The following 81 publications cited the product Terrestrial Ecology Subsetting & Visualization Services (TESViS) Global Subsets Tool.
Year | Citation |
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2024 | Borana, S.L. and S.K. Yadav. 2024. Satellite Image-Based Drought Monitoring: Vision to Enhance Drought Resilience. Geospatial Technology to Support Communities and Policy, Geotechnologies and the Environment. 129-148. https://doi.org/10.1007/978-3-031-52561-2_8 |
2024 | Montaghi, A., S. Bregaglio, and S. Bajocco. 2024. An open-source cloud-based procedure for MODIS remote sensing products: The nasawebservicepython package. Ecological Informatics. 79:102433. https://doi.org/10.1016/j.ecoinf.2023.102433 |
2024 | Sridharan, A., G. Gutjahr, and S. Gopalan. 2024. Markov–Switching Spatio–Temporal Generalized Additive Model for Landslide Susceptibility. Environmental Modelling & Software. 173:105892. https://doi.org/10.1016/j.envsoft.2023.105892 |
2024 | Zheng, H., Y. Sun, H. Bao, P. Niu, Z. Jin, and Z. Niu. 2024. Drought effects on evapotranspiration and energy exchange over a rain-fed maize cropland in the Chinese Loess Plateau. Agricultural Water Management. 293:108711. https://doi.org/10.1016/j.agwat.2024.108711 |
2023 | Balogun, O., R. Bello, and K. Higuchi. 2023. Terrestrial CO2 exchange diagnosis using a peatland-optimized vegetation photosynthesis and respiration model (VPRM) for the Hudson Bay Lowlands. Science of The Total Environment. 875:162591. https://doi.org/10.1016/j.scitotenv.2023.162591 |
2023 | Bloom, D.E., B. Bomfim, Y. Feng, and L.M. Kueppers. 2023. Combining field and remote sensing data to estimate forest canopy damage and recovery following tropical cyclones across tropical regions. Environmental Research: Ecology. 2(3):035004. https://doi.org/10.1088/2752-664X/acfaa3 |
2023 | Chemisquy, M.A., R.E. González-Ittig, and G.M. Martin. 2023. Hidden in plain sight: Didelphis albiventris (Didelphimorphia: Didelphidae) might not be a single species. Journal of Mammalian Evolution. 30(4):873-889. https://doi.org/10.1007/s10914-023-09685-1 |
2023 | Feng, X., X. Zhang, and J. Wang. 2023. Update of SO2 emission inventory in the Megacity of Chongqing, China by inverse modeling. Atmospheric Environment. 294:119519. https://doi.org/10.1016/j.atmosenv.2022.119519 |
2023 | Hoeltgebaum, L.E. and N.L. Dias. 2023. Evaluation of the storage and evapotranspiration terms of the water budget for an agricultural watershed using local and remote-sensing measurements. Agricultural and Forest Meteorology. 341:109615. https://doi.org/10.1016/j.agrformet.2023.109615 |
2023 | Huemmrich, K.F., J. Gamon, P. Campbell, M. Mora, S. Vargas Z, B. Almanza, and C. Tweedie. 2023. 20 years of change in tundra NDVI from coupled field and satellite observations. Environmental Research Letters. 18(9):094022. https://doi.org/10.1088/1748-9326/acee17 |
2023 | Maltese, A. 2023. On the Choice of the Most Suitable Period to Map Hill Lakes via Spectral Separability and Object-Based Image Analyses. Remote Sensing. 15(1):262. https://doi.org/10.3390/rs15010262 |
2023 | Micaela Rosas, Y., P.L. Peri, J. Benítez, M. Vanessa Lencinas, N. Politi, and G. Martínez Pastur. 2023. Potential biodiversity map of bird species (Passeriformes): Analyses of ecological niche, environmental characterization and identification of priority conservation areas in southern Patagonia. Journal for Nature Conservation. 73:126413. https://doi.org/10.1016/j.jnc.2023.126413 |
