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视觉形成之前视网膜自发活动的丘脑中继。

Thalamic relay of spontaneous retinal activity prior to vision.

作者信息

Mooney R, Penn A A, Gallego R, Shatz C J

机构信息

Howard Hughes Medical Institute and Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.

出版信息

Neuron. 1996 Nov;17(5):863-74. doi: 10.1016/s0896-6273(00)80218-4.

Abstract

Before vision, retinal ganglion cells produce spontaneous waves of action potentials. A crucial question is whether this spontaneous activity is transmitted to lateral geniculate nucleus (LGN) neurons. Using a novel in vitro preparation, we report that LGN neurons receive periodic barrages of postsynaptic currents from the retina that drive them to fire bursts of action potentials. Groups of LGN neurons are highly correlated in their firing. Experiments in wild-type and NMDAR1 knockout mice show that NMDA receptor activation is not necessary for firing. The transmission of the highly correlated retinal activity to the LGN supports the hypothesis that retinal waves drive retinogeniculate synaptic remodeling. Because LGN neurons are driven to fire action potentials, this spontaneous activity could also act more centrally to influence synaptic modification within the developing visual cortex.

摘要

在视觉形成之前,视网膜神经节细胞会产生自发的动作电位波。一个关键问题是这种自发活动是否会传递到外侧膝状体核(LGN)神经元。通过一种新型的体外制备方法,我们报告称LGN神经元接收到来自视网膜的周期性突触后电流冲击,这些冲击促使它们发放动作电位爆发。成群的LGN神经元在放电方面高度相关。在野生型和NMDAR1基因敲除小鼠身上进行的实验表明,NMDA受体激活对于放电并非必要。高度相关的视网膜活动向LGN的传递支持了视网膜波驱动视网膜膝状体突触重塑的假说。由于LGN神经元被驱动发放动作电位,这种自发活动也可能在更中枢的层面发挥作用,影响发育中的视觉皮层内的突触修饰。

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