Jornada Bibliography
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Mechanisms of grass response in grasslands and shrublands during dry or wet periods. Oecologia. 174:1323-1334.
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2014. Grassland simulation models: A synthesis of current models and future challenges. Handbook of Ecological Models Used in Ecosystem and Environmental Management. :175-201.
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2012. Modifying connectivity to promote state change reversal: the importance of geomorphic context and plant–soil feedbacks. Ecology. 101(9):e03069.
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2020. Taking the pulse of a continent: Expanding site-based research infrastructure for regional- to continental-scale ecology. Ecosphere. 5(3)
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2014. How can science be general, yet specific: The conundrum of rangeland science in the 21st Century. Rangeland Ecology and Management. 65:613-622.
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2012. AI recommender system with ML for agricultural research. IEEE IT Professional. 22:29-32.
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2020. Harnessing the power of big data: infusing the scientific method with machine learning to transform ecology. Ecosphere. 5(6)
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2014. Directional climate change and potential reversal of desertification in arid and semiarid ecosystems. Global Change Biology. 18(1):151-163.
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2012. Understanding vegetation dynamics provides insights to sustainable invasive plant management and remediation strategies. 7th International Conference on the Ecology and Management of Alien Plant Invasions (ESA/WSSA Joint Meeting). :68.
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2003. Harnessing AI to transform agriculture and inform agricultural research. IEEE IT Professional. 22(3):16-21.
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2020. Cross-scale interactions and changing pattern-process relationships: Consequences for system dynamics. Ecosystems. 10:790-796.
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2007. North American Biomes. Oxford Bibliographies.
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2014. Plant species richness in multiyear wet and dry periods in the Chihuahuan Desert. Climate. 9(8):130.
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2021. Soil-vegetation feedbacks in dynamic landscapes: Implications for restoration. Ecological Society of America Abstracts. :PS45-80.
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2007. Beyond desertification: new paradigms for dryland landscapes. Frontiers in Ecology and the Environment. 13(1):4-12.
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2011. Ecological theory and practice in arid and semiarid ecosystems: a tale of two LTER sites. 59:151-180.
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2021. Analysis of desert plant community growth patterns with high temporal resolution satellite spectra. Journal of Applied Ecology. 34:418-432.
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1997. Cascading Events in Linked Ecological and Socio-Economic Systems. Frontiers in Ecology and the Environment. 5:221-224.
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2007. Ecological challenges posed by climate uncertainty. The Economic and Financial Risks of a Changing Climate; Insights from Leading Experts. :8.
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2011. Deciphering the past to inform the future: preparing for the next (“really big”) extreme event. Frontiers in Ecology and the Environment. :10.1002/fee.2194.
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2020. Spatial nonlinearities: Cascading effects in the earth system. Terrestrial Ecosystems in a Changing World. :165-174.
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2007. Long-term experimental loss of foundation species: consequences for dynamics at ecotones across heterogeneous landscapes. Ecosphere. 3(3):1-23.
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2011. Introduction and overview: approaches to addressing landscape-scale problems in ecology. 87th Annual Meeting, Ecological Society of America. :41.
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2011. Landscape-scale consequences of patch-scale invasion success or failure. US-International Association for Landscape Ecology. :109.
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2002. Satellite assessment of drought impact on native plant communities of southeastern New Mexico, USA. Journal of Arid Environments. 24:305-319.
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1993. Forecasting regional grassland and shrubland responses to directional changes in climate using multi-year dry or wet period. 2015 LTER All Scientists Meeting.
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2011. Recruitment potential of two perennial grasses with different growth forms at a semiarid-arid transition zone. American Journal of Botany. 89:1616-1623.
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2002. Nonlinear dynamics in arid and semi-arid systems: Interactions among drivers and processes across scales. Journal of Arid Environments. 65:196-206.
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2006. The Jornada Basin long term ecological research program. 2015 LTER All Scientists Meeting.
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2015. Perspectives on global change theory. The Theory of Ecology. :261-281.
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2011. Plant species dominance at a grassland-shrubland ecotone: An individual-based gap dynamics model of herbaceous and woody species. Ecological Modelling. 152:5-32.
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2002. Disentangling complex landscapes: new insights into arid and semiarid system dynamics. BioScience. 56:491-501.
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2006. Can we use the past as a lens to the future? Using historic events to predict regional grassland and shrubland responses to multi-year drought or wet periods under climate change 100th Annual Meeting of the Ecological Society of America.
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2015. Globalization: Ecological consequences of global-scale connectivity in people, resources, and information. The Systemic Dimension of Globalization. :211-232.
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2011. Introduction: Approaches to scaling information from plots or regions to landscapes. US-International Association for Landscape Ecology. :81.
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2002. Changes in Perennial Grass Recruitment From 1858 to Present Following Woody Plant Invasion. 91st Ecological Society of America Annual Meeting. :99.
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2006. Responses to climate change in hot desert ecosystems: connecting local to global scales. 96th Ecological Society of America Annual Meeting.
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2011. Plant-soil feedbacks and the reversal of desertification with climate change. International Rangeland Congress. :292-296.
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2011. Woody Plant Invasion at a Semi-arid Transition Zone: Importance of Ecosystem Type to Colonization and Patch Expansion. Journal of Vegetation Science. 17:389-396.
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2006. Deciphering landscape complexity to predict (non)linear responses to extreme climatic events. American Geophysical Union. H54D-04
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2012. Cross-system comparisons elucidate disturbance complexities and generalities. Ecosphere. 2(7):Article81.
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2011. A Framework and Methods for Simplifying Complex Landscapes to Reduce Uncertainty in Predictions. Scaling and Uncertainty Analysis in Ecology: Methods and Applications. :131-146.
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2006. Modelling vegetation change and land degradation in semiarid and arid ecosystems: an integrated hierarchical approach. Advances in Environmental Monitoring and Modeling. 1:1-29.
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2001. Plant Communities in the Jornada Basin: The Dynamic Landscape. Structure and Function of a Chihuahuan Desert Ecosystem: The Jornada Basin Long-Term Ecological Research Site. :211-231.
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