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Robust Sigmoidal Control Response of C. elegans Neuronal Network

机译:线虫神经元网络的鲁棒乙状结肠控制反应。

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Biological systems are known to evolve mechanisms for acquiring robust response under uncertainty. Brain is a complex adaptive system characterized with system specific network features, at global as well as local level, critical for its function and control. We studied controllability response in C. elegans neuronal network with change in number of functionally important feed-forward motifs, due to synaptic rewiring. We find that this neuronal network has acquired a sigmoidal control response with a robust regime for saturation of feed-forward motifs and an extremely fragile response for their depletion. Further we show that, to maintain controllability this neuronal network must rewire following a power law distance constraint. Our results highlight distance constrained synaptic rewiring as a robust evolutionary strategy in the presence of sigmoidal control response.
机译:已知生物系统会进化出在不确定性条件下获得鲁棒响应的机制。大脑是一个复杂的自适应系统,在全局和局部级别具有系统特定的网络功能,对其功能和控制至关重要。我们研究了秀丽隐杆线虫神经元网络中的可控性响应,由于突触重新连接,功能上重要的前馈基序数量发生了变化。我们发现,该神经元网络已获得了一个S型控制响应,并具有一个健壮的机制,可以使前馈基序饱和,并且对它们的消耗也非常脆弱。进一步我们表明,为了保持可控制性,该神经元网络必须遵循幂律距离约束进行重新布线。我们的研究结果突出了在S形控制反应存在的情况下,距离受约束的突触重新布线作为一种鲁棒的进化策略。

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