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Brain Networks Involved in Early versus Late Response Anticipation and Their Relation to Conflict Processing

机译:脑网络参与早期和晚期响应预期及其与冲突处理的关系

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摘要

Previous electrophysiological studies have clearly identified separable neural events underlying early and late components of response anticipation. Functional neuroimaging studies, however, have so far failed to account for this separation. Mere, we performed functional magnetic resonance imaging (fMRI) of an anticipation paradigm in 12 healthy adult subjects that reliably produced early and late expectancy waves in the electroencephalogram. We furthermore compared fMRI activations elicited during early and late anticipation to those associated with response conflict. Our results demonstrate the existence of distinct cortical and subcortical brain regions underlying early and late anticipation. Although late anticipatory behavior was associated with activations in dorsal AGC,rnfrontal cortex, and thalamus, brain responses linked to the early expectancy wave were localized mainly in motor and premotor cortical areas as well as the caudate nucleus. Additionally, late anticipation was associated with increased activity in midbrain dopaminergic nuclei, very likely corresponding to the substantial nigra. Furthermore, whereas regions involved in late anticipation proved to be very similar to activations elicited by response conflict, this was not the case for early anticipation. The current study supports a distinction between early and late anticipatory processes, in line with a plethora of neurophysiologtcal work, and for the first time describes the brain structures differentially involved in these processes.
机译:先前的电生理学研究已经清楚地确定了响应预期的早期和晚期成分背后的可分离神经事件。然而,迄今为止,功能性神经影像学研究未能解释这种分离。仅此,我们在12名健康成人受试者中执行了预期范式的功能磁共振成像(fMRI),该受试者在脑电图中可靠地产生了早期和晚期预期波。我们还比较了在早期和晚期预期中引起的功能磁共振成像激活与与反应冲突相关的激活。我们的研究结果表明存在早期和晚期预期的不同皮质和皮质下脑区域。尽管晚期预期行为与背侧AGC,额叶皮层和丘脑的激活有关,但与早期预期波有关的大脑反应主要位于运动和运动前皮质区域以及尾状核。此外,迟到的预期与中脑多巴胺能细胞核的活性增加有关,很可能与大量的黑质相对应。此外,尽管参与晚期预测的区域被证明与响应冲突引发的激活非常相似,但早期预测却并非如此。当前的研究支持在早期和晚期预期过程之间进行区分,这与大量的神经生理学工作相一致,并且首次描述了差异参与这些过程的大脑结构。

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  • 来源
    《Journal of Cognitive Neuroscience》 |2009年第11期|2172-2184|共13页
  • 作者单位

    Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut fuer biophysikalische Chemie, Goettingen, Germany Brain Research Institute, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland;

    University of Goettingen, Germany;

    University of Goettingen, Germany;

    Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut fuer biophysikalische Chemie, Goettingen, Germany;

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