认知控制与前扣带皮层:相互冲突的刺激如何影响大鼠的注意力控制

Lori A. Newman , David J. Creer, Jill A. McGaughy
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引用次数: 33

摘要

越来越多的证据支持前额皮质对认知控制至关重要的假设。一个前额亚区,即前扣带皮层,被认为是解决反应冲突、忽视显著干扰和改变行为以应对错误产生所必需的。这些情况都涉及以目标为导向的绩效监控,以便有效地调整认知过程。一些神经心理障碍,如精神分裂症、注意缺陷多动症和强迫症,都伴有前扣带皮层的形态改变。这些变化被假设为在这些受试者中发现的需要认知控制的任务上的损伤的基础。采用一种新的冲突监测任务来评估大鼠前扣带皮层兴奋性毒性损伤对认知控制的影响。手术前,所有受试者在两次连续的、不一致的试验中第二次显示出提高的准确性。前扣带皮层的损伤消除了这一点。无论认知变化是增加还是减少,受损动物在逐个试验的基础上都难以调整认知控制。这些结果支持了前扣带皮层在认知控制调节中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cognitive control and the anterior cingulate cortex: How conflicting stimuli affect attentional control in the rat

Converging evidence supports the hypothesis that the prefrontal cortex is critical for cognitive control. One prefrontal subregion, the anterior cingulate cortex, is hypothesized to be necessary to resolve response conflicts, disregard salient distractors and alter behavior in response to the generation of an error. These situations all involve goal-oriented monitoring of performance in order to effectively adjust cognitive processes. Several neuropsychological disorders, e.g., schizophrenia, attention deficit hyperactivity and obsessive compulsive disorder, are accompanied by morphological changes in the anterior cingulate cortex. These changes are hypothesized to underlie the impairments on tasks that require cognitive control found in these subjects. A novel conflict monitoring task was used to assess the effects on cognitive control of excitotoxic lesions to anterior cingulate cortex in rats. Prior to surgery all subjects showed improved accuracy on the second of two consecutive, incongruent trials. Lesions to the anterior cingulate cortex abolished this. Lesioned animals had difficulty in adjusting cognitive control on a trial-by-trial basis regardless of whether cognitive changes were increased or decreased. These results support a role for the anterior cingulate cortex in adjustments in cognitive control.

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来源期刊
Journal of Physiology-Paris
Journal of Physiology-Paris 医学-神经科学
CiteScore
2.02
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Each issue of the Journal of Physiology (Paris) is specially commissioned, and provides an overview of one important area of neuroscience, delivering review and research papers from leading researchers in that field. The content will interest both those specializing in the experimental study of the brain and those working in interdisciplinary fields linking theory and biological data, including cellular neuroscience, mathematical analysis of brain function, computational neuroscience, biophysics of brain imaging and cognitive psychology.
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