Fischer Thomas, Langner Robert, Birbaumer Niels, Brocke Burkhard
Dresden University of Technology, Institute of Psychology II, Dresden, Germany.
J Cogn Neurosci. 2008 Aug;20(8):1443-53. doi: 10.1162/jocn.2008.20101.
Cortical excitability is assumed to depend on cortical arousal level in an inverted U-shaped fashion: Largest (optimal) excitability is usually associated with medium levels of arousal. It has been proposed that under conditions of low arousal, compensatory effort is exerted if attentional demands persist. People tend to avoid this resource-consuming top-down compensation by creating or selecting environmental conditions that provide sufficient bottom-up stimulation. These assumptions were tested in an attention-demanding dual-task situation: We combined a simulated driving task to induce three different arousal levels by varying stimulation (high vs. low vs. self-chosen) with a visual two-stimulus paradigm to assess cortical excitability by the initial contingent negative variation (iCNV) component of the event-related potential. Additionally, we analyzed the oscillatory power of the beta2 band of the electroencephalogram at anterior frontal sites, which is assumed to reflect low-arousal compensatory activity. The iCNV amplitude differed in all three arousal conditions as expected: It was highest in the condition of self-chosen stimulation and lowest in the low- and high-arousal conditions. Additionally, in the low-arousal condition, anterior frontal beta2 power was found to be significantly higher than in the other two conditions and correlated positively with subjective strain. This pattern of results suggests that subjects select medium levels of stimulation which optimize cortical excitability under attentional demand conditions. The elevated fronto-central beta2 power in the low-stimulation condition may indicate the involvement of the anterior cingulate cortex in compensating for reduced arousal by top-down stimulation of the noradrenergic arousal system.
皮层兴奋性被认为以倒U形方式依赖于皮层唤醒水平:最大(最佳)兴奋性通常与中等唤醒水平相关。有人提出,在低唤醒条件下,如果注意力需求持续存在,就会付出代偿努力。人们倾向于通过创造或选择能提供足够自下而上刺激的环境条件来避免这种消耗资源的自上而下的代偿。这些假设在一项需要注意力的双任务情境中得到了检验:我们通过改变刺激(高刺激与低刺激与自我选择刺激)将模拟驾驶任务与视觉双刺激范式相结合,以通过事件相关电位的初始伴随负变化(iCNV)成分来评估皮层兴奋性。此外,我们分析了前额叶部位脑电图β2频段的振荡功率,其被认为反映低唤醒代偿活动。正如预期的那样,iCNV振幅在所有三种唤醒条件下都有所不同:在自我选择刺激条件下最高,在低唤醒和高唤醒条件下最低。此外,在低唤醒条件下,发现前额叶β2功率显著高于其他两种条件,并且与主观疲劳呈正相关。这种结果模式表明,在注意力需求条件下,受试者会选择中等水平的刺激来优化皮层兴奋性。低刺激条件下额中央β2功率升高可能表明前扣带回皮层参与通过对去甲肾上腺素能唤醒系统的自上而下刺激来代偿降低的唤醒。