首页> 美国卫生研究院文献>The Journal of Neuroscience >Mechanisms of Calcium Influx into Hippocampal Spines: Heterogeneity among Spines Coincidence Detection by NMDA Receptors and Optical Quantal Analysis
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Mechanisms of Calcium Influx into Hippocampal Spines: Heterogeneity among Spines Coincidence Detection by NMDA Receptors and Optical Quantal Analysis

机译:钙流入海马棘的机制:棘之间的异质性NMDA受体巧合检测和光学量子分析。

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摘要

Dendritic spines receive most excitatory inputs in the vertebrate brain, but their function is still poorly understood. Using two-photon calcium imaging of CA1 pyramidal neurons in rat hippocampal slices, we investigated the mechanisms by which calcium enters into individual spines in the stratum radiatum. We find three different pathways for calcium influx: high-threshold voltage-sensitive calcium channels, NMDA receptors, and an APV-resistant influx consistent with calcium-permeable AMPA or kainate receptors. These pathways vary among different populations of spines and are engaged under different stimulation conditions, with peak calcium concentrations reaching >10 μm. Furthermore, as a result of the biophysical properties of the NMDA receptor, the calcium dynamics of spines are exquisitely sensitive to the temporal coincidence of the input and output of the neuron. Our results confirm that individual spines are chemical compartments that can perform coincidence detection. Finally, we demonstrate that functional studies and optical quantal analysis of single, identified synapses is feasible in mammalian CNS neurons in brain slices.
机译:树突棘在脊椎动物脑中接受大多数兴奋性输入,但其功能仍知之甚少。使用大鼠海马切片中CA1锥体神经元的双光子钙成像,我们研究了钙进入放射状层中单个棘的机制。我们发现钙流入的三种不同途径:高阈值电压敏感钙通道,NMDA受体以及与钙可渗透的AMPA或海藻酸盐受体一致的抗APV的流入。这些途径在不同的刺种群之间变化,并且在不同的刺激条件下参与,钙的峰值浓度达到> 10μm。此外,由于NMDA受体的生物物理特性,脊柱的钙动力学对神经元的输入和输出的时间一致性非常敏感。我们的结果证实,单个刺是可以执行巧合检测的化学区室。最后,我们证明了功能研究和单个确定的突触的光学定量分析在脑切片的哺乳动物CNS神经元中是可行的。

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