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Magnetic field changes activate the trigeminal brainstem complex in a migratory bird

机译:磁场变化激活候鸟的三叉神经干复合体

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摘要

The upper beak of birds, which contains putative magnetosensory ferro-magnetic structures, is innervated by the ophthalmic branch of the trigeminal nerve (V1). However, because of the absence of replicable neurobiological evidence, a general acceptance of the involvement of the trigeminal nerve in magnetoreception is lacking in birds. Using an antibody to ZENK protein to indicate neuronal activation, we here document reliable magnetic activation of neurons in and near the principal (PrV) and spinal tract (SpV) nuclei of the trigeminal brainstem complex, which represent the two brain regions known to receive primary input from the trigeminal nerve. Significantly more neurons were activated in PrV and in medial SpV when European robins (Erithacus rubecula) experienced a magnetic field changing every 30 seconds for a period of 3 h (CMF) than when robins experienced a compensated, zero magnetic field condition (ZMF). No such differences in numbers of activated neurons were found in comparison structures. Under CMF conditions, sectioning of V1 significantly reduced the number of activated neurons in and near PrV and medial SpV, but not in lateral SpV or in the optic tec-tum. Tract tracing of V1 showed spatial proximity and regional overlap of V1 nerve endings and ZENK-positive (activated) neurons in SpV, and partly in PrV, under CMF conditions. Together, these results suggest that magnetic field changes activate neurons in and near the trigeminal brainstem complex and that V1 is necessary for this activation. We therefore suggest that V1 transmits magnetic information to the brain in this migratory passerine bird.
机译:鸟的上喙包含推定的磁感应铁磁结构,被三叉神经(V1)的眼科支配。然而,由于缺乏可复制的神经生物学证据,鸟类缺乏对三叉神经参与磁感受的普遍接受。使用针对ZENK蛋白的抗体指示神经元激活,在此我们记录了三叉神经干复合体的主要(PrV)和脊髓(SpV)核内和附近的神经元的可靠磁激活,这代表了已知接受原发性反应的两个大脑区域来自三叉神经的输入。当欧洲知更鸟(Erithacus rubecula)经历每30秒变化一次的磁场持续3小时(CMF)时,在PrV和内侧SpV中激活的神经元要多于知更鸟在零磁场条件下(ZMF)的激活。在比较结构中未发现激活神经元数量的这种差异。在CMF条件下,对V1进行切片可显着减少PrV和内侧SpV内和附近的激活神经元数量,但不能减少外侧SpV或视皮层中的激活神经元数量。在CMF条件下,在SpV中,部分在PrV中,V1的运动轨迹显示了V1神经末梢和ZENK阳性(激活)神经元的空间接近性和区域重叠。总之,这些结果表明,磁场变化激活了三叉神经干复合体中及其附近的神经元,而V1是激活所必需的。因此,我们建议V1将磁性信息传递给这只pass游鸟类的大脑。

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  • 作者单位

    Arbeitsgruppe 'Neurosensorik/Animal Navigation,' Institut fuer Biologie und Umweltwissenschaften, University of Oldenburg, D-26111 Oldenburg,Germany;

    rnArbeitsgruppe 'Neurosensorik/Animal Navigation,' Institut fuer Biologie und Umweltwissenschaften, University of Oldenburg, D-26111 Oldenburg,Germany;

    rnArbeitsgruppe 'Neurosensorik/Animal Navigation,' Institut fuer Biologie und Umweltwissenschaften, University of Oldenburg, D-26111 Oldenburg,Germany;

    rnDepartment of Anatomy, Faculty of Medical and Health Sciences, University of Auckland, PB 92019 Auckland, New Zealand;

    rnArbeitsgruppe 'Neurosensorik/Animal Navigation,' Institut fuer Biologie und Umweltwissenschaften, University of Oldenburg, D-26111 Oldenburg,Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bird migration; magnetic sense; magnetite; magnetoperception magnetoreception;

    机译:鸟类迁徙;磁性磁铁矿;磁感受磁感受;
  • 入库时间 2022-08-18 00:41:20

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