Snow, J. The cholera near Golden-Square, and at Deptford. Med. Times Gazette 9, 566 (1854).

Google Scholar 

Xu, J. et al. Global urbanicity is associated with brain and behaviour in young people. Nat. Hum. Behav. 6, 279–293 (2022).

Article 
PubMed 

Google Scholar 

Liao, Y.-A. et al. Nighttime lights, urban features, household poverty, depression and obesity. Curr. Psychol. 16, 1–12 (2022).

Article 

Google Scholar 

Volk, H. E., Lurmann, F., Penfold, B., Hertz-Picciotto, I. & McConnell, R. Traffic-related air pollution, particulate matter and autism. JAMA Psychiatry 70, 71–77 (2013).

Article 
PubMed 
PubMed Central 

Google Scholar 

World Health Organization. Preventing disease through healthy environments: a global assessment of the burden of disease from environmental risks. WHO https://www.who.int/publications-detail-redirect/9789241565196 (accessed 23 September 2023).

United Nations. SDG indicators. UN https://unstats.un.org/sdgs/report/2022/goal-11/ (accessed 31 May 2024).

Kuddus, M. A., Tynan, E. & McBryde, E. Urbanization: a problem for the rich and the poor? Public Health Rev. 41, 1 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Ventriglio, A., Torales, J., Castaldelli-Maia, J. M., De Berardis, D. & Bhugra, D. Urbanization and emerging mental health issues. CNS Spectr. 26, 43–50 (2021).

Article 
PubMed 

Google Scholar 

Srivastava, K. Urbanization and mental health. Ind. Psychiatry J. 18, 75–76 (2009).

Article 
PubMed 
PubMed Central 

Google Scholar 

Zhou, X. & Chen, H. Impact of urbanization-related land use land cover changes and urban morphology changes on the urban heat island phenomenon. Sci. Total Environ. 635, 1467–1476 (2018).

Article 
PubMed 

Google Scholar 

Zhang, L. et al. Direct and indirect impacts of urbanization on vegetation growth across the World’s cities. Sci. Adv. 8, eabo0095 (2022).

Article 
PubMed 
PubMed Central 

Google Scholar 

Karcher, N. R. & Barch, D. M. The ABCD Study: understanding the development of risk for mental and physical health outcomes. Neuropsychopharmacology 46, 131–142 (2021).

Article 
PubMed 

Google Scholar 

Barch, D. M. et al. Demographic and mental health assessments in the adolescent brain and cognitive development study: updates and age-related trajectories. Dev. Cogn. Neurosci. 52, 101031 (2021).

Article 
PubMed 
PubMed Central 

Google Scholar 

Blakemore, S.-J. & Mills, K. L. Is adolescence a sensitive period for sociocultural processing? Annu. Rev. Psychol. 65, 187–207 (2014).

Article 
PubMed 

Google Scholar 

Paus, T. How environment and genes shape the adolescent brain. Horm. Behav. 64, 195–202 (2013).

Article 
PubMed 

Google Scholar 

Liu, Y., Kwan, M.-P., Wong, M. S. & Yu, C. Current methods for evaluating people’s exposure to green space: a scoping review. Social Sci. Med. 338, 116303 (2023).

Article 

Google Scholar 

Astell-Burt, T. et al. Green space and cardiovascular health in people with type 2 diabetes. Health Place 69, 102554 (2021).

Article 
PubMed 

Google Scholar 

Freymueller, J. et al. Current methodologies of greenspace exposure and mental health research—a scoping review. Front. Public Health 12, 1360134 (2024).

Article 
PubMed 
PubMed Central 

Google Scholar 

Salgado, M. et al. Environmental determinants of population health in urban settings. A systematic review. BMC Public Health 20, 853 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Bowler, D. E., Buyung-Ali, L. M., Knight, T. M. & Pullin, A. S. A systematic review of evidence for the added benefits to health of exposure to natural environments. BMC Public Health 10, 456 (2010).

Article 
PubMed 
PubMed Central 

Google Scholar 

Patz, J. A. et al. Unhealthy landscapes: policy recommendations on land use change and infectious disease emergence. Environ. Health Perspect. 112, 1092–1098 (2004).

