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首页> 外文期刊>The Journal of Comparative Neurology >Time course of cerebellar morphological development in postnatal ferrets: ontogenetic and comparative perspectives.
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Time course of cerebellar morphological development in postnatal ferrets: ontogenetic and comparative perspectives.

机译:产后雪貂小脑形态发育的时程:个体发育和比较观点。

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摘要

We provide the first systematic description of the morphological ontogenesis of the ferret cerebellum and compare its relative time-course to that of the rat cerebellum. Overall cerebellar size, foliation, and thickness of cortical layers were quantified and Purkinje cell morphology was characterized at 24 timepoints in ferrets from postnatal day (P)1 to P63. The ferret cerebellum was substantially larger than that of the rat and had a much longer developmental period. In ferrets, Purkinje cells were dispersed into a monolayer by P9, the formation of folia declined abruptly around P20, and the external granular layer peaked in thickness around P22 and disappeared by P56. Timepoints of corresponding relative developmental maturity of the quantified architectural features of rat and ferret cerebella were determined and their relationship was analyzed by linear regression. The time-conversion equation derived, describing the relationship between cerebellar morphogenesis in the two species, had a determination coefficient (r2) of 0.95. Conspicuously, the equation predicted with high accuracy the timing of structural changes in individual Purkinje cells in the ferret cerebellum. The conversion equation should be useful for precise quantitative translation of data between studies of ferret and rat cerebellum and for comparisons between development of motor and sensory structures and functions in ferrets. The degree of similarity in the time-courses of cerebellar development in two distantly related mammals makes explicit in quantitative terms how remarkably conserved the cerebellum is in phylogenesis. Therefore, the methodology should be applicable to precise quantitative conversions of cerebellar developmental time-courses also between other species.
机译:我们提供了雪貂小脑形态本体的第一个系统描述,并比较了它与大鼠小脑的相对时程。从出生后(P)1到P63,在雪貂的24个时间点对小脑的整体小脑大小,叶片和皮质层的厚度进行了量化,并对浦肯野细胞的形态进行了表征。雪貂小脑比老鼠大得多,并且发育期更长。在雪貂中,Purkinje细胞通过P9分散成单层,在P20附近叶面的形成突然减少,并且外部颗粒层的厚度在P22附近达到峰值,而在P56处消失。确定了大鼠和雪貂小脑的定量结构特征的相应相对发育成熟的时间点,并通过线性回归分析了它们之间的关系。得出的描述两个物种小脑形态发生之间关系的时间转换方程的测定系数(r2)为0.95。值得注意的是,该方程式可以高精度地预测雪貂小脑中各个Purkinje细胞结构变化的时间。该转换方程对于雪貂和大鼠小脑研究之间的数据的精确定量转换以及雪貂运动和感觉结构与功能的发展之间的比较应该是有用的。在两个遥远相关的哺乳动物中,小脑发育的时间过程中的相似程度从数量上明确表明了小脑在系统发育中的保守程度。因此,该方法应适用于其他物种之间小脑发育时程的精确定量转换。

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