Early Warning from Space for a Few Key Tipping Points in Physical, Biological, and Social-Ecological Systems
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Annett Bartsch | Didier Swingedouw | Cedric Jamet | Chinwe Ifejika Speranza | Gael Durand | Gregory Beaugrand | Alessandra Conversi | C. Jamet | D. Swingedouw | G. Beaugrand | A. Bartsch | G. Durand | A. Conversi | C. Ifejika Speranza | Chinwe Ifejika Speranza
[1] K. Steffen,et al. Recent warming in Greenland in a long-term instrumental (1881–2012) climatic context: I. Evaluation of surface air temperature records , 2012 .
[2] M. Scheffer,et al. Catalogue of abrupt shifts in Intergovernmental Panel on Climate Change climate models , 2015, Proceedings of the National Academy of Sciences.
[3] C. Frankenberg,et al. OCO-2 advances photosynthesis observation from space via solar-induced chlorophyll fluorescence , 2017, Science.
[4] Hong Jiang,et al. Which forcing factors fit? Using ecosystem models to investigate the relative influence of fishing and changes in primary productivity on the dynamics of marine ecosystems , 2009 .
[5] Neo D. Martinez,et al. Approaching a state shift in Earth’s biosphere , 2012, Nature.
[6] G. Daskalov,et al. Trophic cascades triggered by overfishing reveal possible mechanisms of ecosystem regime shifts , 2007, Proceedings of the National Academy of Sciences.
[7] R. Reid,et al. Exploring linked ecological and cultural tipping points in Mongolia , 2017 .
[8] Timothy M. Lenton,et al. Stochastic integrated assessment of climate tipping points indicates the need for strict climate policy , 2015 .
[9] T. Grubesic,et al. Hurricane storm surge in Volusia County, Florida: evidence of a tipping point for infrastructure damage. , 2018, Disasters.
[10] E. Rignot,et al. Changes in the Velocity Structure of the Greenland Ice Sheet , 2006, Science.
[11] E. Rignot,et al. Fast recession of a west antarctic glacier , 1998, Science.
[12] Juan C. Rocha,et al. The Regime Shifts Database: A Framework for Analyzing Regime Shifts in Social-Ecological Systems , 2015, bioRxiv.
[13] Eric Rignot,et al. A Reconciled Estimate of Ice-Sheet Mass Balance , 2012, Science.
[14] D. Swingedouw,et al. The Impact of Possible Decadal-Scale Cold Waves on Viticulture over Europe in a Context of Global Warming , 2019, Agronomy.
[15] S. Nowicki,et al. The Greenland and Antarctic ice sheets under 1.5 °C global warming , 2018, Nature Climate Change.
[16] Gustavo Goni,et al. Measuring the Atlantic Meridional Overturning Circulation , 2015 .
[17] D. Smeed,et al. Potential for seasonal prediction of Atlantic sea surface temperatures using the RAPID array at 26$$^{\circ }$$∘N , 2016 .
[18] A. Savaresi. The Paris Agreement: a new beginning? , 2016 .
[19] S. Carpenter,et al. Planetary boundaries: Guiding human development on a changing planet , 2015, Science.
[20] Annett Bartsch,et al. Land Cover Mapping in Northern High Latitude Permafrost Regions with Satellite Data: Achievements and Remaining Challenges , 2016, Remote. Sens..
[21] S. Henson,et al. The impact of global warming on seasonality of ocean primary production , 2013 .
[22] D. Shaw. Global Information and Early Warning System , 2007 .
[23] North Atlantic meridional overturning circulation variations from GRACE ocean bottom pressure anomalies , 2015 .
[24] S. Schubert,et al. Recent warming in Greenland in a long-term instrumental ( 1881 – 2012 ) climatic context : I . Evaluation of surface air temperature records , 2012 .
[25] T. Fichefet,et al. Antarctic ice‐sheet melting provides negative feedbacks on future climate warming , 2008 .
[26] I. Daliakopoulos,et al. The threat of soil salinity: A European scale review. , 2016, The Science of the total environment.
[27] F. Muller‐Karger,et al. Methane increase over the Barents and Kara seas after the autumn pycnocline breakdown: satellite observations , 2019 .
[28] Andrew J. Plater,et al. Book reviewSea-level change: Roger Revelle; Studies in Geophysics, National Research Council, National Academy Press, Washington, DC, 1990; xii + 246 pp.; USD 29.95, GBP 25.75; ISBN 0-309-04039 , 1992 .
[29] Andrew C. Thomas,et al. Phenology and time series trends of the dominant seasonal 1 phytoplankton bloom across global scales 2 , 2018 .
