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Caffeine enhances frontal relative negativity of slow brain potentials in a task-free experimental setup.

机译:咖啡因可在无任务的实验装置中增强大脑缓慢电位的相对相对负性。

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State dependent effects on brain processes are difficult to study due to the task-related confounds. Even in simple task environments external stimuli inevitably interact with dynamically changing states of the brain. Psychopharmacological manipulation and transcranial magnetic stimulation can be used independently of variations in subject's experimental task and environmental stimulation. Our aim was to show the investigative potential of combining these two methods for studying the effects of the state of the brain on the dynamics of task-free evoked brain activity. Caffeine was used for inducing higher arousal state and transcranial magnetic stimulation was used to evoke widespread bioelectrical responses of the brain. Occipitally delivered magnetic pulses caused increased global negativity of the brain potentials, but no speed-up of brain potentials when caffeine was administered. The relative negativization effect was most clearly expressed in slow potentials and as measured from frontal and parietal electrodes. This study shows how the causal effects of brain states on neural processes can be studied without the confounding influence of experimental task and stimuli.
机译:由于存在与任务相关的困惑,因此很难研究对大脑过程的状态依赖性影响。即使在简单的任务环境中,外部刺激也不可避免地与动态变化的大脑状态相互作用。可以独立于受试者的实验任务和环境刺激的变化而使用心理药物操纵和经颅磁刺激。我们的目的是展示结合这两种方法来研究大脑状态对无任务诱发的大脑活动动力学的影响的研究潜力。咖啡因被用于诱发更高的唤醒状态,而经颅磁刺激被用于引起大脑广泛的生物电反应。及时传递的电磁脉冲导致脑电势的整体负性增加,但是当服用咖啡因时,脑电势并未加速。相对负效应最明显地表现在慢电位中,从额电极和顶电极测得。这项研究表明,如何在没有实验任务和刺激的混杂影响的情况下研究大脑状态对神经过程的因果关系。

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