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首页> 外文期刊>Acta neurobiologiae experimentalis >Arousal and activation effects on physiological and behavioral responding during a continuous performance task.
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Arousal and activation effects on physiological and behavioral responding during a continuous performance task.

机译:在连续执行任务期间,刺激和激活对生理和行为反应的影响。

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Based on previous work indicating different neural substrates, two aspects of energetic state, "arousal" and "activation", have been conceptualized separately in our laboratory. "Arousal" has been defined as the energetic state at any particular time, and task-related "activation" as the task-related change in state from resting baseline to the task situation. Both are reflected in electrodermal activity and measured by skin conductance level. Our previous studies in this area have indicated that physiological responses to stimuli in a task are dependent on the arousal level at the time of stimulus presentation, rather than the task-related activation. In contrast, performance on the task is dependent on the task-related activation, rather than the current arousal level. That is, different aspects of the individual's state determine physiological and behavioral responses. Those studies had examined between-subjects differences in arousal and activation. The present study investigated the relevance of this separation in an across-subjects examination of fluctuations in arousal and activation, and their effects on physiological and behavioral responses, during a continuous performance task. It was found that the magnitude of the phasic orienting reflex to the targets during the task was dependent mainly on arousal, rather than task-related relative activation. Reaction time improved with increasing relative activation, but not with arousal. These findings support our earlier conclusions relating to the usefulness of arousal and activation as distinguishable features of the energetics of physiological and behavioral functions.
机译:基于先前的工作表明不同的神经基质,在我们的实验室中分别将高能状态的两个方面,“听觉”和“激活”进行了概念化。 “激怒”被定义为在任何特定时间的精力充沛的状态,与任务相关的“激活”被定义为与任务相关的从静止基线到任务状况的状态变化。两者均反映在皮肤电活动中,并通过皮肤电导水平进行测量。我们在该领域的先前研究表明,对任务刺激的生理反应取决于刺激提示时的唤醒水平,而不是与任务相关的激活。相反,任务的性能取决于与任务相关的激活,而不是当前的唤醒级别。也就是说,个人状态的不同方面决定了生理和行为反应。这些研究检查了受试者之间的唤醒和激活差异。本研究在连续执行任务的过程中,对跨学科的唤醒和激活波动及其对生理和行为反应的影响进行了调查,研究了这种分离的相关性。发现在任务过程中对目标的阶段性定向反射的幅度主要取决于唤醒,而不是任务相关的相对激活。反应时间随着相对激活的增加而改善,但没有被唤醒。这些发现支持了我们先前关于唤醒和激活作为生理和行为功能能量学的显着特征的有用性的结论。

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