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首页> 外文期刊>BioSystems >Rate code input produces temporal code output from cockroach antennal lobes
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Rate code input produces temporal code output from cockroach antennal lobes

机译:速率代码输入从蟑螂触角产生时间代码输出

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摘要

The experiments presented here were designed to determine the origin of the temporally complex activity of antennal lobe projection neurons in the cockroach olfactory system. We determined this through the use of complex chemical stimuli that evoked neural activity recorded extracellularly from olfactory sensory neurons and intracellularly from antennal lobe projection neurons in the cockroach Periplaneta americana. Olfactory information was represented by a simple, short time-scale rate code in the olfactory sensory neurons. This rate code input from the sensory neurons was processed by the antennal lobe and transformed into a longer time-scale, temporally encoded output expressed across a smaller population of antennal lobe projection neurons. The projection neuron responses comprised temporal patterns of increases and decreases in spike frequency that differed among projection neurons and were consistent among repeated presentations of the same stimulus. Presentation of simple and complex chemical stimuli showed that the complexity of projection neuron activity was a product of the antennal lobes and was not associated with the chemical complexity of the stimulus. To characterize the encoding schemes used by each class of neurons, the responses were decomposed into their principal components. The stimulus was correlated with only the first principal component of the activity of sensory neurons, which is consistent with a rate encoding scheme. The stimulus was correlated with higher order principal components of the activity of projection neurons, which is consistent with a temporal encoding scheme. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 19]
机译:设计此处介绍的实验来确定蟑螂嗅觉系统中触角叶投射神经元的时间复杂活动的起源。我们通过使用复杂的化学刺激物来确定这一点,该刺激物引起了美国蟑螂嗅觉感觉神经元在细胞外记录的神经活动以及从触角投射神经元在细胞内记录的神经活动。嗅觉信息由嗅觉感觉神经元中的简单,短时标率码表示。从感觉神经元输入的速率码由触角叶处理,并转换成较长的时标,在较小的触角叶投影神经元群体中表达的时间编码输出。投射神经元反应包括尖峰频率增加和减少的时间模式,这些时间模式在投射神经元之间有所不同,并且在相同刺激的重复表示之间是一致的。简单和复杂化学刺激的表现表明,投射神经元活动的复杂性是触角叶的产物,与刺激的化学复杂性无关。为了表征每类神经元使用的编码方案,将响应分解为它们的主要成分。刺激仅与感觉神经元活动的第一主要成分相关,这与速率编码方案一致。刺激与投影神经元活动的高阶主成分相关,这与时间编码方案一致。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:19]

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