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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Membrane resonance in bursting pacemaker neurons of an oscillatory network is correlated with network frequency.
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Membrane resonance in bursting pacemaker neurons of an oscillatory network is correlated with network frequency.

机译:振荡网络中起搏起搏器神经元中的膜共振与网络频率相关。

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摘要

Network oscillations typically span a limited range of frequency. In pacemaker-driven networks, including many central pattern generators (CPGs), this frequency range is determined by the properties of bursting pacemaker neurons and their synaptic connections; thus, factors that affect the burst frequency of pacemaker neurons should play a role in determining the network frequency. We examine the role of membrane resonance of pacemaker neurons on the network frequency in the crab pyloric CPG. The pyloric oscillations (frequency of approximately 1 Hz) are generated by a group of pacemaker neurons: the anterior burster (AB) and the pyloric dilator (PD). We examine the impedance profiles of the AB and PD neurons in response to sinusoidal current injections with varying frequency and find that both neuron types exhibit membrane resonance, i.e., demonstrate maximal impedance at a given preferred frequency. The membrane resonance frequencies of the AB and PD neurons fall within the range of the pyloric network oscillation frequency. Experiments with pharmacological blockers and computational modeling show that both calcium currents I(Ca) and the hyperpolarization-activated inward current I(h) are important in producing the membrane resonance in these neurons. We then demonstrate that both the membrane resonance frequency of the PD neuron and its suprathreshold bursting frequency can be shifted in the same direction by either direct current injection or by using the dynamic-clamp technique to inject artificial conductances for I(h) or I(Ca). Together, these results suggest that membrane resonance of pacemaker neurons can be strongly correlated with the CPG oscillation frequency.
机译:网络振荡通常跨越有限的频率范围。在起搏器驱动的网络中,包括许多中央模式发生器(CPG),该频率范围由爆发性起搏器神经元的性质及其突触连接决定;因此,影响起搏器神经元爆发频率的因素应在确定网络频率中起作用。我们在蟹幽门CPG中检查起搏器神经元的膜共振对网络频率的作用。幽门振荡(频率约为1 Hz)是由一组起搏器神经元产生的:前突部(AB)和幽门扩张器(PD)。我们检查了响应频率变化的正弦电流注入后AB和PD神经元的阻抗曲线,发现两种神经元都表现出膜共振,即在给定的首选频率下显示出最大阻抗。 AB和PD神经元的膜共振频率落在幽门网络振荡频率的范围内。药理学阻断剂和计算模型的实验表明,钙电流I(Ca)和超极化激活的内向电流I(h)在这些神经元的膜共振中均很重要。然后,我们证明,通过直流注入或通过使用动态钳位技术注入I(h)或I( Ca)。总之,这些结果表明,起搏器神经元的膜共振可以与CPG振荡频率密切相关。

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