Neural and behavioral mechanisms of proactive and reactive inhibition

被引:74
作者
Meyer, Heidi C. [1 ]
Bucci, David J. [1 ]
机构
[1] Dartmouth Coll, Dept Psychol & Brain Sci, Hanover, NH 03755 USA
基金
美国国家卫生研究院;
关键词
STOP-SIGNAL TASK; INFERIOR FRONTAL-CORTEX; ATTENTION-DEFICIT/HYPERACTIVITY DISORDER; DEFICIT HYPERACTIVITY DISORDER; SUPPLEMENTARY MOTOR AREA; MEDIAL PREFRONTAL CORTEX; GO/NO-GO TASKS; SPEED-ACCURACY TRADEOFF; DEEP BRAIN-STIMULATION; REACTION-TIME-TASK;
D O I
10.1101/lm.040501.115
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Response inhibition is an important component of adaptive behavior. Substantial prior research has focused on reactive inhibition, which refers to the cessation of a motor response that is already in progress. More recently, a growing number of studies have begun to examine mechanisms underlying proactive inhibition, whereby preparatory processes result in a response being withheld before it is initiated. It has become apparent that proactive inhibition is an essential component of the overall ability to regulate behavior and has implications for the success of reactive inhibition. Moreover, successful inhibition relies on learning the meaning of specific environmental cues that signal when a behavioral response should be withheld. Proactive inhibitory control is mediated by stopping goals, which reflect the desired outcome of inhibition and include information about how and when inhibition should be implemented. However, little is known about the circuits and cellular processes that encode and represent features in the environment that indicate the necessity for proactive inhibition or how these representations are implemented in response inhibition. In this article, we will review the brain circuits and systems involved in implementing inhibitory control through both reactive and proactive mechanisms. We also comment on possible cellular mechanisms that may contribute to inhibitory control processes, noting that substantial further research is necessary in this regard. Furthermore, we will outline a number of ways in which the temporal dynamics underlying the generation of the proactive inhibitory signal may be particularly important for parsing out the neurobiological correlates that contribute to the learning processes underlying various aspects of inhibitory control.
引用
收藏
页码:504 / 514
页数:11
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