地磁首先出现:对动物易位和双脑假说的影响。

G. Goodman, R. Poznanski, L. Cacha, D. Bercovich
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引用次数: 0

摘要

双脑假说与外周雪旺细胞及其轴突宿主之间的诱导,以及与人-机器人界面的颅内和跨颅生物工程的相关性,伴随着对其对生物学奇迹的重要性的特别关注:地磁在鸟类迁徙、归巢和导航中的定向行为中的参与。这里考虑了两种磁源。较简单的是极地(指南针)方向,长期以来报道,由于鸟类筛骨区存在磁铁矿(Fe3O4),导致一些鸟类以一种未知的方式存在。第二种是对外加磁场有反应的某些化学反应。这通常涉及到自由基,即带有未配对电子的分子,这些电子以两种可能的状态之一自旋。一个基对机制,一个依赖于光的,化学引发的磁取向,被认为是响应于磁场相对于地球磁场的轴向倾斜,但不响应其极性。起始是由光学而非视觉响应的细胞吸收特定波长的光子引起的。自由基对是短暂的,必须在宿主受体中正确排列以获得方向敏感性。鸟类磁接受的基对理论最有力的证据仍然是隐色素,一种吸收蓝光的黄素蛋白,但受体分子尚未被确定。与人类和动物一样,鸟类的主观思想和意识也无法解释。然而,“双脑假说”这种新颖的、结构化的二分法可能为地磁、生命和脊椎动物易位进化之间的联系提供了一种新的、生物物理学的方法,而无需求助于哲学或超越想象的宇宙。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geomagnetism came first: Implications for animal translocation and the two-brains hypothesis.
The relevance of the Two-Brains Hypothesis for induction between peripheral Schwann cells and their axon hosts and for intra- and trans-cranial bioengineering at the humanrobotics interface is accompanied by particular attention to its significance for a biological wonder: the involvement of geomagnetism in avian directional behavior in migration, homing and navigation. Two sources of magnetism are considered here. The simpler is the polar (compass) direction, long reported as resulting in some birds in a manner unknown from the presence of magnetite (Fe3O4) in the avian ethmoid region. The second is certain chemical reactions that respond to applied magnetic fields. These usually involve radicals, molecules with unpaired electrons that spin in one of two possible states. A radicalpair mechanism, a light-dependent, chemical initiation of magnetic orientation, has been considered responsive to the axial inclination of the field in relation to Earth's field, but not to its polarity. The initiation is by optic but nonvisually responsive cellular absorption of a photon of a specific wavelength. Radical pairs are short-lived and must be correctly aligned in the host receptors for directional sensitivity. The firmest evidence for the radical-pair theory of magneto-reception in birds remains the cryptochromes, the blue-light absorbing flavoproteins, but the receptor molecule has not been identified yet. Subjective thought and consciousness are also unexplained in birds, as in humans and animals. However, the novel, structured dichotomy of the Two-Brains Hypothesis may provide a fresh, biophysical approach to the connection between geomagnetism, life and the evolution of vertebrate translocation without recourse to philosophy or a universe expanding beyond imagination.
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