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Mapping climate change interaction with human health through DPSIR framework: Qatar perspective

  • Haneen I. Eldos*
  • , Furqan Tahir
  • , U. N. Athira
  • , Hend O. Mohamed
  • , Bincy Samuel
  • , Sini Skariah
  • , Sami G. Al-Ghamdi
  • , Tareq Al-Ansari
  • , Ali A. Sultan*
  • *Corresponding author for this work
    • Weill Cornell Medicine-Qatar
    • King Abdullah University of Science and Technology

    Research output: Contribution to journalArticlepeer-review

    Abstract

    This study investigates the interactions between climate change and human health with a particular focus on Qatar, using the DPSIR (Driving Forces, Pressures, States, Impacts, Responses) framework. Key drivers, including economic development and population growth, contribute to increased greenhouse gas (GHG) emissions, exerting pressure on Qatar's climate through rising temperatures and altered precipitation patterns, as modeled by the MIT Regional Climate Model (MRCM). The findings reveal critical gaps in understanding the state of climate-health interactions, including insufficient disease data, incomplete climate-health linkages, and significant research gaps. These limitations hinder targeted responses to climate-sensitive diseases, which have shown an increase over the years. The study identifies the pathways through which climatic shifts contribute to immediate health risks, such as heat-related illnesses and respiratory conditions, as well as long-term impacts, including chronic diseases and mental health challenges. Despite Qatar's efforts through national and international strategies, the DPSIR analysis highlights the urgent need for enhanced research, improved data collection, and tailored actions to address these challenges. Strengthened adaptation, resilience-building, and emission reduction strategies remain essential for safeguarding public health in the face of accelerating climate change.

    Original languageEnglish
    Article numbere42455
    Number of pages20
    JournalHeliyon
    Volume11
    Issue number3
    DOIs
    Publication statusPublished - 15 Feb 2025

    Keywords

    • Climate change impacts
    • Heat-related illness
    • Human health
    • Qatar
    • Vector-borne diseases

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