Department of Psychology, Program in Neuroscience, and the Beckman Institute for Advanced Science and Technology, University of Illinois, Champaign, Illinois, USA.
Psychophysiology. 2022 Jan;59(1):e13940. doi: 10.1111/psyp.13940. Epub 2021 Sep 14.
The ability to rapidly and systematically access knowledge stored in long-term memory in response to incoming sensory information-that is, to derive meaning from the world-lies at the core of human cognition. Research using methods that can precisely track brain activity over time has begun to reveal the multiple cognitive and neural mechanisms that make this possible. In this article, I delineate how a process of connecting affords an effortless, continuous infusion of meaning into human perception. In a relatively invariant time window, uncovered through studies using the N400 component of the event-related potential, incoming sensory information naturally induces a graded landscape of activation across long-term semantic memory, creating what might be called "proto-concepts". Connecting can be (but is not always) followed by a process of further considering those activations, wherein a set of more attentionally demanding "active comprehension" mechanisms mediate the selection, augmentation, and transformation of the initial semantic representations. The result is a limited set of more stable bindings that can be arranged in time or space, revised as needed, and brought to awareness. With this research, we are coming closer to understanding how the human brain is able to fluidly link sensation to experience, to appreciate language sequences and event structures, and, sometimes, to even predict what might be coming up next.
人类认知的核心是能够快速而系统地从长期记忆中获取传入感觉信息的知识,也就是说,从世界中获取意义。使用能够精确跟踪随时间变化的大脑活动的方法进行的研究已经开始揭示出使这成为可能的多种认知和神经机制。在本文中,我阐述了连接过程如何使意义毫不费力地、持续不断地注入到人类感知中。通过使用事件相关电位的 N400 成分进行的研究揭示了一个相对不变的时间窗口,传入的感觉信息自然会在长期语义记忆中引发一个逐渐增强的激活景观,从而产生所谓的“原型概念”。连接之后可以(但并不总是)进一步考虑这些激活,其中一组更需要注意力的“主动理解”机制介导了初始语义表示的选择、增强和转换。其结果是一组更稳定的绑定,这些绑定可以在时间或空间上进行排列,可以根据需要进行修改,并被带到意识中。通过这项研究,我们越来越接近于理解人类大脑如何能够流畅地将感觉与经验联系起来,欣赏语言序列和事件结构,有时甚至能够预测接下来可能会发生什么。