Bell, J. E. et al. Changes in extreme events and the potential impacts on human health. J. Air Waste Manag. Assoc. 68, 265–287 (2018).

Article 

Google Scholar
 

Martínez-Austria Polioptro, F. & Bandala Erick, R. Heat waves: health effects, observed trends and climate change. Extreme Weather https://doi.org/10.5772/INTECHOPEN.75559 (2018).

Ebi, K. L. et al. Hot weather and heat extremes: health risks.Lancet 398, 698–708 (2021).

Article 

Google Scholar
 

Macintyre, H. L. et al. Assessing urban population vulnerability and environmental risks across an urban area during heatwaves-implications for health protection. Sci. Total Environ. 610–611, 678–690 (2018).

Article 

Google Scholar
 

Revich, B. & Shaposhnikov, D. The influence of heat and cold waves on mortality in Russian subarctic cities with varying climates. Int. J. Biometeorol. 66, 2501–2515 (2022).

Article 

Google Scholar
 

Kondo, M. C., Fluehr, J. M., McKeon, T. & Branas, C. C. Urban green space and its impact on human health. Int. J. Environ. Res. Public Health 15, 445 (2018).

Article 

Google Scholar
 

Callaghan, A. et al. The impact of green spaces on mental health in urban settings: a scoping review. J. Ment. Health 30, 179–193 (2021).

Article 
CAS 

Google Scholar
 

Chapman, S., Watson, J. E. M., Salazar, A., Thatcher, M. & McAlpine, C. A. The impact of urbanization and climate change on urban temperatures: a systematic review. Landsc. Ecol. 32, 1921–1935 (2017).

Article 

Google Scholar
 

Pyle, R. M. Nature matrix: reconnecting people and nature. Oryx 37, 206–214 (2003).

Article 

Google Scholar
 

Vyas, A., Wyns, A., Beggs, P. J. & Zhang, Y. Health at the centre of climate change negotiations: critical achievements from the COP28 health programme. Environ. Res. Lett. 19, 081003 (2024).

Article 

Google Scholar
 

Athokpam, V., Chamroy, T. & Ngairangbam, H. The role of urban green spaces in mitigating climate change: an integrative review of ecological, social, and health benefits. Environ. Rep. https://doi.org/10.51470/er.2024.6.1.10 (2024).

Richardson, E. A., Pearce, J., Mitchell, R. & Kingham, S. Role of physical activity in the relationship between urban green space and health. Public Health 127, 318–324 (2013).

Article 
CAS 

Google Scholar
 

Soga, M. & Gaston, K. J. Extinction of experience due to climate change. Nat. Clim. Change 14, 108–110 (2024).

Article 

Google Scholar
 

Wakayama, M., Mameno, K., Owake, T., Aikoh, T. & Shoji, Y. Climate change-induced heat reduces urban green space use: insights from mobile phone location big data. Urban For. Urban Green. 107, 128771 (2025).

Article 

Google Scholar
 

Wang, J., Mameno, K., Owake, T., Aikoh, T. & Shoji, Y. When the city gets too hot: decline in green space visits under extreme summer temperatures. Urban For. Urban Green. 118, 129312 (2026).

Article 

Google Scholar
 

Jaung, W. & Carrasco, L. R. Using mobile phone data to examine weather impacts on recreational ecosystem services in an urban protected area. Sci. Rep. 11, 5544 (2021).

Article 
CAS 

Google Scholar
 

Hao, T. et al. Heat and park attendance: evidence from “small data” and “big data” in Hong Kong. Build. Environ. 234, 110123 (2023).

Article 

Google Scholar
 

Mabon, L. & Shih, W.-Y. Urban greenspace as a climate change adaptation strategy for subtropical Asian cities: a comparative study across cities in three countries. Glob. Environ. Change 68, 102248 (2021).

