City College of New York, United States.
City College of New York, United States.
Behav Brain Res. 2021 May 7;405:113213. doi: 10.1016/j.bbr.2021.113213. Epub 2021 Feb 28.
Healthy adults performed an auditory version of the flanker task under low versus high perceptual load while behavioral and electrophysiological measures were recorded. Participants experienced less attentional interference under low load than high load, whether analyses were performed between tasks (Garner interference; found in accuracy and RT), between stimuli (flanker congruity; found in accuracy), or between sequences (Gratton effect; found in accuracy). Analysis of event-related potentials to the distractor (flanker), which was physically identical across load conditions, revealed load modulation of tasks effects in the P1 component (peak amplitude and latency), an early perceptual component peaking approximately 75 ms after distractor onset. As in behavioral performance, ERP analyses showed that auditory attentional disruption in P1 was significantly smaller under low perceptual load. Dipole source analysis suggested activation of prefrontal inhibitory control during low load and default mode network during high load. The results are in keeping with the predictions of tectonic theory (Melara & Algom, 2003), but inconsistent with expectations derived from perceptual load theory (Lavie, 1995).
健康成年人在低知觉负载和高知觉负载条件下进行听觉版的侧抑制任务,同时记录行为和电生理测量数据。参与者在低负载下比在高负载下受到的注意力干扰更小,无论是在任务之间(加仑干扰;在准确性和 RT 中发现)、刺激之间(侧抑制一致性;在准确性中发现)还是序列之间(格拉顿效应;在准确性中发现)进行分析。对分心物(侧抑制)的事件相关电位分析表明,在 P1 成分(峰幅度和潜伏期)中,负载条件下的任务效应受到调制,这是一个大约在分心物出现后 75 毫秒达到峰值的早期感知成分。与行为表现一样,ERP 分析表明,在低知觉负载下,听觉注意力中断在 P1 中显著较小。偶极子源分析表明,在低负载下前额叶抑制控制被激活,而在高负载下默认模式网络被激活。这些结果与构造理论的预测(Melara & Algom, 2003)一致,但与来自知觉负载理论的预期(Lavie, 1995)不一致。