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Natural very-low-frequency sferics and headache

机译:自然的极低频烦躁和头痛

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摘要

Very-low-frequency (VLF) atmospherics or sferics are pulse-shaped alternating electric and magnetic fields which originate from atmospheric discharges (lightning). The objective of the study was threefold: (i) to analyse numerous parameters characterizing the sferics activity with regard to their suitability for field studies, (ii) to identify meteorological processes related to the sferics activity and (iii) to investigate the possible association of sferics with pain processes in patients suffering from migraine- and tension-type headaches. Over a period of 6 months (July through December) the sferics activity in the area of Giessen (Germany) was recorded. Three sferics parameters were chosen. The number of sferics impulses per day, the variability of the impulse rate during a day and the variability in comparison to the preceding day were correlated with weather processes (thunderstorm, temperature, vapour pressure, barometric pressure, humidity, wind velocity, warm sector). Significant correlations were obtained during the summer months (July, August) but not during the autumn months (October, November, December). During autumn, however, the sferics activity was correlated with the occurrence of migraine-type headaches (r=0.33, P <0.01) recorded by 37 women who had filled out a headache diary over a period of 6 months (July-December). While the thunderstorm activity was very intense during July and August, no relationship between sferics and migraine was found. In summer, tension-type headaches were associated with meteorological parameters such as temperature (r=0.42, P <0.01) and vapour pressure (r=0.28, P <0.05). Although the sferics activity can explain a small percentage of the variation in migraine occurrence, a direct influence was more likely exerted by visible or otherwise perceptible weather conditions (thunderstorms, humidity, vapour pressure, warm sector, etc.) than by the sferics activity itself.
机译:极低频(VLF)大气或铁氧体是源自大气放电(闪电)的脉冲状交变电场和磁场。这项研究的目的是三方面的:(i)分析适合于实地研究的特征性活动的众多参数,(ii)识别与活动相关的气象过程,以及(iii)研究可能的活动相关性。患有偏头痛和紧张型头痛的患者会出现疼痛。在6个月的时间(7月至12月)中,记录了吉森(德国)地区的sferics活动。选择了三个Sferics参数。每天的冲动次数,一天中冲动率的变化以及与前一天相比的变化都与天气过程(雷暴,温度,蒸气压,气压,湿度,风速,温暖区域)相关。 。在夏季月份(7月,8月)获得了显着的相关性,而在秋季月份(10月,11月,12月)没有获得显着的相关性。然而,在秋天期间,铁素体活性与发生在6个月(7月至12月)中填写头痛日记的37名妇女记录的偏头痛型头痛的发生相关(r = 0.33,P <0.01)。尽管在7月和8月的雷暴活动非常激烈,但未发现Sferics和偏头痛之间存在关联。在夏季,紧张型头痛与温度(r = 0.42,P <0.01)和蒸气压(r = 0.28,P <0.05)等气象参数有关。尽管sferics活动可以解释偏头痛发生率的一小部分变化,但是与sferics活动本身相比,可见或可感知的天气条件(雷暴,湿度,蒸气压,温暖的区域等)更可能产生直接影响。 。

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