[HTML][HTML] Hypomagnetic field effects as a potential avenue for testing the radical pair mechanism in biology

H Zadeh-Haghighi, R Rishabh, C Simon - Frontiers in Physics, 2023 - frontiersin.org
Near-zero magnetic fields, called hypomagnetic fields, are known to impact biological
phenomena, including developmental processes, the circadian system, neuronal and brain …

[PDF][PDF] Hypomagnetic field effects as a potential avenue for testing the radical pair mechanism in biology

H Zadeh-Haghighi, R Rishabh, C Simon - Spin - researchgate.net
Near-zero magnetic fields, called hypomagnetic fields, are known to impact biological
phenomena, including developmental processes, the circadian system, neuronal and brain …

Hypomagnetic field effects as a potential avenue for testing the radical pair mechanism in biology

H Zadeh-Haghighi, R Rishabh, C Simon - inspirehep.net
Near-zero magnetic fields, called hypomagnetic fields, are known to impact biological
phenomena, including developmental processes, the circadian system, neuronal and brain …

Hypomagnetic field effects as a potential avenue for testing the radical pair mechanism in biology

H Zadeh-Haghighi, R Rishabh… - Frontiers in …, 2023 - ui.adsabs.harvard.edu
Near-zero magnetic fields, called hypomagnetic fields, are known to impact biological
phenomena, including developmental processes, the circadian system, neuronal and brain …

Hypomagnetic field effects as a potential avenue for testing the radical pair mechanism in biology

H Zadeh-Haghighi, R Rishabh, C Simon - arXiv preprint arXiv:2208.10465, 2022 - arxiv.org
Near-zero magnetic fields, called hypomagnetic fields, are known to impact biological
phenomena, including developmental processes, the circadian system, neuronal and brain …