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Meteorological rhythms of respiratory and circulatory diseases revealed by Harmonic Analysis

机译:谐波分析揭示呼吸系统和循环系统疾病的气象节律

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摘要

The intricately fluctuating onset of respiratory and circulatory diseases displays rhythms of multi-scaled meteorological conditions due to their sensitivity to weather changes. The intrinsic meteorological rhythms of these diseases are revealed in this bio-meteorological study via Fourier decomposition and harmonic analysis. Daily emergency room (ER) visit data for respiratory and circulatory diseases from three comprehensive hospitals in Haidian district of Beijing, China were used in the analysis. Meteorological data included three temperature metrics, relative humidity, sunshine duration, daily mean air pressure, and wind speed. The Fourier decomposition and harmonic analysis on ER visits and meteorological variables involve frequency, period, and power of all harmonics. The results indicated that: i) for respiratory morbidity, a strong climatic annual rhythm responding to annual temperature change was firstly revealed; its ratio of spectral density was 16–33%. Moreover, significant correlations existed between the high-frequency fluctuations (<30 d) of morbidity and short-term harmonics of humidity and solar duration. High-frequency harmonics of temperature and pressure showed no statistically significant effect. ii) With regard to all types of circulatory morbidity, their annual periodicity was weaker than that of respiratory diseases, whose harmonic energy took a ratio less than 8%. Besides, the power of all high-frequency harmonics of circulatory morbidity accounted for up to 70–90% in the original sequences, and their relationship to many short-term meteorological factors were significant, including the mean and maximum temperatures, wind speed, and solar duration. iii) The weekly rhythm appeared in respiratory ER visits with 15% of harmonic variance but not prominent in circulatory morbidity. In summary, by decomposing the sequence of respiratory and circulatory diseases as well as recognizing their meteorological rhythms, different responses to meteorological conditions on various time scales were identified.
机译:由于呼吸和循环系统疾病对天气变化的敏感性,其起伏错综复杂,呈现出多种尺度的气象条件。通过傅立叶分解和谐波分析,在这项生物气象研究中揭示了这些疾病的内在气象节奏。分析中使用了来自中国北京市海淀区三所综合医院的呼吸道和循环系统疾病的每日急诊就诊数据。气象数据包括三个温度指标,相对湿度,日照时间,每日平均气压和风速。急诊访问和气象变量的傅立叶分解和谐波分析涉及所有谐波的频率,周期和功率。结果表明:i)对于呼吸系统疾病,首先揭示了对年度温度变化的强烈的气候年度节律;它的光谱密度比率为16-33%。此外,发病率的高频波动(<30 d)与湿度和日照时间的短期谐波之间存在显着的相关性。温度和压力的高频谐波没有显示出统计学上的显着影响。 ii)就所有类型的循环发病率而言,它们的年度周期性要弱于呼吸系统疾病,后者的谐波能量所占比例不到8%。此外,循环发病率的所有高频谐波的功率在原始序列中占70%至90%,并且它们与许多短期气象因素的关系非常重要,包括平均和最高温度,风速和太阳持续时间。 iii)呼吸急诊就诊时出现每周节律,谐波变化为15%,但在循环系统发病率中并不突出。总而言之,通过分解呼吸系统疾病和循环系统疾病的序列,并认识到它们的气象节律,可以确定在各种时间尺度上对气象条件的不同响应。

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