新皮层
细胞周期
神经科学
层流
过程(计算)
生物
细胞生物学
区间(图论)
细胞
人口
细胞周期进展
体内
细胞生长
生物系统
计算机科学
遗传学
数学
物理
机械
医学
组合数学
操作系统
环境卫生
出处
期刊:Cerebral Cortex
[Oxford University Press]
日期:2003-05-22
卷期号:13 (6): 592-598
被引量:189
标识
DOI:10.1093/cercor/13.6.592
摘要
The neurons of the neocortex are generated over a 6 day neuronogenetic interval that comprises 11 cell cycles. During these 11 cell cycles, the length of cell cycle increases and the proportion of cells that exits (Q) versus re-enters (P) the cell cycle changes systematically. At the same time, the fate of the neurons produced at each of the 11 cell cycles appears to be specified at least in terms of their laminar destination. As a first step towards determining the causal interrelationships of the proliferative process with the process of laminar specification, we present a two-pronged approach. This consists of (i) a mathematical model that integrates the output of the proliferative process with the laminar fate of the output and predicts the effects of induced changes in Q and P during the neuronogenetic interval on the developing and mature cortex and (ii) an experimental system that allows the manipulation of Q and P in vivo. Here we show that the predictions of the model and the results of the experiments agree. The results indicate that events affecting the output of the proliferative population affect both the number of neurons produced and their specification with regard to their laminar fate.
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