Publications

(2024). The individual-based forest landscape and disturbance model iLand: Progress and outlook. Ecological Modelling 495:110785.

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(2024). Beyond resilience: Responses to changing climate and disturbance regimes in temperate forest landscapes across the Northern Hemisphere. Global Change Biology 30(8):e17468.

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(2024). Parameters of 150 temperate and boreal tree species for an individual-based forest landscape and disturbance model. Data in Brief 55:110662.

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(2024). Tree regeneration in models of forest dynamics: A key priority for further research. Ecosphere 15(3):e4807.

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(2024). Projected climate and canopy change lead to thermophilization and homogenization of forest floor vegetation in a hotspot of plant species richness. Global Change Biology 30(1):e17121.

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(2024). Multiple social and environmental factors affect wildland fire response of full or less-than-full suppression. Journal of Environmental Management 351:119731.

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(2022). The magnitude, direction, and tempo of forest change in Greater Yellowstone in a warmer world with more fire. Ecological Monographs 92(1):e01485.

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(2021). Widespread regeneration failure in forests of Greater Yellowstone under scenarios of future climate and fire. Global Change Biology 27(18):4339-4351.

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(2020). Simulating forest resilience: a review. Global Ecology and Biogeography 29(12):2082-2096.

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(2019). Short-interval severe fire erodes the resilience of subalpine lodgepole pine forests. Proceedings of the National Academy of Sciences 116(23):11319-11328.

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(2018). Looking beyond the mean: Drivers of variability in postfire stand development of conifers in Greater Yellowstone. Forest Ecology and Management 430:460-471.

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