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一分钟级宇宙射线涨落幅度可作为环境因子标记,决定实验室大鼠体温的近昼夜节律。

Amplitude of One-Minute Fluctuations of Secondary Cosmic Rays as a Marker of Environmental Factor Determining Ultradian Rhythms in Body Temperature of Laboratory Rats.

机构信息

Research Institute of Human Morphology, Moscow, Russia.

A. N. Severtsov Institute of Ecology and Evolution, Russian Academy of Science, Moscow, Russia.

出版信息

Bull Exp Biol Med. 2021 Nov;172(1):105-110. doi: 10.1007/s10517-021-05341-x. Epub 2021 Nov 17.

Abstract

The study examined association between oscillations of body temperature of laboratory Wistar rats maintained under constant illumination with the amplitude of fluctuations of secondary cosmic rays reported by neutron count rate provided by neutron monitors and geomagnetic undulations. In contrast to geomagnetic undulations, neutron count rate variations and body temperature oscillations in rats assessed by spectrum analysis of the corresponding step functions at 1-min intervals demonstrated almost permanent variations with the periods ranging from 100 to 400 min. Under conditions of constant illumination inducing changes in the period of circadian rhythm and predominance of the ultradian rhythms, an association between neutron count rate fluctuations and body temperature oscillations was observed perpetually during the day- and nighttime.

摘要

本研究考察了在恒定光照下饲养的实验室 Wistar 大鼠体温波动与中微子计数率记录的次级宇宙射线幅度波动之间的关系,中微子计数率由中子监测器和地磁场变化提供。与地磁场变化相反,通过对相应阶跃函数以 1 分钟间隔进行频谱分析评估的大鼠的中子计数率变化和体温波动表现出几乎恒定的变化,其周期范围从 100 到 400 分钟。在诱导昼夜节律周期变化和超日节律优势的恒定光照条件下,昼夜期间始终观察到中微子计数率波动与体温波动之间的关联。

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