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Perceptual and Neuronal Boundary Learned from Higher-Order Stimulus Probabilities

机译:从高阶刺激概率中学到的知觉和神经元边界

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摘要

During an early epoch of development, the brain is highly adaptive to the stimulus environment. Exposing young animals to a particular tone, for example, leads to an enlarged representation of that tone in primary auditory cortex. While the neural effects of simple tonal environments are well characterized, the principles that guide plasticity in more complex acoustic environments remain unclear. In addition, very little is known about the perceptual consequences of early experience-induced plasticity. To address these questions, we reared juvenile rats in complex multitone environments that differed in terms of the higher-order conditional probabilities between sounds. We found that the development of primary cortical acoustic representations, as well as frequency discrimination ability in adult animals, were shaped by the higher-order stimulus statistics of the early acoustic environment. Our results suggest that early experience-dependent cortical reorganization may mediate perceptual changes through statistical learning of the sensory input.
机译:在发展的早期,大脑高度适应刺激环境。例如,将小动物暴露于特定的语气会导致该声调在初级听觉皮层中的放大表示。尽管简单的音调环境对神经的影响已得到很好的表征,但在更复杂的声音环境中指导可塑性的原理仍然不清楚。此外,关于早期经验诱发的可塑性的知觉后果知之甚少。为了解决这些问题,我们在声音之间的高阶条件概率不同的复杂多音环境中饲养了幼年大鼠。我们发现,成年动物的主要皮层声学表征的发展以及频率辨别能力,是由早期声学环境的高阶刺激统计数据决定的。我们的研究结果表明,早期依赖于经验的皮层重组可能会通过统计学习感觉输入来介导知觉变化。

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