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首页> 外文期刊>Journal of Neurophysiology >Comparison of odor receptive field plasticity in the rat olfactory bulb and anterior piriform cortex.
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Comparison of odor receptive field plasticity in the rat olfactory bulb and anterior piriform cortex.

机译:大鼠嗅球和梨状前皮层中气味感受野可塑性的比较。

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摘要

Recent work in the anterior piriform cortex (aPCX) has demonstrated that cortical odor receptive fields are highly dynamic, showing rapid changes of both firing rate and temporal patterning within relatively few inhalations of an odor, despite relatively maintained, patterned input from olfactory bulb mitral/tufted cells. The present experiment examined the precision (odor-specificity) of this receptive field plasticity and compared it with the primary cortical afferent, olfactory bulb mitral/tufted cells. Adult Long-Evans hooded rats, urethan anesthetized and freely breathing, were used for single-unit recording from mitral/tufted and aPCX layer II/III neurons. Partial mapping of receptive fields to alkane odors (pentane, heptane, and nonane) was performed before and immediately after habituation (50-s exposure) to one of the alkanes. The results demonstrated that odor habituation of aPCX responses was odor specific, with minimal cross-habituation between alkanes differing by as few as two carbons. Mitral/tufted cells, however, showed strong cross-habituation within the odor set with the most profound cross effects to carbon chains shorter than the habituating stimulus. The results suggest that although mitral/tufted cells and aPCX neurons have roughly similar odor receptive fields, aPCX neurons have significantly better odor discrimination within their receptive field. The results have important implications for understanding the underlying bases of receptive fields in olfactory system neurons and the mechanisms of odor discrimination and memory.
机译:梨状前皮质(aPCX)的最新研究表明,皮层气味吸收场具有很高的动态性,尽管嗅觉球二尖瓣/簇状细胞。本实验检查了这种感受野可塑性的精确度(气味特异性),并将其与原代皮质传入,嗅球二尖瓣/簇状细胞进行了比较。成年的Long-Evans连帽大鼠,经过尿烷麻醉并自由呼吸,用于从二尖瓣/簇状和aPCX II / III层神经元进行单单位记录。接受场对烷烃气味(戊烷,庚烷和壬烷)的部分映射是在对一种烷烃进行习惯化(暴露50s)之前和之后进行的。结果表明,aPCX反应的气味适应是特定于气味的,烷烃之间的最小交叉适应仅相差两个碳原子。然而,二尖瓣/簇状细胞在气味组中显示出强烈的交叉习性,对碳链的最深远的交叉作用比适应性刺激短。结果表明,尽管二尖瓣/簇状细胞和aPCX神经元具有大致相似的气味吸收场,但aPCX神经元在其感受区内具有明显更好的气味识别能力。该结果对理解嗅觉系统神经元感受野的潜在基础以及气味辨别和记忆的机制具有重要意义。

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