Article 
PubMed 
PubMed Central 

Google Scholar 

Engemann, K. et al. Residential green space in childhood is associated with lower risk of psychiatric disorders from adolescence into adulthood. Proc. Natl Acad. Sci. USA 116, 5188–5193 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Yang, B.-Y. et al. Association between greenness surrounding schools and kindergartens and attention-deficit/hyperactivity disorder in children in China. JAMA Netw. Open 2, e1917862 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Engemann, K. et al. Association between childhood green space, genetic liability and the incidence of schizophrenia. Schizophr. Bull. 46, 1629–1637 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Dadvand, P. et al. Green spaces and cognitive development in primary schoolchildren. Proc. Natl Acad. Sci. USA 112, 7937–7942 (2015).

Article 
PubMed 
PubMed Central 

Google Scholar 

Lee, M., Kim, S. & Ha, M. Community greenness and neurobehavioral health in children and adolescents. Sci. Total Environ. 672, 381–388 (2019).

Article 
PubMed 

Google Scholar 

Younan, D. et al. Environmental determinants of aggression in adolescents: role of urban neighborhood greenspace. J. Am. Acad. Child Adolesc. Psychiatry 55, 591–601 (2016).

Article 
PubMed 
PubMed Central 

Google Scholar 

Franklin, M., Yin, X., McConnell, R. & Fruin, S. Association of the built environment with childhood psychosocial stress. JAMA Netw. Open 3, e2017634 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Helbich, M. et al. Using deep learning to examine street view green and blue spaces and their associations with geriatric depression in Beijing, China. Environ. Int. 126, 107–117 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Torres Toda, M. et al. Residential surrounding greenspace and mental health in three Spanish areas. Int. J. Environ. Res. Public Health 17, 5670 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Brown, S. C. et al. health disparities in the relationship of neighborhood greenness to mental health outcomes in 249,405 U.S. Medicare beneficiaries. Int. J. Environ. Res. Public Health 15, 430 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Kwon, O.-H. et al. Urban green space and happiness in developed countries. EPJ Data Sci. 10, 28 (2021).

Article 
PubMed 
PubMed Central 

Google Scholar 

Helbich, M., O’Connor, R. C., Nieuwenhuijsen, M. & Hagedoorn, P. Greenery exposure and suicide mortality later in life: a longitudinal register-based case-control study. Environ. Int. 143, 105982 (2020).

Article 
PubMed 

Google Scholar 

Generaal, E., Timmermans, E. J., Dekkers, J. E. C., Smit, J. H. & Penninx, B. W. J. H. Not urbanization level but socioeconomic, physical and social neighbourhood characteristics are associated with presence and severity of depressive and anxiety disorders. Psychol. Med. 49, 149–161 (2019).

Article 
PubMed 

Google Scholar 

Wang, R. et al. Urban greenery and mental wellbeing in adults: cross-sectional mediation analyses on multiple pathways across different greenery measures. Environ. Res. 176, 108535 (2019).

Article 
PubMed 

Google Scholar 

Astell-Burt, T. & Feng, X. Association of urban green space with mental health and general health among adults in Australia. JAMA Netw. Open 2, e198209 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Sun, Y. et al. Association between urban green space and postpartum depression, and the role of physical activity: a retrospective cohort study in southern California. Lancet Reg. Health Am. 21, 100462 (2023).

PubMed 
PubMed Central 

Google Scholar 

Zhang, L. & Tan, P. Y. Associations between urban green spaces and health are dependent on the analytical scale and how urban green spaces are measured. Int. J. Environ. Res. Public Health 16, 578 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Harris, V., Kendal, D., Hahs, A. K. & Threlfall, C. G. Green space context and vegetation complexity shape people’s preferences for urban public parks and residential gardens. Landscape Res. 43, 150–162 (2018).

Article 

Google Scholar 

Prevedello, J. A., Almeida‐Gomes, M. & Lindenmayer, D. B. The importance of scattered trees for biodiversity conservation: a global meta‐analysis. J. Appl. Ecol. 55, 205–214 (2018).

Article 

Google Scholar 

Wood, E. et al. Not all green space is created equal: biodiversity predicts psychological restorative benefits from urban green space. Front. Psychol. 9, 2320 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Ng, E., Chen, L., Wang, Y. & Yuan, C. A study on the cooling effects of greening in a high-density city: an experience from Hong Kong. Build. Environ. 47, 256–271 (2012).

