首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >A newly identified trigeminal brain pathway in a night-migratory bird could be dedicated to transmitting magnetic map information
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A newly identified trigeminal brain pathway in a night-migratory bird could be dedicated to transmitting magnetic map information

机译:夜间迁徙鸟类中的新发现的三叉脑途径可以致力于传输磁性地图信息

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Night-migratory songbirds can use geomagnetic information to navigate over thousands of kilometres with great precision. A crucial part of the magnetic 'map' information used by night-migratory songbirds is conveyed via the ophthalmic branches of the trigeminal nerves to the trigeminal brainstem complex, where magnetic-driven neuronal activation has been observed. However, it is not known how this information reaches the forebrain for further processing. Here, we show that the magnetically activated region in the trigeminal brainstem of migratory Eurasian blackcaps (Sylvia atricapilla) represents a morphologically distinctive neuronal population with an exclusive and previously undescribed projection to the telencephalic frontal nidopallium. This projection is clearly different from the known trigeminal somatosensory pathway that we also confirmed both by neuronal tracing and by a thorough morphometric analysis of projecting neurons. The new pathway we identified here represents part of a brain circuit that-based on the known nidopallial connectivities in birds-could potentially transmit magnetic 'map' information to key multisensory integration centres in the brain known to be critically involved in spatial memory formation, cognition and/or controlling executive behaviour, such as navigation, in birds.
机译:夜间迁徙的Songbirds可以使用Geomagnetic Information展望超过数千公里的精度。夜间迁徙鸣禽使用的磁性“地图”信息的关键部分通过三叉神经的眼科分支传送到三叉脑系统复合物,其中已经观察到磁力驱动的神经元激活。但是,尚不知道该信息如何达到前脑以进行进一步处理。在这里,我们表明,迁移欧亚黑色传说中的三叉脑系统中的磁激活区域(Sylvia Atricapilla)代表了形态学上独特的神经元群,其与斜视额外鳞片内的独家和先前未被刻度的投影。该投影与已知的三叉子躯体感觉途径显然是不同的,我们还通过神经元描绘和通过突出的神经元进行彻底的形态学分析来证实。这里识别的新途径代表了基于鸟类中已知的百透明性连接性的大脑电路的一部分 - 可能会将磁性“地图”信息传送到已知的大脑中的关键多思级集成中心,以批判性地参与空间记忆形成,认知和/或控制鸟类中的行政行为,如航行。

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