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发育中的乌龟视网膜中神经节细胞复杂感受野特性的出现。

Emergence of complex receptive field properties of ganglion cells in the developing turtle retina.

作者信息

Sernagor E, Grzywacz N M

机构信息

Smith-Kettlewell Eye Research Institute, San Francisco, California 94115, USA.

出版信息

J Neurophysiol. 1995 Apr;73(4):1355-64. doi: 10.1152/jn.1995.73.4.1355.

DOI:10.1152/jn.1995.73.4.1355
PMID:7643153
Abstract
  1. Receptive field properties of adult retinal ganglion cells are well documented, but little is known about their development. We made extracellular recordings of activity from turtle retinal ganglion cells during embryogenesis (stages 22-26), during the first 40 days posthatching, and in adults. 2. From stage 22 the cells fired in spontaneous recurring bursts, and from stage 23 they responded to light. Polar plots of the responses to motion were highly anisotropic in early embryonic cells. More than 40% of embryonic cells exhibited multiaxis anisotropy, and only 6% were statistically isotropic. The incidence of anisotropic cells gradually decreased throughout development. The incidence of isotropic cells and the excitatory receptive field diameters of all ganglion cells gradually increased during development and their maturation coincided with the disappearance of the spontaneous bursts (2-4 wk posthatching). 3. Both sensitivities to stimulus orientation and direction of motion were observed at the earliest stages of development. However, orientation selectivity reached a peak incidence at hatching, whereas directional selectivity completely disappeared, only to reappear in adults. 4. These results show that mature spatiotemporal receptive field properties of retinal ganglion cells emerge from initially highly anisotropic properties, which may reflect an immature, polarized dendritic layout. Their maturation might be mediated by dendritic outgrowth and strengthening of excitatory synaptic connections, which could be induced by spontaneous activity and driven to maturation by exposure to light at birth. Mature directional selectivity seems to require visual experience or the late establishment of a specialized inhibitory synaptic drive.
摘要
  1. 成年视网膜神经节细胞的感受野特性已有充分记录,但对其发育过程却知之甚少。我们在胚胎发育阶段(22 - 26期)、孵化后的前40天以及成年海龟中,对视网膜神经节细胞的活动进行了细胞外记录。2. 从22期开始,细胞就会自发地产生周期性放电,到23期时它们开始对光作出反应。早期胚胎细胞对运动反应的极坐标图具有高度各向异性。超过40%的胚胎细胞表现出多轴各向异性,只有6%在统计学上是各向同性的。各向异性细胞的发生率在整个发育过程中逐渐降低。各向同性细胞的发生率以及所有神经节细胞的兴奋性感受野直径在发育过程中逐渐增加,它们的成熟与自发放电的消失(孵化后2 - 4周)同时发生。3. 在发育的最早阶段就观察到了对刺激方向和运动方向的敏感性。然而,方向选择性在孵化时达到峰值发生率,而方向选择性则完全消失,直到成年后才重新出现。4. 这些结果表明,视网膜神经节细胞成熟的时空感受野特性最初源于高度各向异性的特性,这可能反映了一种不成熟的、极化的树突布局。它们的成熟可能是由树突生长和兴奋性突触连接的加强介导的,这可能由自发活动诱导,并在出生时通过暴露于光而被驱动至成熟。成熟的方向选择性似乎需要视觉经验或后期建立专门的抑制性突触驱动。

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