Air pollution and decreased bone mineral density among Women's Health Initiative participants
暂无分享,去创建一个
A. Baccarelli | I. Ionita-Laza | D. Liao | J. Wactawski‐Wende | C. Crandall | D. Prada | E. Whitsel | J. Yanosky | M. Kioumourtzoglou | A. Kupsco | Yike Shen | G. Miller | J. Stewart | A. Ramírez | C. Crandall
[1] Zilong Zhang,et al. Ambient air pollution, bone mineral density and osteoporosis: Results from a national population-based cohort study. , 2022, Chemosphere.
[2] Faxue Zhang,et al. Long-term exposure to air pollution might decrease bone mineral density T-score and increase the prevalence of osteoporosis in Hubei province: evidence from China Osteoporosis Prevalence Study , 2022, Osteoporosis International.
[3] C. Ward‐Caviness,et al. Gaseous air pollutants and DNA methylation in a methylome-wide association study of an ethnically and environmentally diverse population of U.S. adults. , 2022, Environmental research.
[4] Pravir Kumar,et al. Free radical biology in neurological manifestations: mechanisms to therapeutics interventions , 2021, Environmental Science and Pollution Research.
[5] K. Kwon,et al. Incidence of osteoporosis and ambient air pollution in South Korea: a population-based retrospective cohort study , 2021, BMC Public Health.
[6] Yonghua Hu,et al. Impact of Exposure to Ambient Fine Particulate Matter Pollution on Adults with Knee Osteoarthritis , 2021, International journal of environmental research and public health.
[7] D. Gatti,et al. Association between exposure to fine particulate matter and osteoporosis: a population-based cohort study , 2021, Osteoporosis International.
[8] K. Chin,et al. Particulate Air Pollution and Osteoporosis: A Systematic Review , 2021, Risk management and healthcare policy.
[9] D. Rojas-Rueda,et al. Premature mortality due to air pollution in European cities: a health impact assessment. , 2021, The Lancet. Planetary health.
[10] S. Kheirouri,et al. Effects of sulfur dioxide, ozone, and ambient air pollution on bone metabolism related biochemical parameters in a rat model , 2020, Environmental analysis, health and toxicology.
[11] Yu-Hsuan Lin,et al. Air Pollutants Interaction and Gender Difference on Bone Mineral Density T-Score in Taiwanese Adults , 2020, International journal of environmental research and public health.
[12] T. Oh,et al. Exposure to Air Pollution and Risk of Hip Fracture: A Population-Based Cohort Study With a 6-Year Follow-Up in South Korea. , 2020, Journal of occupational and environmental medicine.
[13] K. Miyamoto,et al. Smoking cessation increases levels of osteocalcin and uncarboxylated osteocalcin in human sera , 2020, Scientific Reports.
[14] A. Baccarelli,et al. Outdoor air pollution and cancer: An overview of the current evidence and public health recommendations , 2020, CA: a cancer journal for clinicians.
[15] Yifang Zhu,et al. Ambient air pollution and cause-specific risk of hospital admission in China: A nationwide time-series study , 2020, PLoS medicine.
[16] Sang Min Park,et al. Association of air pollution with osteoporotic fracture risk among women over 50 years of age , 2020, Journal of Bone and Mineral Metabolism.
[17] Yuming Guo,et al. Long-term exposure to air pollution might increase prevalence of osteoporosis in Chinese rural population. , 2020, Environmental research.
[18] T. Schikowski,et al. The role of air pollution in cognitive impairment and decline , 2020, Neurochemistry International.
[19] E. Bezirtzoglou,et al. Environmental and Health Impacts of Air Pollution: A Review , 2020, Frontiers in Public Health.
[20] M. Vatn,et al. The effect of nitrogen dioxide on low birth weight in women with inflammatory bowel disease: a Norwegian pregnancy cohort study (MoBa) , 2020, Scandinavian journal of gastroenterology.
[21] C. Tonne,et al. Association of Ambient and Household Air Pollution With Bone Mineral Content Among Adults in Peri-urban South India , 2020, JAMA network open.
[22] Jiansheng Wu,et al. Air pollution and lung cancer incidence in China: Who are faced with a greater effect? , 2019, Environment international.
