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Spike timing-dependent selective strengthening of single climbing fibre inputs to Purkinje cells during cerebellar development

机译:小脑发育过程中单个上升纤维输入到浦肯野细胞的穗定时依赖选择性增强

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Shaping functional neural circuits in developing brain involves activity-dependent refinement of early-formed redundant synapses. In the developing cerebellum, a one-to-one connection between a climbing fibre (CF) and a Purkinje cell (PC) is established by selective strengthening of a single CF followed by elimination of surplus CFs. Here we investigate developmental changes in CF-mediated responses in PCs by using in vivo whole-cell recordings and two-photon Ca2+ imaging. We show that each neonatal PC receives temporally clustered inputs from multiple CFs and temporal integration of these inputs is required to induce burst spiking and Ca2+ rise in PCs. Importantly, a single CF input closest to PC’s spike output is selectively strengthened during postnatal development. This spike timing-dependent selective strengthening is much less prominent in PC-selective P/Q-type voltage-dependent Ca2+ channel knockout mice. Thus, spike timing- and Ca2+-dependent plasticity appears to underlie the selection of a single ‘winner’ CF and the establishment of mature CF–PC connections.
机译:在发育中的大脑中塑造功能性神经回路涉及早期形成的冗余突触的活动依赖性提炼。在发育中的小脑中,攀爬纤维(CF)与浦肯野细胞(PC)之间的一对一连接是通过选择性增强单个CF,然后消除多余的CF建立的。在这里,我们通过体内全细胞记录和双光子Ca 2 + 成像研究CF介导的PC机反应的变化。我们表明,每个新生儿PC都从多个CF接收到时间上聚类的输入,并且需要这些输入的时间上的整合来诱发PC中的突发尖峰和Ca 2 + 上升。重要的是,在产后发育过程中,有选择地增强了最接近PC峰值输出的单个CF输入。在PC选择性P / Q型电压依赖性Ca 2 + 通道敲除小鼠中,这种与穗时间相关的选择性增强作用并不明显。因此,尖峰时间和依赖Ca 2 + 的可塑性似乎是选择单个“获胜者” CF和建立成熟的CF-PC连接的基础。

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