首页> 外文期刊>Journal of the Royal Society Interface >Magnetic field-driven induction of ZENK in the trigeminal system of pigeons (Columba livid)
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Magnetic field-driven induction of ZENK in the trigeminal system of pigeons (Columba livid)

机译:鸽子三叉系统中磁场驱动的ZENK感应(Columba livid)

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摘要

Magnetoreception remains one of the few unsolved mysteries in sensory biology. The upper beak, which is innervated by the ophthalmic branch of the trigeminal nerve (V1), has been suggested to contain magnetic sensors based on ferromagnetic structures. Recently, its existence in pigeons has been seriously challenged by studies suggesting that the previously described iron-accumulations are macrophages, not magnetosensitive nerve endings. This raised the fundamental question of whether V1 is involved in magneto-reception in pigeons at all. We exposed pigeons to either a constantly changing magnetic field (CMF), to a zero magnetic field providing no magnetic information, or to CMF conditions after V1 was cut bilaterally. Using immediate early genes as a marker of neuronal responsiveness, we report that the trigeminal brainstem nuclei of pigeons, which receive V1 input, are activated under CMF conditions and that this neuronal activation disappears if the magnetic stimuli are removed or if V1 is cut. Our data suggest that the trigeminal system in pigeons is involved in processing magnetic field information and that V1 transmits this information from currently unknown, V1-associated magnetosensors to the brain.
机译:磁感受仍然是感觉生物学中少数未解决的谜团之一。建议由三叉神经(V1)的眼科支配的上喙包含基于铁磁结构的磁传感器。近来,研究表明,先前描述的铁蓄积是巨噬细胞,而不是对磁敏感的神经末梢,这严重影响了它在鸽子中的存在。这就提出了一个基本问题,即V1是否完全参与了鸽子的磁接收。我们将鸽子暴露于不断变化的磁场(CMF),零磁场(不提供任何磁性信息)或V1双向切割后的CMF条件下。我们使用立即早期基因作为神经元反应能力的标志物,我们报道了接受V1输入的鸽子的三叉神经干核在CMF条件下被激活,并且如果去除了磁刺激或如果V1被切断,这种神经元激活就会消失。我们的数据表明,鸽子的三叉系统参与了磁场信息的处理,而V1则将这些信息从目前未知的,与V1相关的磁传感器传输到大脑。

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