Krigolson Olave E, Hassall Cameron D, Satel Jason, Klein Raymond M
Neuroeconomics Laboratory, University of Victoria, Canada.
Neuroeconomics Laboratory, University of Victoria, Canada.
Brain Res. 2015 Nov 19;1627:225-32. doi: 10.1016/j.brainres.2015.09.028. Epub 2015 Oct 9.
The neural systems that afford our ability to evaluate rewards and punishments are impacted by a variety of external factors. Here, we demonstrate that increased cognitive load reduces the functional efficacy of a reward processing system within the human medial-frontal cortex. In our paradigm, two groups of participants used performance feedback to estimate the exact duration of one second while electroencephalographic (EEG) data was recorded. Prior to performing the time estimation task, both groups were instructed to keep their eyes still and avoid blinking in line with well established EEG protocol. However, during performance of the time-estimation task, one of the two groups was provided with trial-to-trial-feedback about their performance on the time-estimation task and their eye movements to induce a higher level of cognitive load relative to participants in the other group who were solely provided with feedback about the accuracy of their temporal estimates. In line with previous work, we found that the higher level of cognitive load reduced the amplitude of the feedback-related negativity, a component of the human event-related brain potential associated with reward evaluation within the medial-frontal cortex. Importantly, our results provide further support that increased cognitive load reduces the functional efficacy of a neural system associated with reward processing.
赋予我们评估奖励和惩罚能力的神经系统会受到多种外部因素的影响。在此,我们证明增加的认知负荷会降低人类内侧前额叶皮质内奖励处理系统的功能效力。在我们的实验范式中,两组参与者利用绩效反馈来估计一秒的确切时长,同时记录脑电图(EEG)数据。在执行时间估计任务之前,按照既定的EEG协议,两组都被要求保持眼睛静止并避免眨眼。然而,在时间估计任务执行期间,两组中的一组会收到关于他们在时间估计任务上的表现以及他们的眼球运动的逐次试验反馈,以诱导相对于另一组参与者更高水平的认知负荷,另一组参与者仅收到关于他们时间估计准确性的反馈。与之前的研究一致,我们发现更高水平的认知负荷降低了反馈相关负波的幅度,反馈相关负波是与内侧前额叶皮质内奖励评估相关的人类事件相关脑电位的一个成分。重要的是,我们的结果进一步支持了增加的认知负荷会降低与奖励处理相关的神经系统的功能效力。