[30] K. Schaefer,et al. The impact of the permafrost carbon feedback on global climate , 2014 .
[31] Marten Scheffer,et al. Beyond bifurcation: using complex models to understand and predict abrupt climate change , 2016 .
[32] François-Marie Bréon,et al. Remote sensing of phytoplankton groups in case 1 waters from global SeaWiFS imagery , 2005 .
[33] A. Huth,et al. Global patterns of tropical forest fragmentation , 2018, Nature.
[34] F. Chapin,et al. A safe operating space for humanity , 2009, Nature.
[35] S. Rahmstorf,et al. Observed fingerprint of a weakening Atlantic Ocean overturning circulation , 2017, Nature.
[36] B. Dong,et al. Effect of the Atlantic Multidecadal Variability on the Global Monsoon , 2019, Geophysical Research Letters.
[37] M. Drechsler,et al. Land-use and species tipping points in a coupled ecological-economic model , 2018, Ecological Complexity.
[38] G. Danabasoglu,et al. Comparison of the Atlantic meridional overturning circulation between 1960 and 2007 in six ocean reanalysis products , 2017, Climate Dynamics.
[39] I. Yashayaev,et al. Further intensification of deep convection in the Labrador Sea in 2016 , 2017 .
[40] C. Field,et al. Projections of future meteorological drought and wet periods in the Amazon , 2015, Proceedings of the National Academy of Sciences.
[41] R. Reid,et al. Mongolian rangelands at a tipping point? Biomass and cover are stable but composition shifts and richness declines after 20 years of grazing and increasing temperatures. , 2015 .
[42] E. Chassignet,et al. Temperature–Salinity Structure of the North Atlantic Circulation and Associated Heat and Freshwater Transports , 2016 .
[43] P. C. Reid,et al. An inflated subpolar gyre blows life toward the northeastern Atlantic , 2016 .
[44] Bengamin I. Moat,et al. Measuring the Atlantic Meridional Overturning Circulation at 26°N , 2015 .
[45] C. Beer,et al. Methane production as key to the greenhouse gas budget of thawing permafrost , 2017, Nature Climate Change.
[46] S. Xie,et al. Overlooked possibility of a collapsed Atlantic Meridional Overturning Circulation in warming climate , 2017, Science Advances.
[47] Alessandra Conversi,et al. The Mediterranean Sea Regime Shift at the End of the 1980s, and Intriguing Parallelisms with Other European Basins , 2010, PloS one.
[48] C. Talandier,et al. On the evolution of the oceanic component of the IPSL climate models from CMIP3 to CMIP5 : a mean state comparison , 2013 .
[49] Xavier Fettweis,et al. Greenland Ice Sheet Surface Mass Loss: Recent Developments in Observation and Modeling , 2017, Current Climate Change Reports.
[50] Yongxiang Hu,et al. Global satellite-observed daily vertical migrations of ocean animals , 2019, Nature.
[51] Yongxiang Hu,et al. Spaceborne Lidar in the Study of Marine Systems. , 2018, Annual review of marine science.
[52] S. Carpenter,et al. Resilience indicators: prospects and limitations for early warnings of regime shifts , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[53] J. Cloern,et al. Prediction of unprecedented biological shifts in the global ocean , 2019, Nature Climate Change.
[54] L Mayer,et al. BedMachine v3: Complete Bed Topography and Ocean Bathymetry Mapping of Greenland From Multibeam Echo Sounding Combined With Mass Conservation , 2017, Geophysical research letters.
[55] D. Bachelet,et al. Climate change effects on southern California deserts , 2016 .
[56] Tim Graham,et al. Global and European climate impacts of a slowdown of the AMOC in a high resolution GCM , 2015, Climate Dynamics.
[57] S. Levitus,et al. “Great Salinity Anomalies” in the North Atlantic , 1998 .
[58] Will F. Figueira,et al. Global warming and recurrent mass bleaching of corals , 2017, Nature.
[59] S. Warren,et al. Oceanic phytoplankton, atmospheric sulphur, cloud albedo and climate , 1987, Nature.
[60] W. Liu,et al. Stability of the Atlantic Meridional Overturning Circulation: A Review and Synthesis , 2019, Journal of Geophysical Research: Oceans.
[61] Andreas Kääb,et al. Northern Hemisphere permafrost map based on TTOP modelling for 2000–2016 at 1 km2 scale , 2019, Earth-Science Reviews.
[62] I. Semiletov,et al. Role of Warming in Destabilization of Intrapermafrost Gas Hydrates in the Arctic Shelf: Experimental Modeling , 2019, Geosciences.
