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Rewiring the Olfactory Bulb:Changes in Odor Maps follwing Recovery from Nerve Transection

机译:重新布线嗅球:从神经横断恢复后,气味图的变化

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Recent studies have shown that axons from olfactory receptor subtypes converge onto glomeruli in fixed positions within the olfactory bulb.Different receptor subtypes project to different glomeruli,forming a spatial distribution of odor information or 'odor maps' Olfactory receptor neurons are continuously replaced throughout the life span of an animal,yet they preserve this highly localized mapping of receptor subtypes.In this study we used a transgenic mouse (P2-IRES-tau-lacZ0 to map axons from a single rec4eptor subtype (P2 receptors) in order to determine if regenerating axons were able to re-establish the P2 receptor may following nerve transection.Results confirm that P2 receptor axons retain their capacity to grow back to the olfactory bulb and converge onto glomeruli following nerve transection.However,the location and number of convergence sites was significantly altered compared to the control map.This change in the spatial distribution of axons alters the topography of odor mapping and has important implications for the processing of olfactory information.Findings from this study may explain why animals recovering from nerve injury require odor training before odor discrimination is restored.Future studies of olfactory receptor mapping could prove helpful in planning statetgies to rewire connections in the brain and to restore function following injury or neurological disease.
机译:最近的研究表明,嗅觉受体亚型的轴突会在嗅球内的固定位置汇聚到肾小球上。不同的受体亚型投射到不同的肾小球上,形成气味信息或``气味图''的空间分布,嗅觉受体神经元在整个生命中不断被替换。在本研究中,我们使用转基因小鼠(P2-IRES-tau-lacZ0从单个rec4eptor亚型(P2受体)绘制轴突,以确定是否再生轴突能够在神经横断后重建P2受体。结果证实,P2受体轴突在神经横断后仍能重新生长到嗅球并汇聚到肾小球上。但是,会聚部位和位置明显与对照图相比有所改变。轴突的空间分布变化会改变气味的形貌这项研究的发现可能可以解释为什么从神经损伤中恢复过来的动物为什么要在恢复气味识别之前就需要进行气味训练。嗅觉受体作图的未来研究可能有助于计划状态以重新布线连接嗅觉。并在受伤或神经系统疾病后恢复大脑功能。

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