amplitudes for low than for high WM loads. Following the behavioral results, the HRP group displayed smaller WM-related amplitude modulations than the LRP group in the negative probes. The findings together suggest that higher levels of reading skill are associated with improved neural efficiency, which reflects in a better working memory performance.
本研究旨在考察由阅读句法技能所证明的两种认知储备水平如何在双负荷水平(高负荷与低负荷)工作记忆(WM)任务中影响表现和神经活动。通过聚类分析获得了两组阅读技能不同的参与者,即高阅读技能组和低阅读技能组。在执行WM斯特恩伯格任务期间,我们收集了P300事件相关电位成分。在WM任务的负性探测中,高阅读表现(HRP)组的正确答案百分比高于低阅读表现(LRP)组,负性探测是指紧接在之前呈现的记忆集中未包含的探测刺激。两组均表现出P300波幅调制,即与低WM负荷相比,高WM负荷时与WM相关的P300波幅更大。根据行为结果,在负性探测中,HRP组与WM相关的波幅调制比LRP组小。这些发现共同表明,较高水平的阅读技能与神经效率的提高有关,这体现在更好的工作记忆表现中。