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Biological effects due to weak electric and magnetic fields: the temperature variation threshold.

机译:弱电场和磁场引起的生物效应:温度变化阈值。

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摘要

A large number of epidemiological and experimental studies suggest that prolonged (>100 s) weak 50-60-Hz electric and magnetic field (EMF) exposures may cause biological effects(NIEHS Working Group, NIH, 1998; Bersani, 1999). We show, however, that for typical temperature sensitivities of biochemical processes, realistic temperature variations during long exposures raise the threshold exposure by two to three orders of magnitude over a fundamental value, independent of the biophysical coupling mechanism. Temperature variations have been omitted in previous theoretical analyses of possible weak field effects, particularly stochastic resonance (Bezrukov and Vodyanoy 1997a. Nature. 385:319-321; Astumian et al., 1997 Nature. 338:632-633; Bezrukov and Vodyanoy, 1997b. Nature. 338:663; Dykman and McClintock, 1998. Nature. 391:344; McClintock, 1998;. Gammaitoni et al., 1998. Rev. Mod. Phys. 70:223-287). Although sensory systems usually respond to much shorter (approximately 1 s) exposures and can approach fundamental limits (Bialek, 1987 Annu. Rev. Biophys. Biophys. Chem. 16:455-468; Adair et al, 1998. Chaos. 8:576-587), our results significantly decrease the plausibility of effects for nonsensory biological systems due to prolonged, weak-field exposures.
机译:大量的流行病学和实验研究表明,长时间(> 100 s)弱的50-60 Hz电磁场(EMF)暴露可能会造成生物学影响(NIEHS Working Group,NIH,1998; Bersani,1999)。但是,我们表明,对于生化过程的典型温度敏感性,长时间暴露期间的实际温度变化会使阈值暴露比基本值高出2到3个数量级,而与生物物理耦合机制无关。在先前对可能的弱场效应(尤其是随机共振)的理论分析中,温度变化已被忽略(Bezrukov和Vodyanoy 1997a。Nature。385:319-321; Astumian等人,1997 Nature。338:632-633; Bezrukov和Vodyanoy, 1997b.Nature 338:663; Dykman和McClintock,1998.Nature 391:344; McClintock,1998; Gammaitoni等人,1998.Rev.Mod.Phys.70:223-287。尽管感觉系统通常对更短的(大约1 s)暴露有反应并且可以接近基本极限(Bialek,1987年,Annu。Rev. Biophys。Biophys。Chem。16:455-468; Adair等,1998。Chaos。8:576 -587),由于长时间的弱场暴露,我们的结果显着降低了对非感官生物系统影响的合理性。

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