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Distribution and projection pattern of motoneurons that innervate hindlimb muscles in the quail

机译:支配鹌鹑后肢肌肉的运动神经元的分布和投射模式

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摘要

We characterized the motoneuron pool positions and projection patterns in the embryonic quail hindlimb and compared them to those in the chick to determine the degree of similarity and to form a baseline for future chimeric experiments. We find that the most similar parameters of pool position correlate with the major axonal pathway choices. First, the medial-lateral pool position, which is highly conserved among birds and mammals, is identical in the quail and chick and correlates with the dorsal-ventral pathway choice, the first and least plastic of the choices within the limb. Second, although quail pools were known to be compressed into seven rather than eight segments, we show that the map of pools is compressed about a central point (segment three) that preserves the spatial relationships between anterior pools and the crural plexus, and between posterior pools and the sciatic plexus. Access to guidance cues that are restricted to each plexus region is thus maintained between species. Third, pool position along the anterior-posterior axis is the least similar parameter between species. In fact, the entire lumbosacral motor complex may shift by ± half a segment in individual quail. Despite the consequent differences in segmental projections, the specific projection pattern within each quail hindlimb is identical to that in the chick. There is no need to preserve the exact segmental pattern either phylogenetically or during development, because motoneurons accommodate to modest variations in their position along the anterior-posterior axis by sorting out at the limb base. The contrast between variable segmental and constant limb projections also demonstrates that neither the specification nor the precise projection of motoneurons is dependent upon the specification or development of somites.
机译:我们以胚胎鹌鹑后肢中的运动池位置和投影模式的特征在于,并将它们与小鸡中的那些进行了比较以确定相似度的程度,并形成未来嵌合实验的基线。我们发现池位置最相似的参数与主要的轴突途径选择相关。首先,在鸟类和哺乳动物中高度保守的内侧横向池位置在鹌鹑和小鸡中是相同的,并且与背腹途径选择,肢体内的选择的第一和最低塑料相关。其次,虽然鹌鹑池被称为被压缩成7,而不是八个段,我们表明,池的地图被压缩大约中心点(段3),该蜜饯前池和所述小腿丛之间的空间关系,和之间后池和坐骨神经丛。因此,在物种之间保持限制为每个丛区域的指导提示。第三,沿前后轴的池位置是物种之间的最小相似参数。事实上,整个腰骶部电机复合物可能会在各个鹌鹑中划分±半段。尽管发生了分段投影的差异,但每个鹌鹑后肢内的特定投影模式与小鸡中的特定投影图案相同。没有必要保留系统发生或在发育期间的确切节段模式,因为运动元uron通过在肢体基部分类来容纳沿着前后轴线的位置的适度变化。可变节段和恒定肢体投影之间的对比还证明了规范,Motoneuron的精确投影并不依赖于某些节目的规范或发展。

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