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新生小猫早期的膝状体皮质系统:一项电生理研究。

The geniculocortical system in the early postnatal kitten: an electrophysiological investigation.

作者信息

Beckmann R, Albus K

出版信息

Exp Brain Res. 1982;47(1):49-56. doi: 10.1007/BF00235885.

Abstract

The transmission of neuronal impulses in the central visual system in kitten 7-42 days old has been investigated using electrophysiologic techniques. It was found that shortly after birth the axonal conduction velocities in the geniculocortical, in the corticogeniculate and in the commissural pathways of areas 17, 18, and 19 are less than 1.2 m/s, increasing up to maximal 10 m/s at the end of the first postnatal month. The monosynaptic delays across geniculocortical and commissural synapses in area 17 as measured during the third and fourth postnatal week are extremely long (between 2.8 and 6.1 ms) and do not change significantly during this time. During the first postnatal month, visual cortical neurons fatigue rapidly to visual and electrical stimulation; also, the proportion of neurons receiving polysynaptic inputs is much smaller than in the adult animal. Accordingly, neurons having complex receptive fields are rarely found in area 17 during the first postnatal month. Our experiments show that the geniculocortical and also the intracortical transmission of neuronal impulses are still immature at the end of the first postnatal month; at this time the systems for orientation and direction selectivity in the visual cortex are almost fully developed.

摘要

利用电生理技术研究了7至42日龄小猫中枢视觉系统中神经元冲动的传导。研究发现,出生后不久,17、18和19区的膝状皮质、皮质膝状体和连合通路中的轴突传导速度低于1.2米/秒,在出生后的第一个月末增加到最大10米/秒。在出生后第三和第四周测量时,17区膝状皮质和连合突触的单突触延迟极长(在2.8至6.1毫秒之间),且在此期间无显著变化。在出生后的第一个月,视觉皮质神经元对视觉和电刺激迅速疲劳;此外,接受多突触输入的神经元比例远低于成年动物。因此,在出生后的第一个月,17区很少发现具有复杂感受野的神经元。我们的实验表明,在出生后的第一个月末,膝状皮质以及皮质内神经元冲动的传导仍不成熟;此时,视觉皮质中的方向和方向选择性系统几乎已完全发育。

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