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Sustained Enhancement of Lateral Inhibitory Circuit Maintains Cross Modal Cortical Reorganization

机译:横向抑制电路的持续增强保持跨模态皮质重组。

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摘要

Deprivation of one modality can lead to the improvement of other intact modalities. We have previously reported that visual deprivation drives AMPA receptors into synapses from layer4 to 2/3 in the barrel cortex and sharpens functional whisker-barrel map at layer2/3 2 days after the beginning of visual deprivation. Enhanced excitatory synaptic transmission at layer4-2/3 synapses is transient and returns to the base line level a week after the beginning of visual deprivation. Here we found that sharpened whisker-barrel function is maintained at least for a week in visually deprived animals. While increased AMPA receptor-mediated synaptic transmission at layer4-2/3 synapses dropped to the base line a week after the beginning of visual deprivation, lateral inhibitory synaptic transmission onto the neighboring barrel was kept strengthened for a week of visually deprived animals. Thus, transient strengthening of excitatory synapses at layer4-2/3 in the barrel cortex could trigger the enhancement of inhibitory inputs to neighboring barrel, and sustained lateral inhibition can maintain the sharpening of whisker-barrel map in visually deprived animals.
机译:剥夺一种模态可以导致其他完整模态的改善。我们以前曾报道过,视觉剥夺开始后2天,视觉剥夺将AMPA受体从桶状皮层的第4层驱动到突触,从第4层变为2/3,并在第2/3层使功能性晶须-桶状图锐化。在第4/2/3层突触中增强的兴奋性突触传递是短暂的,并在视觉剥夺开始一周后恢复到基线水平。在这里,我们发现在视障动物中,晶须桶功能增强了至少一周。视觉剥夺开始一周后,虽然在第4/2/3层突触中AMPA受体介导的突触传递增加下降至基线,但在一周的视力剥夺动物中,侧向抑制性突触传递向相邻桶的传递却得以加强。因此,桶状皮质中第4-2 / 3层的兴奋性突触的瞬时增强可能触发对邻近桶状组织的抑制性输入的增强,持续的侧向抑制可以维持视障动物中晶须-桶状图的锐化。

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