首页> 美国卫生研究院文献>The Journal of Neuroscience >Stable Properties of Spontaneous EPSCs and Miniature Retinal EPSCs during the Development of ON/OFF Sublamination in the Ferret Lateral Geniculate Nucleus
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Stable Properties of Spontaneous EPSCs and Miniature Retinal EPSCs during the Development of ON/OFF Sublamination in the Ferret Lateral Geniculate Nucleus

机译:雪貂侧根细核ON / OFF分层过程中自发性EPSC和微型视网膜EPSC的稳定特性。

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摘要

Retinal projections to the lateral geniculate nucleus (LGN) in ferrets progressively segregate into eye-specific laminae and subsequently into sublaminae that receive inputs from either ON-center or OFF-center afferents. To study the development of synaptic efficacy during a period of activity-dependent growth and reorganization in the CNS, we recorded spontaneous EPSCs (sEPSCs) from cells of the LGN during ON/OFF sublamination. We also examined retinal inputs specifically by stimulating the optic tract in the presence of strontium and recording evoked miniature EPSCs (emEPSCs). The rise times, areas, half-widths, and decay times of sEPSCs and emEPSCs and interevent intervals of sEPSCs recorded at the beginning of ON/OFF sublamination were not different from those recorded after its completion. Typically EPSC areas were small (10–20 fC) but varied greatly both within and between neurons. The frequency of sEPSCs was also quite variable, ranging from 0.2 to 5 Hz. sEPSCs were equivalent to miniature EPSCs recorded in the presence of tetrodotoxin, and both sEPSCs and emEPSCs were CNQX-sensitive. No difference was observed between sEPSCs recorded at room temperature and those recorded at 34°C, and strontium could be substituted for calcium with no effect on sEPSC shape. These data argue for a remarkable stability in the components of at least AMPA-mediated synaptic transmission during a period of major synaptic rearrangement in the LGN.
机译:在雪貂中,到外侧膝状核(LGN)的视网膜投影逐渐分离成特定于眼的薄片,然后分离成子薄层,这些子层从中心或中心外传入的人接受输入。为了研究CNS中活动依赖的生长和重组期间突触功效的发展,我们记录了ON / OFF分层过程中LGN细胞的自发EPSC(sEPSC)。我们还通过在锶存在下刺激视神经束并记录诱发的微型EPSC(emEPSC)专门检查了视网膜输入。 sEPSC和emEPSC的上升时间,面积,半宽度和衰减时间以及在ON / OFF分层开始时记录的sEPSC的事件间隔与完成后记录的相同。通常,EPSC区域很小(10–20 fC),但在神经元内部和神经元之间差异很大。 sEPSC的频率也变化很大,范围从0.2到5 Hz。 sEPSC与在河豚毒素存在下记录的微型EPSC等效,并且sEPSC和emEPSC都是CNQX敏感的。在室温下记录的sEPSC和在34°C下记录的sEPSC之间没有观察到差异,并且锶可以代替钙,而对sEPSC形状没有影响。这些数据表明,在LGN发生重大突触重排期间,至少AMPA介导的突触传递的成分具有显着的稳定性。

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