Laboratory for Nuclear Analytical Techniques, Institute Ruđer Bošković, Zagreb, Croatia.
Retired professor of physics, Zagreb, Croatia.
Astrobiology. 2021 Mar;21(3):323-331. doi: 10.1089/ast.2020.2288. Epub 2020 Dec 23.
The order of magnitude of increased growth, multiplication rate, and decreased sporulation of after exposure to nanotesla magnetic fields (MFs) relative to control samples were observed experimentally. Earth's total magnetic field intensity was reduced from 47.9 ± 0.4 μT to cover the range from 97.5 ± 1.7 nT to 1115 ± 158 nT in eight subsequent experiments by using three pairs of Helmholtz coils combined with Mu-metal shielding. The growth, multiplication rate, sporulation, and potassium content were measured in the probe and control containing cultures after 24 h of exposure to nanotesla and Earth's magnetic fields, respectively. The observed effect is discussed with regard to its possible repercussions on Earth's living species during geomagnetic reversals that occurred when the magnetic field was much weaker than the field that exists today. In addition, effects on future manned voyages into deep space, an environment with reduced magnetic field intensity, are considered.
实验观察到,在暴露于纳特磁场(MFs)后,与对照样品相比,的生长、倍增率和产孢能力呈数量级增加。通过使用三对亥姆霍兹线圈结合 Mu 金属屏蔽,将地球的总磁场强度从 47.9±0.4μT 降低到 8 次后续实验中的 97.5±1.7nT 到 1115±158nT 范围。在暴露于纳特和地球磁场 24 小时后,分别在探针和对照中测量含有 的培养物的生长、倍增率、产孢和钾含量。讨论了观察到的效应,及其在磁场比今天存在的磁场弱得多时发生地磁反转期间对地球上生物物种的可能影响。此外,还考虑了对未来进入磁场强度降低的深空的载人飞行任务的影响。