Salcedo Ernesto, Zhang Chunbo, Kronberg Eugene, Restrepo Diego
Department of Cell and Developmental Biology, University of Colorado School of Medicine, Mail Stop 8108 PO Box 6511, Aurora, CO 80045, USA.
Chem Senses. 2005 Sep;30(7):615-26. doi: 10.1093/chemse/bji055. Epub 2005 Sep 1.
Odor quality is thought to be encoded by the activation of partially overlapping subsets of glomeruli in the olfactory bulb (odor maps). Mouse genetic studies have demonstrated that olfactory sensory neurons (OSNs) expressing a particular olfactory receptor target their axons to a few individual glomeruli in the bulb. While the specific targeting of OSN axons provides a molecular underpinning for the odor maps, much remains to be understood about the relationship between the functional and molecular maps. In this article, we ask the question whether intensive training of mice in a go/no-go operant conditioning odor discrimination task affects odor maps measured by determining c-fos up-regulation in periglomerular cells. Data analysis is performed using a newly developed suite of computational tools designed to systematically map functional and molecular features of glomeruli in the adult mouse olfactory bulb. This suite provides the necessary tools to process high-resolution digital images, map labeled glomeruli, visualize odor maps, and facilitate statistical analysis of patterns of identified glomeruli in the olfactory bulb. The software generates odor maps (density plots) based on glomerular activity, density, or area. We find that training up-regulates the number of glomeruli that become c-fos positive after stimulation with ethyl acetate.
气味质量被认为是由嗅球中部分重叠的肾小球亚群的激活所编码的(气味图谱)。小鼠遗传学研究表明,表达特定嗅觉受体的嗅觉感觉神经元(OSN)将其轴突靶向到嗅球中的少数几个单独的肾小球。虽然OSN轴突的特异性靶向为气味图谱提供了分子基础,但关于功能图谱和分子图谱之间的关系仍有许多有待了解。在本文中,我们提出一个问题,即在去/不去操作性条件气味辨别任务中对小鼠进行强化训练是否会影响通过测定球周细胞中c-fos上调来测量的气味图谱。使用一套新开发的计算工具进行数据分析,这些工具旨在系统地绘制成年小鼠嗅球中肾小球的功能和分子特征。这套工具提供了处理高分辨率数字图像、绘制标记的肾小球、可视化气味图谱以及促进对嗅球中已识别肾小球模式进行统计分析的必要工具。该软件根据肾小球活性、密度或面积生成气味图谱(密度图)。我们发现训练会上调在用乙酸乙酯刺激后变为c-fos阳性的肾小球数量。