首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Could Magnetic Fields Affect the Circadian Clock Function of Cryptochromes? Testing the Basic Premise of the Cryptochrome Hypothesis (ELF Magnetic Fields)
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Could Magnetic Fields Affect the Circadian Clock Function of Cryptochromes? Testing the Basic Premise of the Cryptochrome Hypothesis (ELF Magnetic Fields)

机译:磁场会影响隐色素的生物钟功能吗?测试隐色假设的基本前提(ELF磁场)

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摘要

It has been suggested that weak 50/60 Hz [extremely low frequency (ELF)] magnetic fields (MF) could affect circadian biorhythms by disrupting the clock function of cryptochromes (the "cryptochrome hypothesis," currently under study). That hypothesis is based on the premise that weak (Earth strength) static magnetic fields affect the redox balance of cryptochromes, thus possibly their signaling state as well. An appropriate method for testing this postulate could be real time or short-term study of the circadian clock function of retinal cryptochromes under exposure to the static field intensities that elicit the largest redox changes (maximal "low field" and "high field" effects, respectively) compared to zero field. Positive results might encourage further study of the cryptochrome hypothesis itself. However, they would indicate the need for performing a similar study, this time comparing the effects of only slight intensity changes (low field range) in order to explore the possible role of the proximity of metal structures and furniture as a confounder under the cryptochrome hypothesis.
机译:已经提出,弱的50/60 Hz [极低频(ELF)]磁场(MF)可能通过破坏隐色的时钟功能(目前正在研究的“隐色假说”)来影响昼夜节律。该假设基于以下前提:弱(地球强度)静磁场会影响隐色染料的氧化还原平衡,因此也可能影响它们的信号状态。测试此假设的合适方法可能是实时或短期研究视网膜隐色色素的昼夜节律功能,该过程在暴露于最大氧化还原变化(最大“低场”和“高场”效应,分别)与零字段进行比较。积极的结果可能会鼓励人们进一步研究隐色假说。然而,他们将表明需要进行类似的研究,这次比较仅轻微的强度变化(低场范围)的影响,以探讨隐色假说下金属结构和家具的接近性作为混杂因素的可能作用。 。

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