2023 | Pelak, N., M. Sohrabi, M. Safeeq, and M. Conklin. 2023. Improving snow water equivalent simulations in an alpine basin by blending precipitation gauge and snow pillow measurements. Hydrological Processes. 37(1). https://doi.org/10.1002/hyp.14796 |
2023 | Pendiuk, J.E., L. Guarracino, M. Reich, and A. Güntner. 2023. Estimating cumulative evapotranspiration using superconducting gravimeter data: a study in Buenos Aires Province, Argentina. Hydrological Sciences Journal. 68(15):2262-2275. https://doi.org/10.1080/02626667.2023.2264283 |
2023 | Poczta, P., M. Urbaniak, T. Sachs, K.M. Harenda, A. Klarzyńska, R. Juszczak, D. Schüttemeyer, B. Czernecki, A. Kryszak, and B.H. Chojnicki. 2023. A multi-year study of ecosystem production and its relation to biophysical factors over a temperate peatland. Agricultural and Forest Meteorology. 338:109529. https://doi.org/10.1016/j.agrformet.2023.109529 |
2023 | Rozanov, A.P. and K.G. Gribanov. 2023. A Neural Network Model for Estimating Carbon Fluxes in Forest Ecosystems from Remote Sensing Data. Atmospheric and Oceanic Optics. 36(4):323-328. https://doi.org/10.1134/S1024856023040152 |
2023 | Savastru, D.M., M.A. Zoran, R.S. Savastru, M.N. Tautan, and D.V. Tenciu. 2023. Time-series satellite data for assessment of Bucharest city thermal environment. Ninth International Conference on Remote Sensing and Geoinformation of the Environment (RSCy2023). https://doi.org/10.1117/12.2680592 |
2023 | Sfîcă, L., A. Corocăescu, C. Crețu, V. Amihăesei, and P. Ichim. 2023. Spatiotemporal Features of the Surface Urban Heat Island of Bacău City (Romania) during the Warm Season and Local Trends of LST Imposed by Land Use Changes during the Last 20 Years. Remote Sensing. 15(13):3385. https://doi.org/10.3390/rs15133385 |
2023 | Sindhu, S., C.D. Jain, M.V. Ratnam, and P.R. Sinha. 2023. Measurements of Volatile Organic Compounds at a rural site in India: Variability and sources during the seasonal transition. Science of The Total Environment. 897:165493. https://doi.org/10.1016/j.scitotenv.2023.165493 |
2023 | Xu, J., M. Feng, Y. Sui, D. Yan, K. Zhang, and K. Shi. 2023. Identifying Alpine Lakes in the Eastern Himalayas Using Deep Learning. Water. 15(2):229. https://doi.org/10.3390/w15020229 |
2023 | Zimba, H., M. Coenders-Gerrits, K. Banda, B. Schilperoort, N. van de Giesen, I. Nyambe, and H.H.G. Savenije. 2023. Phenophase-based comparison of field observations to satellite-based actual evaporation estimates of a natural woodland: miombo woodland, southern Africa. Hydrology and Earth System Sciences. 27(8):1695-1722. https://doi.org/10.5194/hess-27-1695-2023 |
2023 | Zoran, M.A., R.S. Savastru, D.M. Savastru, and M.N. Tautan. 2023. Peculiar weather patterns effects on air pollution and COVID-19 spread in Tokyo metropolis. Environmental Research. 228:115907. https://doi.org/10.1016/j.envres.2023.115907 |
2022 | Ba, R., M. Lovallo, W. Song, H. Zhang, and L. Telesca. 2022. Multifractal Analysis of MODIS Aqua and Terra Satellite Time Series of Normalized Difference Vegetation Index and Enhanced Vegetation Index of Sites Affected by Wildfires. Entropy. 24(12):1748. https://doi.org/10.3390/e24121748 |
2022 | Ba, R., W. Song, M. Lovallo, H. Zhang, and L. Telesca. 2022. Informational analysis of MODIS NDVI and EVI time series of sites affected and unaffected by wildfires. Physica A: Statistical Mechanics and its Applications. 604:127911. https://doi.org/10.1016/j.physa.2022.127911 |
