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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Normalization of Ca2+ signals by small oblique dendrites of CA1 pyramidal neurons.
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Normalization of Ca2+ signals by small oblique dendrites of CA1 pyramidal neurons.

机译:Ca1 +锥体神经元的小斜树突对Ca2 +信号的归一化。

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Oblique dendrites of CA1 pyramidal neurons predominate in stratum radiatum and receive approximately 80% of the synaptic input from Schaffer collaterals. Despite this fact, most of our understanding of dendritic signal processing in these neurons comes from studies of the main apical dendrite. Using a combination of Ca2+ imaging and whole-cell recording techniques in rat hippocampal slices, we found that the properties of the oblique dendrites differ markedly from those of the main dendrites. These different properties tend to equalize the Ca2+ rise from single action potentials as they backpropagate into the oblique dendrites from the main trunk. Evidence suggests that this normalization of Ca2+ signals results from a higher density of a transient, A-type K+ current [I(K(A))] in the oblique versus the main dendrites. The higher density of I(K(A)) may have important implications for our understanding of synaptic integration and plasticity in these structures.
机译:CA1锥体神经元的斜树突在辐射层中占主导地位,并从Schaffer侧支获得约80%的突触输入。尽管如此,我们对这些神经元中树突状信号处理的大多数了解还是来自对主要根尖状树突的研究。通过在大鼠海马切片中使用Ca2 +成像和全细胞记录技术的组合,我们发现倾斜树突的性质与主要树突的性质明显不同。这些不同的特性趋向于使Ca2 +从单作用电势上升的过程均等,因为它们从主干向后传播到倾斜的树突中。有证据表明,Ca2 +信号的这种归一化是由于倾斜的主树突中瞬态A型K +电流[I(K(A))]的密度较高。 I(K(A))的较高密度可能对我们理解这些结构中的突触整合和可塑性具有重要意义。

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