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Receptive field structure in the visual cortex: does selective stimulation induce plasticity?

机译:视觉皮层的感受野结构:选择性刺激会诱导可塑性吗?

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Sensory areas of adult cerebral cortex can reorganize in response to long-term alterations in patterns of afferent signals. This long-term plasticity is thought to play a crucial role in recovery from injury and in some forms of learning. However, the degree to which sensory representations in primary cortical areas depend on short-term (i.e., minute to minute) stimulus variations remains unclear. A traditional view is that each neuron in the mature cortex has a fixed receptive field structure. An alternative view, with fundamentally different implications for understanding cortical function, is that each cell's receptive field is highly malleable, changing according to the recent history of the sensory environment. Consistent with the latter view, it has been reported that selective stimulation of regions surrounding the receptive field induces a dramatic short-term increase in receptive field size for neurons in the visual cortex [Pettet, M. W. & Gilbert, C. D. (1992) Proc. Natl. Acad. Sci. USA 89, 8366-8370]. In contrast, we report here that there is no change in either the size or the internal structure of the receptive field following several minutes of surround stimulation. However, for some cells, overall responsiveness increases. These results suggest that dynamic alterations of receptive field structure do not underlie short-term plasticity in the mature primary visual cortex. However, some degree of short-term adaptability could be mediated by changes in responsiveness.
机译:成人大脑皮层的感觉区域可以根据传入信号模式的长期变化而重组。人们认为这种长期的可塑性在从损伤中恢复和某种形式的学习中起着至关重要的作用。然而,尚不清楚初级皮层区域中的感觉表示取决于短期(即,分钟到分钟)刺激变化的程度。传统观点认为,成熟皮层中的每个神经元都有固定的感受野结构。另一种观点对理解皮层功能具有根本不同的含义,即每个细胞的感受野具有很高的延展性,根据感觉环境的近期历史而变化。与后一种观点一致,据报道,选择性刺激感受野周围的区域引起视觉皮层中神经元的感受野大小急剧增加[Pettet,M.W。&Gilbert,C.D。(1992)Proc.Natl.Acad.Sci.USA 90:5873-5877。 Natl。学院科学美国89,8366-8370]。相反,我们在这里报告,经过几分钟的周围刺激后,感受野的大小或内部结构没有变化。但是,对于某些电池,总体响应能力会提高。这些结果表明,在成熟的初级视皮层中,感受野结构的动态改变并不构成短期可塑性的基础。但是,某种程度的短期适应性可能会因反应能​​力的变化而介导。

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