Current and Future Fire Regimes and Their Influence on Natural Vegetation in Ethiopia
暂无分享,去创建一个
I. Friis | S. Demissew | R. Kindt | J. Lillesø | P. Breugel | Ib Friis
[1] F. Putz,et al. Toward an old‐growth concept for grasslands, savannas, and woodlands , 2015 .
[2] B. Lamont,et al. Resistance and resilience to changing climate and fire regime depend on plant functional traits , 2014 .
[3] Rob Marchant,et al. From myopia to clarity: sharpening the focus of ecosystem management through the lens of palaeoecology. , 2014, Trends in ecology & evolution.
[4] K. Willis,et al. Recovery and resilience of tropical forests after disturbance , 2014, Nature Communications.
[5] Niklaus E. Zimmermann,et al. PAPER Where are the wild things? Why we need better data on species distribution , 2014 .
[6] N. Huth,et al. Agroforestry systems in a changing climate — challenges in projecting future performance , 2014 .
[7] Pierre Hiernaux,et al. Savanna Vegetation-Fire-Climate Relationships Differ Among Continents , 2014, Science.
[8] J. Travis,et al. Dispersal and species’ responses to climate change , 2013 .
[9] Caspar A. Mücher,et al. The significance of habitats as indicators of biodiversity and their links to species , 2013 .
[10] K. Hardee,et al. LINKING POPULATION, FERTILITY AND FAMILY PLANNING WITH ADAPTATION TO CLIMATE CHANGE: VIEWS FROM ETHIOPIA , 2013 .
[11] T. Kitzberger,et al. Habitat distribution modeling reveals vegetation flammability and land use as drivers of wildfire in SW Patagonia , 2013 .
[12] S. Bony,et al. Climate change projections using the IPSL-CM5 Earth System Model: from CMIP3 to CMIP5 , 2013, Climate Dynamics.
[13] D. M. Nelson,et al. Long‐term variability and rainfall control of savanna fire regimes in equatorial East Africa , 2012, Global change biology.
[14] Anders Granström,et al. Tending for Cattle: Traditional Fire Management in Ethiopian Montane Heathlands , 2012 .
[15] A. Challinor,et al. Assessing relevant climate data for agricultural applications , 2012 .
[16] S. Higgins,et al. Atmospheric CO2 forces abrupt vegetation shifts locally, but not globally , 2012, Nature.
[17] Barbara Cosens,et al. Resilience and Water Governance: Adaptive Governance in the Columbia River Basin , 2012 .
[18] I. Somodi,et al. Towards a more transparent use of the potential natural vegetation concept – an answer to Chiarucci et al. , 2012 .
[19] A. Tatem,et al. Population Distribution, Settlement Patterns and Accessibility across Africa in 2010 , 2012, PloS one.
[20] W. Bond,et al. Increased tree densities in South African savannas: >50 years of data suggests CO2 as a driver , 2012 .
[21] Christopher I. Roos,et al. The human dimension of fire regimes on Earth , 2011, Journal of biogeography.
[22] S. Levin,et al. The Global Extent and Determinants of Savanna and Forest as Alternative Biome States , 2011, Science.
[23] W. Bond,et al. Simply the best: the transition of savanna saplings to trees , 2011 .
[24] Ana C. L. Sá,et al. The pyrogeography of sub-Saharan Africa: a study of the spatial non-stationarity of fire–environment relationships using GWR , 2011, J. Geogr. Syst..
[25] S. Higgins,et al. When is a ‘forest’ a savanna, and why does it matter? , 2011 .
[26] A. Hessl. Pathways for climate change effects on fire: Models, data, and uncertainties , 2011 .
[27] S. Gotsch,et al. Distinct roles of savanna and forest tree species in regeneration under fire suppression in a Brazilian savanna , 2011 .
[28] Robert J. Whittaker,et al. Conservation Biogeography: Ladle/Conservation Biogeography , 2011 .
[29] S. Wood. Fast stable restricted maximum likelihood and marginal likelihood estimation of semiparametric generalized linear models , 2011 .
[30] I. A. Silva,et al. Phylogenetic structure of Brazilian savannas under different fire regimes , 2010 .
[31] Renata Vezzoli,et al. Tree-grass co-existence in savanna: Interactions of rain and fire. , 2010, Journal of theoretical biology.
[32] E. Farris,et al. The power of potential natural vegetation (and of spatial‐temporal scale): a response to Carrión & Fernández (2009) , 2010 .
[33] Ronald P. Neilson,et al. Global patterns in the vulnerability of ecosystems to vegetation shifts due to climate change. , 2010 .
[34] D. Shindell,et al. Driving forces of global wildfires over the past millennium and the forthcoming century , 2010, Proceedings of the National Academy of Sciences.
[35] Izak P J Smit,et al. Effects of fire on woody vegetation structure in African savanna. , 2010, Ecological applications : a publication of the Ecological Society of America.
[36] Jean-Louis Devineau,et al. Savanna fire regimes assessment with MODIS fire data: Their relationship to land cover and plant species distribution in western Burkina Faso (West Africa) , 2010 .
