Demas Jay, Eglen Stephen J, Wong Rachel O L
Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Neurosci. 2003 Apr 1;23(7):2851-60. doi: 10.1523/JNEUROSCI.23-07-02851.2003.
In the immature retina, correlated spontaneous activity in the form of propagating waves is thought to be necessary for the refinement of connections between the retina and its targets. The continued presence of this activity in the mature retina would interfere with the transmission of information about the visual scene. The mechanisms responsible for the disappearance of retinal waves are not well understood, but one hypothesis is that visual experience is important. To test this hypothesis, we monitored the developmental changes in spontaneous retinal activity of both normal mice and mice reared in the dark. Using multi-electrode array recordings, we found that retinal waves in normally reared mice are present at postnatal day (P) 9 and begin to break down shortly after eye opening, around P15. By P21, waves have disappeared, and synchronous firing is comparable with that observed in the adult (6 weeks). In mice raised in the dark, we found a similar time course for the disappearance of waves. However, at P15, dark-reared retinas occasionally showed abnormally long periods of relative inactivity, not seen in controls. Apart from this quiescence, we found no striking differences between the patterns of spontaneous retinal activity from normal and dark-reared mice. We therefore suggest that visual experience is not required for the loss of synchronous spontaneous activity.
在未成熟的视网膜中,以传播波形式存在的相关自发活动被认为对于视网膜与其靶标之间连接的精细化是必要的。这种活动在成熟视网膜中的持续存在会干扰有关视觉场景信息的传递。导致视网膜波消失的机制尚未完全了解,但一种假说是视觉经验很重要。为了验证这一假说,我们监测了正常小鼠和在黑暗中饲养的小鼠视网膜自发活动的发育变化。通过多电极阵列记录,我们发现正常饲养小鼠的视网膜波在出生后第9天(P9)出现,并在睁眼后不久,即大约P15时开始瓦解。到P21时,波已消失,同步放电与成年小鼠(6周)中观察到的情况相当。在黑暗中饲养的小鼠中,我们发现波消失的时间进程相似。然而,在P15时,黑暗饲养的视网膜偶尔会出现异常长的相对静止期,这在对照组中未观察到。除了这种静止状态外,我们发现正常饲养和黑暗饲养小鼠的视网膜自发活动模式之间没有显著差异。因此,我们认为同步自发活动的丧失不需要视觉经验。