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暗适应改变了小鼠视网膜神经节细胞时空反应特性的正常发育,但不改变对比度检测阈值。

Dark rearing alters the normal development of spatiotemporal response properties but not of contrast detection threshold in mouse retinal ganglion cells.

机构信息

Department of Physiology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas, 78229.

出版信息

Dev Neurobiol. 2014 Jul;74(7):692-706. doi: 10.1002/dneu.22164. Epub 2014 Jan 29.

Abstract

The mouse visual system is immature when the eyes open two weeks after birth. As in other mammals, some of the maturation that occurs in the subsequent weeks is known to depend on visual experience. Development of the retina, which as the first stage of vision provides the visual information to the brain, also depends on light-driven activity for proper development but has been less well studied than visual cortical development. The critical properties for retinal encoding of images include detection of contrast and responsiveness to the broad range of temporal stimulus frequencies present in natural stimuli. Here we show that contrast detection threshold and temporal frequency response characteristics of ON and OFF retinal ganglion cells (RGCs), which are poor at eye opening, subsequently undergo maturation, improving RGC performance. Further, we find that depriving mice of visual experience from before birth by rearing them in the dark causes ON and OFF RGCs to have smaller receptive field centers but does not affect their contrast detection threshold development. The modest developmental increase in temporal frequency responsiveness of RGCs in mice reared on a normal light cycle was inhibited by dark rearing only in ON but not OFF RGCs. Thus, these RGC response characteristics are in many ways unaffected by the experience-dependent changes to synaptic and spontaneous activity known to occur in the mouse retina in the two weeks after eye opening, but specific differences are apparent in the ON vs. OFF RGC populations.

摘要

当老鼠在出生后两周睁开眼睛时,其视觉系统尚未成熟。与其他哺乳动物一样,在随后几周内发生的一些成熟过程被认为依赖于视觉经验。视网膜的发育作为视觉的第一阶段,为大脑提供视觉信息,其发育也依赖于光驱动活动,但与视觉皮层发育相比,它的研究较少。视网膜对图像进行编码的关键特性包括对比度检测和对自然刺激中存在的广泛时间刺激频率的响应能力。在这里,我们表明,在眼睛睁开时表现不佳的 ON 和 OFF 视网膜神经节细胞 (RGC) 的对比度检测阈值和时间频率响应特性随后会经历成熟,从而提高 RGC 的性能。此外,我们发现,通过在黑暗中饲养老鼠,使其在出生前失去视觉体验,会导致 ON 和 OFF RGC 的感受野中心变小,但不会影响它们的对比度检测阈值发育。在正常光照周期下饲养的老鼠的 RGC 对时间频率响应的适度发育性增加,仅在 ON RGC 中被黑暗饲养抑制,而不在 OFF RGC 中抑制。因此,这些 RGC 响应特性在许多方面不受已知在眼睛张开后两周内发生在老鼠视网膜中的突触和自发性活动的经验依赖性变化的影响,但在 ON 与 OFF RGC 群体之间存在明显的差异。

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