Associations of Air Pollution and Noise with Local Brain Structure in a Cohort of Older Adults
Despite the importance of understanding associations of air pollution and noise exposure with loss of neurocognitive performance, studies investigating these exposures and local brain structure are limited. We estimated associations of residential air pollution and noise exposures with neurocognitiv...
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Published in | Environmental health perspectives Vol. 128; no. 6; pp. 67012 - 134023 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
National Institute of Environmental Health Sciences
01.06.2020
Environmental Health Perspectives |
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Abstract | Despite the importance of understanding associations of air pollution and noise exposure with loss of neurocognitive performance, studies investigating these exposures and local brain structure are limited.
We estimated associations of residential air pollution and noise exposures with neurocognitive test performance and the local gyrification index (lGI), a marker for local brain atrophy, among older adults.
For
participants from the population-based 1000BRAINS study, based on the German Heinz Nixdorf Recall study, we assessed residential exposures to particulate matter (
,
,
), accumulation mode particle number (
), and nitrogen oxides (
,
), using land-use regression and chemistry transport models. Weighted 24-h and nighttime noise were modeled according to the European noise directive. We evaluated associations of air pollution and noise exposure at the participants' 2006-2008 residential addresses with neurocognitive test performance and region-specific lGI values (
) from magnetic resonance imaging, both assessed in 2011-2015, using linear regression and adjusting for demographic and personal characteristics.
Air pollution and noise were associated with language and short-term/working memory and with local atrophy of the fronto-parietal network (FPN), a functional resting-state network associated with these cognitive processes. For example, per
, local brain atrophy was more pronounced in the posterior brain regions of the FPN, with a
[95% confidence interval (CI):
, 0.00] lower lGI. In contrast, in the anterior regions of the FPN, weighted 24-h and nighttime noise were associated with less local brain atrophy [e.g., 0.02 (95% CI: 0.00, 0.04) for
(A) 24-h noise].
Air pollution and noise exposures were associated in opposite directions with markers of local atrophy of the FPN in the right brain hemisphere in older adults, suggesting that both chronic air pollution and noise exposure may influence the physiological aging process of the brain. https://doi.org/10.1289/EHP5859. |
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AbstractList | BACKGROUND: Despite the importance of understanding associations of air pollution and noise exposure with loss of neurocognitive performance, studies investigating these exposures and local brain structure are limited. OBJECTIVE: We estimated associations of residential air pollution and noise exposures with neurocognitive test performance and the local gyrification index (lGI), a marker for local brain atrophy, among older adults. METHODS: For n = 615 participants from the population-based 1000BRAINS study, based on the German Heinz Nixdorf Recall study, we assessed residential exposures to particulate matter (P[M.sub.10], P[M.sub.2.5], P[M.sub.2.5abs]), accumulation mode particle number (P[N.sub.AM]), and nitrogen oxides (N[O.sub.x], N[O.sub.2]), using land-use regression and chemistry transport models. Weighted 24-h and nighttime noise were modeled according to the European noise directive. We evaluated associations of air pollution and noise exposure at the participants' 2006-2008 residential addresses with neurocognitive test performance and region-specific lGI values (n = 590) from magnetic resonance imaging, both assessed in 2011-2015, using linear regression and adjusting for demographic and personal characteristics. RESULTS: Air pollution and noise were associated with language and short-term/working memory and with local atrophy of the fronto-parietal network (FPN), a functional resting-state network associated with these cognitive processes. For example, per 2-[micro]g/[m.sup.3] P[M.sub.10], local brain atrophy was more pronounced in the posterior brain regions of the FPN, with a -0.02 [95% confidence interval (CI): -0.04, 0.00] lower lGI. In contrast, in the anterior regions of the FPN, weighted 24-h and nighttime noise were associated with less local brain atrophy [e.g., 0.02 (95% CI: 0.00, 0.04) for 10dB(A) 24-h noise]. CONCLUSIONS: Air pollution and noise exposures were associated in opposite directions with markers of local atrophy of the FPN in the right brain hemisphere in older adults, suggesting that both chronic air pollution and noise exposure may influence the physiological aging process of the brain. Background: Despite the importance of understanding associations of air pollution and noise exposure with loss of neurocognitive performance, studies investigating these exposures and local brain structure are limited. Objective: We estimated associations of residential air pollution and noise exposures with neurocognitive test performance and the local gyrification index (lGI), a marker for local brain atrophy, among older adults. Methods: For n=615 participants from the population-based 1000BRAINS study, based on the German Heinz Nixdorf Recall study, we assessed residential exposures to particulate matter (PM10 , PM2.5 , PM2.5abs ), accumulation mode particle number (PNAM ), and nitrogen oxides (NOx , NO2 ), using land-use regression and chemistry transport models. Weighted 24-h and nighttime noise were modeled according to the European noise directive. We evaluated associations of air pollution and noise exposure at the participants’ 2006–2008 residential addresses with neurocognitive test performance and region-specific lGI values (n=590 ) from magnetic resonance imaging, both assessed in 