Jornada Bibliography
Detecting land cover change at the Jornada Experimental Range, New Mexico with ASTER emissivities. Remote Sensing of Environment. 112:1730-1748.
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2008. Desertification alters patterns of aboveground net primary production in Chihuahuan ecosystems. Global Change Biology. 8:247-264.
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2002. Desert dogma revisited: coupling of stomatal conductance and photosynthesis in the desert shrub, Larrea tridentata. Plant, Cell and Environment. 25:909-921.
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2002. On definition and quantification of heterogeneity. Oikos. 73:280-284.
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1995. Decomposition processes: Modelling approaches and applications. Science of the Total Environment. 183:137-149.
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1995. Decomposition of leaf and root litter of Chihuahuan Desert shrubs: Effects of three years of summer drought. Journal of Arid Environments. 53:21-39.
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2003. Declines in rodent abundance and diversity track regional climate variability in North American drylands. Global Change Biology. 27:4005-4023.
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2021. Data-driven identification of group dynamics for motion prediciton and control. Journal of Field Robotics. 25:305-324.
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2008. A cryptic microbial community persists within micropropagated Bouteloua eriopods (Torr.) Torr. cultures. Plant Science. 174:570-575.
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2008. Cross-system comparisons elucidate disturbance complexities and generalities. Ecosphere. 2(7):Article81.
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2011. Cross-Site comparisons of dryland ecosystem response to climate change in the US Long-Term Ecological Research Network. BioScience. 72(9):889-907.
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2022. Crop Vulnerability to Weather and Climate Risk: Analysis of Interacting Systems and Adaptation Efficacy for Sustainable Crop Production. Sustainability. 11(23):6619.
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2019. Covariate selection with iterative principal component analysis for predicting physical soil properties. Geoderma. 219-220:46-57.
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2014. County-level climate change information to support decision-making on working lands within USDA Climate Hub regions. Climatic Change. 148(355):355–369.
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2018. Contributions of hydrology to Vesicular Stomatitis Virus emergence in the Western USA. Ecosystems. 22:416-433.
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2018. The contribution of abiotic processes to buried litter decomposition in the northern Chihuahuan Desert. Oecologia. 79:133-135.
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1989. Constraints on shrub cover and shrub-shrub competition in a U.S. southwest desert. Ecosphere. 10(2):1-16.
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2019. The consequences of climate change for dryland biogeochemistry. New Phytologist.
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2022. Connectivity: insights from the U.S. Long Term Ecological Research Network. Ecosphere. 12(5):1-30.
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2021. Connectivity: insights from the U.S. Long Term Ecological Research Network. Ecosphere. 12(5):1-30.
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2021. Connectivity: insights from the U.S. Long Term Ecological Research Network. Ecosphere. 12(5):1-30.
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2021. A conceptual model of primary productivity, decomposition, and nitrogen cycling in the Chihuahuan creosotebush desert. Tree Physiology. 2:215-222.
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1986. A comparison of three feature selection methods for object-based classification of sub-decimeter resolution UltraCam-L imagery. International Journal of Applied Earth Observation and Geoinformation. 15:70-78.
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2012. A comparison of the species-time relationship across ecosystems and taxonomic groups. Oikos. 112:185-195.
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2006. A comparison of the species-time relationship across ecosystems and taxonomic groups. Oikos. 112:185-195.
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2006. Comparison of Precipitation Catch Between Nine Measuring Systems. Journal of Hydrologic Engineering.
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1999. Comparison of ASTER, MASTER, and ground-based hyperspectral reflectance measurements. Remote Sensing for Environmental Monitoring and Change Detection. :237-244.
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2007. Comparison of ASTER, MASTER, and ground-based hyperspectral reflectance measurements. Remote Sensing for Environmental Monitoring and Change Detection. :237-244.
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2007. A comparative study of soil water dynamics in a desert ecosystem.. Water Resources Research. 33:73-90.
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1997. Comparative ecology of the harvester ants Pogonomyrmex barbatus (F. Smith) and Pogonomyrmex rugosus (Emery). Insectes Sociaux. 23:117-132.
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1976. Community response to removals of plant functional groups and species from a Chihuahuan Desert shrubland. Oikos. 110:67-80.
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2005. Comment on “The extent of forest in dryland biomes”. Science. 358:3pp.
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2017. Combining Decision Trees with Hierarchical Object-Oriented Image Analysis for Mapping Arid Rangelands. Photogrammetric Engineering and Remote Sensing. 73:197-207.
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2007. A combined modeling and measurement technique for estimating wind-blown dust emissions at Owens (dry) Lake, CA. Journal of Geophysical Research. 109:1-23.
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2004. Collecting, shipping, storing and imaging snow crystals and ice grains with low temperature scanning electron microscopy. Microscopy Research and Technique. 62:19-32.
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2003. Climate change, agriculture and water resources in the Southwestern United States. Journal of Contemporary Water Research and Education. (158):46-61.
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2016. Characterising the spatial and temporal activities of free-ranging cows from GPS data. The Rangeland Journal. 34:149-161.
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2012. Changing human-ecological relationships and drivers using the Quesungual Agroforestry System in western Honduras. Renewable Agriculture and Food System. :1-9.
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2010. Changing carbon chemistry of buried creosote bush litter during decomposition in the northern Chihuahuan Desert. The American Midland Naturalist. 130:83-89.
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1993. Changes in below ground biodiversity during ecosystem development. Proceedings of the National Academy of Sciences. 116:6891–6896.
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2019. Cattle grazing distribution patterns related to topography across diverse rangeland ecosystems of North America. Rangeland Ecology & Management. 75:91-103.
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2021. Cattle diets on semidesert grassland: nutritive content. Journal of Range Management. 28:94-96.
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1975. Cattle diets on semidesert grassland: botanical composition. Journal of Range Management. 28:89-93.
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1975. Cattle, conservation, and carbon in the western Great Plains. Journal of Soil and Water Conservation. 75(1)
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2019. Cascading impacts of climate change on southwestern US cropland agriculture. Climatic Change. 148(3):437-450.
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2018. Cascading impacts of climate change on southwestern US cropland agriculture. Climatic Change. 148(3):437-450.
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2018. Canopy attributes of desert grassland and transition communities derived from multiangular airborne imagery. Remote Sensing of Environment. 85:339-354.
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2003. Canopy attributes of desert grassland and transition communities derived from multiangular airborne imagery. Remote Sensing of Environment. 85:339-354.
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2003. Canopy architecture of Larrea tridentata (D. C.) Cov., a desert shrub: foliage orientation and direct beam radiation interception. Oecologia (Berlin). 75:54-60.
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1988. Can ecological land classification increase the utility of vegetation monitoring data? Ecological Indicators. 69:657-666.
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2016.