Article 

Google Scholar
 

He, J., Yi, H. & Liu, J. Urban green space recreational service assessment and management: a conceptual model based on the service generation process. Ecol. Econ. 124, 59–68 (2016).

Article 

Google Scholar
 

Mooney, H. et al. Biodiversity, climate change, and ecosystem services. Curr. Opin. Environ. Sustain. 1, 46–54 (2009).

Article 

Google Scholar
 

Bakure, B. Z., Hundera, K. & Abara, M. Review on the effect of climate change on ecosystem services. IOP Conf. Ser.: Earth Environ. Sci. 1016, 012055 (2022).

van der Geest, K. et al. The impacts of climate change on ecosystem services and resulting losses and damages to people and society. in Loss and Damage from Climate Change 221–236 (Springer International Publishing, 2019).

Kjellstrom, T., Kovats, R. S., Lloyd, S. J., Holt, T. & Tol, R. S. J. The direct impact of climate change on regional labor productivity. Arch. Environ. Occup. Health 64, 217–227 (2009).

Article 

Google Scholar
 

Matsumoto, K., Tachiiri, K. & Su, X. Heat stress, labor productivity, and economic impacts: analysis of climate change impacts using two-way coupled modeling. Environ. Res. Commun. 3, 125001 (2021).

Article 

Google Scholar
 

Dasgupta, S. et al. Effects of climate change on combined labour productivity and supply: an empirical, multi-model study. Lancet Planet. Health 5, e455–e465 (2021).

Article 

Google Scholar
 

Huang, J., Chen, Y., Jones, P. & Hao, T. Heat stress and outdoor activities in open spaces of public housing estates in Hong Kong: a perspective of the elderly community. Indoor Built Environ. 31, 1447–1463 (2022).

Article 
CAS 

Google Scholar
 

Qin, H. et al. How thermal conditions affect the spatial-temporal distribution of visitors in urban parks: a case study in Chongqing, China. Urban For. Urban Green. 66, 127393 (2021).

Article 

Google Scholar
 

Arnberger, A., Schaper, S., Eder, R. & White, M. P. Visitor mood, restorativeness and connectedness to nature across four unmanaged urban outdoor swimming sites of varying naturalness. Urban For. Urban Green. 95, 128312 (2024).

Article 

Google Scholar
 

Liu, H., Remme, R. P., Hamel, P., Nong, H. & Ren, H. Supply and demand assessment of urban recreation service and its implication for greenspace planning-a case study on Guangzhou. Landsc. Urban Plan. 203, 103898 (2020).

Article 

Google Scholar
 

Rewitzer, S., Huber, R., Grêt-Regamey, A. & Barkmann, J. Economic valuation of cultural ecosystem service changes to a landscape in the Swiss Alps. Ecosyst. Serv. 26, 197–208 (2017).

Article 

Google Scholar
 

Okada, T. et al. Green port structures and their ecosystem services in highly urbanized Japanese bays. Coast. Eng. J. 63, 310–322 (2021).

Article 

Google Scholar
 

Mameno, K., Kubo, T., Oguma, H., Amagai, Y. & Shoji, Y. Decline in the alpine landscape aesthetic value in a national park under climate change. Clim. Change 170, 35 (2022).

Kubo, T. et al. Mobile phone network data reveal nationwide economic value of coastal tourism under climate change. Tour Manag. 77, 104010 (2020).

Article 

Google Scholar
 

Bowler, D. E., Buyung-Ali, L., Knight, T. M. & Pullin, A. S. Urban greening to cool towns and cities: a systematic review of the empirical evidence. Landsc. Urban Plan. 97, 147–155 (2010).

Article 

Google Scholar
 

Gunawardena, K. R., Wells, M. J. & Kershaw, T. Utilising green and bluespace to mitigate urban heat island intensity. Sci. Total Environ. 584–585, 1040–1055 (2017).

Article 

Google Scholar
 

Louviere, J. J., Hensher, D. A. & Swait, J. D. Stated Choice Methods: Analysis and Applications (Cambridge University Press, 2000).

