Zemliak Viktoria, Mayer Julius, Nieters Pascal, Pipa Gordon
Institute of Cognitive Science, University of Osnabrück, 49074, Osnabrück, Germany.
Sci Rep. 2024 Mar 11;14(1):5910. doi: 10.1038/s41598-024-54755-w.
The function of spike synchrony is debatable: some researchers view it as a mechanism for binding perceptual features, others - as a byproduct of brain activity. We argue for an alternative computational role: synchrony can estimate the prior probability of incoming stimuli. In V1, this can be achieved by comparing input with previously acquired visual experience, which is encoded in plastic horizontal intracortical connections. V1 connectivity structure can encode the acquired visual experience in the form of its aggregate statistics. Since the aggregate statistics of natural images tend to follow the Gestalt principles, we can assume that V1 is more often exposed to Gestalt-like stimuli, and this is manifested in its connectivity structure. At the same time, the connectivity structure has an impact on spike synchrony in V1. We used a spiking model with V1-like connectivity to demonstrate that spike synchrony reflects the Gestalt structure of the stimulus. We conducted simulation experiments with three Gestalt laws: proximity, similarity, and continuity, and found substantial differences in firing synchrony for stimuli with varying degrees of Gestalt-likeness. This allows us to conclude that spike synchrony indeed reflects the Gestalt structure of the stimulus, which can be interpreted as a mechanism for prior probability estimation.
一些研究人员将其视为绑定感知特征的机制,另一些人则认为它是大脑活动的副产品。我们主张一种替代性的计算作用:同步可以估计传入刺激的先验概率。在初级视觉皮层(V1)中,这可以通过将输入与先前获得的视觉经验进行比较来实现,这种视觉经验编码在可塑性的水平皮质内连接中。V1的连接结构可以以其总体统计量的形式编码获得的视觉经验。由于自然图像的总体统计量往往遵循格式塔原则,我们可以假设V1更经常接触到类似格式塔的刺激,这在其连接结构中得到体现。同时,连接结构对V1中的峰值同步有影响。我们使用了一个具有类似V1连接性的脉冲模型来证明峰值同步反映了刺激的格式塔结构。我们用三个格式塔定律进行了模拟实验:接近律、相似律和连续律,发现对于不同程度类似格式塔的刺激,放电同步存在显著差异。这使我们能够得出结论,峰值同步确实反映了刺激的格式塔结构,这可以被解释为先验概率估计的一种机制。