Scherer W J, Udin S B
Department of Physiology, State University of New York, Buffalo 14214.
Brain Res Dev Brain Res. 1991 Jan 15;58(1):129-32. doi: 10.1016/0165-3806(91)90245-e.
The mechanisms underlying the development of proper topographic registration of binocular maps in the tectum of Xenopus laevis involve correlation of activity patterns of ipsilateral and contralateral inputs. Recent evidence implicates NMDA-type glutamate receptors in this process. In general, NMDA receptors are considered to function optimally when there are multiple, simultaneous excitatory inputs to a dendrite. In the binocular system of the frog, however, the ipsilateral eye's response to a visual stimulus reaches the tectum later than the contralateral eye's response. The reason for this delay is that the ipsilateral pathway to the tectum is indirect, involving a relay in the opposite tectum and nucleus isthmi. In this paper, we evaluate the duration of the delay between arrival of contralateral and ipsilateral input in response to cessation of light and we also gauge the extent of temporal overlap in responses of the two inputs. We find that the average delay is about 10 ms and that this delay is not significantly different during the critical period vs later in development. The temporal overlap is 40-60 ms in duration. We conclude that the intertectal delay does not prevent a substantial period of simultaneous firing of ipsilateral and contralateral inputs in response to sudden changes in illumination. Therefore, the firing patterns of these afferents are compatible with a mechanism of activity-dependent alignment of binocular maps in the tectum.
非洲爪蟾视顶盖中双眼图谱正确拓扑配准发育的潜在机制涉及同侧和对侧输入活动模式的相关性。最近的证据表明NMDA型谷氨酸受体参与了这一过程。一般来说,当树突有多个同时的兴奋性输入时,NMDA受体被认为能最佳发挥功能。然而,在青蛙的双眼系统中,同侧眼对视觉刺激的反应比 contralateral眼的反应到达视顶盖的时间晚。这种延迟的原因是通向视顶盖的同侧通路是间接的,涉及在对侧视顶盖和峡核中的一个中继。在本文中,我们评估了对光停止的反应中对侧和同侧输入到达之间的延迟持续时间,并且我们还测量了这两种输入反应中的时间重叠程度。我们发现平均延迟约为10毫秒,并且在关键期与发育后期相比,这种延迟没有显著差异。时间重叠持续时间为40 - 60毫秒。我们得出结论,视顶盖间延迟并不妨碍在光照突然变化时同侧和对侧输入同时大量放电的一段相当长的时间。因此,这些传入神经的放电模式与视顶盖中双眼图谱依赖活动的对齐机制是兼容的。