Jabbar, M., Yusoff, M. M. & Shafie, A. Assessing the role of urban green spaces for human well-being: a systematic review. GeoJournal 87, 4405–4423 (2022).

Article 

Google Scholar
 

Hanley, N. & Czajkowski, M. The role of stated preference valuation methods in understanding choices and informing policy. Rev. Environ. Econ. Policy 13, 248–266 (2019).

Article 

Google Scholar
 

Mendelsohn, R. An examination of recent revealed preference valuation methods and results. Rev. Environ. Econ. Policy 13, 267–282 (2019).

Article 

Google Scholar
 

Alberini, A. Revealed versus stated preferences: what have we learned about valuation and behavior? Rev. Environ. Econ. Policy 13, 283–298 (2019).

Article 

Google Scholar
 

Daniel, T. C. et al. Contributions of cultural services to the ecosystem services agenda. Proc. Natl. Acad. Sci. USA. 109, 8812–8819 (2012).

Article 
CAS 

Google Scholar
 

Parsons, G. R. Travel cost models. in A Primer on Nonmarket Valuation, 187–233 (Springer, 2017).

Vierikko, K. & Yli-Pelkonen, V. Seasonality in recreation supply and demand in an urban lake ecosystem in Finland. Urban Ecosyst. 22, 769–783 (2019).

Article 

Google Scholar
 

Huang, S., Xiao, X., Tian, T. & Che, Y. Seasonal influences on preferences for urban blue-green spaces: integrating land surface temperature into the assessment of cultural ecosystem service value. Sustain. Cities Soc. 102, 105237 (2024).

Article 

Google Scholar
 

Mameno, K., Arnberger, A., Shoji, Y. & Kubo, T. Recreational agroecosystem service value evidenced by mobile phone data: implications for incentive enhancement in terraced paddy land. Environ. Conserv. 1–8, https://doi.org/10.1017/s0376892924000122 (2024).

Liao, J., Kang, J., Hsu, C.-H., Shoji, Y. & Kubo, T. Day-night visitor usage of urban parks: exploring temporal dynamics and driving factors through mobile phone big data. Urban For. Urban Green. 107, 128818 (2025).

Article 

Google Scholar
 

Bhat, C. R. & Eluru, N. The multiple discrete-continuous extreme value (MDCEV) model: formulation and applications. in Choice Modelling: the State-of-the-Art and the State-of-Practice, 71–99 (Emerald Group Publishing Limited, 2010).

Okuyama, T. Estimating tourism demands and substitution effect using the Kuhn Tucker model: an application in Nara prefecture. Proc. East. Asia Soc. Transp. Stud. 2011, 66 (2011).


Google Scholar
 

Arrow, K. et al. Report of the NOAA panel on contingent valuation. Fed. Regist. 58, 4601–4614 (1993).


Google Scholar
 

Mitchell, R. C. & Carson, R. T. Using Surveys to Value Public Goods: the Contingent Valuation Method (RFF Press, 2013).

Bateman, I. et al. Economic Valuation with Stated Preference Techniques https://doi.org/10.4337/9781781009727(2002).

Manzoni, A., Vermunt, J. K., Luijkx, R. & Muffels, R. 2. Memory bias in retrospectively collected employment careers: a model-based approach to correct for measurement error. Sociol. Methodol. 40, 39–73 (2010).

Article 

Google Scholar
 

Chen, W. Y. & Wang, D. T. Economic development and natural amenity: an econometric analysis of urban green spaces in China. Urban For. Urban Green. 12, 435–442 (2013).

Article 
CAS 

Google Scholar
 

Jim, C. Y. & Chen, W. Y. Recreation–amenity use and contingent valuation of urban greenspaces in Guangzhou, China. Landsc. Urban Plan. 75, 81–96 (2006).

