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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Single synapse information coding in intraburst spike patterns of central pattern generator motor neurons.
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Single synapse information coding in intraburst spike patterns of central pattern generator motor neurons.

机译:在中央模式发生器运动神经元的突发内尖峰模式中的单个突触信息编码。

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摘要

Burst firing is ubiquitous in nervous systems and has been intensively studied in central pattern generators (CPGs). Previous works have described subtle intraburst spike patterns (IBSPs) that, despite being traditionally neglected for their lack of relation to CPG motor function, were shown to be cell-type specific and sensitive to CPG connectivity. Here we address this matter by investigating how a bursting motor neuron expresses information about other neurons in the network. We performed experiments on the crustacean stomatogastric pyloric CPG, both in control conditions and interacting in real-time with computer model neurons. The sensitivity of postsynaptic to presynaptic IBSPs was inferred by computing their average mutual information along each neuron burst. We found that details of input patterns are nonlinearly and inhomogeneously coded through a single synapse into the fine IBSPs structure of the postsynaptic neuron following burst. In this way, motor neurons are able to use different time scales to convey two types of information simultaneously: muscle contraction (related to bursting rhythm) and the behavior of other CPG neurons (at a much shorter timescale by using IBSPs as information carriers). Moreover, the analysis revealed that the coding mechanism described takes part in a previously unsuspected information pathway from a CPG motor neuron to a nerve that projects to sensory brain areas, thus providing evidence of the general physiological role of information coding through IBSPs in the regulation of neuronal firing patterns in remote circuits by the CNS.
机译:爆炸放电在神经系统中无处不在,并且已经在中央模式发生器(CPG)中进行了深入研究。以前的工作描述了微妙的突发内尖峰模式(IBSP),尽管传统上由于它们与CPG运动功能无关而被忽略,但它们被证明是特定于细胞类型的并且对CPG连接敏感。在这里,我们通过研究爆发的运动神经元如何表达有关网络中其他神经元的信息来解决此问题。我们在控制条件下以及与计算机模型神经元实时交互作用下对甲壳动物的胃胃幽门CPG进行了实验。通过计算沿每个神经元爆发的平均相互信息,可以推断出突触后对IBSP的敏感性。我们发现,输入模式的细节通过单个突触被非线性地和不均匀地编码成突触后突触后神经元的精细IBSPs结构。通过这种方式,运动神经元能够使用不同的时标同时传达两种类型的信息:肌肉收缩(与节律有关)和其他CPG神经元的行为(通过使用IBSP作为信息载体在更短的时标上)。此外,分析表明,所描述的编码机制参与了从CPG运动神经元到伸向感觉性大脑区域的神经的先前未曾预料到的信息路径,从而提供了通过IBSPs进行信息编码的常规生理作用的证据CNS在远程电路中的神经元放电模式。

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