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Potentiation of cortical inhibition by visual deprivation.

机译:通过视觉剥夺增强皮质抑制作用。

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The fine-tuning of circuits in sensory cortex requires sensory experience during an early critical period. Visual deprivation during the critical period has catastrophic effects on visual function, including loss of visual responsiveness to the deprived eye, reduced visual acuity, and loss of tuning to many stimulus characteristics. These changes occur faster than the remodelling of thalamocortical axons, but the intracortical plasticity mechanisms that underlie them are incompletely understood. Long-term depression of excitatory intracortical synapses has been proposed as a general candidate mechanism for the loss of cortical responsiveness after visual deprivation. Alternatively (or in addition), the decreased ability of the deprived eye to activate cortical neurons could be due to enhanced intracortical inhibition. Here we show that visual deprivation leaves excitatory connections in layer 4 (the primary input layer to cortex) unaffected, but markedly potentiates inhibitory feedback between fast-spiking basket cells (FS cells) and star pyramidal neurons (star pyramids). Further, a previously undescribed form of long-term potentiation of inhibition (LTPi) could be induced at synapses from FS cells to star pyramids, and was occluded by previous visual deprivation. These data suggest that potentiation of inhibition is a major cellular mechanism underlying the deprivation-induced degradation of visual function, and that this form of LTPi is important in fine-tuning cortical circuitry in response to visual experience.
机译:感觉皮层中的电路的微调需要在关键的早期阶段的感觉经验。关键时期的视觉剥夺会对视觉功能造成灾难性影响,包括丧失对被剥夺的眼睛的视觉反应能力,降低的视敏度以及失去对许多刺激特征的调节能力。这些变化发生的速度比丘脑皮层轴突的重塑快,但其基础的皮层内可塑性机制尚不完全清楚。长期抑制兴奋性皮层内突触已被提议作为视觉剥夺后皮层反应性丧失的一般候选机制。替代地(或另外地),剥夺的眼睛激活皮质神经元的能力降低可能是由于增强的皮质内抑制。在这里,我们显示视觉剥夺使第4层(皮层的主要输入层)的兴奋性连接不受影响,但显着增强了快速刺激的篮状细胞(FS细胞)和星形锥体神经元(星形金字塔)之间的抑制性反馈。此外,可以在从FS细胞到星形金字塔的突触中诱导出先前未描述的长期抑制增强形式(LTPi),并被先前的视觉剥夺所掩盖。这些数据表明抑制的增强是剥夺诱导的视觉功能退化背后的主要细胞机制,并且这种形式的LTPi在微调皮质电路以响应视觉体验方面很重要。

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