Article 

Google Scholar
 

Yamu, C. & Frankhauser, P. Spatial accessibility to amenities, natural areas and urban green spaces: using a multiscale, multifractal simulation model for managing urban sprawl. Environ. Planning B Planning Des. https://doi.org/10.1068/b130171p (2015).

Meili, N. et al. Tree effects on urban microclimate: diurnal, seasonal, and climatic temperature differences explained by separating radiation, evapotranspiration, and roughness effects. Urban For. Urban Green. 58, 126970 (2021).

Article 

Google Scholar
 

Moeltner, K., Boyle, K. J. & Paterson, R. W. Meta-analysis and benefit transfer for resource valuation-addressing classical challenges with Bayesian modeling. J. Environ. Econ. Manag. 53, 250–269 (2007).

Article 

Google Scholar
 

Guo, J., Chen, K. & Hynes, S. Multilevel meta-analysis of stated preference values of marine ecosystem services in China. Mar. Dev. 1, 8 (2023).

Shrestha, R. K. & Loomis, J. B. Meta-analytic benefit transfer of outdoor recreation economic values: testing out-of-sample convergent validity. Environ. Resour. Econ. 25, 79–100 (2003).

Article 

Google Scholar
 

Arnberger, A. et al. Elderly resident’s uses of and preferences for urban green spaces during heat periods. Urban For. Urban Green. 21, 102–115 (2017).

Article 

Google Scholar
 

Dasgupta, S. & Robinson, E. J. Z. Climate, weather, and child health: quantifying health co-benefits. Environ. Res. Lett. 19, 084001 (2024).

Article 

Google Scholar
 

Gu, X., Chen, P. & Fan, C. Socio-demographic inequalities in the impacts of extreme temperatures on population mobility. J. Transp. Geogr. 114, 103755 (2024).

Article 

Google Scholar
 

Kim, H., Shoji, Y., Mameno, K., Kubo, T. & Aikoh, T. Changes in visits to green spaces due to the COVID-19 pandemic: focusing on the proportion of repeat visitors and the distances between green spaces and visitors’ places of residences. Urban For. Urban Green. 80, 127828 (2023).

Article 

Google Scholar
 

Poor, P. J. & Smith, J. M. Travel cost analysis of a cultural heritage site: the case of historic St. Mary’s city of Maryland. J. Cult. Econ. 28, 217–229 (2004).

Bishop, K. Assessing the benefits of community forests: an evaluation of the recreational use benefits of two urban fringe Woodlands. J. Environ. Plan. Manag. 35, 63–76 (1992).

Article 

Google Scholar
 

Jaung, W. & Carrasco, L. R. Travel cost analysis of an urban protected area and parks in Singapore: a mobile phone data application. J. Environ. Manag. 261, 110238 (2020).

Article 

Google Scholar
 

Freeman III, A. M., Herriges, J. A. & Kling, C. L. The Measurement of Environmental and Resource Values: Theory and Methods (Routledge, 2014).

Statistics Bureau of Japan. Population Estimate. https://www.stat.go.jp/data/jinsui/ (2024).

Ministry of Economy, Trade, and Industry. Petroleum Product Price Survey Results. https://www.enecho.meti.go.jp/statistics/petroleum_and_lpgas/pl007/results.html (accessed 2024).

Automobile Inspection and Registration Information Association. Number of Vehicles Owned-Japan Automobile Inspection and Registration Information Association https://www.airia.or.jp/publish/statistics/number.html.

Ministry of Land, Infrastructure, Transport and Tourism. Ministry of Land, Infrastructure, Transport and Tourism. Policy bureau: White Paper on Land, Infrastructure, Transport and Tourism in Japan-MLIT Ministry of Land, Infrastructure, Transport and Tourism https://www.mlit.go.jp/en/statistics/white-paper-mlit-index.html.

Cesario, F. J. Value of time in recreation benefit studies. Land Econ. 52, 32 (1976).

