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Two types of independent bursting mechanisms in inspirator} neurons: an integrative model

机译:吸气器神经元的两种独立的突发机制:整合模型

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摘要

The network of coupled neurons in the pre-Botzinger complex (pBC) of the medulla generates a bursting rhythm, which underlies the inspiratory phase of respiration. In some of these neurons, bursting persists even when synaptic coupling in the network is blocked and respiratory rhythmic discharge stops. Bursting in inspiratory neurons has been extensively studied, and two classes of bursting neurons have been identified, with bursting mechanism depends on either persistent sodium current or changes in intracellular Ca~(2+), respectively. Motivated by experimental evidence from these intrinsically bursting neurons, we present a two-compartment mathematical model of an isolated pBC neuron with two independent bursting mechanisms. Bursting in the somatic compartment is modeled via inactivation of a persistent sodium current, whereas bursting in the dendritic compartment relies on Ca~(2+) oscillations, which are determined by the neuromodula-tory tone. The model explains a number of conflicting experimental results and is able to generate a robust bursting rhythm, over a large range of parameters, with a frequency adjusted by neuromodulators.
机译:延髓的前波琴格复合体(pBC)中的耦合神经元网络产生爆发性节律,这是呼吸的吸气阶段的基础。在其中一些神经元中,即使网络中的突触耦合被阻止并且呼吸节律性放电停止,爆发仍会持续。吸气神经元的爆发已经被广泛研究,并且已经鉴定出两类爆发神经元,其爆发机制分别取决于持续的钠电流或细胞内Ca〜(2+)的变化。根据这些内在爆发性神经元的实验证据,我们提出了具有两个独立爆发机制的孤立pBC神经元的两室数学模型。体细胞室的爆发是通过持续的钠电流失活来模拟的,而树突室的爆发则依赖于Ca〜(2+)振荡,这是由神经调节音决定的。该模型解释了许多相互矛盾的实验结果,并能够在很大范围的参数上产生鲁棒的爆发节奏,并通过神经调节器调节频率。

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