Department of Neurobiology, University of Alabama at Birmingham, Birmingham, AL, USA.
Neuroimage. 2012 Nov 15;63(3):1127-33. doi: 10.1016/j.neuroimage.2012.07.050. Epub 2012 Aug 2.
This study examines the neural mechanisms through which younger and older adults ignore irrelevant information, a process that is necessary to effectively encode new memories. Some age-related memory deficits have been linked to a diminished ability to dynamically gate sensory input, resulting in problems inhibiting the processing of distracting stimuli. Whereas oscillatory power in the alpha band (8-12 Hz) over visual cortical areas is thought to dynamically gate sensory input in younger adults, it is not known whether older adults use the same mechanism to gate out sensory input. Here we identified a task in which both older and younger adults could suppress the processing of irrelevant sensory stimuli, allowing us to use electroencephalography (EEG) to explore the neural activity associated with suppression of visual processing. As expected, we found that the younger adults' suppression of visual processing was correlated with robust modulation of alpha oscillatory power. However, older adults did not modulate alpha power to suppress processing of visual information. These results demonstrate that suppression of alpha power is not necessary to inhibit the processing of distracting stimuli in older adults, suggesting the existence of alternative strategies for suppressing irrelevant, potentially distracting information.
这项研究考察了年轻人和老年人忽略不相关信息的神经机制,这是有效编码新记忆所必需的。一些与年龄相关的记忆缺陷与动态门控感觉输入的能力下降有关,导致抑制分散刺激处理的问题。虽然人们认为在年轻人的视觉皮质区域中,alpha 波段(8-12 Hz)的振荡功率可以动态地门控感觉输入,但尚不清楚老年人是否使用相同的机制来屏蔽感觉输入。在这里,我们确定了一个任务,在这个任务中,老年人和年轻人都可以抑制不相关感觉刺激的处理,从而使我们能够使用脑电图(EEG)来探索与视觉处理抑制相关的神经活动。正如预期的那样,我们发现年轻人对视觉处理的抑制与 alpha 振荡功率的强烈调制相关。然而,老年人并没有调节 alpha 功率来抑制视觉信息的处理。这些结果表明,在老年人中,抑制 alpha 功率对于抑制分散的刺激处理并不是必需的,这表明存在抑制不相关、潜在分散信息的替代策略。