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感觉体验塑造成年新生神经元融入嗅球的过程。

Sensory experience shapes the integration of adult-born neurons into the olfactory bulb.

作者信息

Hanson Elizabeth, Swanson Jessica, Arenkiel Benjamin R

机构信息

Department of Molecular & Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.

Program in Developmental Biology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

J Nat Sci. 2017 Aug;3(8).

Abstract

Olfaction is an ancient sensory modality which is heavily involved in viscerally-important tasks like finding food and identifying mates. Olfactory processing involves interpreting stimuli from a non-continuous odor space, and translating them into an organized pattern of neuronal activity in the olfactory bulb. Additionally, olfactory processing is rapidly modulated by behavioral states and vice versa. This implies strong bidirectional neuromodulation between the olfactory bulb and other brain regions that include the cortex, hippocampus, and basal forebrain. Intriguingly, the olfactory bulb is one of the only brain regions where adult-born neurons are integrated into existing networks throughout life. The ongoing integration of adult-born neurons is known to be important for olfactory processing, odor discrimination, and odor learning. Furthermore, the survival and integration of the adult-born neurons is regulated by neuromodulatory signaling, sensory experience, and olfactory learning. Studies making use of new genetic markers to label and manipulate immature adult-born neurons reveal an increase in their population response to odors as they mature. Importantly, this reflects a period of developmental plasticity where adult-born neurons are especially sensitive to sensory experience and olfactory learning. In this review, we discuss the contribution of adult neurogenesis to olfactory bulb plasticity and information processing, with a focus on the developmental plasticity of adult born neurons, and how it is influenced by sensory experience and olfactory learning. Ultimately, recent studies raise important questions about behavioral-state-dependent effects on adult-born neurons, and the consequences of neuromodulation on the developmental plasticity of newborn neurons in the olfactory bulb.

摘要

嗅觉是一种古老的感觉方式,在寻找食物和识别配偶等对内脏至关重要的任务中发挥着重要作用。嗅觉处理涉及解读来自非连续气味空间的刺激,并将其转化为嗅球中神经元活动的有组织模式。此外,嗅觉处理会受到行为状态的快速调节,反之亦然。这意味着嗅球与包括皮层、海马体和基底前脑在内的其他脑区之间存在强大的双向神经调节。有趣的是,嗅球是成年后仍有新生神经元终生整合到现有神经网络中的少数脑区之一。已知成年新生神经元的持续整合对嗅觉处理、气味辨别和气味学习很重要。此外,成年新生神经元的存活和整合受神经调节信号、感觉经验和嗅觉学习的调控。利用新的基因标记来标记和操纵未成熟的成年新生神经元的研究表明,随着它们的成熟,其对气味的群体反应会增加。重要的是,这反映了一个发育可塑性时期,在此期间成年新生神经元对感觉经验和嗅觉学习特别敏感。在这篇综述中,我们讨论成年神经发生对嗅球可塑性和信息处理的贡献,重点关注成年新生神经元的发育可塑性,以及它如何受到感觉经验和嗅觉学习的影响。最终,最近的研究提出了关于行为状态对成年新生神经元的依赖性影响,以及神经调节对嗅球新生神经元发育可塑性的后果的重要问题。

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