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Bjorndal, K. A., Bolten, A. B., Chaloupka, M., Saba, V. S., Bellini, C., Marcovaldi, M. A. G., et al. (2017). Ecological regime shift drives declining growth rates of sea turtles throughout the West Atlantic. Glob Change Biol, 23(11), 4556–4568.
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Bjorndal, K. A., Chaloupka, M., Saba, V. S., Diez, C. E., van Dam, R. P., Krueger, B. H., et al. (2016). Somatic growth dynamics of West Atlantic hawksbill sea turtles: a spatio-temporal perspective. Ecosphere, 7(5), e01279.
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Chang, N. - B., Imen, S., Bai, K., & Jeffrey Yang, Y. (2017). The impact of global unknown teleconnection patterns on terrestrial precipitation across North and Central America. Atmospheric Research, 193, 107–124.
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Chang, N. - B., Yang, Y. J., Imen, S., & Mullon, L. (2017). Multi-scale quantitative precipitation forecasting using nonlinear and nonstationary teleconnection signals and artificial neural network models. Journal of Hydrology, 548, 305–321.
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Chang, N. B., Imen, S., & Bai, K. (2015). Impacts of Global Non-leading Teleconnection Signals on Terrestrial Precipitation across the United States. In Proceedings of SPIE (Vol. 9610).
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Cohuo, S., Macario-González, L., Wagner, S., Naumann, K., Echeverría-Galindo, P., Pérez, L., et al. (2020). Influence of late Quaternary climate on the biogeography of Neotropical aquatic species as reflected by non-marine ostracodes. Biogeosciences, 17(1), 145–161.
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Ditri, A., Minnett, P., Liu, Y., Kilpatrick, K., & Kumar, A. (2018). The Accuracies of Himawari-8 and MTSAT-2 Sea-Surface Temperatures in the Tropical Western Pacific Ocean. Remote Sensing, 10(2), 212.
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Evans, D., Sagoo, N., Renema, W., Cotton, L. J., Müller, W., Todd, J. A., et al. (2018). Eocene greenhouse climate revealed by coupled clumped isotope-Mg/Ca thermometry. Proc Natl Acad Sci USA, 115(6), 1174–1179.
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Fraza, E., & Elsner, J. B. (2015). A climatological study of the effect of sea-surface temperature on North Atlantic hurricane intensification. Physical Geography, 36(5), 395–407.
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Freeman, E., Woodruff, S. D., Worley, S. J., Lubker, S. J., Kent, E. C., Angel, W. E., et al. (2017). ICOADS Release 3.0: a major update to the historical marine climate record. Int. J. Climatol., 37(5), 2211–2232.
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Gilford, D. M., Smith, S. R., Griffin, M. L., & Arguez, A. (2013). Southeastern U.S. Daily Temperature Ranges Associated with the El Nino-Southern Oscillation. J. Appl. Meteor. Climatol., 52(11), 2434–2449.
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Hodges, R. E., Jagger, T. H., & Elsner, J. B. (2014). The sun-hurricane connection: Diagnosing the solar impacts on hurricane frequency over the North Atlantic basin using a space-time model. Nat Hazards, 73(2), 1063–1084.
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Hua, W., Zhou, L., Chen, H., Nicholson, S. E., Jiang, Y., & Raghavendra, A. (2018). Understanding the Central Equatorial African long-term drought using AMIP-type simulations. Clim Dyn, 50(3-4), 1115–1128.
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Hua, W., Zhou, L., Chen, H., Nicholson, S. E., Raghavendra, A., & Jiang, Y. (2016). Possible causes of the Central Equatorial African long-term drought. Environ. Res. Lett., 11(12), 124002.
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Katsaros, K. B., A. Bentamy, M. Bourassa, N. Ebuchi, J. Gower, W. T. Liu, and S. Vignudelli. (2011). Climate Data Issues from an Oceanographic Remote Sensing Perspective. In Remote Sensing of the Changing Oceans (pp. 7–32). Berlin, Germany: Springer-Verlag.
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Laureano-Rosario, A. E., Garcia-Rejon, J. E., Gomez-Carro, S., Farfan-Ale, J. A., & Muller-Karger, F. E. (2017). Modelling dengue fever risk in the State of Yucatan, Mexico using regional-scale satellite-derived sea surface temperature. Acta Tropica, 172, 50–57.
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Lin, H., Fan, Z., Shi, L., Arain, A., McCaughey, H., Billesbach, D., et al. (2017). The Cooling Trend of Canopy Temperature During the Maturation, Succession, and Recovery of Ecosystems. Ecosystems, 20(2), 406–415.
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Liu, Y., & Minnett, P. J. (2015). Evidence linking satellite-derived sea-surface temperature signals to changes in the Atlantic meridional overturning circulation. Remote Sensing of Environment, 169, 150–162.
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Liu, Y., & Minnett, P. J. (2016). Sampling errors in satellite-derived infrared sea-surface temperatures. Part I: Global and regional MODIS fields. Remote Sensing of Environment, 177, 48–64.
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Ma, J., Foltz, G. R., Soden, B. J., Huang, G., He, J., & Dong, C. (2016). Will surface winds weaken in response to global warming? Environ. Res. Lett., 11(12), 124012.
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