2022 | Davidson, A.D., D.J. Augustine, H. Jacobsen, D. Pellatz, L.M. Porensky, G. McKee, and C. Duchardt. 2022. Boom and bust cycles of black-tailed prairie dog populations in the Thunder Basin grassland ecosystem. Journal of Mammalogy. 103(5):1112-1126. https://doi.org/10.1093/jmammal/gyac035 |
2022 | Dokoohaki, H., B.D. Morrison, A. Raiho, S.P. Serbin, K. Zarada, L. Dramko, and M. Dietze. 2022. Development of an open-source regional data assimilation system in PEcAn v. 1.7.2: application to carbon cycle reanalysis across the contiguous US using SIPNET. Geoscientific Model Development. 15(8):3233-3252. https://doi.org/10.5194/gmd-15-3233-2022 |
2022 | Florio, E.L., and M.D. Nosetto. 2022. A modeling approach to explore the influence of different crop rotations on water-table depths and crop yields in the Pampas. Soil and Tillage Research. 223:105496. https://doi.org/10.1016/j.still.2022.105496 |
2022 | Kim, J., Y. Kim, J. Kim, K. Cho, J. Hong, J. Hong, S. Jo, C. Park, and J.H. Chun. 2022. A transiting temperate-subtropical mixed forest: carbon cycle projection and uncertainty. Environmental Research Letters. 17(9):094010. https://doi.org/10.1088/1748-9326/ac87c0 |
2022 | Kitzberger, T., F. Tiribelli, I. Barberá, J.H. Gowda, J.M. Morales, L. Zalazar, and J. Paritsis. 2022. Projections of fire probability and ecosystem vulnerability under 21st century climate across a trans-Andean productivity gradient in Patagonia. Science of The Total Environment. 839:156303. https://doi.org/10.1016/j.scitotenv.2022.156303 |
2022 | Mouser, J.B., S.K. Brewer, M.L. Niemiller, R. Mollenhauer, and R.A. Van Den Bussche. 2022. Lithology and disturbance drive cavefish and cave crayfish occurrence in the Ozark Highlands ecoregion. Scientific Reports. 12(1). https://doi.org/10.1038/s41598-022-21791-3 |
2022 | Renjana, E., I.P. Astuti, E. Munawaroh, S. Mursidawati, J.R. Witono, Yuzammi, I.A. Fijridiyanto, P.D. Raharjo, S.M. Solihah, I. Robiansyah, W.P. Cropper, and A. Yudaputra. 2022. Assessing potential habitat suitability of parasitic plant: A case study of Rafflesia arnoldii and its host plants. Global Ecology and Conservation. 34:e02063. https://doi.org/10.1016/j.gecco.2022.e02063 |
2022 | Steger, C., R.B. Boone, B.W. Dullo, P. Evangelista, S. Alemu, K. Gebrehiwot, and J.A. Klein. 2022. Collaborative agent-based modeling for managing shrub encroachment in an Afroalpine grassland. Journal of Environmental Management. 316:115040. https://doi.org/10.1016/j.jenvman.2022.115040 |
2021 | Achille, L.S., K. Zhang, K.M. Eloge, C.J.A. Kouassi, and M.M. Michel. 2021. Influence of Spatial Distribution on the Regeneration of <i>Piptadeniastrum africanum</i> and <i>Ocotea usambaernsis</i> in Kalikuku, Lubero, North Kivu, Democratic Republic of Congo. Open Journal of Ecology. 11(07):527-539. https://doi.org/10.4236/oje.2021.117034 |
2021 | Applestein, C., A.B. Simler-Williamson, and M.J. Germino. 2021. Weather and distance to fire refugia limit landscape-level occurrence of fungal disease in an exotic annual grass. Journal of Ecology. https://doi.org/10.1111/1365-2745.13638 |
2021 | Beal, M.R.W., B. O'Reilly, K.R. Hietpas, and P. Block. 2021. Development of a sub-seasonal cyanobacteria prediction model by leveraging local and global scale predictors. Harmful Algae. 108:102100. https://doi.org/10.1016/j.hal.2021.102100 |
