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局部皮质相互作用决定了皮质可塑性的形式。

Local cortical interactions determine the form of cortical plasticity.

作者信息

Wallace H, Fox K

机构信息

Cardiff School of Biosciences, Cardiff University, Museum Avenue, Cardiff CF1 3US, Wales, United Kingdom.

出版信息

J Neurobiol. 1999 Oct;41(1):58-63.

Abstract

Competitive interactions between left and right eye inputs to visual cortex during development are usually explained by the thalamocortical axons competing more or less well for cortical territory during retraction into eye specific domains. Here we review the evidence for competitive and co-operative interactions between cortical columns in barrel cortex which are present several weeks after retraction of thalamocortical axons into barrels. Sensory responses in barrel cortex can be altered by a period of vibrissa deprivation. It was found that responses to previously deprived vibrissae (that had been allowed to regrow) were depressed more if neighboring vibrissae were spared than if all vibrissae were removed simultaneously. Depression of the deprived vibrissa response was greater the closer the cell lay to a spared barrel. It was also found that spared vibrissae responses were potentiated more if several neighboring vibrissae were left intact than if only a single vibrissae was spared. These results suggest a mechanism of cooperative potentiation, perhaps due to intracortical summation of excitation evoked by neighbouring vibrissa stimulation. Thalamic responses to vibrissa stimulation were unaffected by deprivation indicating a cortical origin. One of the consequences of deprivation was that the speed of transmission between barrels was increased for spared and decreased for deprived vibrissa. These results imply that inherent interactions between cortical columns give rise to a property of competition and co-operativity which amplify the effects of sensory deprivation.

摘要

在发育过程中,左眼和右眼输入到视皮层的竞争性相互作用通常被解释为,丘脑皮质轴突在回缩到眼特异性区域时,或多或少地在争夺皮质区域方面存在竞争。在这里,我们回顾了丘脑皮质轴突回缩到桶状结构几周后,桶状皮质中皮质柱之间竞争性和合作性相互作用的证据。一段时间的触须剥夺可以改变桶状皮质中的感觉反应。研究发现,如果相邻的触须得以保留,那么对先前被剥夺(后又重新生长)的触须的反应,相比于所有触须同时被移除的情况,会受到更明显的抑制。细胞距离保留的桶状结构越近,对被剥夺触须的反应抑制就越强烈。研究还发现,如果保留几根相邻的触须,相比于只保留一根触须的情况,保留的触须的反应会得到更显著的增强。这些结果表明了一种协同增强机制,这可能是由于相邻触须刺激所诱发的皮质内兴奋总和所致。丘脑对触须刺激的反应不受剥夺的影响,这表明其起源于皮质。剥夺的后果之一是,对于保留的触须,桶状结构之间的传递速度增加,而对于被剥夺的触须,传递速度降低。这些结果意味着,皮质柱之间的内在相互作用产生了一种竞争和合作的特性,这种特性放大了感觉剥夺的影响。

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