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首页> 外文期刊>Neuron >Spatio-temporal dynamics of odor representations in the mammalian olfactory bulb.
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Spatio-temporal dynamics of odor representations in the mammalian olfactory bulb.

机译:哺乳动物嗅球中气味表示的时空动态。

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We explored the spatio-temporal dynamics of odor-evoked activity in the rat and mouse main olfactory bulb (MOB) using voltage-sensitive dye imaging (VSDI) with a new probe. The high temporal resolution of VSDI revealed odor-specific sequences of glomerular activation. Increasing odor concentrations reduced response latencies, increased response amplitudes, and recruited new glomerular units. However, the sequence of glomerular activation was maintained. Furthermore, we found distributed MOB activity locked to the nasal respiration cycle. The spatial distribution of its amplitude and phase was heterogeneous and changed by sensory input in an odor-specific manner. Our data show that in the mammalian olfactory bulb, odor identity and concentration are represented by spatio-temporal patterns, rather than spatial patterns alone.
机译:我们使用带有新探针的电压敏感染料成像(VSDI)探索了大鼠和小鼠主要嗅球(MOB)中的气味诱发活动的时空动态。 VSDI的高时间分辨率揭示了肾小球活化的气味特异性序列。气味浓度的增加降低了反应潜伏期,增加了反应幅度,并招募了新的肾小球单位。但是,保持了肾小球激活的顺序。此外,我们发现分布式MOB活动被锁定在鼻呼吸周期。它的振幅和相位的空间分布是异质的,并且通过感觉输入以特定于气味的方式改变。我们的数据表明,在哺乳动物嗅球中,气味的身份和浓度由时空模式代表,而不是仅由空间模式代表。

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