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本文引用的文献

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Learning capabilities enhanced in harsh environments: a common garden approach.在恶劣环境中增强学习能力:一种通用的方法。
Proc Biol Sci. 2010 Oct 22;277(1697):3187-93. doi: 10.1098/rspb.2010.0630. Epub 2010 Jun 2.
2
Adult neurogenesis: integrating theories and separating functions.成人神经发生:整合理论与分离功能。
Trends Cogn Sci. 2010 Jul;14(7):325-37. doi: 10.1016/j.tics.2010.04.003. Epub 2010 May 12.
3
No effect of social group composition or size on hippocampal formation morphology and neurogenesis in mountain chickadees (Poecile gambeli).社会群体组成或大小对山雀(Poecile gambeli)海马结构形态和神经发生没有影响。
Dev Neurobiol. 2010 Jun;70(7):538-47. doi: 10.1002/dneu.20795.
4
Is bigger always better? A critical appraisal of the use of volumetric analysis in the study of the hippocampus.大就一定好吗?对使用容积分析研究海马体的批判性评价。
Philos Trans R Soc Lond B Biol Sci. 2010 Mar 27;365(1542):915-31. doi: 10.1098/rstb.2009.0208.
5
Ecologically relevant spatial memory use modulates hippocampal neurogenesis.生态相关的空间记忆使用调节海马神经发生。
Proc Biol Sci. 2010 Apr 7;277(1684):1071-9. doi: 10.1098/rspb.2009.1769. Epub 2009 Nov 25.
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Captivity reduces hippocampal volume but not survival of new cells in a food-storing bird.圈养会减少食籽鸟海马体的体积,但不会影响新细胞的存活。
Dev Neurobiol. 2009 Dec;69(14):972-81. doi: 10.1002/dneu.20736.
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Hippocampal volumes and neuron numbers increase along a gradient of environmental harshness: a large-scale comparison.海马体体积和神经元数量随环境恶劣程度梯度增加:一项大规模比较研究。
Proc Biol Sci. 2009 Feb 7;276(1656):401-5. doi: 10.1098/rspb.2008.1184.
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Doublecortin as a marker of adult neuroplasticity in the canary song control nucleus HVC.双皮质素作为成年金丝雀鸣唱控制核团HVC中神经可塑性的标志物。
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Behavioral shifts and action valuation in the anterior cingulate cortex.前扣带回皮质中的行为转变与行动评估
Neuron. 2008 Jan 24;57(2):314-25. doi: 10.1016/j.neuron.2007.11.031.
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BrdU immunohistochemistry for studying adult neurogenesis: paradigms, pitfalls, limitations, and validation.用于研究成体神经发生的BrdU免疫组织化学:范式、陷阱、局限性及验证
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环境恶劣对神经发生的影响:大规模比较。

The effect of environmental harshness on neurogenesis: a large-scale comparison.

机构信息

Department of Biology, University of Nevada, Reno, Nevada 89557, USA.

出版信息

Dev Neurobiol. 2011 Mar;71(3):246-52. doi: 10.1002/dneu.20847.

DOI:10.1002/dneu.20847
PMID:20949526
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3092529/
Abstract

Harsh environmental conditions may produce strong selection pressure on traits, such as memory, that may enhance fitness. Enhanced memory may be crucial for survival in animals that use memory to find food and, thus, particularly important in environments where food sources may be unpredictable. For example, animals that cache and later retrieve their food may exhibit enhanced spatial memory in harsh environments compared with those in mild environments. One way that selection may enhance memory is via the hippocampus, a brain region involved in spatial memory. In a previous study, we established a positive relationship between environmental severity and hippocampal morphology in food-caching black-capped chickadees (Poecile atricapillus). Here, we expanded upon this previous work to investigate the relationship between environmental harshness and neurogenesis, a process that may support hippocampal cytoarchitecture. We report a significant and positive relationship between the degree of environmental harshness across several populations over a large geographic area and (1) the total number of immature hippocampal neurons, (2) the number of immature neurons relative to the hippocampal volume, and (3) the number of immature neurons relative to the total number of hippocampal neurons. Our results suggest that hippocampal neurogenesis may play an important role in environments where increased reliance on memory for cache recovery is critical.

摘要

恶劣的环境条件可能对某些特征产生强烈的选择压力,例如记忆,这可能会增强适应性。增强的记忆可能对那些利用记忆寻找食物的动物的生存至关重要,因此在食物来源可能不可预测的环境中尤为重要。例如,与在温和环境中相比,在恶劣环境中储存和随后检索食物的动物可能表现出更强的空间记忆。选择增强记忆的一种方式是通过海马体,这是一个参与空间记忆的大脑区域。在之前的一项研究中,我们在食虫黑顶山雀(Poecile atricapillus)中建立了环境严重性与海马体形态之间的正相关关系。在这里,我们扩展了之前的工作,以研究环境严酷度与神经发生之间的关系,神经发生是支持海马体细胞结构的过程。我们报告了在一个大地理区域的多个种群中,环境严酷程度与(1)不成熟海马神经元的总数,(2)相对于海马体体积的不成熟神经元数量,以及(3)相对于海马体神经元总数的不成熟神经元数量之间存在显著的正相关关系。我们的结果表明,海马体神经发生可能在记忆对缓存恢复的依赖性增加的环境中发挥重要作用。