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Variability in State-Dependent Plasticity of Intrinsic Properties during Cell-Autonomous Self-Regulation of Calcium Homeostasis in Hippocampal Model Neurons

机译:海马模型神经元钙稳态的细胞自主自我调节过程中固有性质的状态依赖性可塑性的变化

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摘要

How do neurons reconcile the maintenance of calcium homeostasis with perpetual switches in patterns of afferent activity? Here, we assessed state-dependent evolution of calcium homeostasis in a population of hippocampal pyramidal neuron models, through an adaptation of a recent study on stomatogastric ganglion neurons. Calcium homeostasis was set to emerge through cell-autonomous updates to 12 ionic conductances, responding to different types of synaptically driven afferent activity. We first assessed the impact of theta-frequency inputs on the evolution of ionic conductances toward maintenance of calcium homeostasis. Although calcium homeostasis emerged efficaciously across all models in the population, disparate changes in ionic conductances that mediated this emergence resulted in variable plasticity to several intrinsic properties, also manifesting as significant differences in firing responses across models. Assessing the sensitivity of this form of plasticity, we noted that intrinsic neuronal properties and the firing response were sensitive to the target calcium concentration and to the strength and frequency of afferent activity. Next, we studied the evolution of calcium homeostasis when afferent activity was switched, in different temporal sequences, between two behaviorally distinct types of activity: theta-frequency inputs and sharp-wave ripples riding on largely silent periods. We found that the conductance values, intrinsic properties, and firing response of neurons exhibited differential robustness to an intervening switch in the type of afferent activity. These results unveil critical dissociations between different forms of homeostasis, and call for a systematic evaluation of the impact of state-dependent switches in afferent activity on neuronal intrinsic properties during neural coding and homeostasis.
机译:神经元如何通过传入活动模式的永久转换来调和钙稳态的维持?在这里,我们通过对胃胃神经节神经元的最新研究进行改编,评估了海马锥体神经元模型人群中钙稳态的状态依赖性进化。钙稳态被设定为通过对12种离子电导的细胞自主更新而出现,以响应不同类型的突触驱动的传入活动。我们首先评估了theta-frequency输入对离子电导演变对维持钙稳态的影响。尽管钙稳态在人群中的所有模型中均有效地出现,但是介导这种出现的离子电导率的不同变化导致对几种内在特性的可塑性变化,也表现为模型间激发反应的显着差异。评估这种可塑性的敏感性时,我们注意到内在的神经元性质和放电反应对目标钙浓度以及传入活动的强度和频率敏感。接下来,我们研究了在两种不同行为类型的活动之间以不同的时间顺序切换传入活动时钙稳态的演变:theta频率输入和陡峭的波浪纹波在很大程度上沉默的时期。我们发现电导值,内在属性和神经元的放电反应表现出不同的鲁棒性到传入活动的类型中的一个中间开关。这些结果揭示了不同形式的稳态之间的关键性分离,并要求系统评估传入编码中状态依赖开关对神经编码和稳态过程中神经元内在特性的影响。

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