清醒
神经科学
皮质(解剖学)
视皮层
脑功能偏侧化
脑电图
生物
大脑皮层
物理
作者
Yuqi Liang,Junhao Liang,Chenchen Song,Mianxin Liu,Thomas Knöpfel,Pulin Gong,Changsong Zhou
标识
DOI:10.1038/s41467-023-37088-6
摘要
Abstract Rich spatiotemporal dynamics of cortical activity, including complex and diverse wave patterns, have been identified during unconscious and conscious brain states. Yet, how these activity patterns emerge across different levels of wakefulness remain unclear. Here we study the evolution of wave patterns utilizing data from high spatiotemporal resolution optical voltage imaging of mice transitioning from barbiturate-induced anesthesia to wakefulness (N = 5) and awake mice (N = 4). We find that, as the brain transitions into wakefulness, there is a reduction in hemisphere-scale voltage waves, and an increase in local wave events and complexity. A neural mass model recapitulates the essential cellular-level features and shows how the dynamical competition between global and local spatiotemporal patterns and long-range connections can explain the experimental observations. These mechanisms possibly endow the awake cortex with enhanced integrative processing capabilities.
科研通智能强力驱动
Strongly Powered by AbleSci AI