Dept. Neurophysics, Philipps-Universität Marburg Karl-von-Frisch Str 8a, Marburg, D-35043, Germany.
Center for Mind, Brain and Behavior - CMBB, Hans-Meerwein-Straße 6, Marburg, D-35032, Germany.
Sci Rep. 2018 Aug 17;8(1):12399. doi: 10.1038/s41598-018-30832-9.
Interaction with the environment requires fast and reliable sensory processing. The visual system is confronted with a continuous flow of high-dimensional input (e.g. orientation, color, motion). From a theoretical point of view, it would be advantageous if critical information was processed independent of attentional load, i.e. preattentively. Here, we hypothesized that visual motion is such a critical signal and aimed for a neural signature of its preattentive encoding. Furthermore, we were interested in the neural correlates of predictability of linear motion trajectories based on the presence or absence of preceding motion. We presented a visual oddball paradigm and studied event-related potentials (ERPs). Stimuli were linearly moving Gabor patches that disappeared behind an occluder. The difference between deviant and standard trials was a trajectory change which happened behind the occluder in deviant trials only, inducing a prediction error. As hypothesized, we found a visual mismatch negativity-component over parietal and occipital electrodes. In a further condition, trials without preceding motion were presented in which the patch just appeared from behind the occluder and, hence, was not predictable. We found larger ERP-components for unpredictable stimuli. In summary, our results provide evidence for a preattentive and predictive processing of linear trajectories of visual motion.
与环境的交互需要快速而可靠的感官处理。视觉系统面临着高维输入(例如方向、颜色、运动)的持续流动。从理论上讲,如果关键信息能够在不依赖注意力负载的情况下进行处理,即预先处理,这将是有利的。在这里,我们假设视觉运动是这样一种关键信号,并旨在寻找其预先处理编码的神经特征。此外,我们还对基于先前运动的存在或不存在来预测线性运动轨迹的可预测性的神经相关性感兴趣。我们呈现了一个视觉异常范式,并研究了事件相关电位(ERPs)。刺激是线性运动的 Gabor 补丁,它们在遮挡物后面消失。偏差和标准试验之间的差异是只有在偏差试验中,轨迹发生变化,发生在遮挡物后面,从而产生预测误差。正如假设的那样,我们在顶叶和枕叶电极上发现了视觉失匹配负波成分。在另一个条件下,呈现没有先前运动的试验,其中补丁刚刚从遮挡物后面出现,因此不可预测。我们发现不可预测的刺激会产生更大的 ERP 成分。总之,我们的结果为视觉运动的线性轨迹的预先处理和预测处理提供了证据。