Laboratory of Brain and Cognition, National Institute of Mental Health, NIH, Bethesda, Maryland, United States of America.
PLoS Biol. 2020 Nov 6;18(11):e3000921. doi: 10.1371/journal.pbio.3000921. eCollection 2020 Nov.
The brain exhibits widespread endogenous responses in the absence of visual stimuli, even at the earliest stages of visual cortical processing. Such responses have been studied in monkeys using optical imaging with a limited field of view over visual cortex. Here, we used functional MRI (fMRI) in human participants to study the link between arousal and endogenous responses in visual cortex. The response that we observed was tightly entrained to task timing, was spatially extensive, and was independent of visual stimulation. We found that this response follows dynamics similar to that of pupil size and heart rate, suggesting that task-related activity is related to arousal. Finally, we found that higher reward increased response amplitude while decreasing its trial-to-trial variability (i.e., the noise). Computational simulations suggest that increased temporal precision underlies both of these observations. Our findings are consistent with optical imaging studies in monkeys and support the notion that arousal increases precision of neural activity.
大脑在没有视觉刺激的情况下会表现出广泛的内源性反应,即使在视觉皮层处理的早期阶段也是如此。这种反应在猴子身上已经通过使用视皮层有限视场的光学成像进行了研究。在这里,我们使用功能磁共振成像(fMRI)在人类参与者中研究视觉皮层中觉醒和内源性反应之间的联系。我们观察到的反应与任务时间紧密相关,空间范围广泛,与视觉刺激无关。我们发现,这种反应的动力学类似于瞳孔大小和心率的动力学,表明与任务相关的活动与觉醒有关。最后,我们发现,更高的奖励增加了反应幅度,同时降低了其试验间的可变性(即噪声)。计算模拟表明,这两种观察结果都与时间精度的提高有关。我们的研究结果与猴子的光学成像研究一致,支持了这样一种观点,即觉醒会提高神经活动的精确性。