[63] E. Guilyardi,et al. Initialisation and predictability of the AMOC over the last 50 years in a climate model , 2013, Climate Dynamics.
[64] C. Ruppel,et al. Submarine Permafrost Map in the Arctic Modeled Using 1‐D Transient Heat Flux (SuPerMAP) , 2019, Journal of Geophysical Research: Oceans.
[65] C. Heuzé. North Atlantic deep water formation and AMOC in CMIP5 models , 2017 .
[66] Zhiqi Yang,et al. Open Surface Water Mapping Algorithms: A Comparison of Water-Related Spectral Indices and Sensors , 2017 .
[67] Nicolas Hoepffner,et al. Satellite-based indicator of zooplankton distribution for global monitoring , 2019, Scientific Reports.
[68] G. Ramstein,et al. Amount of CO2 emissions irreversibly leading to the total melting of Greenland , 2008 .
[69] Navin Ramankutty,et al. Land-use regime shifts: an analytical framework and agenda for future land-use research , 2016 .
[70] Marie-Louise Siggaard-Andersen,et al. High-Resolution Greenland Ice Core Data Show Abrupt Climate Change Happens in Few Years , 2008, Science.
[71] T. Farr,et al. Satellite-based monitoring of groundwater depletion in California’s Central Valley , 2019, Scientific Reports.
[72] Kaoru Tachiiri,et al. Stability of the Atlantic meridional overturning circulation: A model intercomparison , 2012 .
[73] M. Claussen. Modeling bio-geophysical feedback in the African and Indian monsoon region , 1997 .
[74] S. Carpenter,et al. Early-warning signals for critical transitions , 2009, Nature.
[75] Gaël Durand,et al. Potential sea-level rise from Antarctic ice-sheet instability constrained by observations , 2015, Nature.
[76] Lukas H. Meyer,et al. Summary for Policymakers , 2022, The Ocean and Cryosphere in a Changing Climate.
[77] J. Wahr,et al. Measurements of Time-Variable Gravity Show Mass Loss in Antarctica , 2006, Science.
[78] Gregoire Nicolis,et al. Stochastic resonance , 2007, Scholarpedia.
[79] Eric Rignot,et al. Sustained increase in ice discharge from the Amundsen Sea Embayment, West Antarctica, from 1973 to 2013 , 2014, Geophysical Research Letters.
[80] Alain Lefebvre,et al. Eutrophication: A new wine in an old bottle? , 2019, The Science of the total environment.
[81] Simone Marini,et al. A Novel, Unbiased Analysis Approach for Investigating Population Dynamics: A Case Study on Calanus finmarchicus and Its Decline in the North Sea , 2016, PloS one.
[82] Heiko Balzter,et al. Connecting Earth observation to high-throughput biodiversity data , 2017, Nature Ecology &Evolution.
[83] D. Swingedouw,et al. Abrupt cooling over the North Atlantic in modern climate models , 2017, Nature Communications.
[84] O. Sonnentag,et al. Tundra shrub expansion may amplify permafrost thaw by advancing snowmelt timing , 2019 .
[85] Alexander Smirnov,et al. The Determination of Snow Albedo from Satellite Measurements Using Fast Atmospheric Correction Technique , 2020, Remote. Sens..
[86] S. Rahmstorf. Ocean circulation and climate during the past 120,000 years , 2002, Nature.
[87] J. Boje,et al. A cascade of warming impacts brings bluefin tuna to Greenland waters , 2014, Global change biology.
[88] Kung-Sik Chan,et al. Overfishing of top predators eroded the resilience of the Black Sea system regardless of the climate and anthropogenic conditions , 2011, Global Change Biology.
[89] C. Kissel,et al. Rapid Reductions in North Atlantic Deep Water During the Peak of the Last Interglacial Period , 2014, Science.
[90] Roberto Benzi,et al. Stochastic Resonance:. from Climate to Biology , 2007 .
[91] T. Lenton. Arctic Climate Tipping Points , 2012, AMBIO.
[92] K. Ermokhina,et al. Feasibility of tundra vegetation height retrieval from Sentinel-1 and Sentinel-2 data , 2020 .
[93] S. Carpenter,et al. Catastrophic regime shifts in ecosystems: linking theory to observation , 2003 .
[94] M. Llope,et al. Overfishing of top predators eroded the resilience of the Black Sea system regardless of the climate and anthropogenic conditions , 2011, Global Change Biology.
[95] Kirsten Elger,et al. The new database of the Global Terrestrial Network for Permafrost (GTN-P) , 2015 .
