首页> 外文期刊>Frontiers in Cellular Neuroscience >Space Takes Time: Concentration Dependent Output Codes from Primary Olfactory Networks Rapidly Provide Additional Information at Defined Discrimination Thresholds
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Space Takes Time: Concentration Dependent Output Codes from Primary Olfactory Networks Rapidly Provide Additional Information at Defined Discrimination Thresholds

机译:空间需要时间:来自主要嗅觉网络的浓度相关输出代码可在定义的歧视阈值下快速提供其他信息

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As odor concentration increases, primary olfactory network representations expand in spatial distribution, temporal complexity and duration. However, the direct relationship between concentration dependent odor representations and the psychophysical thresholds of detection and discrimination is poorly understood. This relationship is absolutely critical as thresholds signify transition points whereby representations become meaningful to the organism. Here, we matched stimulus protocols for psychophysical assays and intracellular recordings of antennal lobe (AL) projection neurons (PNs) in the moth Manduca sexta to directly compare psychophysical thresholds and the output representations they elicit. We first behaviorally identified odor detection and discrimination thresholds across an odor dilution series for a panel of structurally similar odors. We then characterized spatiotemporal spiking patterns across a population of individually filled and identified AL PNs in response to those odors at concentrations below, at, and above identified thresholds. Using spatial and spatiotemporal based analyses we observed that each stimulus produced unique representations, even at sub-threshold concentrations. Mean response latency did not decrease and the percent glomerular activation did not increase with concentration until undiluted odor. Furthermore, correlations between spatial patterns for odor decreased, but only significantly with undiluted odor. Using time-integrated Euclidean distance (ED) measures, we determined that added spatiotemporal information was present at the discrimination but not detection threshold. This added information was evidenced by an increase in integrated distance between the sub-detection and discrimination threshold concentrations (of the same odor) that was not present in comparison of the sub-detection and detection threshold. After consideration of delays for information to reach the AL we find that it takes ~120–140 ms for the AL to output identity information. Overall, these results demonstrate that as odor concentration increases, added information about odor identity is embedded in the spatiotemporal representation at the discrimination threshold.
机译:随着气味浓度的增加,主要的嗅觉网络表示形式在空间分布,时间复杂度和持续时间上都在扩大。但是,人们对浓度依赖性气味表示与检测和区分的心理阈值之间的直接关系知之甚少。这种关系是绝对关键的,因为阈值表示过渡点,因此表示形式对生物体变得有意义。在这里,我们匹配了刺激方案,以进行飞蛾Man蛾的触角叶(AL)投射神经元(PNs)的心理物理测定和细胞内记录,以直接比较心理物理阈值和它们引起的输出表示。我们首先从行为上确定了一系列结构相似气味的气味稀释系列中的气味检测和辨别阈值。然后,我们对浓度低于,高于和高于确定的阈值的那些气味做出响应时,在各个单独填充并确定的AL PNs群体中表征了时空峰值模式。使用基于空间和时空的分析,我们观察到即使在低于阈值的浓度下,每个刺激也会产生独特的表示。平均反应潜伏期并没有减少,并且直到未闻到气味,肾小球活化百分比才随着浓度的增加而增加。此外,气味的空间模式之间的相关性降低,但仅与未稀释的气味显着相关。使用时间积分的欧几里德距离(ED)措施,我们确定添加的时空信息存在于判别而不是检测阈值。子检测和辨别阈值浓度(相同气味)之间积分距离的增加证明了这一附加信息,而积分距离在子检测和检测阈值的比较中不存在。考虑到信息到达AL的延迟后,我们发现AL输出身份信息大约需要120-140毫秒。总体而言,这些结果表明,随着气味浓度的增加,关于气味同一性的附加信息将嵌入到判别阈值的时空表示中。

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