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Cross-Species Analyses of the Cortical GABAergic and Subplate Neural Populations

机译:皮质GABA能和亚板块神经种群的跨物种分析

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摘要

Cortical GABAergic (γ-aminobutyric acidergic) neurons include a recently identified subset whose projections extend over relatively long distances in adult rodents and primates. A number of these inhibitory projection neurons are located in and above the conventionally identified white matter, suggesting their persistence from, or a correspondence with, the developmental subplate. GABAergic and subplate neurons share some unique properties unlike those of the more prevalent pyramidal neurons. To better understand the GABAergic and subplate populations, we constructed a database of neural developmental events common to the three species most frequently used in experimental studies: rat, mouse, and macaque, using data from the online database as well as GABAergic and subplate developmental data from the empirical literature. We used a general linear model to test for similarities and differences, a valid approach because the sequence of most neurodevelopmental events is remarkably conserved across mammalian species. Similarities between the two rodent populations are striking, permitting us to identify developmental dates for GABAergic and subplate neural events in rats that were previously identified only in mice, as well as the timing in mouse development for events previously identified in rats. Primate comparative data are also compelling, although slight variability in statistical error measurement indicates differences in primate GABAergic and subplate events when compared to rodents. Although human extrapolations are challenging because fewer empirical data points are available, and because human data display more variability, we also produce estimates of dates for GABAergic and subplate neural events that have not yet been, or cannot be, determined empirically in humans.
机译:皮质GABA能(γ-氨基丁酸能)神经元包括最近鉴定出的子集,其投射在成年啮齿动物和灵长类动物中延伸的距离相对较长。这些抑制性投射神经元中的许多位于常规鉴定的白质中和上方,表明它们来自发育亚板或与发育亚板相对应。与更普遍的锥体神经元不同,GABA能和亚板神经元具有一些独特的特性。为了更好地了解GABA能和亚板种群,我们使用在线数据库中的数据以及GABA能和亚板发育数据,构建了实验研究中最常使用的三种物种(大鼠,小鼠和猕猴)共有的神经发育事件数据库。来自经验文献。我们使用通用的线性模型来测试相似性和差异性,这是一种有效的方法,因为大多数神经发育事件的序列在整个哺乳动物物种中都非常保守。这两个啮齿动物种群之间的相似性令人震惊,这使我们能够确定以前仅在小鼠中鉴定的大鼠中GABA能和亚板神经事件的发育日期,以及先前在大鼠中鉴定的事件的小鼠发育时间。灵长类动物的比较数据也很引人注目,尽管与啮齿类动物相比,统计误差测量的微小差异表明灵长类动物GABA能和亚板事件的差异。尽管由于可用的经验数据点较少,并且由于人类数据显示出更多的可变性,所以人类推断具有挑战性,但我们还可以估算尚未或无法凭经验确定的GABA能和亚板神经事件的日期。

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