首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >The turtle visual system mediates a complex spatiotemporal transformation of visual stimuli into cortical activity
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The turtle visual system mediates a complex spatiotemporal transformation of visual stimuli into cortical activity

机译:龟视觉系统介导视觉刺激的复杂时空转化为皮质活动

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The three-layered visual cortex of turtle is characterized by extensive intracortical axonal projections and receives non-retinotopic axonal projections from lateral geniculate nucleus. What spatiotemporal transformation of visual stimuli into cortical activity arises from such tangle of malleable cortical inputs and intracortical connections? To address this question, we obtained band-pass filtered extracellular recordings of neural activity in turtle dorsal cortex during visual stimulation of the retina. We discovered important spatial and temporal features of stimulus-modulated cortical local field potential (LFP) recordings. Spatial receptive fields span large areas of the visual field, have an intricate internal structure, and lack directional tuning. The receptive field structure varies across recording sites in a distant-dependent manner. Such composite spatial organization of stimulus-modulated cortical activity is accompanied by an equally multifaceted temporal organization. Cortical visual responses are delayed, persistent, and oscillatory. Further, prior cortical activity contributes globally to adaptation in turtle visual cortex. In conclusion, these results demonstrate convoluted spatiotemporal transformations of visual stimuli into stimulus-modulated cortical activity that, at present, largely evade computational frameworks.
机译:乌龟的三层视觉皮层的特征在于广泛的地形轴突突起,并从横向胰核中接收非视网膜运动轴突突起。从这种缠结的可塑性皮质投入和地形连接的缠结产生了视觉刺激到皮质活动的时空转化?为了解决这个问题,我们在视网膜的视觉刺激期间获得了在乌龟背皮层中的神经活动的带通滤波细胞外记录。我们发现了刺激调制的皮质局部场势(LFP)录制的重要空间和时间特征。空间接收领域跨越视野的大面积,具有复杂的内部结构,缺乏定向调谐。接收场结构以远距离依赖的方式越差地变差。这种刺激调制皮质活动的这种复合空间组织伴随着同样多方型颞组织。皮质视觉响应延迟,持久和振荡。此外,先前的皮质活动在全球有助于适应龟视觉皮质。总之,这些结果表明了视觉刺激的卷积时滞转化为刺激调节的皮质活动,目前主要逃避计算框架。

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