Snowmelt timing, phenology, and growing season length in conifer forests of Crater Lake National Park, USA
暂无分享,去创建一个
J. L. Kellermann | Donal S. O’Leary | C. Wayne | Jherime L. Kellermann | Donal S. III O’Leary | Chris Wayne
[1] J. L. Parra,et al. Impact of a Century of Climate Change on Small-Mammal Communities in Yosemite National Park, USA , 2008, Science.
[2] M. Friedl,et al. Land Surface Phenology from MODIS: Characterization of the Collection 5 Global Land Cover Dynamics Product , 2010 .
[3] D. Barry,et al. Climate change or climate cycles? Snowpack trends in the Olympic and Cascade Mountains, Washington, USA , 2012, Environmental Monitoring and Assessment.
[4] Markus Reichstein,et al. Similarities in ground- and satellite-based NDVI time series and their relationship to physiological activity of a Scots pine forest in Finland , 2004 .
[5] B. Law,et al. Carbon implications of current and future effects of drought, fire and management on Pacific Northwest forests , 2015 .
[6] J. E. Byers,et al. Five Potential Consequences of Climate Change for Invasive Species , 2008, Conservation biology : the journal of the Society for Conservation Biology.
[7] W. Monahan,et al. Climate Exposure of US National Parks in a New Era of Change , 2014, PloS one.
[8] J. Miller,et al. Climate change in mountains: a review of elevation-dependent warming and its possible causes , 2012, Climatic Change.
[9] M. C. Grant,et al. AGE AND SIZE STRUCTURE ANALYSES OF ENGELMANN SPRUCE, PONDEROSA PINE, LODGEPOLE PINE, AND LIMBER PINE IN COLORADO' , 1983 .
[10] Philip W. Mote,et al. Climate-Driven Variability and Trends in Mountain Snowpack in Western North America* , 2006 .
[11] Brian Richter,et al. River flows and water wars: emerging science for environmental decision making , 2003 .
[12] Michael Lehning,et al. Spatial and temporal variability of snow depth and ablation rates in a small mountain catchment , 2010 .
[13] J. Franklin,et al. High and dry: high elevations disproportionately exposed to regional climate change in Mediterranean-climate landscapes , 2015, Landscape Ecology.
[14] H. Fowler,et al. Elevation-dependent warming in mountain regions of the world , 2015 .
[15] I. Stewart,et al. Changes in snowpack and snowmelt runoff for key mountain regions , 2009 .
[16] S. Levy. Turbulence in the Klamath River Basin , 2003 .
[17] Stewart J. Cohen,et al. Climate Change 2014: Impacts,Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change , 2014 .
[18] Phillip Gienapp,et al. Shifts in caterpillar biomass phenology due to climate change and its impact on the breeding biology of an insectivorous bird , 2006, Oecologia.
[19] M. Dettinger,et al. Climate change scenarios for the California region , 2008 .
[20] Joshua R. Smith,et al. A New Method Comparing Snowmelt Timing with Annual Area Burned , 2016 .
[21] O. Schmitz,et al. Global climate change and mammalian species diversity in U.S. national parks , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[22] Norman L. Miller,et al. POTENTIAL IMPACTS OF CLIMATE CHANGE ON CALIFORNIA HYDROLOGY 1 , 2003 .
[23] Lars Eklundh,et al. Annual changes in MODIS vegetation indices of Swedish coniferous forests in relation to snow dynamics and tree phenology , 2010 .
[24] Marcel E Visser,et al. Climate change and unequal phenological changes across four trophic levels: constraints or adaptations? , 2009, The Journal of animal ecology.
[25] Roger C. Bales,et al. Soil moisture response to snowmelt timing in mixed‐conifer subalpine forests , 2015 .
[26] James E. Vogelmann,et al. Phenology and climate relationships in aspen (Populus tremuloides Michx.) forest and woodland communities of southwestern Colorado , 2015 .
[27] David E. Rupp,et al. Seasonal Climate Variability and Change in the Pacific Northwest of the United States , 2014 .
[28] R. Keane,et al. Whitebark pine decline: Infection, mortality, and population trends , 2001 .
