A spatio-temporal comparison of avian migration phenology using Citizen Science data
Tài liệu tham khảo
Arab, 2015, Spatio-temporal trend analysis of spring arrival data for migratory birds, Comm. Statist. Simulation Comput., 44, 2535, 10.1080/03610918.2013.809100
Arab, 2008, Hierarchical spatial models, 425
Banerjee, 2014
Berliner, 1996, Hierarchical Bayesian time series models, 15
Bradley, J.R., Wikle, C.K., Holan, S.H., 2015. Regionalization of multiscale spatial processes using a criterion for spatial aggregation error. arXiv:1502.01974.
Butler, 2003, The disproportionate effect of global warming on the arrival dates of short-distance migratory birds in North America, Ibis, 145, 484, 10.1046/j.1474-919X.2003.00193.x
Carlin, 2003, Hierarchical multivariate CAR models for spatio-temporally correlated survival data (with discussion), 44
Clark, 2005, Why environmental scientists are becoming Bayesians, Ecol. Lett., 8, 2, 10.1111/j.1461-0248.2004.00702.x
Cook, 2012, Divergent responses to spring and winter warming drive community level flowering trends, Proc. Natl. Acad. Sci., 109, 9000, 10.1073/pnas.1118364109
Courter, 2013, Assessing migration of Ruby-throated Hummingbirds (Archilochus colubris) at broad spatial and temporal scales, Auk, 130, 107, 10.1525/auk.2012.12058
Courter, 2013, Weekend bias in citizen science data reporting: implications for phenology studies, Int. J. Biometeorol., 57, 715, 10.1007/s00484-012-0598-7
Cressie, 2011
Gelfand, 2003, Proper multivariate conditional autoregressive models for spatial data analysis, Biostatistics, 4, 11, 10.1093/biostatistics/4.1.11
Gordo, 2011, Ecological impacts of the North Atlantic oscillation (NAO) in Mediterranean ecosystems, 153
Hostetler, 2015, Full-annual-cycle population models for migratory birds, Auk, 132, 433, 10.1642/AUK-14-211.1
Hubálek, 2008, Migration distance and the effect of North Atlantic oscillation on the spring arrival of birds in Central Europe, Folia Zool., 57, 212
Hurlbert, 2012, Spatiotemporal variation in avian migration phenology: Citizen science reveals effects of climate change, PLoS One, 7, e31662, 10.1371/journal.pone.0031662
Knudsen, 2011, Challenging claims in the study of migratory birds and climate change, Biol. Rev., 86, 928, 10.1111/j.1469-185X.2011.00179.x
Laughlin, 2013, Integrating information from geolocators, weather radar, and citizen science to uncover a key stopover area of an aerial insectivore, Auk, 130, 230, 10.1525/auk.2013.12229
Ledneva, 2004, Climate change as reflected in a naturalist’s diary, Middleborough, Massachusetts, Wilson Bull., 116, 224, 10.1676/04-016
Mardia, 1988, Multi-dimensional multivariate Gaussian Markov random fields with application to image processing, J. Multivariate Anal., 24, 265, 10.1016/0047-259X(88)90040-1
Matthews, 2011, Changes in potential habitat of 147 North American breeding bird species in response to redistribution of trees and climate following predicted climate change, Ecography, 34, 933, 10.1111/j.1600-0587.2011.06803.x
McKinney, 2012, Asynchronous changes in phenology of migrating Broad-tailed Hummingbirds and their early-season nectar resources, Ecology, 93, 1987, 10.1890/12-0255.1
Møller, 2010
Parmesan, 2003, A globally coherent fingerprint of climate change impacts across natural systems, Nature, 421, 37, 10.1038/nature01286
Primack, 2009, Spatial and interspecific variability in phenological responses to warming temperatures, Biol. Cons., 142, 2569, 10.1016/j.biocon.2009.06.003
Reich, 2008, Modeling longitudinal spatial periodontal data: A spatially adaptive model with tools for specifying priors and checking fit, Biometrics, 64, 790, 10.1111/j.1541-0420.2007.00956.x
Robert, 2004
Robinet, 2010, Direct impacts of recent climate warming on insect populations, Integr. Zool., 5, 132, 10.1111/j.1749-4877.2010.00196.x
Robinson, 1996, Ruby-throated Hummingbird (Archilochus colubris)
Spiegelhalter, 2002, Bayesian measures of model complexity and fit (with discussion), J. R. Stat. Soc. Ser. B Stat. Methodol., 64, 583, 10.1111/1467-9868.00353
Stervander, 2005, Timing of spring migration in birds: long-term trends, North Atlantic oscillation and the significance of different migration routes, J. Avian Biol., 36, 210, 10.1111/j.0908-8857.2005.03360.x
Studds, 2011, Rainfall-induced changes in food availability modify the spring departure programme of a migratory bird, Proc. R. Soc. Lond. B Biol. Sci., 10.1098/rspb.2011.0332
Sullivan, 2014, The eBird enterprise: an integrated approach to development and application of citizen science, Biol. Cons., 169, 31, 10.1016/j.biocon.2013.11.003
Sun, 2015, False discovery control in large-scale spatial multiple testing, J. R. Stat. Soc. Ser. B Stat. Methodol., 77, 59, 10.1111/rssb.12064
Swanson, 2009, Spring migration phenology of birds in the Northern Prairie region is correlated with local climate change, J. Field Ornithol., 80, 351, 10.1111/j.1557-9263.2009.00241.x
Tarof, 2013, Purple martin (Progne subis)
Visbeck, 2001, The North Atlantic oscillation: past, present, and future, Proc. Natl. Acad. Sci., 98, 12876, 10.1073/pnas.231391598
Wikle, 2003, Hierarchical models in environmental science, Internat. Statist. Rev., 71, 181, 10.1111/j.1751-5823.2003.tb00192.x
Yan, 2007, Spatial stochastic volatility for lattice data, J. Agric. Biol. Environ. Stat., 12, 25, 10.1198/108571107X178068
Zelt, 2012, Reviving a legacy citizen science project to illuminate shifting migratory bird patterns, Int. J. Zool., 10.1155/2012/710710
Zhang, 2007, Diverse responses of vegetation phenology to a warming climate, Geophys. Res. Lett., 34, 10.1029/2007GL031447