Does the Short-Term Effect of Air Pollution Influence the Incidence of Spontaneous Intracerebral Hemorrhage in Different Patient Groups? Big Data Analysis in Taiwan
Abstract
:1. Introduction
2. Materials and Methods
2.1. Data Sources
2.2. Data Protection and Permission
2.3. Data Management
2.4. Statistics
3. Results
4. Discussion
5. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Region | Taipei | Taoyuan | Taichung | Tainan | Kaohsiung |
---|---|---|---|---|---|
# Resident population | 6,709,982 | 2,190,342 | 2,731,056 | 1,840,257 | 2,777,384 |
Male | 3,252,868 | 1,107,819 | 1,353,789 | 915,361 | 1,381,183 |
Female | 3,457,114 | 1,052,523 | 1,377,267 | 924,896 | 1,396,201 |
Total case number | 14,041 | 5537 | 7654 | 4739 | 7082 |
Female ratio (%) | 38.0% | 36.4% | 36.9% | 37.3% | 37.4% |
¶ Incidence of sICH | 216.4 | 280.0 | 290.4 | 252.9 | 255.6 |
Male | 272.6 | 352.5 | 367.4 | 314.0 | 318.2 |
Female | 161.9 | 206.0 | 213.6 | 190.6 | 192.3 |
Mean age | 61.9 (16.6) | 60.4 (16.7) | 61.6 (15.9) | 62.6 (15.4) | 61.5 (15.6) |
Male | 60.1 (16.1) | 59.0 (16.4) | 59.7 (15.5) | 60.7 (14.8) | 59.6 (15.0) |
Female | 64.8 (17.1) | 62.8 (17.0) | 64.7 (16.2) | 65.8 (15.8) | 64.6 (16.0) |
Low-income cases (%) | 250 (1.8%) | 122 (2.2%) | 65 (0.8%) | 60 (1.3%) | 83 (1.2%) |
& CCI | |||||
0 (%) | 6660 (47.4%) | 2690 (48.6%) | 4015 (52.5%) | 2329 (49.1) | 3476 (49.1%) |
1 (%) | 3834 (27.3%) | 1492 (26.9%) | 2007 (26.2%) | 1361 (28.7%) | 1829 (25.8%) |
2 (%) | 2356 (16.8%) | 945 (17.1%) | 1118 (14.6%) | 723 (15.3%) | 1175 (16.6%) |
≥3 (%) | 1191 (8.5%) | 410 (7.4%) | 514 (6.7%) | 326 (6.9%) | 602 (8.5%) |
Total LOS | 17.3 (14.8) | 14.8 (13.4) | 15.8 (13.7) | 13.9 (11.9) | 14.0 (11.5) |
Air Pollutant | CO | NO2 | O3 | PM10 | PM2.5 | SO2 |
---|---|---|---|---|---|---|
Abnormal criteria | 35 ppm | 250 ppb | 120 ppb | 125 μg/m3 | 35 μg/m3 | 100 ppb |
(30.5 ppm) ψ | (1250 ppb) | (405 ppb) | (425 μg/m3) | (250.5 μg/m3) | (650 ppb) | |
8-h | 1-h | 1-h | 24-h | 24-h | 24-h | |
Mean concentration | ||||||
Taipei | 0.6 (0.1) | 21.1 (3.2) | 28 (5.2) | 46.8 (9.6) | 26.8 (5.3) | 3.8 (0.5) |
Taoyuan | 0.5 (0.1) | 19.4 (2.9) | 28.5 (5.3) | 56.5 (11.1) | 28.0 (6.1) | 5.6 (0.4) |
Taichung | 0.5 (0.1) | 18.8 (4) | 28.1 (5.4) | 58.5 (13.5) | 35.6 (8.4) | 3.5 (0.3) |
Tainan | 0.4 (0.1) | 15.3 (4.7) | 30.9 (6.5) | 73.6 (23.7) | 39.2 (12.5) | 4.2 (0.4) |
Kaohsiung | 0.5 (0.2) | 20.3 (6.8) | 29.9 (6.6) | 77.3 (27.5) | 44.9 (16.4) | 7.2 (1.2) |
# Days on which normal level was exceeded | ||||||
Taipei | 0 (0) ξ | 0 (0) | 153 (0) | 13 (1) | 428 (0) | 0 (0) |
Taoyuan | 0 (0) | 0 (0) | 135 (0) | 31 (1) | 465 (0) | 0 (0) |
Taichung | 0 (0) | 0 (0) | 393 (0) | 32 (1) | 818 (0) | 0 (0) |
Tainan | 0 (0) | 0 (0) | 566 (0) | 127 (1) | 988 (0) | 0 (0) |
Kaohsiung | 0 (0) | 0 (0) | 647 (0) | 183 (1) | 1159 (0) | 0 (0) |
Air Pollutant | CO | NO2 | O3 | PM10 | PM2.5 | SO2 |
---|---|---|---|---|---|---|
Standard values | 35 ppm | 250 ppb | 120/h | 125 μg/m3 | 35 μg/m3 | 100 ppb |
Correlation between air pollutants | ||||||
CO | 1 | |||||
NO2 | 0.939 ** | 1 | ||||
O3 | 0.034 | 0.071 | 1 | |||
PM10 | 0.399 ** | 0.610 *** | 0.372 ** | 1 | ||
PM2.5 | 0.463 *** | 0.637 *** | 0.343 ** | 0.969 *** | 1 | |
SO2 | 0.239 | 0.422 *** | 0.085 | 0.550 *** | 0.521 *** | 1 |
All patients | 0.205 | 0.415 *** | 0.013 | 0.658 *** | 0.654 *** | 0.196 |
<24 y/o ψ | −0.015 | −0.010 | −0.056 | −0.212 | −0.226 | −0.035 |
