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视觉皮层发育过程中,向亚板层和皮质板的突触输入模式的变化。

Changing patterns of synaptic input to subplate and cortical plate during development of visual cortex.

作者信息

Friauf E, Shatz C J

机构信息

Department of Neurobiology, Stanford University School of Medicine, California 94305.

出版信息

J Neurophysiol. 1991 Dec;66(6):2059-71. doi: 10.1152/jn.1991.66.6.2059.

Abstract
  1. The development of excitatory activation in the visual cortex was studied in fetal and neonatal cats. During fetal and neonatal life, the immature cerebral cortex (the cortical plate) is sandwiched between two synaptic zones: the marginal zone above, and an area just below the cortical plate, the subplate. The subplate is transient and disappears by approximately 2 mo postnatal. Here we have investigated whether the subplate and the cortical plate receive functional synaptic inputs in the fetus, and when the adultlike pattern of excitatory synaptic input to the cortical plate appears during development. 2. Extracellular field potential recording to electrical stimulation of the optic radiation was performed in slices of cerebral cortex maintained in vitro. Laminar profiles of field potentials were converted by the current-source density (CSD) method to identify the spatial and temporal distribution of neuronal excitation within the subplate and the cortical plate. 3. Between embryonic day 47 (E47) and postnatal day 28 (P28; birth, E65), age-related changes occur in the pattern of synaptic activation of neurons in the cortical plate and the subplate. Early in development, at E47, E57, and P0, short-latency (probably monosynaptic) excitation is most obvious in the subplate, and longer latency (presumably polysynaptic) excitation can be seen in the cortical plate. Synaptic excitation in the subplate is no longer apparent at P21 and P28, a time when cell migration is finally complete and the cortical layers have formed. By contrast, excitation in the cortical plate is prominent in postnatal animals, and the temporal and spatial pattern has changed. 4. The adultlike sequence of synaptic activation in the different cortical layers can be seen by P28. It differs from earlier ages in several respects. First, short-latency (probably monosynaptic) excitation can be detected in cortical layer 4. Second, multisynaptic, long-lasting activation is present in layers 2/3 and 5. 5. Our results show that the subplate zone, known from anatomic studies to be a synaptic neurophil during development, receives functional excitatory inputs from axons that course in the developing white matter. Because the only mature neurons present in this zone are the subplate neurons, we conclude that subplate neurons are the principal, if not the exclusive, recipients of this input. The results suggest further that the excitation in the subplate in turn is relayed to neurons of the cortical plate via axon collaterals of subplate neurons.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 研究了胎儿和新生猫视觉皮层兴奋性激活的发育情况。在胎儿期和新生儿期,未成熟的大脑皮层(皮质板)夹在两个突触区之间:上方的边缘区和皮质板下方紧邻的一个区域,即亚板层。亚板层是暂时的,在出生后约2个月时消失。在此,我们研究了亚板层和皮质板在胎儿期是否接受功能性突触输入,以及在发育过程中皮质板何时出现类似成年的兴奋性突触输入模式。2. 对体外保存的大脑皮层切片进行对视辐射电刺激的细胞外场电位记录。通过电流源密度(CSD)方法转换场电位的层状分布图,以确定亚板层和皮质板内神经元兴奋的空间和时间分布。3. 在胚胎第47天(E47)至出生后第28天(P28;出生为E65)之间,皮质板和亚板层中神经元的突触激活模式出现与年龄相关的变化。在发育早期,即E47、E57和P0时,短潜伏期(可能是单突触的)兴奋在亚板层最为明显,而在皮质板中可看到较长潜伏期(可能是多突触的)兴奋。在P21和P28时,亚板层中的突触兴奋不再明显,此时细胞迁移最终完成,皮质层已形成。相比之下,皮质板中的兴奋在出生后的动物中很突出,且时间和空间模式已发生变化。4. 到P28时,可以看到不同皮质层中类似成年的突触激活顺序。它在几个方面与早期年龄不同。首先,在皮质第4层可检测到短潜伏期(可能是单突触的)兴奋。其次,在第2/3层和第5层存在多突触、持久的激活。5. 我们的结果表明,从解剖学研究可知在发育过程中作为突触神经纤维网的亚板层区域,接受来自在发育中的白质中走行的轴突的功能性兴奋性输入。由于该区域仅有的成熟神经元是亚板层神经元,我们得出结论,亚板层神经元是这种输入的主要(如果不是唯一的)接受者。结果还表明,亚板层中的兴奋继而通过亚板层神经元的轴突侧支传递给皮质板的神经元。(摘要截选至400字)

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