Marinho Victor, Oliveira Thomaz, Rocha Kaline, Ribeiro Jéssica, Magalhães Francisco, Bento Thalys, Pinto Giovanny R, Velasques Bruna, Ribeiro Pedro, Di Giorgio Luiza, Orsini Marco, Gupta Daya S, Bittencourt Juliana, Bastos Victor Hugo, Teixeira Silmar
a Brain Mapping and Plasticity Laboratory, Federal University of Piauí (UFPI) , Parnaíba , Brazil.
b Genetics and Molecular Biology Laboratory, Federal University of Piauí , Parnaíba , Brazil.
Int J Neurosci. 2018 Mar;128(3):262-282. doi: 10.1080/00207454.2017.1385614. Epub 2017 Oct 11.
Dopaminergic system plays a key role in perception, which is an important executive function of the brain. Modulation in dopaminergic system forms an important biochemical underpinning of neural mechanisms of time perception in a very wide range, from milliseconds to seconds to longer daily rhythms. Distinct types of temporal experience are poorly understood, and the relationship between processing of different intervals by the brain has received little attention. A comprehensive understanding of interval timing functions should be sought within a wider context of temporal processing, involving genetic aspects, pharmacological models, cognitive aspects, motor control and the neurological diseases with impaired dopaminergic system. Particularly, an unexplored question is whether the role of dopamine in interval timing can be integrated with the role of dopamine in non-interval timing temporal components. In this review, we explore a wider perspective of dopaminergic system, involving genetic polymorphisms, pharmacological models, executive functions and neurological diseases on the time perception. We conclude that the dopaminergic system has great participation in impact on time perception and neurobiological basis of the executive functions and neurological diseases.
多巴胺能系统在感知中起着关键作用,而感知是大脑的一项重要执行功能。多巴胺能系统的调节构成了时间感知神经机制的重要生化基础,其范围非常广泛,从毫秒到秒,再到更长的日常节律。不同类型的时间体验目前了解甚少,大脑对不同时间间隔的处理之间的关系也很少受到关注。应该在更广泛的时间处理背景下寻求对时间间隔计时功能的全面理解,这涉及遗传方面、药理学模型、认知方面、运动控制以及多巴胺能系统受损的神经疾病。特别是,一个尚未探索的问题是,多巴胺在时间间隔计时中的作用是否可以与多巴胺在非时间间隔计时的时间成分中的作用相结合。在这篇综述中,我们从更广泛的视角探讨多巴胺能系统,涉及基因多态性、药理学模型、执行功能以及神经疾病对时间感知的影响。我们得出结论,多巴胺能系统在对时间感知以及执行功能和神经疾病的神经生物学基础的影响中发挥着重要作用。