Netherlands Institute for Neuroscience, Royal Netherlands Academy of Arts and Sciences, Amsterdam, The Netherlands.
Prog Brain Res. 2019;250:251-283. doi: 10.1016/bs.pbr.2019.03.016. Epub 2019 Apr 5.
Organisms are faced during their lives with an immense variety of environmental challenges and organism specific problems, for which they have to find adequate solutions in order to survive. Problem solving, in other words, is an essential dynamic survival mechanism, evolved to cope with disturbances in the ecological equilibrium. With the evolution of sensory systems as adaptations to specialized environments, the capacity to process large amounts of sensory information increased and, with that, the power to create more complex models of reality. The object of this review is to present current perspectives on the organization and evolution of the human brain and to examine some of the design principles and operational modes that underlie its information processing capacity. Furthermore, the neural correlates of mind-the set of cognitive faculties involved in perceiving, remembering, reasoning and deciding-will be explored. It will be argued that in primates, and especially humans, the complexity of the neural circuitry of the cerebral cortex is the neural correlate of higher cognitive functions, including mind-like properties and consciousness.
生物在其一生中面临着巨大的环境挑战和特定的生物问题,它们必须找到合适的解决方案才能生存。换句话说,解决问题是一种必不可少的动态生存机制,是为了应对生态平衡的干扰而进化出来的。随着感觉系统的进化,以适应特定的环境,处理大量感觉信息的能力增强了,随之而来的是创造更复杂的现实模型的能力。本综述的目的是介绍人类大脑的组织和进化的最新观点,并探讨其信息处理能力所依据的一些设计原则和操作模式。此外,还将探讨思维的神经相关物——包括感知、记忆、推理和决策在内的一组认知能力。本文认为,在灵长类动物中,尤其是人类中,大脑皮层神经回路的复杂性是更高认知功能的神经相关物,包括类似思维的属性和意识。