Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, PA, 15213, USA.
Neuroscience Institute, Carnegie Mellon University, Pittsburgh, PA, 15213, USA.
Cereb Cortex. 2022 Jul 21;32(15):3331-3346. doi: 10.1093/cercor/bhab418.
Decades of research have shown that global brain states such as arousal can be indexed by measuring the properties of the eyes. The spiking responses of neurons throughout the brain have been associated with the pupil, small fixational saccades, and vigor in eye movements, but it has been difficult to isolate how internal states affect the eyes, and vice versa. While recording from populations of neurons in the visual and prefrontal cortex (PFC), we recently identified a latent dimension of neural activity called "slow drift," which appears to reflect a shift in a global brain state. Here, we asked if slow drift is correlated with the action of the eyes in distinct behavioral tasks. We recorded from visual cortex (V4) while monkeys performed a change detection task, and PFC, while they performed a memory-guided saccade task. In both tasks, slow drift was associated with the size of the pupil and the microsaccade rate, two external indicators of the internal state of the animal. These results show that metrics related to the action of the eyes are associated with a dominant and task-independent mode of neural activity that can be accessed in the population activity of neurons across the cortex.
几十年来的研究表明,通过测量眼睛的特性可以标记出全球大脑状态,例如觉醒。大脑中神经元的尖峰反应与瞳孔、小的注视性眼球跳动以及眼球运动的活力有关,但很难将内部状态如何影响眼睛以及反之亦然这两者区分开来。在记录视觉和前额叶皮层 (PFC) 中的神经元群体时,我们最近确定了一种称为“缓慢漂移”的神经活动潜在维度,它似乎反映了全局大脑状态的转变。在这里,我们想知道在不同的行为任务中,缓慢漂移是否与眼睛的运动有关。我们在猴子执行变化检测任务时记录了视觉皮层 (V4) 的活动,在它们执行记忆引导眼球运动任务时记录了 PFC 的活动。在这两个任务中,缓慢漂移与瞳孔大小和微跳率相关,这两个都是动物内部状态的外部指标。这些结果表明,与眼睛运动相关的指标与一种占主导地位且与任务无关的神经活动模式有关,这种模式可以在皮层中的神经元群体活动中获取。