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Multiple shared mechanisms for homeostatic plasticity in rodent somatosensory and visual cortex

机译:啮齿动物体感和视觉皮层体内稳态可塑性的多种共享机制

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摘要

We compare the circuit and cellular mechanisms for homeostatic plasticity that have been discovered in rodent somatosensory (S1) and visual (V1) cortex. Both areas use similar mechanisms to restore mean firing rate after sensory deprivation. Two time scales of homeostasis are evident, with distinct mechanisms. Slow homeostasis occurs over several days, and is mediated by homeostatic synaptic scaling in excitatory networks and, in some cases, homeostatic adjustment of pyramidal cell intrinsic excitability. Fast homeostasis occurs within less than 1 day, and is mediated by rapid disinhibition, implemented by activity-dependent plasticity in parvalbumin interneuron circuits. These processes interact with Hebbian synaptic plasticity to maintain cortical firing rates during learned adjustments in sensory representations.This article is part of the themed issue ‘Integrating Hebbian and homeostatic plasticity’.
机译:我们比较了在啮齿动物的体感(S1)和视觉(V1)皮层中发现的体内稳态可塑性的电路和细胞机制。两个区域都使用类似的机制来恢复感觉剥夺后的平均射击率。稳态的两个时间尺度是明显的,具有不同的机制。缓慢的稳态持续数天,并且由兴奋性网络中的稳态突触缩放和某些情况下锥体细胞固有兴奋性的稳态调节介导。快速动态平衡在不到1天的时间内发生,并由快速抑制作用介导,该抑制作用由小白蛋白中间神经元回路中的活动依赖性可塑性实现。这些过程与Hebbian突触可塑性相互作用,以在学习到的感官表征调整过程中维持皮质放电速率。本文是“整合Hebbian和体内稳态可塑性”主题主题的一部分。

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