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嗅觉编码与反应时模式。

Olfactory coding with patterns of response latencies.

机构信息

Department of Neurophysiology and Cellular Biophysics, University of Göttingen, Humboldtallee 23, 37073 Göttingen, Germany.

出版信息

Neuron. 2010 Sep 9;67(5):872-84. doi: 10.1016/j.neuron.2010.08.005.

Abstract

The encoding of odors by spatiotemporal patterns of mitral/tufted (M/T) cells in the vertebrate olfactory bulb has been discussed controversially. Motivated by temporal constraints from behavioral studies, we investigated the information contained in odor-evoked first-spike latencies. Using simultaneous recordings of dozens of M/T cells with a high temporal resolution and quantitative ensemble correlation techniques, we show that latency patterns, and in particular latency rank patterns, are highly odor specific and reproducible. They reliably predict the odor identity as well as the odor concentration on a single-trial basis and on short timescales-in fact, more reliably than patterns of firing rates. Furthermore, we show that latency ranks exhibit a better reproducibility at the level of M/T cells than in olfactory receptor neurons. Our results suggest that the latency patterns of M/T cells contain all the information higher brain centers need to identify odors and their concentrations.

摘要

脊椎动物嗅球中僧帽细胞/丛状细胞(M/T)以时空模式对气味进行编码一直存在争议。受行为研究中时间限制的启发,我们研究了气味诱发的第一峰潜伏期中包含的信息。我们使用高时间分辨率的数十个 M/T 细胞的同步记录和定量整体相关技术,表明潜伏期模式,特别是潜伏期阶模式,具有高度的气味特异性和可重复性。它们可以可靠地预测气味的身份以及在单次试验和短时间尺度上的气味浓度 - 实际上,比放电率模式更可靠。此外,我们还表明,潜伏期阶在 M/T 细胞水平上比在嗅觉受体神经元中具有更好的可重复性。我们的结果表明,M/T 细胞的潜伏期模式包含了大脑更高中心识别气味及其浓度所需的所有信息。

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