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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Number estimates of neuronal phenotypes in layer II of the medial entorhinal cortex of rat and mouse.
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Number estimates of neuronal phenotypes in layer II of the medial entorhinal cortex of rat and mouse.

机译:大鼠和小鼠内侧内嗅皮层第二层中神经元表型的数目估计。

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Modelling entorhinal function or evaluating the consequences of neuronal losses which accompany neurodegenerative disorders requires detailed information on the quantitative cellular composition of the normal entorhinal cortex. Using design-based stereological methods, we estimated the numbers, proportions, densities and sectional areas of layer II cells in the medial entorhinal area (MEA), and its constituent caudal entorhinal (CE) and medial entorhinal (ME) fields, in the rat and mouse. We estimated layer II of the MEA to contain approximately 58,000 neurons in the rat and approximately 24,000 neurons in the mouse. Field CE accounted for more than three-quarters of the total neuron population in both species. In the rat, layer II of the MEA is comprised of 38% ovoid stellate cells, 29% polygonal stellate cells and 17% pyramidal cells. The remainder is comprised of much smaller populations of horizontal bipolar, tripolar, oblique pyramidal and small round cells. In the mouse, MEA layer II is comprised of 52% ovoid stellate cells, 22% polygonal stellate cells and 14% pyramidal cells. Significant species differences in the proportions of ovoid and polygonal stellate cells suggest differences in physiological and functional properties. The majority of MEA layer II cells contribute to the entorhinal-hippocampal pathways. The degree of divergence from MEA layer II cells to the dentate granule cells was similar in the rat and mouse. In both rat and mouse, the only dorsoventral difference we observed is a gradient in polygonal stellate cell sectional area, which may relate to the dorsoventral increase in the size and spacing of individual neuronal firing fields. In summary, we found species-specific cellular compositions of MEA layer II, while, within a species, quantitative parameters other than cell size are stable along the dorsoventral and mediolateral axis of the MEA.
机译:对内嗅神经功能进行建模或评估神经退行性疾病伴随的神经元丢失的后果,需要有关正常内嗅神经皮质的定量细胞组成的详细信息。使用基于设计的立体方法,我们估计了大鼠内侧内脏区域(MEA)及其构成的尾部内脏(CE)和内侧内脏(ME)区域中第II层细胞的数量,比例,密度和截面积和鼠标。我们估计MEA的第二层在大鼠中包含约58,000个神经元,在小鼠中包含约24,000个神经元。在这两种物种中,田间CE占神经元总数的四分之三以上。在大鼠中,MEA的第二层由38%的卵形星状细胞,29%的多边形星状细胞和17%的锥体细胞组成。其余的则由水平双极,三极,斜锥体和小的圆形细胞组成。在小鼠中,MEA层II由52%的卵形星状细胞,22%的多边形星状细胞和14%的锥体细胞组成。卵圆形和多边形星状细胞比例的显着物种差异表明生理和功能特性存在差异。大部分MEA第II层细胞有助于内嗅-海马通路。在大鼠和小鼠中,从MEA II层细胞到齿状颗粒细胞的分化程度相似。在大鼠和小鼠中,我们观察到的唯一的背腹差异是多边形星状细胞横截面积的梯度,这可能与单个神经元激发场的大小和间距的背腹增大有关。总而言之,我们发现了MEA层II的特定物种细胞组成,而在一个物种内,除细胞大小外的定量参数沿MEA的腹腹和后外侧轴是稳定的。

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