Publikation: Standardized Methods to Assess the Impacts of Thermal Stress on Coral Reef Marine Life
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The Earth's oceans have absorbed more than 90% of the excess, climate change–induced atmospheric heat. The resulting rise in oceanic temperatures affects all species and can lead to the collapse of marine ecosystems, including coral reefs. Here, we review the range of methods used to measure thermal stress impacts on reef-building corals, highlighting current standardization practices and necessary refinements to fast-track discoveries and improve interstudy comparisons. We also present technological developments that will undoubtedly enhance our ability to record and analyze standardized data. Although we use corals as an example, the methods described are widely employed in marine sciences, and our recommendations therefore apply to all species and ecosystems. Enhancing collaborative data collection efforts, implementing field-wide standardized protocols, and ensuring data availability through dedicated, openly accessible databases will enable large-scale analysis and monitoring of ecosystem changes, improving our predictive capacities and informing active intervention to mitigate climate change effects on marine life.
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VOOLSTRA, Christian R., Rachel ALDERDICE, Luigi COLIN, Sebastian STAAB, Amy APPRILL, Jean-Baptiste RAINA, 2025. Standardized Methods to Assess the Impacts of Thermal Stress on Coral Reef Marine Life. In: Annual Review of Marine Science. Annual Reviews. 2025, 17(1), S. 193-226. ISSN 1941-1405. eISSN 1941-0611. Verfügbar unter: doi: 10.1146/annurev-marine-032223-024511BibTex
@article{Voolstra2025-01-16Stand-70695, title={Standardized Methods to Assess the Impacts of Thermal Stress on Coral Reef Marine Life}, year={2025}, doi={10.1146/annurev-marine-032223-024511}, number={1}, volume={17}, issn={1941-1405}, journal={Annual Review of Marine Science}, pages={193--226}, author={Voolstra, Christian R. and Alderdice, Rachel and Colin, Luigi and Staab, Sebastian and Apprill, Amy and Raina, Jean-Baptiste} }
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