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Multiple Visual Field Representations in the Visual Wulst of a Laterally Eyed Bird the Zebra Finch (Taeniopygia guttata)

机译:侧眼鸟斑马雀科(Taeniopygia guttata)的视觉迷惑中的多个视野表示

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摘要

The visual wulst is the telencephalic target of the avian thalamofugal visual system. It contains several retinotopically organised representations of the contralateral visual field. We used optical imaging of intrinsic signals, electrophysiological recordings, and retrograde tracing with two fluorescent tracers to evaluate properties of these representations in the zebra finch, a songbird with laterally placed eyes. Our experiments revealed that there is some variability of the neuronal maps between individuals and also concerning the number of detectable maps. It was nonetheless possible to identify three different maps, a posterolateral, a posteromedial, and an anterior one, which were quite constant in their relation to each other. The posterolateral map was in contrast to the two others constantly visible in each successful experiment. The topography of the two other maps was mirrored against that map. Electrophysiological recordings in the anterior and the posterolateral map revealed that all units responded to flashes and to moving bars. Mean directional preferences as well as latencies were different between neurons of the two maps. Tracing experiments confirmed previous reports on the thalamo-wulst connections and showed that the anterior and the posterolateral map receive projections from separate clusters within the thalamic nuclei. Maps are connected to each other by wulst intrinsic projections. Our experiments confirm that the avian visual wulst contains several separate retinotopic maps with both different physiological properties and different thalamo-wulst afferents. This confirms that the functional organization of the visual wulst is very similar to its mammalian equivalent, the visual cortex.
机译:视觉上的不适是禽丘脑视神经系统的远脑目标。它包含对侧视野的几种视网膜组织性表示。我们使用了内在信号的光学成像,电生理记录以及带有两个荧光示踪剂的逆行追踪,以评估斑马雀(一种侧向放置的鸣禽)中这些表示的特性。我们的实验表明,个体之间的神经元图谱存在一些差异,并且还与可检测图谱的数量有关。尽管如此,仍然有可能确定出三种不同的地图,即后外侧,后内侧和前部,它们之间的关系非常恒定。在每个成功的实验中,后外侧图与其他两个始终可见的图形成对比。其他两张地图的地形均与该地图相对应。前部和后外侧图的电生理记录显示,所有单位均对闪光和移动的条形作出反应。两种地图的神经元之间的平均方向偏好和延迟都不同。追踪实验证实了先前有关丘脑-胃部连接的报道,并显示前部和后外侧图收到了丘脑核内不同簇的投影。地图通过wulst内在投影相互连接。我们的实验证实,鸟类视觉肠胃含有几个单独的视网膜定位图,它们具有不同的生理特性和不同的丘脑-肠胃传入神经。这证实了视觉肠的功能组织与其哺乳动物等效物视觉皮层非常相似。

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