Bressler Steven L, Kelso J A Scott
Center for Complex Systems and Brain Sciences, Florida Atlantic University Boca Raton, FL, USA.
Center for Complex Systems and Brain Sciences, Florida Atlantic UniversityBoca Raton, FL, USA; Intelligent Systems Research Centre, Ulster UniversityDerry/Londonderry, Northern Ireland.
Front Neurosci. 2016 Sep 15;10:397. doi: 10.3389/fnins.2016.00397. eCollection 2016.
Many researchers and clinicians in cognitive neuroscience hold to a modular view of cognitive function in which the cerebral cortex operates by the activation of areas with circumscribed elementary cognitive functions. Yet an ongoing paradigm shift to a dynamic network perspective is underway. This new viewpoint treats cortical function as arising from the coordination dynamics within and between cortical regions. Cortical coordination dynamics arises due to the unidirectional influences imposed on a cortical area by inputs from other areas that project to it, combined with the projection reciprocity that characterizes cortical connectivity and gives rise to reentrant processing. As a result, cortical dynamics exhibits both segregative and integrative tendencies and gives rise to both cooperative and competitive relations within and between cortical areas that are hypothesized to underlie the emergence of cognition in brains.
认知神经科学领域的许多研究人员和临床医生秉持认知功能的模块化观点,即大脑皮层通过激活具有特定基本认知功能的区域来运作。然而,一场向动态网络视角的范式转变正在进行。这一新观点将皮层功能视为源于皮层区域内部和之间的协调动态。皮层协调动态的产生是由于其他投射到某一皮层区域的区域输入对该区域施加的单向影响,再加上皮层连接所特有的投射互惠性,进而产生折返处理。因此,皮层动态既表现出分离倾向,也表现出整合倾向,并在皮层区域内部和之间产生合作与竞争关系,这些关系被认为是大脑中认知出现的基础。