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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Olfactory discrimination learning increases the survival of adult-born neurons in the olfactory bulb.
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Olfactory discrimination learning increases the survival of adult-born neurons in the olfactory bulb.

机译:嗅觉歧视学习增加了嗅灯泡中成人出生神经元的存活。

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摘要

In the olfactory bulb (OB), new neurons are added throughout life, forming an integral part of the functioning circuit. Yet only some of them survive more than a month. To determine whether this turnover depends on olfactory learning, we examined the survival of adult newborn cells labeled with the cell division marker BrdU, administered before learning in an olfactory discrimination task. We report that discrimination learning increases the number of newborn neurons in the adult OB by prolonging their survival. Simple exposure to the pair of olfactory cues did not alter neurogenesis, indicating that the mere activation of sensory inputs during the learning task was insufficient to alter neurogenesis. The increase in cell survival after learning was not uniformly distributed throughout angular sectors of coronal sections of the OB. Monitoring odor activation maps using patterns of Zif268 immediate early gene expression revealed that survival was greater in regions more activated by the non-reinforced odorant. We conclude that sensory activation in a learning context not only controls the total number of newborn neurons in the adult OB, but also refines their precise location. Shaping the distribution of newborn neurons by influencing their survival could optimize the olfactory information processing required for odor discrimination.
机译:在嗅球(OB),新的神经元在整个生命中加入,在形成功能电路的一个整体部分。然而,只有一些生存一个多月。为了确定这是否成交依赖于嗅觉的学习,我们检查标记细胞分裂标记BrdU的成人新生细胞的存活,在嗅觉辨别学习任务之前给予。我们报告歧视学习通过延长他们的生存增加了成人OB的新生神经元的数量。简单暴露于嗅觉对线索没有改变神经发生,表明感觉输入的学习任务时,仅仅激活不足以改变神经发生。在学习之后的细胞存活的增加并非均匀地分布在OB的冠状切片的角度扇区分布。监测气味激活使用Zif268的图案映射立即早期基因表达表明,生存是更大的由非增强加臭剂更活化区域。我们的结论在学习上下文感知激活不仅控制在成人OB的新生神经元的总数,还提炼其准确位置。通过影响他们的生存塑造新生神经元的分布可以优化气味辨别所需的嗅觉信息处理。

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