首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Formation and growth of the cerebral convolutions. I. Postnatal development of the median-suprasylvian gyrus and adjoining sulci in the cat.
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Formation and growth of the cerebral convolutions. I. Postnatal development of the median-suprasylvian gyrus and adjoining sulci in the cat.

机译:脑卷积的形成和生长。 I.猫中正中上睑回和邻近沟的产后发育。

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摘要

The postnatal development of these median-suprasylvian gyrus and adjoining sulci was studied in cats 1, 5, 15, 25 days and six months old. The median-suprasylvian gyrus (G.S.-Syl.) grows according to a lateral to medial intracortical gradient in which the adjoining sulci, sulcus lateralis (S.L.) and median-suprasylvian sulcus (S.S-Syl.), are considered to be fixed zones because of their relatively constant distance from the ventricular wall throughout the development. Thus the formation of the S.L. is a consequence of the increase in volume of the gyral region adjacent to this developing sulcus, whereas there is a smaller increase in volume of the gyral region adjacent to the almost fully formed, at birth, S.S-Syl. This increase in volume is associated with a regional increase in the number of nerve cells and with an increase in the density of neurons in the region adjacent to the S.L. as it fades in the region adjacent to the S.S-Syl. This process takes place from Day 1 until about Day 25 of postnatal life. An intralaminar displacement of nerve cells also occurs during the process of cortical folding:nerve cell columns converge towards the hilum in the gyral region, but the columns progressively curve following the concavity of the infolding in the sulcal zones; as a result, although the length of nerve cell columns tends to be preserved to some extent along the gyrus, the cerebral cortex is progressively thinner in the sulci than in the gyri and the molecular layer is progressively thicker in the former than in the latter. This process also occurs following a lateral to medial gradient in the G.S.-Syl. The present observations may suggest that cortical folding is largely dependent on intracortical mechanical forces but the regular distribution of the sulci, together with the orderly spatio-temporal pattern of gyral growth, points to the conclusion that this process may be controlled by extracortical signals.
机译:在1、5、15、25天和6个月大的猫中研究了这些中上s上回和毗邻的沟的产后发育。正中上s回(GS-Syl。)根据外侧至内侧皮质内梯度生长,其中相邻的沟,外侧沟(SL)和中上s沟(SS-Syl。)被视为固定区域,因为在整个发育过程中它们与心室壁相对恒定的距离。这样就形成了S.L.这是由于邻近发育中的沟的回旋区域的体积增加的结果,而邻近于几乎完全形成的出生S.Syl的回旋区域的体积增加较小。体积的增加与神经细胞数量的区域性增加以及与S.L相邻区域中神经元密度的增加有关。因为它在与S.Syl相邻的区域逐渐消失此过程从出生后的第1天开始到第25天左右。在皮层折叠的过程中也会发生神经细胞的层内移位:神经细胞柱在回旋区朝着肺门汇聚,但随着沟区域的凹陷而逐渐弯曲。结果,尽管神经细胞列的长度倾向于沿回旋在某种程度上得以保留,但是脑沟中的皮质比回旋中的逐渐变薄,并且前者的分子层比后者的分子层逐渐变厚。该过程也发生在G.S.-Syl中的横向到中间梯度之后。目前的观察结果可能表明,皮质折叠在很大程度上取决于皮质内机械力,但是龈沟的规则分布以及回旋生长的有序时空模式,表明这一过程可能受皮质外信号控制。

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