[23] M. R. Melo-Júnior,et al. Osteopenia-osteoporosis discrimination in postmenopausal women by 1H NMR-based metabonomics , 2019, PloS one.
[24] M. Laurent,et al. Age-related bone loss and sarcopenia in men. , 2019, Maturitas.
[25] Ulrich Pöschl,et al. Cardiovascular disease burden from ambient air pollution in Europe reassessed using novel hazard ratio functions , 2019, European heart journal.
[26] Hongyu Li,et al. The modification of indoor PM2.5 exposure to chronic obstructive pulmonary disease in Chinese elderly people: A meet-in-metabolite analysis. , 2018, Environment international.
[27] Chuanhua Yu,et al. Short-Term Effects of Ambient Air Pollution on Hospitalization for Respiratory Disease in Taiyuan, China: A Time-Series Analysis , 2018, International journal of environmental research and public health.
[28] Á. Gil de Miguel,et al. Short-term association between outdoor air pollution and osteoporotic hip fracture , 2018, Osteoporosis International.
[29] H. Solleiro-Villavicencio,et al. Effect of Chronic Oxidative Stress on Neuroinflammatory Response Mediated by CD4+T Cells in Neurodegenerative Diseases , 2018, Front. Cell. Neurosci..
[30] A. Levêque,et al. Short-term effects of nitrogen dioxide on hospital admissions for cardiovascular disease in Wallonia, Belgium. , 2017, International journal of cardiology.
[31] E. Colicino,et al. Association of air particulate pollution with bone loss over time and bone fracture risk: analysis of data from two independent studies. , 2017, The Lancet. Planetary health.
[32] P. Geusens,et al. Inflammatory diseases and bone fragility , 2017, Osteoporosis International.
[33] Quazi Quamruzzaman,et al. The Joint Effect of Prenatal Exposure to Metal Mixtures on Neurodevelopmental Outcomes at 20–40 Months of Age: Evidence from Rural Bangladesh , 2016, Environmental health perspectives.
[34] Casey Olives,et al. Historical Prediction Modeling Approach for Estimating Long-Term Concentrations of PM2.5 in Cohort Studies before the 1999 Implementation of Widespread Monitoring , 2016, Environmental health perspectives.
[35] F. Claessens,et al. Estrogens and Androgens in Skeletal Physiology and Pathophysiology. , 2017, Physiological reviews.
[36] C. Pope,et al. Exposure to Fine Particulate Air Pollution Is Associated With Endothelial Injury and Systemic Inflammation. , 2016, Circulation research.
[37] F. Lurmann,et al. Air pollution affects lung cancer survival , 2016, Thorax.
[38] Jorge Mateu,et al. Spatial prediction and kriging , 2015 .
[39] David C Christiani,et al. Bayesian kernel machine regression for estimating the health effects of multi-pollutant mixtures. , 2015, Biostatistics.
[40] F. Cecconi,et al. Oxidative stress and autophagy: the clash between damage and metabolic needs , 2014, Cell Death and Differentiation.
[41] Duanping Liao,et al. Spatio-temporal modeling of particulate air pollution in the conterminous United States using geographic and meteorological predictors , 2014, Environmental Health.
[42] Richard L. Smith,et al. Estimating Personal Exposures from Ambient Air Pollution Measures: Using Meta-Analysis to Assess Measurement Error , 2014, Epidemiology.
[43] Jeng-Min Chiou,et al. Association Between the Metabolome and Low Bone Mineral Density in Taiwanese Women Determined by 1H NMR Spectroscopy , 2014, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[44] Hongtu Zhu,et al. Exposure to Urban Air Pollution and Bone Health in Clinically Healthy Six-year-old Children , 2013, Arhiv za higijenu rada i toksikologiju.
[45] K. Forrest,et al. Prevalence and correlates of vitamin D deficiency in US adults. , 2011, Nutrition research.
[46] J. Crane,et al. The respiratory health effects of nitrogen dioxide in children with asthma , 2010, European Respiratory Journal.
[47] J. Araujo. Particulate air pollution, systemic oxidative stress, inflammation, and atherosclerosis , 2010, Air quality, atmosphere, & health.
[48] Eric A Whitsel,et al. Estimating Error in Using Ambient PM2.5 Concentrations as Proxies for Personal Exposures: A Review , 2010, Epidemiology.
