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硅藻对极低频磁场的反应。

Diatom response to extremely low-frequency magnetic fields.

作者信息

Parkinson W C, Sulik G L

机构信息

Department of Physics, University of Michigan, Ann Arbor 48109-1090.

出版信息

Radiat Res. 1992 Jun;130(3):319-30.

PMID:1594758
Abstract

Reports that extremely low-frequency magnetic fields can interfere with normal biological cell function continue to stimulate experimental activity as well as investigations into the possible mechanism of the interaction. The "cyclotron resonance" model of Liboff has been tested by Smith et al. (Bioelectromagnetics 8, 215-227, 1987) using as the biological test system the diatom Amphora coffeiformis. They report enhanced motility of the diatom in response to a low-frequency electromagnetic field tuned to the cyclotron resonance condition for calcium ions. We report here an attempt to reproduce their results. Following their protocol diatoms were seeded onto agar plates containing varying amounts of calcium and exposed to colinear DC and AC magnetic fields tuned to the cyclotron resonant condition for frequencies of 16, 30, and 60 Hz. The fractional motility was compared with that of control plates seeded at the same time from the same culture. We find no evidence of a cyclotron resonance effect.

摘要

关于极低频磁场会干扰正常生物细胞功能的报道,持续激发着实验活动以及对相互作用可能机制的研究。Liboff的“回旋共振”模型已由Smith等人进行了测试(《生物电磁学》8卷,215 - 227页,1987年),他们使用咖啡形双眉藻作为生物测试系统。他们报告称,当低频电磁场调谐到钙离子的回旋共振条件时,硅藻的运动性增强。我们在此报告一项重现他们结果的尝试。按照他们的实验方案,将硅藻接种到含有不同钙含量的琼脂平板上,并暴露于调谐到16、30和60赫兹回旋共振条件的共线直流和交流磁场中。将运动分数与同时从同一培养物接种的对照平板进行比较。我们未发现回旋共振效应的证据。

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