[96] Jan Verbesselt,et al. Revealing turning points in ecosystem functioning over the Northern Eurasian agricultural frontier , 2016, Global change biology.
[97] Annett Bartsch,et al. Progress in space-borne studies of permafrost for climate science: Towards a multi-ECV approach , 2017 .
[98] S. Page,et al. Protecting irrecoverable carbon in Earth’s ecosystems , 2020, Nature Climate Change.
[99] A. Cazenave. How Fast Are the Ice Sheets Melting? , 2006, Science.
[100] A. Payne,et al. Retreat of Pine Island Glacier controlled by marine ice-sheet instability , 2014 .
[101] Derek M Lemoine,et al. Watch Your Step: Optimal Policy in a Tipping Climate , 2014 .
[102] L. Houpert,et al. A sea change in our view of overturning in the subpolar North Atlantic , 2019, Science.
[103] Bo Sun,et al. Bedmap2: improved ice bed, surface and thickness datasets for Antarctica , 2012 .
[104] C. Nobre,et al. Amazon Tipping Point , 2018, Science Advances.
[105] T. Fichefet,et al. The 8.2 kyr BP event simulated by a Global Atmosphere—Sea‐Ice—Ocean Model , 2001 .
[106] A. Abe‐Ouchi,et al. Fate of the Atlantic Meridional Overturning Circulation: Strong decline under continued warming and Greenland melting , 2016 .
[107] Chris J. Johnson,et al. Identifying ecological thresholds for regulating human activity: Effective conservation or wishful thinking? , 2013 .
[108] F. Miesner,et al. Recent advances in the study of Arctic submarine permafrost , 2020, Permafrost and Periglacial Processes.
[109] E. Sala,et al. Global regime shift dynamics of catastrophic sea urchin overgrazing , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[110] R. Sutton. ESD Ideas: a simple proposal to improve the contribution of IPCC WGI to the assessment and communication of climate change risks , 2018, Earth System Dynamics.
[111] D. M. Lawrence,et al. Climate change and the permafrost carbon feedback , 2014, Nature.
[112] H. Stommel,et al. Thermohaline Convection with Two Stable Regimes of Flow , 1961 .
[113] Timothy M. Lenton,et al. Early warning signals of Atlantic Meridional Overturning Circulation collapse in a fully coupled climate model , 2014, Nature Communications.
[114] B. Smith,et al. Marine Ice Sheet Collapse Potentially Under Way for the Thwaites Glacier Basin, West Antarctica , 2014, Science.
[115] Scott C. Doney,et al. Detection of anthropogenic climate change in satellite records of ocean chlorophyll and productivity , 2010 .
[116] Nick Rayner,et al. EN4: Quality controlled ocean temperature and salinity profiles and monthly objective analyses with uncertainty estimates , 2013 .
[117] E. Guilyardi,et al. Advances in reconstructing the AMOC using sea surface observations of salinity , 2020, Climate Dynamics.
[118] L. Kornblueh,et al. Advancing decadal-scale climate prediction in the North Atlantic sector , 2008, Nature.
[119] L. Krishnamurthy,et al. Decadal and interannual variability of the Indian Ocean SST , 2015, Climate Dynamics.
[120] C. Guivarch,et al. Constraints on biomass energy deployment in mitigation pathways: the case of water scarcity , 2018 .
[121] Bianchi,et al. Rapid coastal deoxygenation due to ocean circulation shift in the northwest Atlantic , 2018 .
[122] R. Almar,et al. Earth Observations for Monitoring Marine Coastal Hazards and Their Drivers , 2020, Surveys in Geophysics.
[123] K. Bjorndal,et al. Historical Overfishing and the Recent Collapse of Coastal Ecosystems , 2001, Science.
[124] R. Lal,et al. New World Atlas of Desertification and Issues of Carbon Sequestration, Organic Carbon Stocks, Nutrient Depletion and Implications for Food Security , 2017 .
[125] A. Magurran,et al. Rapid biotic homogenization of marine fish assemblages , 2015, Nature Communications.
[126] Xochitl Cormon,et al. Regime Shifts – A Global Challenge for the Sustainable Use of Our Marine Resources , 2018 .
[127] Ian Joughin,et al. Large fluctuations in speed on Greenland's Jakobshavn Isbræ glacier , 2004, Nature.
[128] M. Zaman,et al. Introduction to Soil Salinity, Sodicity and Diagnostics Techniques , 2018 .
[129] R. Choularton,et al. How accurate is food security early warning? Evaluation of FEWS NET accuracy in Ethiopia , 2019, Food Security.