[49] Richard L. Smith,et al. Estimating Error in Using Residential Outdoor PM2.5 Concentrations as Proxies for Personal Exposures: A Meta-analysis , 2010, Environmental health perspectives.
[50] T. Nawrot,et al. Induction of IL-6 and inhibition of IL-8 secretion in the human airway cell line Calu-3 by urban particulate matter collected with a modified method of PM sampling. , 2009, Environmental research.
[51] M. Kenward,et al. Multiple imputation for missing data in epidemiological and clinical research: potential and pitfalls , 2009, BMJ : British Medical Journal.
[52] Stanley T. Omaye,et al. Air pollutants, oxidative stress and human health. , 2009, Mutation research.
[53] C. Cooper,et al. Epidemiology of osteoporosis. , 2008, Best practice & research. Clinical endocrinology & metabolism.
[54] Patrick Royston,et al. How should variable selection be performed with multiply imputed data? , 2008, Statistics in medicine.
[55] A. Tosteson,et al. Incidence and Economic Burden of Osteoporosis‐Related Fractures in the United States, 2005–2025 , 2007, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[56] Richard L. Smith,et al. Accuracy of commercial geocoding: assessment and implications , 2006, Epidemiologic perspectives & innovations : EP+I.
[57] Duanping Liao,et al. GIS Approaches for the Estimation of Residential-Level Ambient PM Concentrations , 2006, Environmental Health Perspectives.
[58] J. Manson,et al. Calcium plus vitamin D supplementation and the risk of fractures. , 2006, The New England journal of medicine.
[59] Bess Dawson-Hughes,et al. Fracture prevention with vitamin D supplementation: a meta-analysis of randomized controlled trials. , 2005, JAMA.
[60] J. Pouilles,et al. Variability of vertebral and femoral postmenopausal bone loss: A longitudinal study , 2005, Osteoporosis International.
[61] Duanping Liao,et al. Accuracy and repeatability of commercial geocoding. , 2004, American journal of epidemiology.
[62] A. LaCroix,et al. The Women's Health Initiative calcium-vitamin D trial: overview and baseline characteristics of participants. , 2003, Annals of epidemiology.
[63] I. Reid,et al. Effects of Vitamin D Supplementation on Strength, Physical Performance, and Falls in Older Persons: A Systematic Review , 2003, Journal of the American Geriatrics Society.
[64] R. Lew,et al. Effects of Vitamin D and Calcium Supplementation on Falls: A Randomized Controlled Trial , 2003, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[65] P. Hopke,et al. Atmospheric aerosol over Vermont: chemical composition and sources. , 2001, Environmental science & technology.
[66] J. Hogg,et al. Cytokines involved in the systemic inflammatory response induced by exposure to particulate matter air pollutants (PM(10)). , 2001, American journal of respiratory and critical care medicine.
[67] L. Chambless,et al. Neighborhood of residence and incidence of coronary heart disease. , 2001, The New England journal of medicine.
[68] S L Zeger,et al. Exposure measurement error in time-series studies of air pollution: concepts and consequences. , 2000, Environmental health perspectives.
[69] B G Armstrong,et al. Effect of measurement error on epidemiological studies of environmental and occupational exposures. , 1998, Occupational and environmental medicine.
[70] J F Gamble,et al. PM2.5 and mortality in long-term prospective cohort studies: cause-effect or statistical associations? , 1998, Environmental health perspectives.
[71] JoAnn E. Manson,et al. Design of the Women's Health Initiative clinical trial and observational study. The Women's Health Initiative Study Group. , 1998, Controlled clinical trials.
[72] J. Gamble,et al. Health and respirable particulate (PM10) air pollution: a causal or statistical association? , 1996, Environmental health perspectives.
[73] Richardo A. Olea,et al. Semivariogram modeling by weighted least squares , 1996 .
[74] C. Cooper,et al. Epidemiology of osteoporosis. , 2002, Best practice & research. Clinical rheumatology.
[75] T. Mertens. Estimating the effects of misclassification , 1993, The Lancet.
[76] H Checkoway,et al. Bias due to misclassification in the estimation of relative risk. , 1977, American journal of epidemiology.