Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics-Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.
J Neurosci. 2010 Dec 8;30(49):16662-72. doi: 10.1523/JNEUROSCI.4400-10.2010.
The mammalian piriform cortex receives direct synaptic input from the olfactory bulb and is likely the locus for the formation of odor percept. It remains unclear how individual cortical neurons encode olfactory information in unanesthetized animals. By single-cell recordings from head-restrained awake mice, we studied the odor response profiles of individual neurons in the anterior piriform cortex (aPCX). Neurons were juxtacellularly labeled, and their cell types were determined by their morphology and neurotransmitter phenotypes. We found a considerable level of variability in selectivity patterns among pyramidal neurons (PNs). Approximately one-quarter of PNs were broadly activated by structurally dissimilar odorants, whereas the excitations to the rest of PNs were highly selective. Broad inhibition was only observed from a subpopulation of PNs. GABAergic neurons displayed nonselective excitatory responses to test odorants and rarely exhibited inhibition. In contrast, non-GABAergic nonpyramidal neurons in the deep layer tended to be strongly inhibited by multiple different odorants. Our findings suggest that odor representation is accomplished by both broadly tuned and narrow-tuned PNs in the aPCX of awake animals. In addition, various types of interneurons may play different roles in the intracortical processing of olfactory information.
哺乳动物的梨状皮层接收来自嗅球的直接突触输入,可能是形成气味感知的位置。在未麻醉的动物中,单个皮质神经元如何编码嗅觉信息尚不清楚。通过对头固定清醒小鼠的单细胞记录,我们研究了前梨状皮层(aPCX)中单个神经元的气味反应特征。神经元被共聚焦标记,并通过其形态和神经递质表型确定其细胞类型。我们发现,在选择性模式方面,锥体神经元(PNs)之间存在相当大的可变性。大约四分之一的 PNs 被结构上不同的气味剂广泛激活,而其余 PNs 的兴奋具有高度选择性。仅观察到来自 PNs 的亚群的广泛抑制。GABA 能神经元对测试气味剂表现出非选择性的兴奋反应,很少表现出抑制。相比之下,深层的非 GABA 能非锥体神经元往往被多种不同的气味剂强烈抑制。我们的发现表明,在清醒动物的 aPCX 中,气味的表示是由广泛调谐和窄调谐的 PNs 完成的。此外,各种类型的中间神经元可能在嗅觉信息的皮质内处理中发挥不同的作用。