Department of Vision & Cognition, Netherlands Institute for Neuroscience (KNAW), 1105 BA Amsterdam, the Netherlands.
Department of Vision & Cognition, Netherlands Institute for Neuroscience (KNAW), 1105 BA Amsterdam, the Netherlands.
Curr Biol. 2023 Sep 25;33(18):3865-3871.e3. doi: 10.1016/j.cub.2023.08.010. Epub 2023 Aug 28.
Neuronal activity in the primary visual cortex (V1) is driven by feedforward input from within the neurons' receptive fields (RFs) and modulated by contextual information in regions surrounding the RF. The effect of contextual information on spiking activity occurs rapidly and is therefore challenging to dissociate from feedforward input. To address this challenge, we recorded the spiking activity of V1 neurons in monkeys viewing either natural scenes or scenes where the information in the RF was occluded, effectively removing the feedforward input. We found that V1 neurons responded rapidly and selectively to occluded scenes. V1 responses elicited by occluded stimuli could be used to decode individual scenes and could be predicted from those elicited by non-occluded images, indicating that there is an overlap between visually driven and contextual responses. We used representational similarity analysis to show that the structure of V1 representations of occluded scenes measured with electrophysiology in monkeys correlates strongly with the representations of the same scenes in humans measured with functional magnetic resonance imaging (fMRI). Our results reveal that contextual influences rapidly alter V1 spiking activity in monkeys over distances of several degrees in the visual field, carry information about individual scenes, and resemble those in human V1. VIDEO ABSTRACT.
初级视皮层 (V1) 的神经元活动由其感受野 (RF) 内的前馈输入驱动,并受到 RF 周围区域上下文信息的调制。上下文信息对尖峰活动的影响发生得很快,因此很难将其与前馈输入区分开来。为了解决这个挑战,我们在猴子观看自然场景或 RF 信息被遮挡的场景时记录了 V1 神经元的尖峰活动,有效地去除了前馈输入。我们发现 V1 神经元对遮挡的场景快速而选择性地做出反应。由遮挡刺激引起的 V1 反应可以用于解码个别场景,并且可以从非遮挡图像引起的反应中预测,这表明视觉驱动和上下文反应之间存在重叠。我们使用表示相似性分析来表明,用猴子的电生理学测量的遮挡场景的 V1 表示的结构与用功能磁共振成像 (fMRI) 测量的相同场景的人类 V1 表示强烈相关。我们的结果表明,在视野中几个角度的距离内,上下文影响会迅速改变猴子的 V1 尖峰活动,携带关于个别场景的信息,并且类似于人类 V1 的信息。视频摘要。