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新生大鼠大脑皮质发育中的器官型大共培养物中的自发性神经元放电模式

Spontaneous neuronal discharge patterns in developing organotypic mega-co-cultures of neonatal rat cerebral cortex.

作者信息

Baker Robert E, Corner Michael A, van Pelt Jaap

机构信息

Netherlands Institute for Neuroscience, Meibergdreef 33, 1105-AZ Amsterdam, The Netherlands.

出版信息

Brain Res. 2006 Jul 26;1101(1):29-35. doi: 10.1016/j.brainres.2006.05.028. Epub 2006 Jun 19.

Abstract

Sagittal slices of neonatal rat neocortex, extending from the prefrontal to the occipital area, were cultured separately or in pairs, oriented in such a way that axons projecting from the ventricular surface of each explant could innervate the other one. Functional connections were made between as well as within the explants, and spontaneous field potentials and associated action potentials occurred in variable bursts, and with varying degrees of synchrony. Spike-train analysis revealed that the activity patterns seen in these 'mega' co-cultures closely mimic 'tracé alternant' patterns, consisting of trains of burst discharges recurring several times per minute, which are characteristic for the immature intact cerebral cortex during slow-wave sleep. The prefrontal region was consistently less active than the occipital area but the two were qualitatively similar with respect to their patterns of neuronal firing. Isolated mega-cultures, on the other hand, despite their large size, exhibited only intermittent brief bursts that closely resembled those observed both in occipital cortex tissue fragments and in dissociated cell cultures. The mega-co-culture preparation thus appears to give the best currently available approximation to intrinsic cerebral discharge patterns in vivo.

摘要

新生大鼠从额叶到枕叶区域的矢状切片,单独培养或成对培养,培养时使每个外植体心室表面伸出的轴突能够支配另一个外植体。外植体之间以及内部形成了功能连接,自发场电位和相关动作电位以不同的爆发形式出现,且同步程度各异。峰电位序列分析表明,在这些“大型”共培养物中观察到的活动模式与“交替追踪”模式非常相似,“交替追踪”模式由每分钟重复数次的爆发性放电序列组成,这是未成熟完整大脑皮层在慢波睡眠期间的特征。额叶区域的活动始终低于枕叶区域,但两者在神经元放电模式上在性质上相似。另一方面,孤立的大型培养物,尽管体积很大,但仅表现出间歇性的短暂爆发,与在枕叶皮质组织碎片和离体细胞培养物中观察到的爆发非常相似。因此,大型共培养物制备似乎最接近目前体内大脑固有放电模式。

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