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Maturation of GABAergic Inhibition Promotes Strengthening of Temporally Coherent Inputs among Convergent Pathways

机译:GABA能抑制的成熟促进收敛途径之间的时间连贯输入的加强。

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摘要

Spike-timing-dependent plasticity (STDP), a form of Hebbian plasticity, is inherently stabilizing. Whether and how GABAergic inhibition influences STDP is not well understood. Using a model neuron driven by converging inputs modifiable by STDP, we determined that a sufficient level of inhibition was critical to ensure that temporal coherence (correlation among presynaptic spike times) of synaptic inputs, rather than initial strength or number of inputs within a pathway, controlled postsynaptic spike timing. Inhibition exerted this effect by preferentially reducing synaptic efficacy, the ability of inputs to evoke postsynaptic action potentials, of the less coherent inputs. In visual cortical slices, inhibition potently reduced synaptic efficacy at ages during but not before the critical period of ocular dominance (OD) plasticity. Whole-cell recordings revealed that the amplitude of unitary IPSCs from parvalbumin positive (Pv+) interneurons to pyramidal neurons increased during the critical period, while the synaptic decay time-constant decreased. In addition, intrinsic properties of Pv+ interneurons matured, resulting in an increase in instantaneous firing rate. Our results suggest that maturation of inhibition in visual cortex ensures that the temporally coherent inputs (e.g. those from the open eye during monocular deprivation) control postsynaptic spike times of binocular neurons, a prerequisite for Hebbian mechanisms to induce OD plasticity.
机译:依赖尖峰时间的可塑性(STDP)是Hebbian可塑性的一种形式,它本身具有稳定性。 GABA抑制是否以及如何影响STDP尚不清楚。使用由STDP可修改的会聚输入驱动的模型神经元,我们确定足够的抑制水平对于确保突触输入的时间连贯性(突触前尖峰时间之间的相关性)而不是路径中的初始强度或输入数量至关重要,控制突触后突波时机。抑制通过优先降低连贯性较低的输入的突触功效(即输入的输入引起突触后动作电位的能力)来发挥这种作用。在视觉皮层切片中,抑制作用可能会在一定时期内(但不是在眼优势(OD)可塑性的关键时期之前)降低突触效力。全细胞记录显示,在临界期内,从小白蛋白阳性(Pv +)中间神经元到锥体神经元的单一IPSC振幅增加,而突触衰减时间常数则减小。此外,Pv +中间神经元的内在特性已经成熟,导致瞬时点火速率增加。我们的结果表明,视觉皮层抑制作用的成熟确保了时间上连贯的输入(例如单眼剥夺过程中从睁眼获得的输入)控制双眼神经元的突触后突跳时间,这是Hebbian机制诱导OD可塑性的先决条件。

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