2011–2015, using linear regression and adjusting for demographic and personal characteristics. Results: Air pollution and noise were associated with language and short-term/working memory and with local atrophy of the fronto–parietal network (FPN), a functional resting-state network associated with these cognitive processes. For example, per 2-μg/m3 PM10 , local brain atrophy was more pronounced in the posterior brain regions of the FPN, with a −0.02 [95% confidence interval (CI): −0.04 , 0.00] lower lGI. In contrast, in the anterior regions of the FPN, weighted 24-h and nighttime noise were associated with less local brain atrophy [e.g., 0.02 (95% CI: 0.00, 0.04) for 10 dB (A) 24-h noise]. Conclusions: Air pollution and noise exposures were associated in opposite directions with markers of local atrophy of the FPN in the right brain hemisphere in older adults, suggesting that both chronic air pollution and noise exposure may influence the physiological aging process of the brain. Despite the importance of understanding associations of air pollution and noise exposure with loss of neurocognitive performance, studies investigating these exposures and local brain structure are limited. We estimated associations of residential air pollution and noise exposures with neurocognitive test performance and the local gyrification index (lGI), a marker for local brain atrophy, among older adults. For participants from the population-based 1000BRAINS study, based on the German Heinz Nixdorf Recall study, we assessed residential exposures to particulate matter ( , , ), accumulation mode particle number ( ), and nitrogen oxides ( , ), using land-use regression and chemistry transport models. Weighted 24-h and nighttime noise were modeled according to the European noise directive. We evaluated associations of air pollution and noise exposure at the participants' 2006-2008 residential addresses with neurocognitive test performance and region-specific lGI values ( ) from magnetic resonance imaging, both assessed in 2011-2015, using linear regression and adjusting for demographic and personal characteristics. Air pollution and noise were associated with language and short-term/working memory and with local atrophy of the fronto-parietal network (FPN), a functional resting-state network associated with these cognitive processes. For example, per , local brain atrophy was more pronounced in the posterior brain regions of the FPN, with a [95% confidence interval (CI): , 0.00] lower lGI. In contrast, in the anterior regions of the FPN, weighted 24-h and nighttime noise were associated with less local brain atrophy [e.g., 0.02 (95% CI: 0.00, 0.04) for (A) 24-h noise]. Air pollution and noise exposures were associated in opposite directions with markers of local atrophy of the FPN in the right brain hemisphere in older adults, suggesting that both chronic air pollution and noise exposure may influence the physiological aging process of the brain. https://doi.org/10.1289/EHP5859. |
Audience | Academic |
Author | Caspers, Svenja Moebus, Susanne Engel, Miriam Hoffmann, Barbara Lucht, Sarah Jockwitz, Christiane Nußbaum, René Jöckel, Karl-Heinz |
Author_xml | – sequence: 1 givenname: René surname: Nußbaum fullname: Nußbaum, René organization: Environmental Epidemiology Group, Institute of Occupational, Social and Environmental Medicine, Centre for Health and Society, Medical Faculty, Heinrich Heine University Düsseldorf, Düsseldorf, Germany – sequence: 2 givenname: Sarah surname: Lucht fullname: Lucht, Sarah organization: Institute for Medical Statistics, Medical Faculty, Heinrich Heine University Düsseldorf, Düsseldorf, Germany – sequence: 3 givenname: Christiane surname: Jockwitz fullname: Jockwitz, Christiane organization: Department of Psychiatry, Psychotherapy and Psychosomatics, Medical Faculty, Rheinisch-Westfälische Technische Hochschule Aachen University, Aachen, Germany – sequence: 4 givenname: Susanne surname: Moebus fullname: Moebus, Susanne organization: Centre for Urban Epidemiology, Institute of Medical Informatics, Biometry and Epidemiology, University of Duisburg-Essen, Essen, Germany – sequence: 5 givenname: Miriam surname: Engel fullname: Engel, Miriam organization: Centre for Urban Epidemiology, Institute of Medical Informatics, Biometry and Epidemiology, University of Duisburg-Essen, Essen, Germany – sequence: 6 givenname: Karl-Heinz surname: Jöckel fullname: Jöckel, Karl-Heinz organization: Institute of Medical Informatics, Biometry and Epidemiology, University of Duisburg-Essen, Essen, Germany – sequence: 7 givenname: Svenja surname: Caspers fullname: Caspers, Svenja organization: Jülich-Aachen Research Alliance (JARA)-BRAIN, JARA, Jülich, Germany – sequence: 8 givenname: Barbara surname: Hoffmann fullname: Hoffmann, Barbara organization: Environmental Epidemiology Group, Institute of Occupational, Social and Environmental Medicine, Centre for Health and Society, Medical Faculty, Heinrich Heine University Düsseldorf, Düsseldorf, Germany |
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SubjectTerms | Adults Age Aged Aging Air Pollutants Air pollution Air Pollution - statistics & numerical data Alzheimer's disease Atmospheric chemistry Atrophy Background noise Brain Brain - anatomy & histology Brain research Cognition Cognitive ability Cohort Studies Confidence intervals Cross-Sectional Studies Elderly Environmental Exposure - statistics & numerical data Exposure Female Hemispheric laterality Humans Investigations Land use Magnetic resonance imaging Male Markers Neuroimaging Neuropsychology Night Nighttime Nitrogen Dioxide Nitrogen Oxides Noise Noise control Noise levels Noise pollution Older people Outdoor air quality Particulate emissions Particulate Matter Pattern recognition Photochemicals Physiological aspects Population studies Regression analysis Short term memory Statistical analysis Traffic Women |
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Title | Associations of Air Pollution and Noise with Local Brain Structure in a Cohort of Older Adults |
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