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首页> 外文期刊>Nature Communications >Flexibility in motor timing constrains the topology and dynamics of pattern generator circuits
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Flexibility in motor timing constrains the topology and dynamics of pattern generator circuits

机译:电动机定时的灵活性限制了码型发生器电路的拓扑和动态

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Temporally precise movement patterns underlie many motor skills and innate actions, yet the flexibility with which the timing of such stereotyped behaviors can be modified is poorly understood. To probe this, we induce adaptive changes to the temporal structure of birdsong. We find that the duration of specific song segments can be modified without affecting the timing in other parts of the song. We derive formal prescriptions for how neural networks can implement such flexible motor timing. We find that randomly connected recurrent networks, a common approximation for how neocortex is wired, do not generally conform to these, though certain implementations can approximate them. We show that feedforward networks, by virtue of their one-to-one mapping between network activity and time, are better suited. Our study provides general prescriptions for pattern generator networks that implement flexible motor timing, an important aspect of many motor skills, including birdsong and human speech.
机译:暂时精确的运动模式是许多运动技能和先天性行为的基础,但人们对这种刻板行为的时机修改的灵活性知之甚少。为了对此进行探讨,我们诱导了鸟鸣的时间结构的适应性变化。我们发现可以修改特定歌曲片段的持续时间,而不会影响歌曲其他部分的时间。我们得出关于神经网络如何实现这种灵活的电机正时的正式处方。我们发现,随机连接的递归网络是新大脑皮层如何布线的一种常见近似方法,尽管某些实现方式可以近似它们,但它们通常不符合这些规则。我们显示,前馈网络由于它们在网络活动和时间之间的一对一映射,因此更适合。我们的研究为模式发生器网络提供了通用的处方,这些模式实现了灵活的电机定时,这是许多运动技能(包括鸟鸣和人类语音)的重要方面。

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