Land Use and Land Cover Change Dynamics across the Brazilian Amazon: Insights from Extensive Time-Series Analysis of Remote Sensing Data
暂无分享,去创建一个
Richard M. Lucas | J. Carreiras | R. Lucas | J. Jones | João M. B. Carreiras | C. Gabriel | Joshua Jones | Cristina Gabriel
[1] J. Carreiras,et al. Assessing the extent of agriculture/pasture and secondary succession forest in the Brazilian Legal Amazon using SPOT VEGETATION data , 2006 .
[2] G. Powell,et al. Terrestrial Ecoregions of the World: A New Map of Life on Earth , 2001 .
[3] J. Carreiras,et al. Greenhouse gas emissions from shifting cultivation in the tropics, including uncertainty and sensitivity analysis , 2011 .
[4] A. Agrawal,et al. Governance regime and location influence avoided deforestation success of protected areas in the Brazilian Amazon , 2013, Proceedings of the National Academy of Sciences.
[5] J. Puyravaud. Standardizing the calculation of the annual rate of deforestation , 2003 .
[6] W. Salas,et al. Potential Biomass Accumulation in Amazonian Regrowth Forests , 2001, Ecosystems.
[7] R. DeFries,et al. The Amazon basin in transition , 2012, Nature.
[8] B. Bennett. [Book Review: Lessons from Amazonia: The Ecology and Conservation of a Fragmented Forest] , 2003 .
[9] William F. Laurance,et al. The Future of Deforestation in the Brazilian Amazon , 2006 .
[10] W. Salas,et al. Mapping secondary tropical forest and forest age from SPOT HRV data , 1999 .
[11] Jeffrey A. Cardille,et al. Agricultural land-use change in Brazilian Amazônia between 1980 and 1995: Evidence from integrated satellite and census data , 2003 .
[12] C. R. Grego,et al. SUSTENTABILIDADE AGRÍCOLA NA AMAZÔNIA: 23 anos de monitoramento da agricultura em Machadinho d’Oeste - RO , 2008 .
[13] J. Franklin,et al. The elements of statistical learning: data mining, inference and prediction , 2005 .
[14] Xiangming Xiao,et al. Evaluating TERRA‐1 MODIS data for discrimination of tropical secondary forest regeneration stages in the Brazilian Legal Amazon , 2002 .
[15] Isabel M. D. Rosa,et al. Predictive Modelling of Contagious Deforestation in the Brazilian Amazon , 2013, PloS one.
[16] J. Metzger. Landscape dynamics and equilibrium in areas of slash-and-burn agriculture with short and long fallow period (Bragantina region, NE Brazilian Amazon) , 2002, Landscape Ecology.
[17] J. V. Soares,et al. Distribution of aboveground live biomass in the Amazon basin , 2007 .
[18] Markus Lederer. From CDM to REDD+ — What do we know for setting up effective and legitimate carbon governance? , 2011 .
[19] P. Fearnside,et al. Influence of soils and topography on Amazonian tree diversity: a landscape-scale study , 2010 .
[20] C. Potter,et al. Large-scale impoverishment of Amazonian forests by logging and fire , 1999, Nature.
[21] Eduardo S Brondízio,et al. Area and Age of Secondary Forests in Brazilian Amazonia 1978–2002: An Empirical Estimate , 2006, Ecosystems.
[22] G. Woodwell,et al. Map of the vegetation of South America based on satellite imagery , 1994 .
[23] Susan G. Letcher,et al. Rates of change in tree communities of secondary Neotropical forests following major disturbances , 2007, Philosophical Transactions of the Royal Society B: Biological Sciences.
[24] G. Daily,et al. Biodiversity loss and its impact on humanity , 2012, Nature.
[25] T. Burk,et al. Calibration of satellite classifications of land area , 1993 .
[26] P. Crill,et al. Soil-Atmosphere Exchange of Nitrous Oxide, Nitric Oxide, Methane, and Carbon Dioxide in Logged and Undisturbed Forest in the Tapajos National Forest, Brazil , 2005 .
[27] A. Lugo,et al. Tropical secondary forests , 1990, Journal of Tropical Ecology.
[28] P. Fearnside,et al. BR-319: Brazil’s Manaus-Porto Velho Highway and the Potential Impact of Linking the Arc of Deforestation to Central Amazonia , 2006, Environmental management.
[29] Philip M. Fearnside,et al. Global Warming and Tropical Land-Use Change: Greenhouse Gas Emissions from Biomass Burning, Decomposition and Soils in Forest Conversion, Shifting Cultivation and Secondary Vegetation , 2000 .
[30] F. Achard,et al. Determination of Deforestation Rates of the World's Humid Tropical Forests , 2002, Science.
[31] Ute Beyer,et al. Remote Sensing And Image Interpretation , 2016 .
[32] C. Uhl. FACTORS CONTROLLING SUCCESSION FOLLOWING SLASH-AND-BURN AGRICULTURE IN AMAZONIA , 1987 .
[33] R. Didham,et al. Using landscape history to predict biodiversity patterns in fragmented landscapes , 2013, Ecology letters.
[34] Richard M. Lucas,et al. Implications of land-use history for forest regeneration in the Brazilian Amazon , 2009 .
[35] J. Saldarriaga,et al. LONG-TERM CHRONOSEQUENCE OF FOREST SUCCESSION IN THE UPPER RIO NEGRO OF COLOMBIA AND VENEZUELA , 1988 .
[36] L. E. O. C. Aragão,et al. Análise da composição florística e fitossociológica da floresta nacional do Tapajós com o apoio geográfico de imagens de satélites , 2005 .
[37] C. Uhl,et al. Abandoned pastures in eastern Amazonia. I. Patterns of plant succession , 1988 .