2021 | Francis, D., K.S. Mattingly, S. Lhermitte, M. Temimi, and P. Heil. 2021. Atmospheric extremes caused high oceanward sea surface slope triggering the biggest calving event in more than 50 years at the Amery Ice Shelf. The Cryosphere. 15(5):2147-2165. https://doi.org/10.5194/tc-15-2147-2021 |
2021 | Justino, F., D. Bromwich, A. Wilson, A. Silva, A. Avila-Diaz, A. Fernandez, and J. Rodrigues. 2021. Estimates of temporal-spatial variability of wildfire danger across the Pan-Arctic and extra-tropics. Environmental Research Letters. 16(4):044060. https://doi.org/10.1088/1748-9326/abf0d0 |
2021 | Kistner-Thomas, E., S. Kumar, L. Jech, and D.A. Woller. 2021. Modeling Rangeland Grasshopper (Orthoptera: Acrididae) Population Density Using a Landscape-Level Predictive Mapping Approach. Journal of Economic Entomology. 114(4):1557-1567. https://doi.org/10.1093/jee/toab119 |
2021 | Lee, E., P. Kumar, J.F. Knowles, R.L. Minor, N. Tran, G.A. Barron-Gafford, and R.L. Scott. 2021. Convergent Hydraulic Redistribution and Groundwater Access Supported Facilitative Dependency Between Trees and Grasses in a Semi-Arid Environment. Water Resources Research. 57(6): https://doi.org/10.1029/2020WR028103 |
2021 | Liu, F., C. Wang, and X. Wang. 2021. Can vegetation index track the interannual variation in gross primary production of temperate deciduous forests?. Ecological Processes. 10(1): https://doi.org/10.1186/s13717-021-00324-2 |
2021 | Seagren, E.G. and L.M. Schoenbohm. 2021. Drainage Reorganization Across the Puna Plateau Margin (NW Argentina): Implications for the Preservation of Orogenic Plateaus. Journal of Geophysical Research: Earth Surface. 126(8): https://doi.org/10.1029/2021JF006147 |
2021 | Simon, J.N., N. Nuthammachot, T. Titseesang, K.E. Okpara, and K. Techato. 2021. Spatial Assessment of Para Rubber (Hevea brasiliensis) above Ground Biomass Potentials in Songkhla Province, Southern Thailand. Sustainability. 13(16):9344. https://doi.org/10.3390/su13169344 |
2021 | Wiesner, S., G. Starr, L.R. Boring, J.A. Cherry, P.C. Stoy, and C.L. Staudhammer. 2021. Forest structure and composition drive differences in metabolic energy and entropy dynamics during temperature extremes in longleaf pine savannas. Agricultural and Forest Meteorology. 297:108252. https://doi.org/10.1016/j.agrformet.2020.108252 |
2021 | Yudaputra, A. 2021. Predicting habitat suitability of critically endangered Nepenthes sumatrana. IOP Conference Series: Earth and Environmental Science. 948(1):012020. https://doi.org/10.1088/1755-1315/948/1/012020 |
2020 | Antonson, N.D., D.R. Rubenstein, M.E. Hauber, and C.A. Botero. 2020. Ecological uncertainty favours the diversification of host use in avian brood parasites. Nature Communications. 11(1): https://doi.org/10.1038/s41467-020-18038-y |
2020 | Ba, R., W. Song, M. Lovallo, S. Lo, and L. Telesca. 2020. Analysis of Multifractal and Organization/Order Structure in Suomi-NPP VIIRS Normalized Difference Vegetation Index Series of Wildfire Affected and Unaffected Sites by Using the Multifractal Detrended Fluctuation Analysis and the Fisher-Shannon Analysis. Entropy. 22(4):415. https://doi.org/10.3390/e22040415 |
2020 | Brown, L.A., C. Meier, H. Morris, J. Pastor-Guzman, G. Bai, C. Lerebourg, N. Gobron, C. Lanconelli, M. Clerici, and J. Dash. 2020. Evaluation of global leaf area index and fraction of absorbed photosynthetically active radiation products over North America using Copernicus Ground Based Observations for Validation data. Remote Sensing of Environment. 247:111935. https://doi.org/10.1016/j.rse.2020.111935 |
