Lifespan Human Neurophysiology, Adelaide Medical School, The University of Adelaide, Adelaide, Australia; Discipline of Physiology, Adelaide Medical School, The University of Adelaide, Adelaide, South Australia, Australia; Hopwood Centre of Neurobiology, Lifelong Health Theme, South Australian Health and Medical Research Institute, Adelaide, South Australia, Australia.
Lifespan Human Neurophysiology, Adelaide Medical School, The University of Adelaide, Adelaide, Australia; Hopwood Centre of Neurobiology, Lifelong Health Theme, South Australian Health and Medical Research Institute, Adelaide, South Australia, Australia.
Brain Cogn. 2022 Jun;159:105861. doi: 10.1016/j.bandc.2022.105861. Epub 2022 Mar 19.
Selective attention and working memory (WM) are vulnerable to age-related decline. Older adults perform worse on, and are less able to modulate alpha power (8-12 Hz) than younger adults in tasks involving cues about 'where' or 'when' a memory set will appear. However, no study has investigated whether alpha power is modulated by cues predicting the presentation time of a memory set. Here, we recorded electroencephalography while 24 younger (18-33 years) and 23 older (60-77 years) adults completed a modified delay match-to-sample task where participants were cued to the duration of a memory set (0.1 s or 0.5 s). We found: (1) predictive cues increased WM storage; (2) no differences in preparatory alpha power between predictive and neutral cue types, but preparatory alpha suppression was weaker in older adults; (3) retention period oscillatory power differed between presentation times, but these differences were no longer present when comparing trial types from the onset of the memory set; and (4) oscillatory power in the preparatory and retention periods were unrelated to performance. Our results suggest that preparatory alpha power is not modulated by predictive cues towards presentation time, however, reductions in alpha/beta power during visual WM retention may be linked to encoding, rather than retention.
选择性注意和工作记忆(WM)易受与年龄相关的衰退影响。在涉及关于“何处”或“何时”出现记忆集的线索的任务中,老年人的表现比年轻人差,并且调节 alpha 功率(8-12 Hz)的能力更差。然而,尚无研究调查 alpha 功率是否可通过预测记忆集呈现时间的线索进行调节。在这里,我们记录了 24 名年轻成年人(18-33 岁)和 23 名年长成年人(60-77 岁)的脑电图,他们在修改后的延迟匹配样本任务中完成了任务,参与者被提示记忆集的持续时间(0.1 秒或 0.5 秒)。我们发现:(1)预测线索增加了 WM 存储;(2)预测和中性线索类型之间的预备性 alpha 功率没有差异,但年长成年人的预备性 alpha 抑制较弱;(3)在保留期内,振荡功率在呈现时间之间存在差异,但当比较记忆集开始时的试验类型时,这些差异不再存在;(4)预备期和保留期的振荡功率与表现无关。我们的结果表明,预备性 alpha 功率不受呈现时间的预测线索调节,但是在视觉 WM 保留期间,alpha / beta 功率的降低可能与编码而不是保留有关。