[38] T. M. Lillesand,et al. Remote Sensing and Image Interpretation , 1980 .
[39] E. Boyle,et al. The global carbon cycle: a test of our knowledge of earth as a system. , 2000, Science.
[40] J. K. Winjum,et al. Assessing Brazil's carbon budget: II. Biotic fluxes and net carbon balance☆ , 1995 .
[41] Jarrett E. K. Byrnes,et al. A global synthesis reveals biodiversity loss as a major driver of ecosystem change , 2012, Nature.
[42] G. B. Williamson,et al. The fate of Amazonian forest fragments: A 32-year investigation , 2011 .
[43] K. Navulur. Multispectral Image Analysis Using the Object-Oriented Paradigm , 2006 .
[44] R. Barthem,et al. The Smithsonian Atlas of the Amazon , 2003 .
[45] Tatiana Mora Kuplich,et al. Classifying regenerating forest stages in Amazônia using remotely sensed images and a neural network , 2006 .
[46] E. Davidson,et al. Classifying successional forests using Landsat spectral properties and ecological characteristics in eastern Amazônia , 2003 .
[47] R. Chazdon. Tropical forest recovery: legacies of human impact and natural disturbances , 2003 .
[48] P. Curran,et al. Mapping the regional extent of tropical forest regeneration stages in the Brazilian Legal Amazon using NOAA AVHRR data , 2000 .
[49] B. Markham,et al. Summary of Current Radiometric Calibration Coefficients for Landsat MSS, TM, ETM+, and EO-1 ALI Sensors , 2009 .
[50] K. Ickes,et al. Alternative successional pathways in the Amazon Basin , 2001 .
[51] B. Soares-Filho,et al. Systemic Conservation, REDD, and the Future of the Amazon Basin , 2011, Conservation biology : the journal of the Society for Conservation Biology.
[52] Emilio F. Moran,et al. Dimensões humanas do uso e cobertura das terras na Amazônia: uma contribuição do LBA , 2005 .
[53] Michael Keller,et al. Effects of Soil Texture on Belowground Carbon and Nutrient Storage in a Lowland Amazonian Forest Ecosystem , 2000, Ecosystems.
[54] P. G. Murphy,et al. EARLY PLANT SUCCESSION AFTER CUTTING AND BURNING IN THE UPPER RIO NEGRO REGION OF THE AMAZON BASIN , 1981 .
[55] A. Tenenbein. A Double Sampling Scheme for Estimating from Misclassified Multinomial Data with Applications to Sampling Inspection , 1972 .
[56] J. Chambers,et al. Relationship between soils and Amazon forest biomass: a landscape-scale study , 1999 .
[57] R. B. Jackson,et al. A Large and Persistent Carbon Sink in the World’s Forests , 2011, Science.
[58] C. Jordan,et al. Succession and Nutrient Dynamics Following Forest Cutting and Burning in Amazonia , 1984 .
[59] M. Cochrane. Linear mixture model classification of burned forests in the Eastern Amazon , 1998 .
[60] R. Chazdon. Beyond Deforestation: Restoring Forests and Ecosystem Services on Degraded Lands , 2008, Science.
[61] Philip M. Fearnside,et al. Amazonian deforestation and global warming: carbon stocks in vegetation replacing Brazil's Amazon forest , 1996 .
[62] M. Raupach. Carbon cycle: Pinning down the land carbon sink , 2011 .
[63] L. Rodriguez,et al. Profitability and social impacts of reduced impact logging in the Tapajós National Forest, Brazil — A case study , 2007 .
[64] Robert Walker,et al. Cropping and fallowing sequences of small farms in the “terra firme” landscape of the Brazilian Amazon: a case study from Santarem, Para , 1996 .
[65] Giles M. Foody,et al. Forest regeneration on abandoned clearances in central Amazonia , 2002 .
[66] C. Bradshaw,et al. Primary forests are irreplaceable for sustaining tropical biodiversity , 2011, Nature.
[67] David M. Theobald,et al. Landscape dynamics of Amazonian deforestation between 1984 and 2002 in central Rondônia, Brazil: assessment and future scenarios , 2005 .
[68] Christopher Uhl,et al. Abandoned pastures in eastern Amazonia. II. Nutrient stocks in the soil and vegetation , 1988 .
[69] M. Heimann,et al. Terrestrial ecosystem carbon dynamics and climate feedbacks , 2008, Nature.
[70] Denis Valle,et al. Evaluation of yield regulation options for primary forest in Tapajós National Forest, Brazil , 2006 .
[71] R. Houghton,et al. Aboveground Forest Biomass and the Global Carbon Balance , 2005 .
[72] M. Batistella,et al. Linear mixture model applied to Amazonian vegetation classification , 2003 .
[73] P. Pacheco. Agrarian Reform in the Brazilian Amazon: Its Implications for Land Distribution and Deforestation , 2009 .
[74] F. J. Gallego. Remote sensing and land cover area estimation , 2004 .
[75] Eduardo S Brondízio,et al. Level-dependent deforestation trajectories in the Brazilian Amazon from 1970 to 2001 , 2012 .
[76] Stephen G. Perz,et al. Social determinants of secondary forests in the Brazilian Amazon , 2003 .
[77] A. Setzer,et al. Spectral characteristics of fire scars in Landsat-5 TM images of Amazonia , 1993 .
[78] P. Fearnside. Deforestation in Brazilian Amazonia: History, Rates, and Consequences , 2005 .
[79] Giles M. Foody,et al. Sample size determination for image classification accuracy assessment and comparison , 2009 .
[80] D. Roberts,et al. Large area mapping of land‐cover change in Rondônia using multitemporal spectral mixture analysis and decision tree classifiers , 2002 .