Deterministic and Stochastic Components of Cortical Down States: Dynamics and Modulation

被引:10
|
作者
Camassa, Alessandra [1 ]
Galluzzi, Andrea [2 ]
Mattia, Maurizio [2 ]
Sanchez-Vives, Maria V. [1 ,3 ]
机构
[1] Inst Invest Biomed August Pi i Sunyer IDIBAPS, Barcelona 08036, Spain
[2] Ist Super San, Natl Ctr Radioprotect & Computat Phys, I-00161 Rome, Italy
[3] Inst Catalana Recerca i Estudis Avancats ICREA, Barcelona 08010, Spain
来源
JOURNAL OF NEUROSCIENCE | 2022年 / 42卷 / 50期
关键词
cortical dynamics; down states; metastability; slow oscillations; synchronization; unconsciousness; NETWORK MECHANISMS; SLEEP OSCILLATIONS; CEREBRAL-CORTEX; LESS-THAN-1; HZ; LOCAL SLEEP; SLOW; SYNCHRONIZATION; WAKEFULNESS; TRANSITIONS; INHIBITION;
D O I
10.1523/JNEUROSCI.0914-22.2022
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Slow oscillations are an emergent activity of the cerebral cortex network consisting of alternating periods of activity (Up states) and silence (Down states). Up states are periods of persistent cortical activity that share properties with that of under-lying wakefulness. However, the occurrence of Down states is almost invariably associated with unconsciousness, both in ani-mal models and clinical studies. Down states have been attributed relevant functions, such as being a resetting mechanism or breaking causal interactions between cortical areas. But what do Down states consist of? Here, we explored in detail the network dynamics (e.g., synchronization and phase) during these silent periods in vivo (male mice), in vitro (ferrets, ei-ther sex), and in silico, investigating various experimental conditions that modulate them: anesthesia levels, excitability (electric fields), and excitation/inhibition balance. We identified metastability as two complementary phases composing such quiescence states: a highly synchronized "deterministic" period followed by a low-synchronization "stochastic" pe-riod. The balance between these two phases determines the dynamical properties of the resulting rhythm, as well as the responsiveness to incoming inputs or refractoriness. We propose detailed Up and Down state cycle dynamics that bridge cortical properties emerging at the mesoscale with their underlying mechanisms at the microscale, providing a key to understanding unconscious states.
引用
收藏
页码:9387 / 9400
页数:14
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