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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >AXONAL PROCESSES AND NEURAL PLASTICITY - III - COMPETITION FOR DENDRITES
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AXONAL PROCESSES AND NEURAL PLASTICITY - III - COMPETITION FOR DENDRITES

机译:轴突过程和神经可塑性-III-树枝状竞争。

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In previous work we ha-iie developed a computational framework for topographic map formation and plasticity based oil axonal process sprouting and retraction, in which sprouting and retraction are governed by competition for neurotrophic support. Here we show that such an approach can account for certain aspects of the dendritic morphology of cortical maps. In particular, we model the development of ocular dominance columns in the primary visual cortex and show that cortical cells near to column boundaries prefer to elaborate dendritic fields which avoid crossing the boundaries. This emerges as different functional inputs are spatially? separated. We predict that afferent segregation occurs before or simultaneously with, but not after; the emergence of dendritic bias. We predict that animals reared with complete but asynchronous stimulation of the optic nerves do not develop a dendritic bias. ;We suggest that the emergence of a dendritic bias might provide a partial account for the critical period for a response to monocular deprivation. In particular, we predict that animals reared with asynchronous optic nerve stimulation might exhibit an extended critical period. Our results also indicate that the number of synapses supported by cortical cells depends on the intra-ocular image correlations used in our simulations. This suggests that inter-ocular image correlations, and thus strabismic rearing of kittens, may also affect the innervation density. [References: 58]
机译:在先前的工作中,我们为地形图的形成和基于可塑性的油轴突过程的发芽和缩回开发了计算框架,其中发芽和缩回由对神经营养支持的竞争来控制。在这里,我们证明了这种方法可以解释皮质图谱树突形态的某些方面。特别是,我们对主要视觉皮层中眼优势列的发育进行了建模,并显示靠近列边界的皮质细胞更喜欢精心设计的树突状区域,从而避免跨越边界。这是因为不同的功能输入在空间上出现了?分开。我们预测传入隔离发生在之前或同时发生,而不是之后发生;树突偏向的出现。我们预测,在完全但异步刺激视神经的情况下饲养的动物不会出现树突偏倚。 ;我们建议树突状偏倚的出现可能部分解释了对单眼剥夺反应的关键时期。特别是,我们预测以异步视神经刺激饲养的动物可能会出现延长的临界期。我们的结果还表明,皮层细胞支持的突触的数量取决于在我们的模拟中使用的眼内图像相关性。这表明眼间图像的相关性以及小猫的斜视饲养也可能影响神经支配密度。 [参考:58]

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