2020 | Calvo-Rodriguez, S., R. Kiese, and G.A. Sanchez-Azofeifa. 2020. Seasonality and Budgets of Soil Greenhouse Gas Emissions From a Tropical Dry Forest Successional Gradient in Costa Rica. Journal of Geophysical Research: Biogeosciences. 125(9): https://doi.org/10.1029/2020JG005647 |
2020 | Deb Burman, P.K., N.J. Shurpali, S. Chowdhuri, A. Karipot, S. Chakraborty, S.E. Lind, P.J. Martikainen, S. Chellappan, A. Arola, Y.K. Tiwari, P. Murugavel, D. Gurnule, K. Todekar, and T.V. Prabha. 2020. Eddy covariance measurements of CO2 exchange from agro-ecosystems located in subtropical (India) and boreal (Finland) climatic conditions. Journal of Earth System Science. 129(1): https://doi.org/10.1007/s12040-019-1305-4 |
2020 | Ibrahim, S.A., J. Kaduk, K. Tansey, H. Balzter, and U.M. Lawal. 2020. Detecting phenological changes in plant functional types over West African savannah dominated landscape. International Journal of Remote Sensing. 42(2):567-594. https://doi.org/10.1080/01431161.2020.1811914 |
2020 | Kjellman, S.E., A. Schomacker, E.K. Thomas, L. Hakansson, S. Duboscq, A.A. Cluett, W.R. Farnsworth, L. Allaart, O.C. Cowling, N.P. McKay, S. Brynjolfsson, and O. Ingolfsson. 2020. Holocene precipitation seasonality in northern Svalbard: Influence of sea ice and regional ocean surface conditions. Quaternary Science Reviews. 240:106388. https://doi.org/10.1016/j.quascirev.2020.106388 |
2020 | Mahoney, P.J., K. Joly, B.L. Borg, M.S. Sorum, T.A. Rinaldi, D. Saalfeld, H. Golden, A.D.M. Latham, A.P. Kelly, B. Mangipane, C.L. Koizumi, L. Neufeld, M. Hebblewhite, N.T. Boelman, and L.R. Prugh. 2020. Denning phenology and reproductive success of wolves in response to climate signals. Environmental Research Letters. 15(12):125001. https://doi.org/10.1088/1748-9326/abc0ba |
2020 | Nosetto, M.D., E. Luna Toledo, P.N. Magliano, P. Figuerola, L.J. Blanco, and E.G. Jobbagy. 2020. Contrasting CO 2 and water vapour fluxes in dry forest and pasture sites of central Argentina . Ecohydrology. https://doi.org/10.1002/eco.2244 |
2020 | Richardson, M. and P. Kumar. 2020. Discerning the thermodynamic feasibility of the spontaneous coexistence of multiple functional vegetation groups. Scientific Reports. 10(1): https://doi.org/10.1038/s41598-020-75050-4 |
2020 | Rizinjirabake, F., P. Pilesjo, and D.E. Tenenbaum. 2020. Data for assessment of leached dissolved organic carbon in watersheds. Data in Brief. 32:106163. https://doi.org/10.1016/j.dib.2020.106163 |
2020 | Serrano-Ortiz, P., S. Aranda-Barranco, A. Lopez-Ballesteros, C. Lopez-Canfin, E.P. Sanchez-Canete, A. Meijide, and A.S. Kowalski. 2020. Transition Period Between Vegetation Growth and Senescence Controlling Interannual Variability of C Fluxes in a Mediterranean Reed Wetland. Journal of Geophysical Research: Biogeosciences. 125(1): https://doi.org/10.1029/2019JG005169 |
2020 | Tian, X., F. Minunno, T. Cao, M. Peltoniemi, T. Kalliokoski, and A. Makela. 2020. Extending the range of applicability of the semi-empirical ecosystem flux model PRELES for varying forest types and climate. Global Change Biology. 26(5):2923-2943. https://doi.org/10.1111/gcb.14992 |
2020 | Zhang, S., V. Buttò, S. Khare, A. Deslauriers, H. Morin, J. Huang, H. Ren, and S. Rossi. 2020. Calibrating PhenoCam Data with Phenological Observations of a Black Spruce Stand. Canadian Journal of Remote Sensing. 46(2):154-165. https://doi.org/10.1080/07038992.2020.1761251 |
