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Cleavage planes in frog eggs are altered by strong magnetic fields

机译:强磁场改变青蛙卵中的卵裂面

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摘要

Early cleavages of Xenopus embryos were oriented in strong, static magnetic fields. Third-cleavage planes, normally horizontal, were seen to orient to a vertical plane parallel with a vertical magnetic field. Second cleavages, normally vertical, could also be oriented by applying a horizontal magnetic field. We argue that these changes in cleavage-furrow geometries result from changes in the orientation of the mitotic apparatus. We hypothesize that the magnetic field acts directly on the microtubules of the mitotic apparatus. Considerations of the length of the astral microtubules, their diamagnetic anisotropy, and flexural rigidity predict the required field strength for an effect that agrees with the data. This observation provides a clear example of a static magnetic-field effect on a fundamental cellular process, cell division.
机译:非洲爪蟾胚胎的早期卵裂在强,静态磁场中定向。可以看到通常为水平的三次分裂平面与平行于垂直磁场的垂直平面定向。通常可以通过施加水平磁场来定向通常垂直的第二分裂。我们认为,分裂沟的几何形状的这些变化是由有丝分裂装置的方向变化引起的。我们假设磁场直接作用于有丝分裂装置的微管上。考虑星状微管的长度,它们的抗磁各向异性和抗弯刚度,可以预测所需的场强,以获得与数据一致的效果。该观察结果提供了一个静磁场对基本细胞过程即细胞分裂的清晰示例。

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