Division of Neurorehabilitation, Geneva University Hospital, Geneva, Switzerland; Laboratory of Cognitive Neurorehabilitation, Faculty of Medicine, University of Geneva, Geneva, Switzerland; Cognitive Psychology, Faculty of Psychology and Educational Sciences, University of Geneva, Geneva, Switzerland.
Division of Neurorehabilitation, Geneva University Hospital, Geneva, Switzerland; Laboratory of Cognitive Neurorehabilitation, Faculty of Medicine, University of Geneva, Geneva, Switzerland.
Trends Cogn Sci. 2017 Aug;21(8):589-599. doi: 10.1016/j.tics.2017.05.002. Epub 2017 Jun 1.
The dorsal frontoparietal network (dFPN) of the human brain assumes a puzzling variety of functions, including motor planning and imagery, mental rotation, spatial attention, and working memory. How can a single network engage in such a diversity of roles? We propose that cognitive computations relying on the dFPN can be pinned down to a core function underlying offline motor planning: action emulation. Emulation creates a dynamic representation of abstract movement kinematics, sustains the internal manipulation of this representation, and ensures its maintenance over short time periods. Based on these fundamental characteristics, the dFPN has evolved from a pure motor control network into a domain-general system supporting various cognitive and motor functions.
人类大脑的背额顶网络(dFPN)承担着各种令人费解的功能,包括运动规划和想象、心理旋转、空间注意和工作记忆。一个单一的网络怎么能承担如此多样化的角色呢?我们提出,依赖于 dFPN 的认知计算可以归结为离线运动规划的核心功能:动作模拟。模拟创建了抽象运动运动学的动态表示,维持了对该表示的内部操作,并确保其在短时间内的保持。基于这些基本特征,dFPN 已经从一个纯粹的运动控制网络演变成一个支持各种认知和运动功能的通用系统。