2019 | Baldovin, T., I. Amoruso, D. Zangrando, S. Cocchio, M. Maharjan, R. Lazzari, A. Buja, V. Baldo, and C. Bertoncello. 2019. Soil-transmitted helminthiases in Nepal: Transmission boundaries and implications for local communities and international travelers. Acta Tropica. 196:155-164. https://doi.org/10.1016/j.actatropica.2019.04.014 |
2019 | Choi, K., G.R. Maharjan, and B. Reineking. 2019. Evaluating the Effectiveness of Spatially Reconfiguring Erosion Hot Spots to Reduce Stream Sediment Load in an Upland Agricultural Catchment of South Korea. Water. 11(5):957. https://doi.org/10.3390/w11050957 |
2019 | Correa-Diaz, A., L.C.R. Silva, W.R. Horwath, A. Gomez-Guerrero, J. Vargas-Hernandez, J. Villanueva-Diaz, A. Velazquez-Martinez, and J. Suarez-Espinoza. 2019. Linking Remote Sensing and Dendrochronology to Quantify Climate-Induced Shifts in High-Elevation Forests Over Space and Time. Journal of Geophysical Research: Biogeosciences. 124(1):166-183. https://doi.org/10.1029/2018JG004687 |
2019 | Donnelly, A., R. Yu, L. Liu, J.M. Hanes, L. Liang, M.D. Schwartz, and A.R. Desai. 2019. Comparing in-situ leaf observations in early spring with flux tower CO2 exchange, MODIS EVI and modeled LAI in a northern mixed forest. Agricultural and Forest Meteorology. 278:107673. https://doi.org/10.1016/j.agrformet.2019.107673 |
2019 | Lee, H., J. Park, S. Cho, M. Lee, and H.S. Kim. 2019. Impact of leaf area index from various sources on estimating gross primary production in temperate forests using the JULES land surface model. Agricultural and Forest Meteorology. 276-277:107614. https://doi.org/10.1016/j.agrformet.2019.107614 |
2019 | Liu, F., X. Wang, and C. Wang. 2019. Autumn phenology of a temperate deciduous forest: Validation of remote sensing approach with decadal leaf-litterfall measurements. Agricultural and Forest Meteorology. 279:107758. https://doi.org/10.1016/j.agrformet.2019.107758 |
2019 | McNew, S.M., S.A. Knutie, G.B. Goodman, A. Theodosopoulos, A. Saulsberry, J. Yepez R., S.E. Bush, and D.H. Clayton. 2019. Annual environmental variation influences host tolerance to parasites. Proceedings of the Royal Society B: Biological Sciences. 286(1897):20190049. https://doi.org/10.1098/rspb.2019.0049 |
2019 | Mello, C.R., L.F. Avila, H. Lin, M.C.N.S. Terra, and N.A. Chappell. 2019. Water balance in a neotropical forest catchment of southeastern Brazil. CATENA. 173:9-21. https://doi.org/10.1016/j.catena.2018.09.046 |
2019 | Milkovic, M., J.M. Paruelo, and M.D. Nosetto. 2019. Hydrological impacts of afforestation in the semiarid Patagonia: A modelling approach. Ecohydrology. https://doi.org/10.1002/eco.2113 |
2019 | Ossohou, M., C. Galy-Lacaux, V. Yoboue, J.E. Hickman, E. Gardrat, M. Adon, S. Darras, D. Laouali, A. Akpo, M. Ouafo, B. Diop, and C. Opepa. 2019. Trends and seasonal variability of atmospheric NO2 and HNO3 concentrations across three major African biomes inferred from long-term series of ground-based and satellite measurements. Atmospheric Environment. 207:148-166. https://doi.org/10.1016/j.atmosenv.2019.03.027 |
2019 | Pepin, N., H. Deng, H. Zhang, F. Zhang, S. Kang, and T. Yao. 2019. An Examination of Temperature Trends at High Elevations Across the Tibetan Plateau: The Use of MODIS LST to Understand Patterns of Elevation-Dependent Warming. Journal of Geophysical Research: Atmospheres. https://doi.org/10.1029/2018JD029798 |
