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首页> 外文期刊>Frontiers in Cellular Neuroscience >Myelination Increases the Spatial Extent of Analog-Digital Modulation of Synaptic Transmission: A Modeling Study
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Myelination Increases the Spatial Extent of Analog-Digital Modulation of Synaptic Transmission: A Modeling Study

机译:髓鞘形成增加了突触传递的模拟数字调制的空间程度:建模研究

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Analog-digital facilitations (ADFs) have been described in local excitatory brain circuits and correspond to a class of phenomena describing how subthreshold variations of the presynaptic membrane potential influence spike-evoked synaptic transmission. In many brain circuits, ADFs rely on the propagation of somatic membrane potential fluctuations to the presynaptic bouton where they modulate ion channels availability, inducing modifications of the presynaptic spike waveform, the spike-evoked Ca ~(2+) entry, and the transmitter release. Therefore, one major requirement for ADFs to occur is the propagation of subthreshold membrane potential variations from the soma to the presynaptic bouton. To date, reported ADFs space constants are relatively short (250–500 μm) which limits their action to proximal synapses. However, ADFs have been studied either in unmyelinated axons or in juvenile animals in which myelination is incomplete. We examined here the potential gain of ADFs spatial extent caused by myelination using a realistic model of L5 pyramidal cell. Myelination of the axon was found to induce a 3-fold increase in the axonal length constant. As a result, the different forms of ADF were found to display a much longer spatial extent (up to 3,000 μm). In addition, while the internodal length displayed a mild effect, the number of myelin wraps ensheathing the internodes was found to play a critical role in the ADFs spatial extents. We conclude that axonal myelination induces an increase in ADFs spatial extent in our model, thus making ADFs plausible in long-distance connections.
机译:已经在局部兴奋性脑电路中描述了模拟数字便利化(ADF),并且对应于一类现象,其描述了突触前膜电位影响尖峰唤起突触传递的亚阈值变化。在许多大脑电路中,ADF依赖于调节离子通道可用性的突触前Bouton的体细胞膜电位波动的传播,诱导突触型尖峰波形的修改,尖峰Ca〜(2+)条,以及发射器释放。因此,发生ADF的一个主要要求是将亚阈值膜电位变化从SOMA传播到突触前的Bouton。迄今为止,报告的ADFS空间常量是相对较短的(250-500μm),这将其动作限制为近端突触。然而,已在未封闭的轴突中或在少年动物中研究ADF,其中髓鞘形成不完整。我们在这里检查了ADFS使用L5金字塔细胞的逼真模型引起的ADFS空间范围的潜在增益。发现轴突的髓鞘形成诱导轴突长度恒定的3倍。结果,发现不同形式的ADF在空间范围内(最多3,000μm)。此外,虽然internodal长度显示了轻度效果,但发现髓内的髓样包数为eNsheathing子区,在ADFS空间范围内发挥着关键作用。我们得出结论,轴突髓鞘导致我们模型中的ADFS空间范围增加,从而使ADF在长距离连接中合理。

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