25–44 y/o | 0.197 | 0.341 ** | −0.163 | 0.197 | 0.180 | 0.296 * |
45–64 y/o | 0.124 | 0.333 ** | 0.033 | 0.629 *** | 0.625 *** | 0.245 |
65–79 y/o | 0.114 | 0.311 * | 0.096 | 0.689 *** | 0.695 *** | 0.110 |
≥80 y/o | 0.383 ** | 0.473 *** | −0.053 | 0.456 *** | 0.445 *** | −0.004 |
Models | Constant | PM2.5 | O3 | SO2 | Adj. R2 | F for Change in R2 |
---|---|---|---|---|---|---|
Model 1 | X | X | 0.417 | 43.263 ** | ||
B | 15.127 *** | 0.166 *** | ||||
SE B | 0.654 | |||||
Model 2 | X | 0.459 | 5.488 * | |||
B | 18,171 *** | 0.187 *** | −0.130 * | |||
SE B | 0.735 | −0.239 | ||||
Model 3 | 0.490 | 4.497 * | ||||
B | 19.745 *** | 0.219 *** | −0.143 * | −0.482 * | ||
SE B | 0.865 | −0.263 | −0.233 |
Factor | Constant | PM2.5 | O3 | SO2 | NO2 | Adj. R2 | F for Change in R2 |
---|---|---|---|---|---|---|---|
Less than 25 years of age | |||||||
Model | X | X | X | X | X | ||
Between 25 and 44 years | |||||||
Model | X | X | X | 0.101 | 7.616 ** | ||
B | 1.711 *** | 0.036 ** | |||||
SE B | 0.341 | ||||||
Between 45 and 64 years | |||||||
Model | X | X | X | 0.380 | 37.195 *** | ||
B | 6.450 *** | 0.068 *** | |||||
SE B | 0.625 | ||||||
Between 65 and 79 years | |||||||
Model 1 | X | X | X | 0.474 | 54.077 *** | ||
B | 3.805 *** | 0.071 *** | |||||
SE B | 0.695 | ||||||
Model 2 | X | X | 0.554 | 11.527 ** | |||
B | 4.559 *** | 0.089 *** | −0.288 *** | ||||
SE B | 0.875 | −0.346 | |||||
Model 3 | X | 0.583 | 4.938 * | ||||
B | 5.643 *** | 0.098 *** | −0.044 * | −0.310 *** | |||
SE B | 0.957 | −0.200 | −0.372 | ||||
Model 4 | 0.607 | 4.377 * | |||||
B | 6.384 *** | 0.113 *** | −0.052 * | −0.290 *** | −0.059 * | ||
SE B | 1.102 | −0.236 | −0.348 | −0.228 | |||
Over 80 years of age | |||||||
Model | X | X | X | 0.211 | 16.746 *** | ||
B | 1.905 *** | 0.059 *** | |||||
SE B | 0.473 |
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Chien, T.-Y.; Ting, H.-W.; Chan, C.-L.; Yang, N.-P.; Pan, R.-H.; Lai, K.R.; Hung, S.-I. Does the Short-Term Effect of Air Pollution Influence the Incidence of Spontaneous Intracerebral Hemorrhage in Different Patient Groups? Big Data Analysis in Taiwan. Int. J. Environ. Res. Public Health 2017, 14, 1547. https://doi.org/10.3390/ijerph14121547
Chien T-Y, Ting H-W, Chan C-L, Yang N-P, Pan R-H, Lai KR, Hung S-I. Does the Short-Term Effect of Air Pollution Influence the Incidence of Spontaneous Intracerebral Hemorrhage in Different Patient Groups? Big Data Analysis in Taiwan. International Journal of Environmental Research and Public Health. 2017; 14(12):1547. https://doi.org/10.3390/ijerph14121547
Chicago/Turabian StyleChien, Ting-Ying, Hsien-Wei Ting, Chien-Lung Chan, Nan-Ping Yang, Ren-Hao Pan, K. Robert Lai, and Su-In Hung. 2017. "Does the Short-Term Effect of Air Pollution Influence the Incidence of Spontaneous Intracerebral Hemorrhage in Different Patient Groups? Big Data Analysis in Taiwan" International Journal of Environmental Research and Public Health 14, no. 12: 1547. https://doi.org/10.3390/ijerph14121547
APA StyleChien, T. -Y., Ting, H. -W., Chan, C. -L., Yang, N. -P., Pan, R. -H., Lai, K. R., & Hung, S. -I. (2017). Does the Short-Term Effect of Air Pollution Influence the Incidence of Spontaneous Intracerebral Hemorrhage in Different Patient Groups? Big Data Analysis in Taiwan. International Journal of Environmental Research and Public Health, 14(12), 1547. https://doi.org/10.3390/ijerph14121547