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Masashi Okada

Biographic Data

ID7998438
NAMEMasashi Okada
GIVEN NAMESMasashi
FAMILY NAMEOkada
SIGNATUREOKADA M
AFFILIATIONSNational Institute for Environmental Studies
ORCID0000-0002-5111-0483
VERIFIEDYes
TOTAL WORKS6
TOTAL CITATIONS1
AUTHOR COUNT6
EDITOR COUNT0
FIRST PUBLICATION YEAR2011
LATEST PUBLICATION YEAR2025
H-INDEX1
  • Emergent constraints on future change projections of mean and extreme temperature and precipitation in the global maize harvesting area

    Open Access•Hideo Shiogama, Masashi Okada et al.•ARTICLE•Environmental Research Letters•2025

    Maize cultivation faces increasing risks from climate change, particularly because of increasing temperatures and extreme weather events. This study investigates whether the ‘hot’ Earth system models (ESMs) of the Coupled Model Intercomparison Project Phase 6, whose past warming trends are typically greater than the observations, tend to overestimate future temperature and precipitation changes across the global maize harvesting areas. By applyin…

  • Human heat stress could offset potential economic benefits of CO2 fertilization in crop production under a high-emissions scenario

    Open Access•Anton Orlov, Jonas Jägermeyr et al.•ARTICLE•One Earth•2024

    Climate change can significantly impact agriculture, leading to food security challenges. Most previous studies have investigated the direct climate impact on crops while neglecting the impact of heat stress on agricultural labor. Here, we assess the economic consequences of climate impacts on four major crops—maize, soybean, wheat, and rice—for scenarios involving low and high greenhouse gas emissions. Our analysis is based on the output from a …

  • Climate impacts on global agriculture emerge earlier in new generation of climate and crop models

    Open Access•Jonas Jägermeyr, Christoph Müller et al.•ARTICLE•Nature Food•2021

  • Kashinaga Masao. The Tai Dam Chronicle “Tay Pu Xoc.” Tokyo

    Open Access•雅志 岡田, Masashi Okada•ARTICLE•Tōnan Ajia Kenkyū/Tonan ajia kenkyu•2013

  • Rethinking the Tai Muong Structure Model

    Open Access•雅志 岡田, Masashi Okada•ARTICLE•Tōnan Ajia Kenkyū/Tonan ajia kenkyu•2012•Cited by: 1

  • Modeling the multiple effects of temperature and radiation on rice quality

    Open Access•Masashi Okada, Toshichika Iizumi et al.•ARTICLE•Environmental Research Letters•2011

    journal article

  • Rethinking the Tai Muong Structure Model

    Open Access•雅志 岡田, Masashi Okada•ARTICLE•Tōnan Ajia Kenkyū/Tonan ajia kenkyu•2012•Cited by: 1

  • Modeling the multiple effects of temperature and radiation on rice quality

    Open Access•Masashi Okada, Toshichika Iizumi et al.•ARTICLE•Environmental Research Letters•2011

    journal article

  • Rethinking the Tai Muong Structure Model

    Open Access•雅志 岡田, Masashi Okada•ARTICLE•Tōnan Ajia Kenkyū/Tonan ajia kenkyu•2012•Cited by: 1

  • Kashinaga Masao. The Tai Dam Chronicle “Tay Pu Xoc.” Tokyo

    Open Access•雅志 岡田, Masashi Okada•ARTICLE•Tōnan Ajia Kenkyū/Tonan ajia kenkyu•2013

  • Climate impacts on global agriculture emerge earlier in new generation of climate and crop models

    Open Access•Jonas Jägermeyr, Christoph Müller et al.•ARTICLE•Nature Food•2021

  • Human heat stress could offset potential economic benefits of CO2 fertilization in crop production under a high-emissions scenario

    Open Access•Anton Orlov, Jonas Jägermeyr et al.•ARTICLE•One Earth•2024

    Climate change can significantly impact agriculture, leading to food security challenges. Most previous studies have investigated the direct climate impact on crops while neglecting the impact of heat stress on agricultural labor. Here, we assess the economic consequences of climate impacts on four major crops—maize, soybean, wheat, and rice—for scenarios involving low and high greenhouse gas emissions. Our analysis is based on the output from a …

  • Emergent constraints on future change projections of mean and extreme temperature and precipitation in the global maize harvesting area

    Open Access•Hideo Shiogama, Masashi Okada et al.•ARTICLE•Environmental Research Letters•2025

    Maize cultivation faces increasing risks from climate change, particularly because of increasing temperatures and extreme weather events. This study investigates whether the ‘hot’ Earth system models (ESMs) of the Coupled Model Intercomparison Project Phase 6, whose past warming trends are typically greater than the observations, tend to overestimate future temperature and precipitation changes across the global maize harvesting areas. By applyin…

Climate change (4 works) · Climate change impacts on agriculture (4 works) · Environmental Science (3 works) · Agriculture (2 works) · Agronomy (2 works) · Biology (2 works) · Climate variability and models (2 works) · Climatology (2 works) · Computer Science (2 works) · Coupled model intercomparison project (2 works)

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