首页> 外文期刊>Behavioural Brain Research: An International Journal >Social and spatial changes induce multiple survival regimes for new neurons in two regions of the adult brain: An anatomical representation of time?
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Social and spatial changes induce multiple survival regimes for new neurons in two regions of the adult brain: An anatomical representation of time?

机译:社会和空间的变化在成年大脑的两个区域中诱导了新神经元的多种生存方式:时间的解剖表示?

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Male zebra finches reared in family groups were housed initially in small indoors cages with three other companions. At 4-5 months of age these birds were treated with [(3)H]-thymidine and then placed in large outdoors aviaries by themselves or with other zebra finches. Counts of new neurons were made 40, 60 and 150 days after the change in housing. Recruitment of new neurons in nidopallium caudale (NC) was higher than in the hippocampal complex (HC); but in both brain regions it was higher in communally housed birds than in birds housed singly, suggesting that the complexity of the social setting affects new neuron survival. In addition, the new neurons lived longer in rostral NC than in its caudal counterpart, and neuronal turnover was faster and more significant in NC than in HC. Albeit indirect, this may be the first suggestion that different parts of the brain upgrade memories at different time intervals, yielding an anatomical representation of time.
机译:在家庭中饲养的雄性斑马雀最初与其他三个同伴一起饲养在小型室内笼中。在4-5个月大时,将这些鸟用[(3)H]-胸腺嘧啶脱氧核苷处理,然后单独或与其他斑马雀一起放在大型户外鸟舍中。房屋变更后40、60和150天计数了新的神经元。尼多帕尔考代尔(NC)的新神经元招募高于海马复合体(HC);但是在两个大脑区域中,集体饲养的鸟类比单独饲养的鸟类要高,这表明社交环境的复杂性会影响新神经元的存活。此外,新神经元在喙状NC中的存活时间比尾神经中的更长,并且NC中的神经元更新比HC中更快和更重要。尽管是间接的,但这可能是大脑的不同部分以不同的时间间隔升级记忆,产生时间的解剖表示的第一个建议。

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