[29] H. Mooney,et al. Shifting plant phenology in response to global change. , 2007, Trends in ecology & evolution.
[30] A. Miller‐Rushing,et al. Toward a synthetic understanding of the role of phenology in ecology and evolution , 2010, Philosophical Transactions of the Royal Society B: Biological Sciences.
[31] Observed changes in false springs over the contiguous United States , 2014 .
[32] J. A. Schell,et al. Monitoring vegetation systems in the great plains with ERTS , 1973 .
[33] Stefan Wunderle,et al. Alpine Grassland Phenology as Seen in AVHRR, VEGETATION, and MODIS NDVI Time Series - a Comparison with In Situ Measurements , 2008, Sensors.
[34] T. Sparks,et al. Climate change and trophic interactions. , 1999, Trends in ecology & evolution.
[35] Martin Beniston,et al. CLIMATIC CHANGE AT HIGH ELEVATION SITES: AN OVERVIEW , 1997 .
[36] J. Gross,et al. Monitoring the condition of natural resources in US national parks , 2009, Environmental monitoring and assessment.
[37] T. Mayer,et al. Streamflow Response to Climate as Influenced by Geology and Elevation 1 , 2011 .
[38] J. Bartholow. Recent water temperature trends in the Lower Klamath River, California , 2005 .
[39] J. Régnière,et al. Climate Change and Bark Beetles of the Western United States and Canada: Direct and Indirect Effects , 2010 .
[40] Zhuang Da-fang,et al. Monitoring Forest Phenophases of Northeast China based on MODIS NDVI Data , 2006 .
[41] Ranga B. Myneni,et al. Monitoring spring canopy phenology of a deciduous broadleaf forest using MODIS , 2006 .
[42] Franz Essl,et al. Phenology predicts the native and invasive range limits of common ragweed , 2014, Global change biology.
[43] Mark A. Friedl,et al. Long-Term Detection of Global Vegetation Phenology from Satellite Instruments , 2012 .
[44] Katharine L. Gerst,et al. Phenology research for natural resource management in the United States , 2014, International Journal of Biometeorology.
[45] Donald McKenzie,et al. Options for National Parks and Reserves for Adapting to Climate Change , 2009, Environmental management.
[46] A. Flint,et al. Forest mortality in high-elevation whitebark pine (Pinus albicaulis) forests of eastern California, USA; influence of environmental context, bark beetles, climatic water deficit, and warming , 2012 .
[47] D. Sax,et al. Climatic niche shifts between species' native and naturalized ranges raise concern for ecological forecasts during invasions and climate change , 2014 .
[48] Geir Ottersen,et al. Climate and the match or mismatch between predator requirements and resource availability , 2007 .
[49] T. Swetnam,et al. Warming and Earlier Spring Increase Western U.S. Forest Wildfire Activity , 2006, Science.
[50] J. Régnière,et al. Effect of climate change on range expansion by the mountain pine beetle in British Columbia , 2003 .
[51] Dennis P. Lettenmaier,et al. EFFECTS OF CLIMATE CHANGE ON HYDROLOGY AND WATER RESOURCES IN THE COLUMBIA RIVER BASIN 1 , 1999 .
[52] K. Stahl,et al. Climate change could alter the distribution of mountain pine beetle outbreaks in western Canada , 2012 .
[53] K. Semmens,et al. Investigating correlations between snowmelt and forest fires in a high latitude snowmelt dominated drainage basin , 2012 .
[54] G. Walther. Community and ecosystem responses to recent climate change , 2010, Philosophical Transactions of the Royal Society B: Biological Sciences.
[55] A. Nolin. Perspectives on Climate Change, Mountain Hydrology, and Water Resources in the Oregon Cascades, USA , 2012 .
[56] Daniel R. Cayan,et al. Interannual Climate Variability and Snowpack in the Western United States , 1996 .
[57] S. Wipf,et al. The Response of the Alpine Dwarf Shrub Salix herbacea to Altered Snowmelt Timing: Lessons from a Multi-Site Transplant Experiment , 2015, PloS one.
[58] P. Mote,et al. Future climate in the Pacific Northwest , 2010 .