Article 

Google Scholar 

Liu, Y., Kwan, M.-P. & Yu, C. The uncertain geographic context problem (UGCoP) in measuring people’s exposure to green space using the integrated 3S approach. Urban For. Urban Green. 85, 127972 (2023).

Article 

Google Scholar 

Bertram, C., Goebel, J., Krekel, C. & Rehdanz, K. Urban land use fragmentation and human well-being. Land Econ. 98, 399–420 (2022).

Article 

Google Scholar 

Tsai, W.-L. et al. Relationships between characteristics of urban green land cover and mental health in U.S. Metropolitan Areas. Int. J. Environ. Res. Public Health 15, 340 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Li, J. et al. Exposure to blue space surroundings and depressive symptoms in young Chinese adults: the mediating role of sleep. Environ. Res. 243, 117765 (2024).

Article 
PubMed 

Google Scholar 

Ghosh, S. & Pal, S. Anthropogenic impacts on urban blue space and its reciprocal effect on human and socio-ecological health. J. Environ. Manage. 351, 119727 (2024).

Article 
PubMed 

Google Scholar 

Sui, Y., Ettema, D. & Helbich, M. Changes in neighborhood physical and social environments matter for change in mental health: longitudinal evidence from Dutch panel data. Environ. Pollut. 337, 122540 (2023).

Article 
PubMed 

Google Scholar 

Georgiou, M., Morison, G., Smith, N., Tieges, Z. & Chastin, S. Mechanisms of impact of blue spaces on human health: a systematic literature review and meta-analysis. Int. J. Environ. Res. Public Health 18, 2486 (2021).

Article 
PubMed 
PubMed Central 

Google Scholar 

Nazif-Munoz, J. I., Cedeno Laurent, J. G., Browning, M., Spengler, J. & Olvera Álvarez, H. A. Green, brown and gray: associations between different measurements of land patterns and depression among nursing students in El Paso, Texas. Int. J. Environ. Res. Public Health 17, 8146 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Garvin, E., Branas, C., Keddem, S., Sellman, J. & Cannuscio, C. More than just an eyesore: local insights and solutions on vacant land and urban health. J. Urban Health 90, 412–426 (2013).

Article 
PubMed 

Google Scholar 

Krekel, C., Kolbe, J. & Wüstemann, H. The greener, the happier? The effect of urban land use on residential well-being. Ecol. Econ. 121, 117–127 (2016).

Article 

Google Scholar 

Wang, T., Kaida, N. & Kaida, K. Effects of outdoor artificial light at night on human health and behavior: a literature review. Environ. Pollut. 323, 121321 (2023).

Article 
PubMed 

Google Scholar 

Yu, Z. et al. Association of outdoor artificial light at night with mental health among China adults: a prospective ecology study. Environ. Sci. Pollut. Res. 29, 82286–82296 (2022).

Article 

Google Scholar 

Min, J. & Min, K. Outdoor light at night and the prevalence of depressive symptoms and suicidal behaviors: a cross-sectional study in a nationally representative sample of Korean adults. J. Affect. Disord. 227, 199–205 (2018).

Article 
PubMed 

Google Scholar 

Paksarian, D. et al. Association of outdoor artificial light at night with mental disorders and sleep patterns among us adolescents. JAMA Psychiatry 77, 1266–1275 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Liu, Y., Yu, C., Wang, K., Kwan, M.-P. & Tse, L. A. Linking artificial light at night with human health via a multi-component framework: a systematic evidence map. Environments 10, 39 (2023).

Article 

Google Scholar 

Liu, Y. & Kwan, M.-P. Mobility-oriented measurements of people’s exposure to outdoor artificial light at night (ALAN) and the uncertain geographic context problem (UGCoP). PLoS ONE 19, e0298869 (2024).

Article 
PubMed 
PubMed Central 

Google Scholar 

Ohayon, M. M. & Milesi, C. Artificial outdoor nighttime lights associate with altered sleep behavior in the American general population. Sleep 39, 1311–1320 (2016).

Article 
PubMed 
PubMed Central 

Google Scholar 

Wang, L.-B. et al. Association between exposure to outdoor artificial light at night and sleep disorders among children in China. JAMA Netw. Open 5, e2213247 (2022).

