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感觉体验在前突触发育中的作用具有皮质区特异性。

The role of sensory experience in presynaptic development is cortical area specific.

机构信息

School of Biosciences, Cardiff University, Museum Avenue, Cardiff CF10 3AX, UK.

出版信息

J Physiol. 2011 Dec 1;589(Pt 23):5691-9. doi: 10.1113/jphysiol.2011.218347. Epub 2011 Sep 26.

Abstract

The postsynaptic response to a stimulus is dependent on the history of previous activity at that synapse. This short-term plasticity (STP) is a key determinant of neural network function. During postnatal development, many excitatory intracortical synapses switch from strong depression during early postnatal life, to weaker depression and in some cases facilitation in adulthood. However, it is not known whether this developmental switch is an innate feature of synaptic maturation, or whether it requires activity. We investigated this question in the barrel and visual cortex, two widely studied models of experience-dependent plasticity. We have previously defined the time course over which presynaptic development occurs in these two cortical areas, enabling us to make the first direct comparison of the role of sensory experience during synaptic development. We found that maturation of STP in visual cortex was unaffected by dark rearing from before eye opening. In marked contrast, total whisker deprivation completely blocked the developmental decrease in presynaptic release probability (Pr), and the concomitant increase in paired pulse ratio (PPR), which occur in barrel cortex during the third and fourth postnatal weeks. However, the developmental increase in the steady state response to a train of stimuli was unaffected by whisker deprivation. This supports a mechanistic link between Pr and the PPR, but dissociates Pr from the steady state amplitude during repetitive stimulation. Our findings indicate that sensory experience plays a greater role in presynaptic development at L4 to L2/3 excitatory synapses in the barrel cortex than in the visual cortex.

摘要

突触后对刺激的反应取决于该突触之前的活动历史。这种短期可塑性(STP)是神经网络功能的关键决定因素。在出生后发育过程中,许多兴奋性皮质内突触在出生后早期从强烈抑制转变为较弱抑制,在某些情况下在成年期转变为易化。然而,尚不清楚这种发育性转变是突触成熟的固有特征,还是需要活动。我们在桶状和视觉皮层中研究了这个问题,这两个是广泛研究的经验依赖性可塑性模型。我们以前定义了这两个皮质区域中突触前发育发生的时间过程,使我们能够首次直接比较感觉经验在突触发育过程中的作用。我们发现,视觉皮层中 STP 的成熟不受从睁眼前开始的暗饲养的影响。相比之下,完全剥夺总胡须完全阻止了在桶状皮层中第三和第四周发生的突触前释放概率(Pr)的发育性降低,以及随之而来的成对脉冲比(PPR)的增加。然而,在重复刺激时,对刺激的稳态反应的发育性增加不受胡须剥夺的影响。这支持了 Pr 和 PPR 之间的机制联系,但将 Pr 与重复刺激时的稳态幅度分离。我们的发现表明,感觉经验在桶状皮层的 L4 到 L2/3 兴奋性突触的突触前发育中比在视觉皮层中发挥更大的作用。

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