Publications

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(2022). The power of forecasts to advance ecological theory. Methods in Ecology and Evolution, n/a:.

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(2022). Local biodiversity change reflects interactions among changing abundance, evenness, and richness. Ecology, e3820.

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(2022). How does variation in total and relative abundance contribute to gradients of species diversity?. Ecology and Evolution, 12:e9196.

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(2021). Using coverage-based rarefaction to infer non-random species distributions. Ecosphere, 12:e03745.

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(2021). Rdataretriever: R Interface to the Data Retriever. Journal of Open Source Software, 6:2800.

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(2021). No effect of marine protected areas on managed reef fish species in the southeastern United States Atlantic Ocean. Regional Studies in Marine Science, 44:101711.

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(2021). Measurement and analysis of interspecific spatial associations as a facet of biodiversity. Ecological Monographs, 91:e01452.

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(2021). A multiscale framework for disentangling the roles of evenness, density, and aggregation on diversity gradients. Ecology, e03233.

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(2020). Mediterranean marine protected areas have higher biodiversity via increased evenness, not abundance. Journal of Applied Ecology, 57:578-589.

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(2020). Diazotrophs Show Signs of Restoration in Amazon Rain Forest Soils with Ecosystem Rehabilitation. Applied and Environmental Microbiology, 86:e00195-20.

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(2020). Associations Between Nekton Assemblages and Ribbed Mussel (Geukensia demissa) Patches in a South Carolina Salt Marsh. Southeastern Naturalist, 19:45-61.

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(2019). mobr: Measurement of Biodiversity in R.

(2019). Vegan: community ecology package.

(2019). Measurement of Biodiversity (MoB): A method to separate the scale-dependent effects of species abundance distribution, density, and aggregation on diversity change. Methods in Ecology and Evolution, 10:258-269.

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(2019). Characterization of Ribbed Mussel Geukensia demissa (Dillwyn, 1817) Habitat in Relation to Tidal Elevation and Salinity in a South Carolina Estuary. Journal of Shellfish Research, 38:53-61.

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(2018). mobsim: An R package for the simulation and measurement of biodiversity across spatial scales. Methods in Ecology and Evolution, 9:1401-1408.

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(2018). Vessel diameter is related to amount and spatial arrangement of axial parenchyma in woody angiosperms. Plant, 41:245-260.

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(2018). Spatial Scale and Biodiversity. Oxford Bibliographies,.

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(2018). Functional biogeography of angiosperms: life at the extremes. New Phytologist, 218:1697-1709.

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(2018). Embracing scale-dependence to achieve a deeper understanding of biodiversity and its change across communities. Ecology Letters, 21:1737-1751.

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(2018). Biological and geophysical feedbacks with fire in the Earth system. Environmental Research Letters, 13:033003.

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(2017). Sustainable computational science: the ReScience initiative. PeerJ Computer Science, 3:e142.

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(2017). Scale detection using semivariograms and autocorrelograms. In: Learning Landscape Ecology: A Practical Guide to Concepts and Techniques, Springer-Verlag, New York.

(2017). Dehalococcoides and general bacterial ecology of differentially trichloroethene dechlorinating flow-through columns. Applied Microbiology and Biotechnology, 101:4799-4813.

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(2016). Mutualism persistence and abandonment during the evolution of the mycorrhizal symbiosis. The American Naturalist, 188:E113-E125.

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(2016). A global analysis of parenchyma tissue fractions in secondary xylem of seed plants. New Phytologist, 209:1553-1565.

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(2015). Exploring the spatially explicit predictions of the Maximum Entropy Theory of Ecology. Global Ecology and Biogeography, 24:675-684.

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(2015). Determinants of taxonomic composition of plant viruses at the Nature Conservancy’s Tallgrass Prairie Preserve, Oklahoma. Virus Evolution, 1:.

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(2015). A Strong Test of the Maximum Entropy Theory of Ecology.. The American Naturalist, 185:E70-E80.

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(2014). Three keys to the radiation of angiosperms into freezing environments. Nature, 506:89-92.

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(2014). Functional distinctiveness of major plant lineages. Journal of Ecology, 102:345-356.

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(2013). Nine simple ways to make it easier to (re)use your data. Ideas in Ecology and Evolution, 6:.

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(2013). METE - Software for Analyzing Harte et al.'s Maximum Entropy Theory of Ecology. URL: http://dx.doi.org/10.6084/m9.figshare.815905.

(2013). An empirical evaluation of four variants of a universal species–area relationship. PeerJ, 1:e212.

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(2012). Scale dependence in species turnover reflects variance in species occupancy. Ecology, 93:294-302.

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(2011). The underpinnings of the relationship between space, time, and species richness. Ecological Monographs, 81:195-213.

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(2011). Landscape complexity and spatial scale influence the relationship between remotely sensed spectral diversity and survey-based plant species richness. Journal of Vegetation Science, 22:688-698.

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(2010). Effects of a tornado on birds in a Cross Timbers community. The Southwestern Naturalist, 55:460-466.

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(2010). A 12-year study on the scaling of vascular plant composition in an Oklahoma tallgrass prairie. Ecology, 91:1872.

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(2009). Modeling the sampling effect in the species-time-area relationship. Ecology, 90:836-846.

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(2008). Indices for detecting differences in species composition: some simplifications of RDA and CCA. Ecology, 89:1769-1771.

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(2008). Artifacts and artifictions in biodiversity research. Folia Geobotanica, 43:245-257.

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(2007). How well do herbarium data predict the location of present populations? A test using Echinacea species in Missouri. Biodiversity and Conservation, 16:1397-1407.

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