Department of Psychology, University of Fribourg, Fribourg CH-1700, Switzerland.
Proc Natl Acad Sci U S A. 2024 Sep 10;121(37):e2311953121. doi: 10.1073/pnas.2311953121. Epub 2024 Sep 3.
Variations in interoceptive signals from the baroreceptors (BRs) across the cardiac and respiratory cycle can modulate cortical excitability and so affect awareness. It remains debated at what stages of processing they affect awareness-related event-related potentials (ERPs) in different sensory modalities. We investigated the influence of the cardiac (systole/diastole) and the respiratory (inhalation/exhalation) phase on awareness-related ERPs. Subjects discriminated visual threshold stimuli while their electroencephalogram, electrocardiogram, and respiration were simultaneously recorded. We compared ERPs and their intracranial generators for stimuli classified correctly with and without awareness as a function of the cardiac and respiratory phase. Cyclic variations of interoceptive signals from the BRs modulated both the earliest electrophysiological markers and the trajectory of brain activity when subjects became aware of the stimuli: an early sensory component (P1) was the earliest marker of awareness for low (diastole/inhalation) and a perceptual component (visual awareness negativity) for high (systole/exhalation) BR activity, indicating that BR signals interfere with the sensory processing of the visual input. Likewise, activity spread from the primary visceral cortex (posterior insula) to posterior parietal cortices during high and from associative interoceptive centers (anterior insula) to the prefrontal cortex during low BR activity. Consciousness is thereby resolved in cognitive/associative regions when BR is low and in perceptual centers when it is high. Our results suggest that cyclic fluctuations of BR signaling affect both the earliest markers of awareness and the brain processes underlying conscious awareness.
来自压力感受器(BR)的内脏感觉信号在心脏和呼吸周期中的变化可以调节皮质兴奋性,从而影响意识。目前仍存在争议的是,在不同感觉模态中,它们在处理的哪个阶段影响与意识相关的事件相关电位(ERPs)。我们研究了心脏(收缩/舒张)和呼吸(吸气/呼气)相位对与意识相关的 ERPs 的影响。在同时记录受试者的脑电图、心电图和呼吸的情况下,他们对视觉阈值刺激进行了辨别。我们比较了在有和没有意识的情况下,根据心脏和呼吸相位正确分类的刺激的 ERPs 及其颅内发生器。BR 产生的内脏感觉信号的周期性变化调节了受试者意识到刺激时的最早电生理标记物和脑活动的轨迹:早期感觉成分(P1)是低 BR 活动(舒张/吸气)的最早意识标记物,而知觉成分(视觉意识负波)是高 BR 活动(收缩/呼气)的标记物,表明 BR 信号干扰了视觉输入的感觉处理。同样,当 BR 活动较高时,活动从初级内脏皮质(后岛叶)传播到后顶叶皮质,而当 BR 活动较低时,活动从前联合内脏感觉中心(前岛叶)传播到前额叶皮质。因此,当 BR 较低时,意识在认知/联想区域得到解决,而当 BR 较高时,意识在知觉中心得到解决。我们的结果表明,BR 信号的周期性波动既影响意识的最早标记物,也影响意识的大脑处理过程。