[130] S. Carpenter,et al. Rising variance: a leading indicator of ecological transition. , 2006, Ecology letters.
[131] P. Sellers,et al. Observing carbon cycle–climate feedbacks from space , 2018, Proceedings of the National Academy of Sciences.
[132] T. Ezer. Detecting changes in the transport of the Gulf Stream and the Atlantic overturning circulation from coastal sea level data: The extreme decline in 2009–2010 and estimated variations for 1935–2012 , 2015 .
[133] E. Dlugokencky,et al. Reduced net methane emissions due to microbial methane oxidation in a warmer Arctic , 2020, Nature Climate Change.
[134] S. Hagemann,et al. Multimodel analysis on the response of the AMOC under an increase of radiative forcing and its symmetrical reversal , 2015, Climate Dynamics.
[135] Juan Carlos Castilla-Rubio,et al. Land-use and climate change risks in the Amazon and the need of a novel sustainable development paradigm , 2016, Proceedings of the National Academy of Sciences.
[136] L. Jackson,et al. Stable AMOC off state in an eddy-permitting coupled climate model , 2015, Climate Dynamics.
[137] Salah Sukkarieh,et al. Machine learning approaches for crop yield prediction and nitrogen status estimation in precision agriculture: A review , 2018, Comput. Electron. Agric..
[138] Beau B. Gregory,et al. Rapid biogeographical plankton shifts in the North Atlantic Ocean , 2009 .
[139] S. Rahmstorf,et al. Sea-level rise due to polar ice-sheet mass loss during past warm periods , 2015, Science.
[140] D. Alonso,et al. Immanent conditions determine imminent collapses: nutrient regimes define the resilience of macroalgal communities , 2017, Proceedings of the Royal Society B: Biological Sciences.
[141] C. Nobre,et al. Climate change and thresholds of biome shifts in Amazonia , 2010 .
[142] T. Lenton,et al. Climate tipping points — too risky to bet against , 2019, Nature.
[143] Peter Kuhry,et al. Can C-band synthetic aperture radar be used to estimate soil organic carbon storage in tundra? , 2016 .
[144] Cheryl A. Palm,et al. A potential tipping point in tropical agriculture: Avoiding rapid increases in nitrous oxide fluxes from agricultural intensification in Kenya , 2015 .
[145] C. Möllmann,et al. Marine Ecosystem Regime Shifts Induced by Climate and Overfishing: A Review for the Northern Hemisphere , 2012 .
[146] S. Descamps,et al. Decline of an arctic top predator: synchrony in colony size fluctuations, risk of extinction and the subpolar gyre , 2013, Oecologia.
[147] A. Ganopolski,et al. Multistability and critical thresholds of the Greenland ice sheet , 2010 .
[148] Robert J. Wilson,et al. Old concepts, new challenges: adapting landscape-scale conservation to the twenty-first century , 2016, Biodiversity and Conservation.
[149] T. Lenton. Early warning of climate tipping points , 2011 .
[150] T. Lenton,et al. Integrating tipping points into climate impact assessments , 2013, Climatic Change.
[151] G. Hays,et al. Climate change and marine plankton. , 2005, Trends in ecology & evolution.
[152] Antarctic Ice. , 1908, Nature.
[153] U. Send,et al. Observation of decadal change in the Atlantic meridional overturning circulation using 10 years of continuous transport data , 2011 .
[154] P. Podwojewski,et al. Status and Trends of Land Degradation and Restoration and Associated Changes in Biodiversity and Ecosystem Functions , 2018 .
[155] Momme Butenschön,et al. Potential impacts of climate change on the primary production of regional seas: A comparative analysis of five European seas , 2016 .
[156] C. S. Holling. Resilience and Stability of Ecological Systems , 1973 .
[157] H. Liniger,et al. Trend analysis of MODIS NDVI time series for detecting land degradation and regeneration in Mongolia , 2015 .
[158] Jie Chen,et al. Change-point analysis as a tool to detect abrupt climate variations , 2012, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[159] M. Phillips,et al. Permafrost is warming at a global scale , 2019, Nature Communications.
[160] E. Frajka‐Williams. Estimating the Atlantic overturning at 26°N using satellite altimetry and cable measurements , 2015 .
[161] M. McCrackin,et al. Recovery of lakes and coastal marine ecosystems from eutrophication: A global meta‐analysis , 2017 .
[162] F. Asch,et al. Tipping Points in the Supply of Ecosystem Services of a Mountainous Watershed in Southeast Asia , 2018, Sustainability.
