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Cardiac autonomic control mechanisms in power-frequency magnetic fields: a multistudy analysis.

机译:工频磁场中的心脏自主控制机制:一项多研究分析。

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摘要

Heart rate variability (HRV), a noninvasive indicator of autonomic control of cardiac activity, is predictive of long-term cardiac morbidity and mortality. Epidemiologic research suggests that occupational exposure to power-frequency magnetic fields may be associated with autonomically mediated cardiac mortality. Results from our laboratory studies of humans exposed to 60-Hz magnetic fields overnight, however, are inconsistent. HRV is altered in some studies but not others. To clarify this, the pooled data from seven studies involving 172 men were analyzed to test specific hypotheses concerning this inconsistency. After analysis, we excluded a) measurement drift or instability over time because HRV was stable under sham-exposed conditions across all studies; b) inadequate statistical power or failure to maintain double-blind controls; c) differences in field intensity (28.3 vs. 127.3 microT) or exposure pattern (intermittent versus continuous) as main effects; or d) the inclusion of individuals sensitive to magnetic field exposure in some studies but not others. Four separate analytic techniques failed to identify a valid subpopulation of sensitive individuals. In some studies, however, hourly blood samples were collected using an indwelling venous catheter. HRV alterations occurred during intermittent exposure in these studies (p < 0.05) but not in similar studies without blood sampling. This result suggests a field interaction with modest arousal or disturbance. Because HRV is tightly coupled to electroencephalographic activity during sleep, these results are physiologically plausible and suggest that HRV alterations during exposure to magnetic fields may occur when accompanied by increases in physiologic arousal, stress, or sleep disturbance.
机译:心率变异性(HRV)是自主控制心脏活动的一种非侵入性指标,可预测长期的心脏发病率和死亡率。流行病学研究表明,职业性暴露于工频磁场可能与自主调节的心脏死亡率有关。但是,我们对过夜暴露于60 Hz磁场的人体的实验室研究结果不一致。在某些研究中,HRV有所改变,但其他研究则没有改变。为了澄清这一点,分析了涉及172名男性的7项研究的汇总数据,以检验有关这种不一致的特定假设。经过分析,我们排除了a)测量值随时间的漂移或不稳定性,因为在所有研究中,HRV在假暴露条件下都是稳定的; b)统计能力不足或无法维持双盲控制; c)主要影响是场强的差异(28.3 vs. 127.3 microT)或曝光模式(间歇性还是连续性); d)在某些研究中包括对磁场暴露敏感的个人,但在其他研究中则不包括。四种单独的分析技术未能识别敏感个体的有效亚群。但是,在某些研究中,使用留置静脉导管每小时采集一次血液样本。在这些研究中,间歇性暴露期间发生了HRV改变(p <0.05),但在没有血液采样的类似研究中没有发生。该结果表明在现场的交互具有适度的唤醒或干扰。因为HRV与睡眠期间的脑电图活动紧密相关,所以这些结果在生理上是合理的,并且表明在伴随着生理觉醒,压力或睡眠障碍增加的情况下,暴露于磁场期间HRV可能发生改变。

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