articleTop 1% cited
Net carbon uptake has increased through warming-induced changes in temperate forest phenology
Nature Climate Change · 2014 · Vol. 4(7) · pp. 598–604
Trevor F. Keenan✉(Harvard University)Josh Gray(Boston University)M. A. Friedl(Boston University)Michael Toomey(Harvard University)Gil Bohrer(The Ohio State University)David Y. Hollinger(Northern Research Station)J. William Munger(Planetary Science Institute)John O’Keefe(Dana-Farber/Harvard Cancer Center)Hans Peter Schmid(Karlsruhe Institute of Technology)Ian Sue Wing(Boston University)Bai Yang(Oak Ridge National Laboratory)Andrew D. Richardson(Harvard University)
Remote Sensing in AgricultureSpecies Distribution and Climate ChangePlant Water Relations and Carbon DynamicsPhenologyEnvironmental scienceBiosphereEcosystemTemperate forestCarbon cycleClimate changeTerrestrial ecosystemTemperate rainforestTemperate climate
Citations
970
FWCI
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field-weighted impact
References
35
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100%
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Citations per year
References
Phenology shifts at start vs. end of growing season in temperate vegetation over the Northern Hemisphere for the period 1982-2008
Global Change Biology · 2011 · 1,062 citations
Climate change, phenology, and phenological control of vegetation feedbacks to the climate system
Agricultural and Forest Meteorology · 2012 · 2,189 citations
Influence of spring and autumn phenological transitions on forest ecosystem productivity
Philosophical Transactions of the Royal Society B Biological Sciences · 2010 · 943 citations
Trend Change Detection in NDVI Time Series: Effects of Inter-Annual Variability and Methodology
Remote Sensing · 2013 · 503 citations
Shifting plant phenology in response to global change
Trends in Ecology & Evolution · 2007 · 2,279 citations
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