[163] P. Falkowski,et al. Ocean Science: The power of plankton , 2012, Nature.
[164] F. Gaillard,et al. Variability of the meridional overturning circulation at the Greenland-Portugal OVIDE section from 1993 to 2010 , 2015 .
[165] Núria Marbà,et al. Tipping Elements in the Arctic Marine Ecosystem , 2012, AMBIO.
[166] Joseph D. Ortiz,et al. Abrupt onset and termination of the African Humid Period:rapid climate responses to gradual insolation forcing , 2000 .
[167] Axel Kleidon,et al. Assessing the role of deep rooted vegetation in the climate system with model simulations: mechanism, comparison to observations and implications for Amazonian deforestation , 2000 .
[168] Eric Rignot,et al. Mass balance of the Antarctic Ice Sheet from 1992 to 2017 , 2018, Nature.
[169] A. Thorpe,et al. Airborne Mapping Reveals Emergent Power Law of Arctic Methane Emissions , 2020, Geophysical Research Letters.
[170] T. Hughes. Catastrophes, Phase Shifts, and Large-Scale Degradation of a Caribbean Coral Reef , 1994, Science.
[171] D. Chang,et al. Polar Cooling Effect Due to Increase of Phytoplankton and Dimethyl-Sulfide Emission , 2018, Atmosphere.
[172] A. P. Williams,et al. Impact of anthropogenic climate change on wildfire across western US forests , 2016, Proceedings of the National Academy of Sciences.
[173] R. Steneck,et al. Rising to the challenge of sustaining coral reef resilience. , 2010, Trends in ecology & evolution.
[174] E. Dwyer,et al. Satellite remote sensing of grasslands: from observation to management—a review , 2016 .
[175] Martha C. Anderson,et al. The future of evapotranspiration: Global requirements for ecosystem functioning, carbon and climate feedbacks, agricultural management, and water resources , 2017 .
[176] John S. Kimball,et al. Surface water inundation in the boreal-Arctic: potential impacts on regional methane emissions , 2014 .
[177] Zhaoyu Zhu,et al. Social vulnerability assessment of natural hazards on county-scale using high spatial resolution satellite imagery: a case study in the Luogang district of Guangzhou, South China , 2011, Environmental Earth Sciences.
[178] S. Limin,et al. Deforested and drained tropical peatland sites show poorer peat substrate quality and lower microbial biomass and activity than unmanaged swamp forest , 2018, Soil Biology and Biochemistry.
[179] J. Bruno,et al. Climate Change, Coral Loss, and the Curious Case of the Parrotfish Paradigm: Why Don't Marine Protected Areas Improve Reef Resilience? , 2019, Annual review of marine science.
[180] O. Gagliardini,et al. The stability of grounding lines on retrograde slopes , 2012 .
[181] V. Dakos,et al. A holistic view of marine regime shifts , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[182] D. Vaughan,et al. Antarctic ice-sheet loss driven by basal melting of ice shelves , 2012, Nature.
[183] J. Hatfield,et al. Are We Getting Better in Using Nitrogen?: Variations in Nitrogen Use Efficiency of Two Cereal Crops Across the United States , 2019, Earth's Future.
[184] A. Sharpley,et al. Consistency of the Threshold Phosphorus Saturation Ratio across a Wide Geographic Range of Acid Soils , 2018, Agrosystems, Geosciences & Environment.
[185] F. Pattyn,et al. Progress in Numerical Modeling of Antarctic Ice-Sheet Dynamics , 2017, Current Climate Change Reports.
[186] S. Dong,et al. Meridional Overturning Circulation Transport Variability at 34.5°S During 2009–2017: Baroclinic and Barotropic Flows and the Dueling Influence of the Boundaries , 2018 .
[187] S. Wanless,et al. Do early warning indicators consistently predict nonlinear change in long‐term ecological data? , 2016 .
[188] M. M. Stachura,et al. Synchronous marine pelagic regime shifts in the Northern Hemisphere , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[189] S. Carpenter,et al. Catastrophic shifts in ecosystems , 2001, Nature.
[190] Manoel Cardoso,et al. Regional climate change over eastern Amazonia caused by pasture and soybean cropland expansion , 2007 .
[191] M. Llope,et al. Climate and fishing steer ecosystem regeneration to uncertain economic futures , 2015, Proceedings of the Royal Society B: Biological Sciences.
[192] Stephen R Carpenter,et al. Reducing Phosphorus to Curb Lake Eutrophication is a Success. , 2016, Environmental science & technology.
[193] Erika J. Techera,et al. Coral reef conservation in the Anthropocene: Confronting spatial mismatches and prioritizing functions , 2019, Biological Conservation.