[59] Xindi Bian,et al. Mid-Century Ensemble Regional Climate Change Scenarios for the Western United States , 2004 .
[60] Eric Post,et al. Warming, plant phenology and the spatial dimension of trophic mismatch for large herbivores , 2008, Proceedings of the Royal Society B: Biological Sciences.
[61] B. Santer,et al. Human-Induced Changes in the Hydrology of the Western United States , 2008, Science.
[62] Sonja Wipf,et al. Winter climate change in alpine tundra: plant responses to changes in snow depth and snowmelt timing , 2009 .
[63] D. Hall,et al. Accuracy assessment of the MODIS snow products , 2007 .
[64] J. Vose,et al. Environmental influences on the phenology of pine , 1994 .
[65] Richard N. Palmer,et al. Mitigating the Effects of Climate Change on the Water Resources of the Columbia River Basin , 2004 .
[66] Ye Qi,et al. Effects of climate variability on the carbon dioxide, water, and sensible heat fluxes above a ponderosa pine plantation in the Sierra Nevada (CA) , 2000 .
[67] A. Strahler,et al. Monitoring vegetation phenology using MODIS , 2003 .
[68] R. Zurita-Milla,et al. Trends and Natural Variability of Spring Onset in the Coterminous United States as Evaluated by a New Gridded Dataset of Spring Indices , 2015 .
[69] J. Palutikof,et al. Climate change 2007 : impacts, adaptation and vulnerability , 2001 .
[70] C. Körner. Plant adaptation to cold climates , 2016, F1000Research.
[71] Paul J. CaraDonna,et al. Shifts in flowering phenology reshape a subalpine plant community , 2014, Proceedings of the National Academy of Sciences.
[72] N. Pettorelli,et al. Using the satellite-derived NDVI to assess ecological responses to environmental change. , 2005, Trends in ecology & evolution.
[73] Dorothy K. Hall,et al. Snowmelt Timing Maps Derived from MODIS for North America, 2001-2015 , 2017 .
[74] A. Miller‐Rushing,et al. Changes in snowmelt date and summer precipitation affect the flowering phenology of Erythronium grandiflorum (glacier lily; Liliaceae). , 2010, American journal of botany.
[75] D. Inouye,et al. Effects of climate change on phenology, frost damage, and floral abundance of montane wildflowers. , 2008, Ecology.
[76] Juha M. Alatalo,et al. Effects of temperature and date of snowmelt on growth, reproduction, and flowering phenology in the arctic/alpine herb, Ranunculus glacialis , 2002, Oecologia.
[77] Hongjie Xie,et al. Evaluation of MODIS snow cover and cloud mask and its application in Northern Xinjiang, China , 2008 .
[78] R. Keane,et al. A range-wide restoration strategy for whitebark pine (Pinus albicaulis) , 2012 .
[79] Douglas P. Peterson,et al. Climate change links fate of glaciers and an endemic alpine invertebrate , 2011 .
[80] G. Yohe,et al. A globally coherent fingerprint of climate change impacts across natural systems , 2003, Nature.
[81] P. Beck,et al. Improved monitoring of vegetation dynamics at very high latitudes: A new method using MODIS NDVI , 2006 .
[82] A. Wolf,et al. Altitudinal shifts of the native and introduced flora of California in the context of 20th-century warming , 2016 .
[83] Marcel E. Visser,et al. Warmer springs disrupt the synchrony of oak and winter moth phenology , 2001, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[84] S. Kampf,et al. A GIS-based method for defining snow zones: application to the western United States , 2015 .
[85] Siamak Khorram,et al. Regional Scale Land Cover Characterization Using MODIS-NDVI 250 m Multi-Temporal Imagery: A Phenology-Based Approach , 2006 .
[86] A. Rango,et al. Climate change effects on the snowmelt hydrology of western North American mountain basins , 1990 .
[87] Songlin Fei,et al. Macrosystems ecology: novel methods and new understanding of multi-scale patterns and processes , 2015, Landscape Ecology.
[88] R. Keane,et al. Whitebark Pine Diameter Growth Response to Removal of Competition , 2007 .