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混合气味成分的阻断与检测

Blocking and the detection of odor components in blends.

作者信息

Hosler J S, Smith B H

机构信息

Department of Entomology, Ohio State University, Columbus, OH 43210-1220, USA.

出版信息

J Exp Biol. 2000 Sep;203(Pt 18):2797-806. doi: 10.1242/jeb.203.18.2797.

Abstract

Recent studies of olfactory blocking have revealed that binary odorant mixtures are not always processed as though they give rise to mixture-unique configural properties. When animals are conditioned to one odorant (A) and then conditioned to a mixture of that odorant with a second (X), the ability to learn or express the association of X with reinforcement appears to be reduced relative to animals that were not preconditioned to A. A recent model of odor-based response patterns in the insect antennal lobe predicts that the strength of the blocking effect will be related to the perceptual similarity between the two odorants, i.e. greater similarity should increase the blocking effect. Here, we test that model in the honeybee Apis mellifera by first establishing a generalization matrix for three odorants and then testing for blocking between all possible combinations of them. We confirm earlier findings demonstrating the occurrence of the blocking effect in olfactory learning of compound stimuli. We show that the occurrence and the strength of the blocking effect depend on the odorants used in the experiment. In addition, we find very good agreement between our results and the model, and less agreement between our results and an alternative model recently proposed to explain the effect.

摘要

近期对嗅觉阻断的研究表明,二元气味混合物并不总是像会产生混合物独特构型特性那样被处理。当动物先适应一种气味剂(A),然后再适应该气味剂与另一种气味剂(X)的混合物时,相对于未预先适应A的动物,学习或表现出X与强化物之间关联的能力似乎会降低。最近一个关于昆虫触角叶中基于气味的反应模式的模型预测,阻断效应的强度将与两种气味剂之间的感知相似性相关,即更高的相似性应会增强阻断效应。在此,我们通过首先为三种气味剂建立一个泛化矩阵,然后测试它们所有可能组合之间的阻断情况,在蜜蜂(Apis mellifera)中对该模型进行了检验。我们证实了早期的研究结果,即证明了复合刺激嗅觉学习中存在阻断效应。我们表明,阻断效应的发生和强度取决于实验中使用的气味剂。此外,我们发现我们的结果与该模型非常吻合,而与最近为解释该效应而提出的另一种模型的吻合度较低。

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