Article 
PubMed 
PubMed Central 

Google Scholar 

Helbich, M., Browning, M. H. E. M. & Huss, A. Outdoor light at night, air pollution and depressive symptoms: a cross-sectional study in the Netherlands. Sci. Total Environ. 744, 140914 (2020).

Article 
PubMed 

Google Scholar 

Jin, J. et al. Artificial light at night, MRI-based measures of brain iron deposition and incidence of multiple mental disorders. Sci. Total Environ. 902, 166004 (2023).

Article 
PubMed 

Google Scholar 

Dadvand, P. et al. The association between lifelong greenspace exposure and 3-dimensional brain magnetic resonance imaging in Barcelona schoolchildren. Environ. Health Perspect. 126, 027012 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Buchhorn, M. et al. Copernicus Global Land Service: Land Cover 100m: Collection 3: Epoch 2017. Globe 2020. International Institute for Applied Systems Analysis https://pure.iiasa.ac.at/id/eprint/18978/ (7 August 2023).

Earth Observation Group. VIIRS nighttime lights. Colorado School of Mines https://eogdata.mines.edu/products/vnl/ (accessed 19 December 2022).

Tatem, A. J. WorldPop, open data for spatial demography. Sci. Data 4, 170004 (2017).

Article 
PubMed 
PubMed Central 

Google Scholar 

Fan, C. C. et al. Adolescent Brain Cognitive Development (ABCD) Study Linked External Data (LED): protocol and practices for geocoding and assignment of environmental data. Dev. Cogn. Neurosci. 52, 101030 (2021).

Article 
PubMed 
PubMed Central 

Google Scholar 

Puhakka, S. et al. Satellite imaging-based residential greenness and accelerometry measured physical activity at midlife—population-based northern Finland birth cohort 1966 study. Int. J. Environ. Res. Public Health 17, 9202 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Browning, M. & Lee, K. Within what distance does ‘greenness’ best predict physical health? A systematic review of articles with GIS buffer analyses across the lifespan. Int. J. Environ. Res. Public Health 14, 675 (2017).

Article 
PubMed 
PubMed Central 

Google Scholar 

Achenbach, T. M. in Encyclopedia of Clinical Neuropsychology (eds. Kreutzer, J. et al.) 1–7 (Springer, 2017).

Luciana, M. et al. Adolescent neurocognitive development and impacts of substance use: overview of the Adolescent Brain Cognitive Development (ABCD) baseline neurocognition battery. Dev. Cogn. Neurosci. 32, 67–79 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Thomas Yeo, B. T. et al. The organization of the human cerebral cortex estimated by intrinsic functional connectivity. J. Neurophysiol. 106, 1125–1165 (2011).

Article 
PubMed Central 

Google Scholar 

Doucet, G. E. et al. Transdiagnostic and disease-specific abnormalities in the default-mode network hubs in psychiatric disorders: a meta-analysis of resting-state functional imaging studies. Eur. Psychiatry 63, e57 (2020).

Article 
PubMed 
PubMed Central 

Google Scholar 

Sendi, M. S. E. et al. Abnormal dynamic functional network connectivity estimated from default mode network predicts symptom severity in major depressive disorder. Brain Connect. 11, 838–849 (2021).

Article 
PubMed 
PubMed Central 

Google Scholar 

Posner, J. et al. Increased default mode network connectivity in individuals at high familial risk for depression. Neuropsychopharmacology 41, 1759–1767 (2016).

Article 
PubMed 

Google Scholar 

Broyd, S. J. et al. Default-mode brain dysfunction in mental disorders: a systematic review. Neurosci. Biobehav. Rev. 33, 279–296 (2009).

Article 
PubMed 

Google Scholar 

Holz, N. E. et al. Early social adversity, altered brain functional connectivity and mental health. Biol. Psychiatry 93, 430–441 (2023).

Article 
PubMed 

Google Scholar 

Choi, K.-M. et al. Comparative analysis of default mode networks in major psychiatric disorders using resting-state EEG. Sci. Rep. 11, 22007 (2021).