[194] G. Madec,et al. Oceanic hindcast simulations at high resolution suggest that the Atlantic MOC is bistable , 2013 .
[195] L. Peterson,et al. Mechanisms of abrupt climate change of the last glacial period , 2008 .
[196] Ingmar Nitze,et al. Reduced arctic tundra productivity linked with landform and climate change interactions , 2018, Scientific Reports.
[197] Franklin B. Schwing,et al. The Pace of Shifting Climate in Marine and Terrestrial Ecosystems , 2011, Science.
[198] Wolfgang Lucht,et al. Tipping elements in the Earth's climate system , 2008, Proceedings of the National Academy of Sciences.
[199] L. Bopp,et al. Marine productivity response to Heinrich events: a model-data comparison , 2012 .
[200] Xavier Fettweis,et al. Nonlinear rise in Greenland runoff in response to post-industrial Arctic warming , 2018, Nature.
[201] B. Elberling,et al. A new data set for estimating organic carbon storage to 3 m depth in soils of the northern circumpolar permafrost region , 2013 .
[202] Robert J. W. Brewin,et al. A Consumer's Guide to Satellite Remote Sensing of Multiple Phytoplankton Groups in the Global Ocean , 2017, Front. Mar. Sci..
[203] Tazio Strozzi,et al. Seasonal Progression of Ground Displacement Identified with Satellite Radar Interferometry and the Impact of Unusually Warm Conditions on Permafrost at the Yamal Peninsula in 2016 , 2019, Remote. Sens..
[204] Xianqiang He,et al. Going Beyond Standard Ocean Color Observations: Lidar and Polarimetry , 2019, Front. Mar. Sci..
[205] D. Vaughan,et al. Extensive dynamic thinning on the margins of the Greenland and Antarctic ice sheets , 2009, Nature.
[206] Juan C. Rocha,et al. Defining tipping points for social-ecological systems scholarship—an interdisciplinary literature review , 2018 .
[207] P. Cox,et al. Soil carbon and climate change: from the Jenkinson effect to the compost‐bomb instability , 2011 .
[208] P. Kyle,et al. Land-use futures in the shared socio-economic pathways , 2017 .
[209] Carrie V. Kappel,et al. Characterizing driver-response relationships in marine pelagic ecosystems for improved ocean management. , 2016, Ecological applications : a publication of the Ecological Society of America.
[210] C. Möllmann,et al. Marine regime shifts around the globe: theory, drivers and impacts , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[211] G. Ramstein,et al. Consequences of rapid ice sheet melting on the Sahelian population vulnerability , 2017, Proceedings of the National Academy of Sciences.
[212] Achim Zeileis,et al. Remotely sensed resilience of tropical forests , 2016 .
[213] M. Scheffer,et al. Regime shifts in marine ecosystems: detection, prediction and management. , 2008, Trends in ecology & evolution.
[214] D. Ellison,et al. From blue to green water and back again: Promoting tree, shrub and forest-based landscape resilience in the Sahel. , 2020, The Science of the total environment.
[215] Md. Sarwar Hossain,et al. Challenges and opportunities for operationalizing the safe and just operating space concept at regional scale , 2020, International Journal of Sustainable Development & World Ecology.
[216] Anna K. Miesner,et al. Oceanographic variability shapes the spawning distribution of blue whiting (Micromesistius poutassou ) , 2018, Fisheries Oceanography.
[217] Sandy P. Harrison,et al. Mid‐Holocene land‐surface conditions in northern Africa and the Arabian Peninsula: A data set for the analysis of biogeophysical feedbacks in the climate system , 1998 .
[218] M. V. Vilariño,et al. Mitigation pathways compatible with 1.5°C in the context of sustainable development , 2018 .
[219] J. McConnell,et al. Industrial-era decline in subarctic Atlantic productivity , 2019, Nature.
[220] F. Landerer,et al. GRACE Groundwater Drought Index: Evaluation of California Central Valley groundwater drought , 2017 .
[221] T. Stocker,et al. Transport of salt and freshwater in the Atlantic Subpolar Gyre , 2016, Ocean Dynamics.
[222] T. Scambos,et al. Glacier acceleration and thinning after ice shelf collapse in the Larsen B embayment, Antarctica , 2004 .
[223] R. DeConto,et al. Contribution of Antarctica to past and future sea-level rise , 2016, Nature.
[224] V. Dakos,et al. Early Detection of Ecosystem Regime Shifts: A Multiple Method Evaluation for Management Application , 2012, PloS one.