Article 

Google Scholar
 

Englin, J. & Shonkwiler, J. S. Modeling recreation demand in the presence of unobservable travel costs: toward a travel price model. J. Environ. Econ. Manag. 29, 368–377 (1995).

Article 

Google Scholar
 

Statistics Bureau, Ministry of Internal Affairs & Communications. Statistics Bureau JAPAN STATISTICAL YEARBOOK 2023. Labour and wages https://www.stat.go.jp/english/data/nenkan/72nenkan/1431-19.html.

Zhang, F., Wang, X. H., Nunes, P. A. L. D. & Ma, C. The recreational value of gold coast beaches, Australia: an application of the travel cost method. Ecosyst. Serv. 11, 106–114 (2015).

Article 

Google Scholar
 

Arnberger, A. & Eder, R. The influence of age on recreational trail preferences of urban green-space visitors: a discrete choice experiment with digitally calibrated images. J. Environ. Plan. Manag. 54, 891–908 (2011).

Article 

Google Scholar
 

Rose, J. M. & Bliemer, M. C. J. Constructing efficient stated choice experimental designs. Transp. Rev. 29, 587–617 (2009).

Article 

Google Scholar
 

Hensher, D. A., Rose, J. M. & Greene, W. H. Applied Choice Analysis (Cambridge University Press, 2015).

Revelt, D. & Train, K. Mixed logit with repeated choices: households’ choices of appliance efficiency level. Rev. Econ. Stat. 80, 647–657 (1998).

Article 

Google Scholar
 

McFadden, D. The measurement of urban travel demand. J. Public Econ. 3, 303–328 (1974).

Article 

Google Scholar
 

Hess, S. & Rose, J. M. Allowing for intra-respondent variations in coefficients estimated on repeated choice data. Trans. Res. Part B Methodol. 43, 708–719 (2009).

Article 

Google Scholar
 

Train, K. E. Discrete Choice Methods with Simulation (Cambridge University Press, 2009).

McFadden, D. & Train, K. Mixed MNL models for discrete response. J. Appl. Econ. 15, 447–470 (2000).

Article 

Google Scholar
 

Bhat, C. R. Quasi-random maximum simulated likelihood estimation of the mixed multinomial logit model. Trans. Res. Part B Methodol. 35, 677–693 (2001).

Article 

Google Scholar
 

Ministry of Internal Affairs & Communications. Information and Communications in Japan https://www.soumu.go.jp/johotsusintokei/whitepaper/eng/WP2023/2023-index.html (2023).

Carson, R. T. et al. Temporal reliability of estimates from contingent valuation. Land Econ. 73, 151 (1997).

Article 

Google Scholar
 

Kahneman, D. & Sugden, R. Experienced utility as a standard of policy evaluation. Environ. Resour. Econ. 32, 161–181 (2005).

Article 

Google Scholar
 

Loomis, J. B. Test-retest reliability of the contingent valuation method: a comparison of general population and visitor responses. Am. J. Agric. Econ. 71, 76–84 (1989).

Article 

Google Scholar
 

Loomis, J. What’s to know about hypothetical bias in stated preference valuation studies? Hypothetical bias in stated preference valuation studies. J. Econ. Surv. 25, 363–370 (2011).

Article 

Google Scholar
 

Notaro, S. & Grilli, G. The influence of ambient weather conditions on stated preferences for ecosystem services management. Environ. Manag. 72, 1228–1240 (2023).

Article 

Google Scholar
 

Reiling, S. D., Boyle, K. J., Phillips, M. L. & Anderson, M. W. Temporal reliability of contingent values. Land Econ. 66, 128 (1990).

Article 

Google Scholar
 

Wang, J., Mameno, K., Owake, T., Aikoh, T. & Shoji, Y. Minimal datasets for: Extreme heat and humidity reduce the recreational value of urban green spaces. Zenodo. https://doi.org/10.5281/zenodo.18501408 (2026).