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A Dynamic Network Simulation of the Nematode Tap Withdrawal Circuit: Predictions Concerning Synaptic Function Using Behavioral Criteria

机译:线虫抽头抽回电路的动态网络仿真:关于使用行为准则的突触功能的预测

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摘要

The nematode tap withdrawal reflex demonstrates several forms of behavioral plasticity. Although the neural connectivity that supports this behavior is identified (Integration of mechanosensory stimuli in Caenorhabditis elegans, Wicks and Rankin, 1995, J Neurosci 15:2434–2444), the neurotransmitter phenotypes, and hence whether the synapses in the circuit are excitatory or inhibitory, remain uncharacterized. Here we use a novel strategy to predict the polarity configuration, i.e., the array of excitatory and inhibitory connections, of the nematode tap withdrawal circuit using an anatomically and physiologically justifiable dynamic network simulation of that circuit. The output of the modeled circuit was optimized to the behavior of animals, which possessed circuits altered by surgical ablation by exhaustively enumerating an array of synaptic signs that constituted the modeled circuit. All possible polarity configurations were then compared, and a statistical analysis was used to determine whether, for a given synaptic class, a particular polarity was associated with a good fit to behavioral data. The results from four related experiments were used to predict the polarities of seven of the nine cell classes of the tap withdrawal circuit. In addition, the model was used to assess possible roles for two novel mechanosensory integration neurons: DVA and PVD.
机译:线虫抽头抽回反射表现出几种形式的行为可塑性。尽管已识别出支持这种行为的神经连通性(秀丽隐杆线虫的机械感觉刺激的整合,Wicks和Rankin,1995,J Neurosci 15:2434-2444),但神经递质的表型以及回路中的突触是兴奋性的还是抑制性的,仍未显示。在这里,我们使用一种新颖的策略来预测线虫抽头抽回电路的极性配置,即兴奋性和抑制性连接的阵列,使用该电路的解剖学和生理上合理的动态网络仿真。建模电路的输出针对动物的行为进行了优化,通过彻底枚举构成建模电路的一系列突触征兆,动物具有通过手术消融改变的电路。然后比较所有可能的极性配置,并使用统计分析来确定对于给定的突触类别,特定的极性是否与行为数据的良好拟合相关联。来自四个相关实验的结果用于预测抽头抽出电路的九种电池类别中的七种电池的极性。此外,该模型还用于评估两种新型机械感觉整合神经元:DVA和PVD的可能作用。

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