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首页> 外文期刊>Nature neuroscience >Encoding a temporally structured stimulus with a temporally structured neural representation.
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Encoding a temporally structured stimulus with a temporally structured neural representation.

机译:用时间结构化的神经表示对时间结构化的刺激进行编码。

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摘要

Sensory neural systems use spatiotemporal coding mechanisms to represent stimuli. These time-varying response patterns sometimes outlast the stimulus. Can the temporal structure of a stimulus interfere with, or even disrupt, the spatiotemporal structure of the neural representation? We investigated this potential confound in the locust olfactory system. When odors were presented in trains of nearly overlapping pulses, responses of first-order interneurons (projection neurons) changed reliably, and often markedly, with pulse position as responses to one pulse interfered with subsequent responses. However, using the responses of an ensemble of projection neurons, we could accurately classify the odorants as well as characterize the temporal properties of the stimulus. Further, we found that second-order follower neurons showed firing patterns consistent with the information in the projection-neuron ensemble. Thus, ensemble-based spatiotemporal coding could disambiguate complex and potentially confoundingtemporally structured sensory stimuli and thereby provide an invariant response to a stimulus presented in various ways.
机译:感觉神经系统使用时空编码机制来表示刺激。这些随时间变化的响应模式有时比刺激持续时间更长。刺激的时间结构会干扰甚至破坏神经表征的时空结构吗?我们调查了蝗虫嗅觉系统中这种潜在的混淆。当在几乎重叠的脉冲序列中出现气味时,一阶中间神经元(投射神经元)的响应会可靠地(通常是明显地)发生变化,因为对一个脉冲的响应会干扰后续的响应。但是,使用投射神经元整体的响应,我们可以准确地对增味剂进行分类,并表征刺激的时间特性。此外,我们发现二阶跟随者神经元显示出与投射神经元集合中的​​信息一致的发射方式。因此,基于整体的时空编码可以消除复杂的,可能混淆的时间结构感官刺激,从而以各种方式对刺激提供不变的响应。

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