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Phenology Bibliography
“Linking Fluctuations In Rainfall To Nonbreeding Season Performance In A Long-Distance Migratory Bird, Setophaga Ruticilla”. Climate Research 35. Climate Research (2007): 115-122. http://www.int-res.com/abstracts/cr/v35/n1-2/p115-122/.
. “The Long-Term Phenology Of Woodland Species In Britain”. Long-Term Studies In British Woodland. Long-Term Studies In British Woodland, 2000.
. “Macroscale Prediction Of Autumn Leaf Coloration Throughout The Continental United States”. Global Ecology And Biogeography. Global Ecology And Biogeography (2014). doi:10.1111/geb.12206.
. “Mapping Presence And Predicting Phenological Status Of Invasive Buffelgrass In Southern Arizona Using Modis, Climate And Citizen Science Observation Data”. Remote Sensing no. 8(7). Remote Sensing (2016): 524. doi:10.3390/rs8070524.
. “Mapping Temperate Vegetation Climate Adaptation Variability Using Normalized Land Surface Phenology”. Climate. Climate (2016): 24.
. “A Matlab Toolbox For Calculating Spring Indices From Daily Meteorological Data”. Computers And Geosciences no. 83. Computers And Geosciences (2015): 46–53. doi:10.1016/j.cageo.2015.06.015.
. “Modeling Lilac Development”. International Journal Of Biometeorology 20. International Journal Of Biometeorology (1976): 256-260.
. “Modeling Lilac Development”. International Journal Of Biometeorology no. 20. International Journal Of Biometeorology (1976): 256-260.
. “Monitoring Global Change With Phenology: The Case Of The Spring Green Wave”. International Journal Of Biometeorology 38. International Journal Of Biometeorology (1994): 18-22.
. “Morphological And Physiological Phenology Of Pinus Longaeva In The White Mountains Of California”. Tree Ring Research no. Volume 71 Issue 1. Tree Ring Research (2015): 1-12. doi:10.3959/1536-1098-71.1.1.
. “Multi-Scale Modeling Of Spring Phenology Across Deciduous Forests In The Eastern United States”. Global Change Biology. Global Change Biology (2015). doi:10.1111/gcb.13122.
. Natural Resource Report - California Phenology Project (Cpp) Plant Phenological Monitoring Protocol: Version 1. Natural Resource Report. Natural Resource Report. National Park Service , 2014. https://irma.nps.gov/App/Reference/Profile/2207196.
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“Natural Selection Favors Rapid Reproductive Phenology In Potentilla Pulcherrima (Rosaceae) At Opposite Ends Of A Subalpine Snowmelt Gradient”. American Journal Of Botany 91. American Journal Of Botany (2004): 531-539.
. “Nature's Notebook And Extension: Engaging Citizen-Scientists And 4-H Youth To Observe A Changing Environment”. Journal Of Extension no. Volume 51, Number 1. Journal Of Extension (2013). http://www.joe.org/joe/2013february/iw1.php.
. “Ndvi Derived From Near-Infrared-Enabled Digital Cameras: Applicability Across Different Plant Functional Types”. Agricultural And Forest Meteorology. Agricultural And Forest Meteorology (2017). https://doi.org/10.1016/j.agrformet.2017.11.003.
. “Northern Hemisphere Jet Stream Position Indices As Diagnostic Tools For Climate And Ecosystem Dynamics”. Earth Interactions no. 21. Earth Interactions (2017). doi:10.1175/EI-D-16-0023.1.
. “A Note On Thoreau's Place In The History Of Phenology”. Isis 47. Isis (1956): 172-181.
. “A Novel Analysis Of Spring Phenological Patterns Over Europe Based On Co-Clustering”. Journal Of Geophysical Resources Biogeosciences. Journal Of Geophysical Resources Biogeosciences (2016). doi:10.1002/2015JG003308.
. “Novel Measures Of Continental-Scale Avian Migration Phenology Related To Proximate Environmental Cues”. Ecosphere no. Volume 7, Issue 9. Ecosphere (2016). doi:10.1002/ecs2.1434.
. “Observed Changes In False Springs Over The Contiguous United States”. Geophysical Research Letters no. 41. Geophysical Research Letters (2014): 2156–2162. doi:10.1002/2014GL059266.
. “Onset Of Spring Starting Earlier Across The Northern Hemisphere”. Global Change Biology 12. Global Change Biology (2006): 343-351.
. “Organizing Phenological Data Resources To Inform Natural Resource Conservation”. Biological Conservation. Biological Conservation (2014). http://dx.doi.org/10.1016/j.biocon.2013.07.003.
. “Overlooked Climate Parameters Best Predict Flowering Onset: Assessing Phenological Models Using The Elastic Net”. Global Change Biology. Global Change Biology (2018). doi:10.1111/gcb.14447.
. “Past And Future Changes In Climate And Hydrological Indicators In The U.s. Northeast”. Climate Dynamics no. 28(4). Climate Dynamics (2007): 381-407.
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