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发育中体感皮层可塑性的突触后控制

Postsynaptic control of plasticity in developing somatosensory cortex.

作者信息

Schlaggar B L, Fox K, O'Leary D D

机构信息

Molecular Neurobiology Laboratory, Salk Institute, La Jolla, California 92037.

出版信息

Nature. 1993 Aug 12;364(6438):623-6. doi: 10.1038/364623a0.

Abstract

The rearrangement of synaptic connections during normal and deprived development is though to be controlled by correlations in afferent impulse activity. A favoured model is based on post-synaptic detection of synchronously active afferents; synapses are stabilized when pre- and postsynaptic activity is correlated and weakened or eliminated when their activity is uncorrelated. Most evidence for this model comes from demonstrations that correlated afferent input is necessary for the segregation of eye-dominant inputs in the developing vertebrate visual system and that critical period plasticity of ocular dominance columns in cat visual cortex is disrupted by blockade of postsynaptic transmission. We tested whether the developmental plasticity of somatosensory columns, known as 'barrels', in rodent primary somatosensory cortex (S1) is similar to that of ocular dominance columns. We report here that the selective disruption of postsynaptic activation in rat S1 by application of a glutamate receptor antagonist inhibits rearrangements in the somatotopic patterning of thalamocortical afferents induced by manipulations of the sensory periphery during the critical period. These findings show that postsynaptic activation has a prominent role in critical period plasticity in S1 cortex.

摘要

在正常发育和发育剥夺过程中,突触连接的重排被认为是由传入冲动活动的相关性所控制。一个受到青睐的模型是基于对同步活跃传入神经的突触后检测;当突触前和突触后活动相关时,突触会稳定下来,而当它们的活动不相关时,突触会减弱或消除。该模型的大多数证据来自于这样的证明:相关的传入输入对于发育中的脊椎动物视觉系统中眼优势输入的分离是必要的,并且猫视觉皮层中眼优势柱的关键期可塑性会因突触后传递的阻断而受到破坏。我们测试了啮齿动物初级体感皮层(S1)中被称为“桶”的体感柱的发育可塑性是否与眼优势柱相似。我们在此报告,通过应用谷氨酸受体拮抗剂选择性破坏大鼠S1中的突触后激活,会抑制关键期内由感觉外周操作诱导的丘脑皮质传入神经躯体定位模式的重排。这些发现表明,突触后激活在S1皮层的关键期可塑性中起重要作用。

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