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先天性失明小鼠模型中更好的嗅觉表现和更大的嗅球

Better Olfactory Performance and Larger Olfactory Bulbs in a Mouse Model of Congenital Blindness.

作者信息

Touj Sara, Cloutier Samie, Jemâa Amel, Piché Mathieu, Bronchti Gilles, Al Aïn Syrina

机构信息

Department of Anatomy, Université du Québec à Trois-Rivières, Boul. des Forges, Trois-Rivières, Canada.

出版信息

Chem Senses. 2020 Oct 9;45(7):523-531. doi: 10.1093/chemse/bjaa052.

Abstract

It is well established that early blindness results in enhancement of the remaining nonvisual sensory modalities accompanied by functional and anatomical brain plasticity. While auditory and tactile functions have been largely investigated, the results regarding olfactory functions remained less explored and less consistent. In the present study, we investigated olfactory function in blind mice using 3 tests: the buried food test, the olfactory threshold test, and the olfactory performance test. The results indicated better performance of blind mice in the buried food test and odor performance test while there was no difference in the olfactory threshold test. Using histological measurements, we also investigated if there was anatomical plasticity in the olfactory bulbs (OB), the most salient site for olfactory processing. The results indicated a larger volume of the OB driven by larger glomerular and granular layers in blind mice compared with sighted mice. Structural plasticity in the OB may underlie the enhanced olfactory performance in blind mice.

摘要

众所周知,早期失明会导致剩余非视觉感觉模态增强,并伴有大脑功能和结构可塑性。虽然听觉和触觉功能已得到大量研究,但嗅觉功能方面的研究结果仍较少且不一致。在本研究中,我们使用三项测试来研究盲鼠的嗅觉功能:埋藏食物测试、嗅觉阈值测试和嗅觉表现测试。结果表明,盲鼠在埋藏食物测试和气味表现测试中的表现更好,而在嗅觉阈值测试中没有差异。通过组织学测量,我们还研究了嗅觉处理的最主要部位嗅球(OB)是否存在结构可塑性。结果表明,与有视力的小鼠相比,盲鼠的嗅球体积更大,这是由更大的肾小球层和颗粒层驱动的。嗅球的结构可塑性可能是盲鼠嗅觉表现增强的基础。

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