Chibisov Sergey Mikhailovich, Cornélissen Germaine, Halberg Franz
People's Friendship University of Russia, Moscow, Russia.
Biomed Pharmacother. 2004 Oct;58 Suppl 1:S15-9. doi: 10.1016/s0753-3322(04)80003-9.
The ultrastructure of cardiomyocytes of rabbits was found to be drastically altered at a time coinciding with strong magnetic storms by comparison with that usually observed during quiet geomagnetic conditions. The circadian characteristics of systolic and mean pressure in the left and right ventricles of Chinchilla rabbits were assessed and compared between quiet and stormy magnetic conditions. Experiments repeated during four consecutive seasons at the times of equinoxes and solstices in the absence of magnetic storms were also examined for any circannual and/or transannual variation. The results have been interpreted in the broader context of non-photic influences on the circulation, fully supporting the presence of non-photic effects. The recording of magnetic activity in the laboratory, and until this is possible, the consultation of the physicists' routine recording of geomagnetic indices should become a sine qua non, since, as shown herein, magnetic storms can override the effect of the usually dominant synchronizer, the alternation of light and darkness.
与通常在平静地磁条件下观察到的情况相比,发现家兔心肌细胞的超微结构在与强烈磁暴同时出现时发生了剧烈变化。评估并比较了青紫蓝兔在平静和磁暴条件下左心室和右心室收缩压和平均压的昼夜节律特征。还在四个连续季节的春分和冬至期间,在没有磁暴的情况下重复进行实验,以检查是否存在年周期和/或跨年变化。这些结果已在非光对循环系统影响的更广泛背景下进行了解释,充分支持了非光效应的存在。在实验室记录磁活动,并且在这成为可能之前,查阅物理学家的地磁指数常规记录应成为必不可少的条件,因为如本文所示,磁暴可以超越通常占主导地位的同步器——光暗交替的影响。