Depue B E, Orr J M, Smolker H R, Naaz F, Banich M T
Department of Psychological and Brain Sciences, University of Louisville, Louisville, KY 40292, USA.
The Institute of Cognitive Science, University of Colorado Boulder, Boulder, CO 80309, USA.
Cereb Cortex. 2016 Apr;26(4):1634-1646. doi: 10.1093/cercor/bhu324. Epub 2015 Jan 19.
Inhibitory control/regulation is critical to adapt behavior in accordance with changing environmental circumstances. Dysfunctional inhibitory regulation is ubiquitous in neurological and psychiatric populations. These populations exhibit dysfunction across psychological domains, including memory/thought, emotion/affect, and motor response. Although investigation examining inhibitory regulation within a single domain has begun outlining the basic neural mechanisms supporting regulation, it is unknown how the neural mechanisms of these domains interact. To investigate the organization of inhibitory neural networks within and across domains, we used neuroimaging to outline the functional and anatomical pathways that comprise inhibitory neural networks regulating cognitive, emotional, and motor processes. Networks were defined at the group level using an array of analyses to indicate their intrinsic pathway structure, which was subsequently assessed to determine how the pathways explained individual differences in behavior. Results reveal how neural networks underlying inhibitory regulation are organized both within and across domains, and indicate overlapping/common neural elements.
抑制控制/调节对于根据不断变化的环境情况调整行为至关重要。功能失调的抑制调节在神经和精神疾病人群中普遍存在。这些人群在包括记忆/思维、情绪/情感和运动反应在内的多个心理领域表现出功能障碍。尽管对单个领域内抑制调节的研究已开始勾勒出支持调节的基本神经机制,但这些领域的神经机制如何相互作用尚不清楚。为了研究领域内和领域间抑制神经网络的组织方式,我们使用神经影像学来勾勒构成调节认知、情绪和运动过程的抑制神经网络的功能和解剖通路。在群体水平上使用一系列分析来定义网络,以表明其内在通路结构,随后对其进行评估,以确定这些通路如何解释行为上的个体差异。结果揭示了抑制调节背后的神经网络在领域内和领域间是如何组织的,并表明了重叠/共同的神经元素。