[37] D. Colombaroli,et al. Tropical fire ecology across the African continent: A paleoecological perspective , 2010 .
[38] João M. N. Silva,et al. Seasonality of vegetation fires as modified by human action: observing the deviation from eco-climatic fire regimes , 2010 .
[39] Georgina M. Mace,et al. Distorted Views of Biodiversity: Spatial and Temporal Bias in Species Occurrence Data , 2010, PLoS biology.
[40] Jennifer A. Miller. Species Distribution Modeling , 2010 .
[41] M. Lawes,et al. Savanna woody plant dynamics: the role of fire and herbivory, separately and synergistically , 2010 .
[42] W. Bond,et al. Thicket expansion in a South African savanna under divergent land use: local vs. global drivers? , 2010 .
[43] M. Fetene,et al. Browser selectivity alters post-fire competition between Erica arborea and E. trimera in the sub-alpine heathlands of Ethiopia , 2010, Plant Ecology.
[44] Scott L. Goodrick,et al. Trends in global wildfire potential in a changing climate , 2010 .
[45] M. Herrero,et al. Livestock Water Use and Productivity in the Nile Basin , 2010, Ecosystems.
[46] Benjamin Smith,et al. Implications of future climate and atmospheric CO2 content for regional biogeochemistry, biogeography and ecosystem services across East Africa , 2010 .
[47] J. Bongaarts. Human population growth and the demographic transition , 2009, Philosophical Transactions of the Royal Society B: Biological Sciences.
[48] Lindsey Gillson,et al. Resilience and Thresholds in Savannas: Nitrogen and Fire as Drivers and Responders of Vegetation Transition , 2009, Ecosystems.
[49] M. Moritz,et al. Global Pyrogeography: the Current and Future Distribution of Wildfire , 2009, PloS one.
[50] M. Moritz,et al. Environmental controls on the distribution of wildfire at multiple spatial scales , 2009 .
[51] Harald Bugmann,et al. Linking Forest Fire Regimes and Climate—A Historical Analysis in a Dry Inner Alpine Valley , 2009, Ecosystems.
[52] Mathieu Marmion,et al. Evaluation of consensus methods in predictive species distribution modelling , 2009 .
[53] M. Turelli,et al. Environmental Niche Equivalency versus Conservatism: Quantitative Approaches to Niche Evolution , 2008, Evolution; international journal of organic evolution.
[54] F. Joos,et al. Climate and human influences on global biomass burning over the past two millennia , 2008 .
[55] Niall P. Hanan,et al. Woody cover in African savannas: the role of resources, fire and herbivory , 2008 .
[56] S. Archibald. African Grazing Lawns—How Fire, Rainfall, and Grazer Numbers Interact to Affect Grass Community States , 2008 .
[57] Gufu Oba,et al. Herder Perceptions on Impacts of Range Enclosures, Crop Farming, Fire Ban and Bush Encroachment on the Rangelands of Borana, Southern Ethiopia , 2008 .
[58] D. Keith,et al. Plant functional types can predict decade‐scale changes in fire‐prone vegetation , 2007 .
[59] S. Jackson,et al. Novel climates, no‐analog communities, and ecological surprises , 2007 .
[60] Anne E. Black,et al. Cross-Scale Analysis of Fire Regimes , 2007, Ecosystems.
[61] Luca Ridolfi,et al. Noise-induced vegetation patterns in fire-prone savannas , 2007 .
[62] P. White,et al. Environmental drivers of large, infrequent wildfires: the emerging conceptual model , 2007 .
[63] Simon Scheiter,et al. Effects of four decades of fire manipulation on woody vegetation structure in Savanna. , 2007, Ecology.
[64] John E. Kutzbach,et al. Projected distributions of novel and disappearing climates by 2100 AD , 2006, Proceedings of the National Academy of Sciences.
[65] D. Beerling,et al. The origin of the savanna biome , 2006 .
[66] S. Lavorel,et al. Vulnerability of land systems to fire: Interactions among humans, climate, the atmosphere, and ecosystems , 2006 .
[67] W. Knorr,et al. A climate-change risk analysis for world ecosystems , 2006, Proceedings of the National Academy of Sciences.
[68] Luca Ridolfi,et al. A Probabilistic Analysis of Fire‐Induced Tree‐Grass Coexistence in Savannas , 2006, The American Naturalist.
[69] Kelly K. Caylor,et al. Determinants of woody cover in African savannas , 2005, Nature.
[70] J. L. Parra,et al. Very high resolution interpolated climate surfaces for global land areas , 2005 .
[71] W. Bond,et al. Fire as a global 'herbivore': the ecology and evolution of flammable ecosystems. , 2005, Trends in ecology & evolution.
[72] M. Araújo,et al. Reducing uncertainty in projections of extinction risk from climate change , 2005 .
[73] W. Bond,et al. SHAPING THE LANDSCAPE: FIRE–GRAZER INTERACTIONS IN AN AFRICAN SAVANNA , 2005 .
