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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Functional organization of a neural map in the cricket cercal sensory system.
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Functional organization of a neural map in the cricket cercal sensory system.

机译:map大脑感觉系统中神经图的功能组织。

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摘要

Directionally selective mechanosensory afferents in the cricket cercal sensory system form a map of air current direction in the terminal abdominal ganglion. The global organization of this map was revealed by studying the anatomical relationships between an ensemble of sensory afferents that represented the entire range of receptor hair directional sensitivities on the sensory epithelium. The shapes and three-dimensional positions of the terminal arborizations of these cells were highly conserved across animals. Afferents with similar directional sensitivities arborized near each other within the map, and their terminal arborizations showed significant anatomical overlap. There was a clear global organization pattern of afferents within the map: they were organized into a spiral shape, with stimulus direction mapped continuously around the spiral. These results demonstrate that this map is not formed via a direct point-to-point topographic projection from the sensory epithelium to the CNS. Rather, thecontinuous representation of air current direction is synthesized within the CNS via an anatomical reorganization of the afferent terminal arbors. The arbors are reorganized according to a functional property that is independent of the location of the mechanoreceptor in the epithelium. The ensemble data were used to derive predictions of the patterns of steady-state excitation throughout the map for different directional stimuli. These images represent quantitative and testable predictions of functional characteristics of the entire neural map.
机译:the脑感觉系统中的定向选择性机械感觉传入信号在末端腹神经节中形成气流方向图。通过研究代表感觉上皮上受体毛发方向敏感性的整个范围的感觉传入整体之间的解剖关系,揭示了该图的整体组织。这些细胞的末端乔木的形状和三维位置在整个动物中高度保守。具有相似方向敏感性的传入点在地图内彼此靠近,并且它们的末端分支显示出明显的解剖重叠。在地图中,传入者有一个清晰的全局组织模式:它们被组织成螺旋形,刺激方向围绕螺旋形连续映射。这些结果表明,该图不是通过从感觉上皮到中枢神经系统的直接点对点地形投影形成的。相反,气流方向的连续表示是通过传入末端心轴的解剖重组在CNS内合成的。乔木根据功能特性进行重组,而功能特性与上皮中机械感受器的位置无关。集合数据被用来推导整个地图上针对不同方向刺激的稳态激励模式的预测。这些图像表示整个神经图的功能特征的定量和可测试的预测。

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