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首页> 外文期刊>Nature neuroscience >Olfactory bulb coding of odors, mixtures and sniffs is a linear sum of odor time profiles
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Olfactory bulb coding of odors, mixtures and sniffs is a linear sum of odor time profiles

机译:气味,混合物和嗅觉的嗅觉灯泡编码是气味时间分布的线性总和

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摘要

The olfactory system receives intermittent and fluctuating inputs arising from dispersion of odor plumes and active sampling by the animal. Previous work has suggested that the olfactory transduction machinery and excitatory-inhibitory olfactory bulb circuitry generate nonlinear population trajectories of neuronal activity that differ across odorants. Here we show that individual mitral/tufted (M/T) cells sum inputs linearly across odors and time. By decoupling odor sampling from respiration in anesthetized rats, we show that MIT cell responses to arbitrary odor waveforms and mixtures are well described by odor-specific impulse responses convolved with the odorant's temporal profile. The same impulse responses convolved with the respiratory airflow predict the classical respiration-locked firing of olfactory bulb neurons and several other reported response properties of MIT cells. These results show that the olfactory bulb linearly processes fluctuating odor inputs, thereby simplifying downstream decoding of stimulus identity and temporal dynamics.
机译:嗅觉系统会接收到由于气味羽流散布和动物主动采样而产生的间歇性和波动性输入。先前的工作表明,嗅觉传导机制和兴奋抑制性嗅觉球回路会产生不同气味物质的神经元活动的非线性种群轨迹。在这里,我们显示了单个二尖瓣/簇状(M / T)细胞跨气味和时间线性地对输入求和。通过从麻醉大鼠的呼吸中分离气味采样,我们显示出MIT细胞对任意气味波形和混合物的反应已通过与气味剂的时间分布卷积的特定于气味的冲动反应得到了很好的描述。与呼吸气流卷积的相同冲激响应预示了嗅球神经元的经典呼吸锁定放电以及其他一些报道的MIT细胞响应特性。这些结果表明,嗅球线性地处理波动的气味输入,从而简化了刺激识别和时间动态的下游解码。

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