[74] A. Zeileis. Econometric Computing with HC and HAC Covariance Matrix Estimators , 2004 .
[75] F. Woodward,et al. The global distribution of ecosystems in a world without fire. , 2004, The New phytologist.
[76] Kurt Hornik,et al. kernlab - An S4 Package for Kernel Methods in R , 2004 .
[77] F. Woodward,et al. Global climate and the distribution of plant biomes. , 2004, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[78] G. Danabasoglu,et al. The Community Climate System Model Version 4 , 2011 .
[79] W. Hoffmann,et al. Comparative fire ecology of tropical savanna and forest trees , 2003 .
[80] M. Graham. CONFRONTING MULTICOLLINEARITY IN ECOLOGICAL MULTIPLE REGRESSION , 2003 .
[81] Yoram J. Kaufman,et al. An Enhanced Contextual Fire Detection Algorithm for MODIS , 2003 .
[82] R. Guyette,et al. Dynamics of an Anthropogenic Fire Regime , 2003, Ecosystems.
[83] Walter Krämer,et al. Review of Modern applied statistics with S, 4th ed. by W.N. Venables and B.D. Ripley. Springer-Verlag 2002 , 2003 .
[84] D. Teketay,et al. Response of plant communities to fire in an Acacia woodland and a dry Afromontane forest, southern Ethiopia , 2003 .
[85] Christina Gloeckner,et al. Modern Applied Statistics With S , 2003 .
[86] M. Jacobs,et al. Fire frequency and species associations in perennial grasslands of south‐west Ethiopia , 2002 .
[87] F. Woodward,et al. Conservation of Biodiversity in a Changing Climate , 2002, Conservation biology : the journal of the Society for Conservation Biology.
[88] E. Dinerstein,et al. The Global 200: Priority ecoregions for global conservation , 2002 .
[89] Matthew G. Rollins,et al. Mapping Fire Regimes Across Time and Space: Understanding Coarse and Fine-scale Fire Patterns , 2001 .
[90] G. Powell,et al. Terrestrial Ecoregions of the World: A New Map of Life on Earth , 2001 .
[91] S. Carpenter,et al. Catastrophic shifts in ecosystems , 2001, Nature.
[92] Leo Breiman,et al. Random Forests , 2001, Machine Learning.
[93] J. Friedman. Greedy function approximation: A gradient boosting machine. , 2001 .
[94] Guy F. Midgley,et al. A proposed CO2‐controlled mechanism of woody plant invasion in grasslands and savannas , 2000 .
[95] K. Wesche,et al. The Significance of Fire for Afroalpine Ericaceous Vegetation , 2000 .
[96] Jose M. Cardoso Pereira,et al. An assessment of vegetation fire in Africa (1981–1991): Burned areas, burned biomass, and atmospheric emissions , 1999 .
[97] M. Woube. Effect of fire on plant communities and soils in the humid tropical savannah of Gambela, Ethiopia , 1998 .
[98] John Bell,et al. A review of methods for the assessment of prediction errors in conservation presence/absence models , 1997, Environmental Conservation.
[99] Charles B. Roosen,et al. An introduction to multivariate adaptive regression splines , 1995, Statistical methods in medical research.
[100] C. Skarpe,et al. Dynamics of savanna ecosystems , 1992 .
[101] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[102] T. Kitzberger,et al. Decreases in Fire Spread Probability with Forest Age Promotes Alternative Community States, Reduced Resilience to Climate Variability and Large Fire Regime Shifts , 2011, Ecosystems.
[103] M. Moritz,et al. Constraints on global fire activity vary across a resource gradient. , 2011, Ecology.
[104] S. Robinson,et al. Ethiopia's Growth Prospects in a Changing Climate: A Stochastic General Equilibrium Approach , 2011 .
[105] Wei-Yin Loh,et al. Classification and regression trees , 2011, WIREs Data Mining Knowl. Discov..
[106] I. Friis,et al. ATLAS OF THE POTENTIAL VEGETATION OF ETHIOPIA , 2010 .
[107] Mark New,et al. Ensemble forecasting of species distributions. , 2007, Trends in ecology & evolution.
[108] Roeland Kindt,et al. Tree diversity analysis: a manual and software for common statistical methods for ecological and biodiversity studies , 2006 .
[109] D. Viegas,et al. Fire behaviour a key factor in the fire ecology of African grasslands and savannas. , 2002 .
[110] Dechassa Lemessa,et al. Forest Fires in Ethiopia: Reflections on Socio-Economic and Environmental Effects of the Fires in 2000: An Assessment Study June-September, 2001 , 2002 .
[111] C. O. Justicea,et al. The MODIS fire products , 2002 .
[112] C. Ricotta,et al. Are potential natural vegetation maps a meaningful alternative to neutral landscape models? , 2002 .
[113] I. Friis,et al. Fire regimes, floristics, diversity, life forms and biomass in wooded grassland, woodland and dry forest at Gambella, western Ethiopia , 2001 .