Yao Tao, Treue Stefan, Krishna B Suresh
Cognitive Neuroscience Laboratory, German Primate Center-Leibniz Institute for Primate Research, 37077, Goettingen, Germany.
Laboratory for Neuro-and Psychophysiology, KU Leuven Medical School, Campus Gasthuisberg, 3000, Leuven, Belgium.
Nat Commun. 2018 Mar 6;9(1):958. doi: 10.1038/s41467-018-03398-3.
While making saccadic eye-movements to scan a visual scene, humans and monkeys are able to keep track of relevant visual stimuli by maintaining spatial attention on them. This ability requires a shift of attentional modulation from the neuronal population representing the relevant stimulus pre-saccadically to the one representing it post-saccadically. For optimal performance, this trans-saccadic attention shift should be rapid and saccade-synchronized. Whether this is so is not known. We trained two rhesus monkeys to make saccades while maintaining covert attention at a fixed spatial location. We show that the trans-saccadic attention shift in cortical visual medial temporal (MT) area is well synchronized to saccades. Attentional modulation crosses over from the pre-saccadic to the post-saccadic neuronal representation by about 50 ms after a saccade. Taking response latency into account, the trans-saccadic attention shift is well timed to maintain spatial attention on relevant stimuli, so that they can be optimally tracked and processed across saccades.
在进行扫视眼动以扫描视觉场景时,人类和猴子能够通过对相关视觉刺激保持空间注意力来跟踪它们。这种能力需要注意力调制从扫视前代表相关刺激的神经元群体转移到扫视后代表该刺激的神经元群体。为了实现最佳性能,这种跨扫视的注意力转移应该迅速且与扫视同步。情况是否如此尚不清楚。我们训练了两只恒河猴在保持对固定空间位置的隐蔽注意力的同时进行扫视。我们表明,皮质视觉内侧颞叶(MT)区域的跨扫视注意力转移与扫视很好地同步。扫视后约50毫秒,注意力调制从扫视前的神经元表征转移到扫视后的神经元表征。考虑到反应潜伏期,跨扫视的注意力转移时间恰到好处,能够在相关刺激上保持空间注意力,以便在扫视过程中对它们进行最佳跟踪和处理。