Toso Alessandro, Reinartz Sebastian, Pulecchi Francesca, Diamond Mathew E
Cognitive Neuroscience, International School for Advanced Studies, Via Bonomea 265, 34136 Trieste, Italy.
Cognitive Neuroscience, International School for Advanced Studies, Via Bonomea 265, 34136 Trieste, Italy.
Neuron. 2021 Nov 17;109(22):3663-3673.e6. doi: 10.1016/j.neuron.2021.08.020. Epub 2021 Sep 10.
To assess the role of dorsolateral striatum (DLS) in time coding, we recorded neuronal activity in rats tasked with comparing the durations of two sequential vibrations. Bayesian decoding of population activity revealed a representation of the unfolding of the trial across time. However, further analyses demonstrated a distinction between the encoding of trial time and perceived time. First, DLS did not show a privileged representation of the stimulus durations compared with other time spans. Second, higher intensity vibrations were perceived as longer; however, time decoded from DLS was unaffected by vibration intensity. Third, DLS did not encode stimulus duration differently on correct versus incorrect trials. Finally, in rats trained to compare the intensities of two sequential vibrations, stimulus duration was encoded even though it was a perceptually irrelevant feature. These findings lead us to posit that temporal information is inherent to DLS activity irrespective of the rat's ongoing percept.
为了评估背外侧纹状体(DLS)在时间编码中的作用,我们记录了大鼠在比较两个连续振动持续时间任务中的神经元活动。群体活动的贝叶斯解码揭示了整个试验过程随时间展开的表征。然而,进一步分析表明试验时间编码和感知时间之间存在差异。首先,与其他时间跨度相比,DLS并未表现出对刺激持续时间的特殊表征。其次,较高强度的振动被感知为持续时间更长;然而,从DLS解码出的时间不受振动强度影响。第三,在正确与错误试验中,DLS对刺激持续时间的编码没有差异。最后,在训练大鼠比较两个连续振动强度的实验中,即使刺激持续时间在感知上是无关特征,它仍被编码。这些发现使我们认为,无论大鼠当前的感知如何,时间信息都是DLS活动所固有的。