[225] Xuejun Liu,et al. Challenges for global sustainable nitrogen management in agricultural systems. , 2020, Journal of agricultural and food chemistry.
[226] H. Poincaré. Sur l'équilibre d'une masse fluide animée d'un mouvement de rotation , 1885, Bulletin astronomique.
[227] M. Cardinale,et al. Trophic cascades promote threshold-like shifts in pelagic marine ecosystems , 2009, Proceedings of the National Academy of Sciences.
[228] Adam A. Scaife,et al. Climate impacts of the Atlantic Multidecadal Oscillation , 2006 .
[229] Cawkwell,et al. Satellite remote sensing of grasslands : from observation to management , 2016 .
[230] E. Davidson,et al. Abrupt increases in Amazonian tree mortality due to drought–fire interactions , 2014, Proceedings of the National Academy of Sciences.
[231] D. Nepstad,et al. Interactions among Amazon land use, forests and climate: prospects for a near-term forest tipping point , 2008, Philosophical Transactions of the Royal Society B: Biological Sciences.
[232] S. Rahmstorf. On the freshwater forcing and transport of the Atlantic thermohaline circulation , 1996 .
[233] N. Fageria,et al. Enhancing Nitrogen Use Efficiency in Crop Plants , 2005 .
[234] V. Sergienko,et al. Current rates and mechanisms of subsea permafrost degradation in the East Siberian Arctic Shelf , 2017, Nature Communications.
[235] C. Faunt,et al. Water availability and land subsidence in the Central Valley, California, USA , 2016, Hydrogeology Journal.
[236] Quazi K. Hassan,et al. Remote Sensing-Based Quantification of the Impact of Flash Flooding on the Rice Production: A Case Study over Northeastern Bangladesh , 2017, Sensors.
[237] J. Weertman,et al. Stability of the Junction of an Ice Sheet and an Ice Shelf , 1974, Journal of Glaciology.
[238] Gang Wang,et al. Shifting Trends in Bimodal Phytoplankton Blooms in the North Pacific and North Atlantic Oceans From Space With the Holo-Hilbert Spectral Analysis , 2017, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[239] M. Scheffer,et al. Trajectories of the Earth System in the Anthropocene , 2018, Proceedings of the National Academy of Sciences.
[240] M. Zaman,et al. Guideline for Salinity Assessment, Mitigation and Adaptation Using Nuclear and Related Techniques , 2018 .
[241] Thomas S. Lontzek,et al. Risk of multiple interacting tipping points should encourage rapid CO2 emission reduction , 2016 .
[242] Piers J. Sellers,et al. Amazonian Deforestation and Regional Climate Change , 1991 .
[243] Gail Whiteman,et al. Climate policy implications of nonlinear decline of Arctic land permafrost and other cryosphere elements , 2019, Nature Communications.
[244] C. Schoof. Ice sheet grounding line dynamics: Steady states, stability, and hysteresis , 2007 .
[245] Francis Codron,et al. Mechanisms Determining the Winter Atmospheric Response to the Atlantic Overturning Circulation , 2016 .
[246] G. Beaugrand. Theoretical basis for predicting climate-induced abrupt shifts in the oceans , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.
[247] Melanie Abecassis,et al. Ocean's least productive waters are expanding , 2008 .
[248] G. Beaugrand,et al. Trophic amplification of climate warming , 2009, Proceedings of the Royal Society B: Biological Sciences.
[249] D. Bellwood,et al. Confronting the coral reef crisis , 2004, Nature.
[250] J. Jouzel,et al. Evidence for general instability of past climate from a 250-kyr ice-core record , 1993, Nature.
[251] Robert E. Dickinson,et al. Climatic impact of Amazon deforestation: a mechanistic model study , 1996 .
[252] Judi E Hewitt,et al. Monitoring for tipping points in the marine environment. , 2019, Journal of environmental management.
[253] Carolien Kroeze,et al. The global nitrous oxide budget revisited , 2011 .
[254] Emilio Hernández-García,et al. Ecological thresholds and regime shifts: approaches to identification. , 2009, Trends in ecology & evolution.
[255] Harm Bartholomeus,et al. Soil salinity assessment through satellite thermography for different irrigated and rainfed crops , 2018, International Journal of Applied Earth Observation and Geoinformation.
[256] Olivier Merlin,et al. Root-zone soil moisture estimation from assimilation of downscaled Soil Moisture and Ocean Salinity data , 2015 .
[257] Xin Du,et al. Remote sensing-based global crop monitoring: experiences with China's CropWatch system , 2014, Int. J. Digit. Earth.