Article 
PubMed 
PubMed Central 

Google Scholar 

Holz, N. E., Laucht, M. & Meyer-Lindenberg, A. Recent advances in understanding the neurobiology of childhood socioeconomic disadvantage. Curr. Opin. Psychiatry 28, 365–370 (2015).

Article 
PubMed 

Google Scholar 

Liu, Y., Kwan, M.-P., Wang, J. & Cai, J. Confounding associations between green space and outdoor artificial light at night: systematic investigations and implications for urban health. Environ. Sci. Ecotechnol. 21, 100436 (2024).

Article 
PubMed 
PubMed Central 

Google Scholar 

Fett, A.-K. J., Lemmers-Jansen, I. L. J. & Krabbendam, L. Psychosis and urbanicity: a review of the recent literature from epidemiology to neurourbanism. Curr. Opin. Psychiatry 32, 232–241 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Völker, S. & Kistemann, T. The impact of blue space on human health and well-being—salutogenetic health effects of inland surface waters: a review. Int. J. Hyg. Environ. Health 214, 449–460 (2011).

Article 
PubMed 

Google Scholar 

Nutsford, D., Pearson, A. L., Kingham, S. & Reitsma, F. Residential exposure to visible blue space (but not green space) associated with lower psychological distress in a capital city. Health Place 39, 70–78 (2016).

Article 
PubMed 

Google Scholar 

Geary, R. S. et al. Green-blue space exposure changes and impact on individual-level well-being and mental health: a population-wide dynamic longitudinal panel study with linked survey data. Public Health Res. (Southampt.) 11, 1–176 (2023).

Article 

Google Scholar 

Kwan, M.-P. The stationarity bias in research on the environmental determinants of health. Health Place 70, 102609 (2021).

Article 
PubMed 

Google Scholar 

Kwan, M.-P. The uncertain geographic context problem. Ann. Assoc. Am. Geogr. 102, 958–968 (2012).

Article 

Google Scholar 

Kwan, M.-P. The neighborhood effect averaging problem (NEAP): an elusive confounder of the neighborhood effect. Int. J. Environ. Res. Public Health 15, 1841 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Liu, Y., Kwan, M.-P. & Yu, C. How mobility and temporal contexts may affect environmental exposure measurements: using outdoor artificial light at night (ALAN) and urban green space as examples. Ann. Am. Assoc. Geogr. 114, 1098–1117 (2024).

Google Scholar 

Fuertes, E. et al. Residential greenspace and lung function up to 24 years of age: the ALSPAC birth cohort. Environ. Int. 140, 105749 (2020).

Article 
PubMed 

Google Scholar 

Kang, Y. J., Tan, H.-Y., Lee, C. Y. & Cho, H. An air particulate pollutant induces neuroinflammation and neurodegeneration in human brain models. Adv. Sci. (Weinh.) 8, e2101251 (2021).

Article 

Google Scholar 

McMahan, E. A. & Estes, D. The effect of contact with natural environments on positive and negative affect: a meta-analysis. J. Positive Psychol. 10, 507–519 (2015).

Article 

Google Scholar 

Besser, L. Outdoor green space exposure and brain health measures related to Alzheimer’s disease: a rapid review. BMJ Open 11, e043456 (2021).

Article 
PubMed 
PubMed Central 

Google Scholar 

Barton, J., Griffin, M. & Pretty, J. Exercise-, nature- and socially interactive-based initiatives improve mood and self-esteem in the clinical population. Perspect. Public Health 132, 89–96 (2012).

Article 
PubMed 

Google Scholar 

Zelenski, J. M., Dopko, R. L. & Capaldi, C. A. Cooperation is in our nature: nature exposure may promote cooperative and environmentally sustainable behavior. J. Environ. Psychol. 42, 24–31 (2015).

Article 

Google Scholar 

Elvidge, C. D., Zhizhin, M., Ghosh, T., Hsu, F.-C. & Taneja, J. Annual time series of global VIIRS nighttime lights derived from monthly averages: 2012 to 2019. Remote Sens. 13, 922 (2021).

Article 

Google Scholar 

Stevens, F. R., Gaughan, A. E., Linard, C. & Tatem, A. J. Disaggregating census data for population mapping using random forests with remotely-sensed and ancillary data. PLoS ONE 10, e0107042 (2015).

Article 
PubMed 
PubMed Central 

Google Scholar 

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