2021 - present
Bibliographic References tagged with 2021 - present
Not finding what you're looking for? Try using Advanced Search.
Not finding what you're looking for? Try using Advanced Search.
Hockridge EG and Davies AB. 2025. “Islands in the Forest: A Photo Exploration of Congo’s Bai Ecosystem.”. Bulletin of the Ecological Society of America, 106
Hockridge EG and Davies AB. 2025. “Islands in the Forest: A Photo Exploration of Congo’s Bai Ecosystem.”. Bulletin of the Ecological Society of America, 106
Lautenbach TC, Radloff FGT, and Davies AB. 2025. “Using High‐resolution Remote Sensing to Quantify Nest‐site Characteristics of White‐backed Vultures (Gyps Africanus) in Karingani Game Reserve, Mozambique”. IBIS
Lautenbach TC, Radloff FGT, and Davies AB. 2025. “Using High‐resolution Remote Sensing to Quantify Nest‐site Characteristics of White‐backed Vultures (Gyps Africanus) in Karingani Game Reserve, Mozambique”. IBIS
Coverdale TC, Boucher PB, Singh J, and Davies AB. 2025. “Quantifying Aboveground Herbaceous Biomass in Grassy Ecosystems: A Comparison of Field and High-Resolution UAV-LiDAR Approaches”. Remote Sensing in Ecology and Conservation
Coverdale TC, Boucher PB, Singh J, and Davies AB. 2025. “Quantifying Aboveground Herbaceous Biomass in Grassy Ecosystems: A Comparison of Field and High-Resolution UAV-LiDAR Approaches”. Remote Sensing in Ecology and Conservation
Bradford EM, Hockridge EG, Gibbon GEM, Kibongui G, Mouamana A, Ngama G, Osner N, and Davies AB. 2025. “Natural Forest Clearings Enable the Persistence of Stable Spotted Hyena Populations in Congo Basin Rainforests”. Biotropica, 57, 5
Bradford EM, Hockridge EG, Gibbon GEM, Kibongui G, Mouamana A, Ngama G, Osner N, and Davies AB. 2025. “Natural Forest Clearings Enable the Persistence of Stable Spotted Hyena Populations in Congo Basin Rainforests”. Biotropica, 57, 5
Gordon L, Behari N, Collier S, Bondi-Kelly E, Killian JA, Ressijac CA, Boucher PB, Davies AB, and Tambe M. 2023. “Find Rhinos Without Finding Rhinos: Active Learning With Multimodal Imagery of South African Rhino Habitats.”. Proceedings of the Thirty-Second International Joint Conference on Artificial Intelligence, Pp. 5977–5985
Gordon L, Behari N, Collier S, Bondi-Kelly E, Killian JA, Ressijac CA, Boucher PB, Davies AB, and Tambe M. 2023. “Find Rhinos Without Finding Rhinos: Active Learning With Multimodal Imagery of South African Rhino Habitats.”. Proceedings of the Thirty-Second International Joint Conference on Artificial Intelligence, Pp. 5977–5985
J Singh, Boucher PB, Hockridge EG, and Davies AB. 2023. “Effects of Long-Term Fixed Fire Regimes on African Savanna Vegetation Biomass, Vertical Structure and Tree Stem Density.”. Journal of Applied Ecology, 60, Pp. 1223-38
J Singh, Boucher PB, Hockridge EG, and Davies AB. 2023. “Effects of Long-Term Fixed Fire Regimes on African Savanna Vegetation Biomass, Vertical Structure and Tree Stem Density.”. Journal of Applied Ecology, 60, Pp. 1223-38
Russo NJ, Davies AB, Blakey RV, Ordway EM, and Smith TB. 2023. “Feedback Loops Between 3D Vegetation Structure and Ecological Roles of Animals.”. Ecology Letters , 26, Pp. 1597–1613
Russo NJ, Davies AB, Blakey RV, Ordway EM, and Smith TB. 2023. “Feedback Loops Between 3D Vegetation Structure and Ecological Roles of Animals.”. Ecology Letters , 26, Pp. 1597–1613
Wang Z, Huben R, Boucher PB, Van C, Zeng J, Chung N, Wang J, King J, Knecht RJ, Ng’iru I, Baraza A, Baker CCM, Martins DJ, Pierce NE, and Davies AB. 2024. “Automated Detection of an Insect-Induced Keystone Vegetation Phenotype Using Airborne LiDAR.”. Methods in Ecology and Evolution, 15, Pp. 978-93
Wang Z, Huben R, Boucher PB, Van C, Zeng J, Chung N, Wang J, King J, Knecht RJ, Ng’iru I, Baraza A, Baker CCM, Martins DJ, Pierce NE, and Davies AB. 2024. “Automated Detection of an Insect-Induced Keystone Vegetation Phenotype Using Airborne LiDAR.”. Methods in Ecology and Evolution, 15, Pp. 978-93
Zhou Y, Bomfim B, Bond WJ, Boutton TW, Case MF, Coetsee C, Davies AB, February EC, Gray EF, Silva LCR, Wright JL, and Staver AC. 2023. “Soil Carbon in Tropical Savannas Mostly Derived from Grasses”. Nature Geoscience, 16, Pp. 710–716
Zhou Y, Bomfim B, Bond WJ, Boutton TW, Case MF, Coetsee C, Davies AB, February EC, Gray EF, Silva LCR, Wright JL, and Staver AC. 2023. “Soil Carbon in Tropical Savannas Mostly Derived from Grasses”. Nature Geoscience, 16, Pp. 710–716
Russo NJ, Davies AB, Blakey RV, Ordway EM, and Smith TB. 2023. “Feedback Loops Between 3D Vegetation Structure and Ecological Functions of Animals”. Ecology Letters, 26, Pp. 1597–1613
Russo NJ, Davies AB, Blakey RV, Ordway EM, and Smith TB. 2023. “Feedback Loops Between 3D Vegetation Structure and Ecological Functions of Animals”. Ecology Letters, 26, Pp. 1597–1613