2019 | Rizinjirabake, F., P. Pilesjo, and D.E. Tenenbaum. 2019. Dissolved organic carbon leaching flux in a mixed agriculture and forest watershed in Rwanda. Journal of Hydrology: Regional Studies. 26:100633. https://doi.org/10.1016/j.ejrh.2019.100633 |
2019 | Rossger, N., C. Wille, D. Holl, M. Gockede, and L. Kutzbach. 2019. Scaling and balancing carbon dioxide fluxes in a heterogeneous tundra ecosystem of the Lena River Delta. Biogeosciences. 16(13):2591-2615. https://doi.org/10.5194/bg-16-2591-2019 |
2019 | Wagle, P., P.H. Gowda, and B.K. Northup. 2019. Annual dynamics of carbon dioxide fluxes over a rainfed alfalfa field in the U.S. Southern Great Plains. Agricultural and Forest Meteorology. 265:208-217. https://doi.org/10.1016/j.agrformet.2018.11.022 |
2019 | Yan, D., R.L. Scott, D.J.P. Moore, J.A. Biederman, and W.K. Smith. 2019. Understanding the relationship between vegetation greenness and productivity across dryland ecosystems through the integration of PhenoCam, satellite, and eddy covariance data. Remote Sensing of Environment. 223:50-62. https://doi.org/10.1016/j.rse.2018.12.029 |
2018 | Kang, X., L. Yan, X. Zhang, Y. Li, D. Tian, C. Peng, H. Wu, J. Wang, and L. Zhong. 2018. Modeling Gross Primary Production of a Typical Coastal Wetland in China Using MODIS Time Series and CO2 Eddy Flux Tower Data. Remote Sensing. 10(5):708. https://doi.org/10.3390/rs10050708 |
2018 | Lee, E., P. Kumar, G.A. Barron-Gafford, S.M. Hendryx, E.P. Sanchez-Canete, R.L. Minor, T. Colella, and R.L. Scott. 2018. Impact of Hydraulic Redistribution on Multispecies Vegetation Water Use in a Semiarid Savanna Ecosystem: An Experimental and Modeling Synthesis. Water Resources Research. 54(6):4009-4027. https://doi.org/10.1029/2017WR021006 |
2018 | Markevych, I., F. Tesch, T. Datzmann, M. Romanos, J. Schmitt, and J. Heinrich. 2018. Outdoor air pollution, greenspace, and incidence of ADHD: A semi-individual study. Science of The Total Environment. 642:1362-1368. https://doi.org/10.1016/j.scitotenv.2018.06.167 |
2018 | Mzobe, P., M. Berggren, P. Pilesjo, E. Lundin, D. Olefeldt, N.T. Roulet, and A. Persson. 2018. Dissolved organic carbon in streams within a subarctic catchment analysed using a GIS/remote sensing approach. PLOS ONE. 13(7):e0199608. https://doi.org/10.1371/journal.pone.0199608 |
2018 | Parker, G., A. Martinez-Yrizar, J.C. Alvarez-Yepiz, M. Maass, and S. Araiza. 2018. Effects of hurricane disturbance on a tropical dry forest canopy in western Mexico. Forest Ecology and Management. 426:39-52. https://doi.org/10.1016/j.foreco.2017.11.037 |
2018 | Parmentier, F.J.W., D.P. Rasse, M. Lund, J.W. Bjerke, B.G. Drake, S. Weldon, H. Tommervik, and G.H. Hansen. 2018. Vulnerability and resilience of the carbon exchange of a subarctic peatland to an extreme winter event. Environmental Research Letters. 13(6):065009. https://doi.org/10.1088/1748-9326/aabff3 |
2018 | Peri, P., Y. Rosas, B. Ladd, S. Toledo, R. Lasagno, and G. Martinez Pastur. 2018. Modelling Soil Carbon Content in South Patagonia and Evaluating Changes According to Climate, Vegetation, Desertification and Grazing. Sustainability. 10(2):438. https://doi.org/10.3390/su10020438 |
2018 | Wang, C., J. Chen, Y. Tang, T.A. Black, and K. Zhu. 2018. A Novel Method for Removing Snow Melting-Induced Fluctuation in GIMMS NDVI3g Data for Vegetation Phenology Monitoring: A Case Study in Deciduous Forests of North America. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 11(3):800-807. https://doi.org/10.1109/JSTARS.2017.2778076 |