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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >In vivo manganese-enhanced magnetic resonance imaging reveals connections and functional properties of the songbird vocal control system.
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In vivo manganese-enhanced magnetic resonance imaging reveals connections and functional properties of the songbird vocal control system.

机译:体内锰增强磁共振成像揭示了鸣禽声控系统的连接和功能特性。

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摘要

Injection of manganese (Mn(2+)), a paramagnetic tract tracing agent and calcium analogue, into the high vocal center of starlings labeled within a few hours the nucleus robustus archistriatalis and area X as observed by in vivo magnetic resonance imaging. Structures highlighted by Mn(2+) accumulation assumed the expected tri-dimensional shape of the nucleus robustus archistriatalis and area X as identified by classical histological or neurochemical methods. The volume of these nuclei could be accurately calculated by segmentation of the areas highlighted by Mn(2+). Besides confirming previously established volumetric sex differences, Mn(2+) uptake into these nuclei revealed new functional sex differences affecting Mn(2+) transport. A faster transport was observed in males than in females and different relative amounts of Mn(2+) were transported to nucleus robustus archistriatalis and area X in males as compared to females.This new in vivo approach, allowing repeated measures, opens new vistas to study the remarkable seasonal plasticity in size and activity of song-control nuclei and correlate neuronal activity with behavior. It also provides new insights on in vivo axonal transport and neuronal activity in song-control nuclei of oscines.
机译:锰(Mn(2+)),顺磁道追踪剂和钙类似物注射到几个小时之内标记的star鸟的高声中心,如通过体内磁共振成像观察到的那样,该labeled鸟的高声中心标记了鲁氏核和区域X。由Mn(2+)积累突出显示的结构假定了预期的三维形状的稳健核和区域X,这是通过经典的组织学或神经化学方法确定的。这些核的体积可以通过分割由Mn(2+)突出显示的区域来精确计算。除了确认先前建立的体积性别差异外,Mn(2+)摄取到这些核中还揭示了影响Mn(2+)转运的新功能性别差异。与雌性相比,雄性的转运速度快于雌性,并且将不同相对量的Mn(2+)相对于雄性转运到鲁棒核和X线区域。研究歌曲控制核的大小和活动中显着的季节性可塑性,并将神经元活动与行为联系起来。它也提供了有关体内的轴突运输和oscines的歌曲控制核中的神经元活性的新见解。

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