Forests from the grass: natural regeneration of woody vegetation in temperate marginal hill farmland under minimum interference management
暂无分享,去创建一个
[1] P. Meli,et al. Integrating farmers’ decisions on the assessment of forest regeneration drivers in a rural landscape of Southeastern Brazil , 2021, Perspectives in Ecology and Conservation.
[2] Cristina García,et al. Managing forest regeneration and expansion at a time of unprecedented global change , 2020, Journal of Applied Ecology.
[3] P. Brancalion,et al. Ten golden rules for reforestation to optimize carbon sequestration, biodiversity recovery and livelihood benefits , 2020, Global change biology.
[4] J. L. Reid,et al. Applied nucleation facilitates tropical forest recovery: Lessons learned from a 15‐year study , 2020, Journal of Applied Ecology.
[5] G. Vieilledent,et al. Landscape‐scale spatial modelling of deforestation, land degradation, and regeneration using machine learning tools , 2020, Land Degradation & Development.
[6] D. Lindenmayer,et al. Achieving cost‐effective landscape‐scale forest restoration through targeted natural regeneration , 2020, Conservation Letters.
[7] D. Norton,et al. Early response of late-successional species to nurse shrub manipulations in degraded high country, New Zealand , 2019, New Forests.
[8] K. Kirby,et al. Beyond the obvious impact of domestic livestock grazing on temperate forest vegetation – A global review , 2019, Biological Conservation.
[9] P. Brancalion,et al. A landscape approach for cost‐effective large‐scale forest restoration , 2018, Journal of Applied Ecology.
[10] Matthew D. M. Pawley,et al. Spatial autocorrelation: bane or bonus? , 2018, bioRxiv.
[11] A. Boulesteix,et al. Random forest versus logistic regression: a large-scale benchmark experiment , 2018, BMC Bioinform..
[12] D. Lindenmayer,et al. Ecological restoration success is higher for natural regeneration than for active restoration in tropical forests , 2017, Science Advances.
[13] Frauke Degenhardt,et al. Evaluation of variable selection methods for random forests and omics data sets , 2017, Briefings Bioinform..
[14] R. Chazdon. Landscape Restoration, Natural Regeneration, and the Forests of the Future1 , 2017, Annals of the Missouri Botanical Garden.
[15] D. Lamb,et al. Forest regeneration on Hinewai Reserve, New Zealand: An interview with Hugh Wilson , 2017 .
[16] F. Gilliam,et al. Forest ecosystems of temperate climatic regions: from ancient use to climate change. , 2016, The New phytologist.
[17] Manuel R. Guariguata,et al. Natural regeneration as a tool for large‐scale forest restoration in the tropics: prospects and challenges , 2016 .
[18] Jenny J. Ladley,et al. The role of lizards as seed dispersers in New Zealand , 2016 .
[19] A. Uezu,et al. Atlantic Forest spontaneous regeneration at landscape scale , 2015, Biodiversity and Conservation.
[20] I. Cañellas,et al. Alternative approaches to assessing the natural regeneration of Scots pine in a Mediterranean forest , 2015, Annals of Forest Science.
[21] M. Kimberley,et al. Factors influencing natural regeneration of totara (Podocarpus totara D.Don) on grazed hill country grassland in Northland, New Zealand , 2014, New Zealand Journal of Forestry Science.
[22] J. L. Reid,et al. Hidden Costs of Passive Restoration , 2014 .
[23] P. Pinho,et al. Modeling the long-term natural regeneration potential of woodlands in semi-arid regions to guide restoration efforts , 2014, European Journal of Forest Research.
[24] Fiona J. Thomson,et al. Functional Traits Reveal Processes Driving Natural Afforestation at Large Spatial Scales , 2013, PloS one.
[25] S. Shahid,et al. Sustainable food production in marginal lands—Case of GDLA member countries , 2013, International Soil and Water Conservation Research.
[26] W. Post,et al. Marginal Lands: Concept, Assessment and Management , 2013 .
[27] B. Peco,et al. Assessing the effects of seasonal grazing on holm oak regeneration: implications for the conservation of Mediterranean dehesas , 2013 .
[28] Anne-Laure Boulesteix,et al. Overview of random forest methodology and practical guidance with emphasis on computational biology and bioinformatics , 2012, WIREs Data Mining Knowl. Discov..
[29] D. Coomes,et al. Impacts of culling and exclusion of browsers on vegetation recovery across New Zealand forests , 2012 .
[30] J. Stoltzfus,et al. Logistic regression: a brief primer. , 2011, Academic emergency medicine : official journal of the Society for Academic Emergency Medicine.
[31] P. Seddon,et al. Seed dispersal systems in the New Zealand flora , 2009 .
[32] Adrian C. Newton,et al. Creating woodland islets to reconcile ecological restoration, conservation, and agricultural land use , 2008 .
[33] D. R. Cutler,et al. Utah State University From the SelectedWorks of , 2017 .
[34] G. Carl,et al. Analyzing spatial autocorrelation in species distributions using Gaussian and logit models , 2007 .
[35] J. Rowarth,et al. New Zealand native seed germination requirements: A review , 2007 .
[36] R. Didham,et al. Past and future trajectories of forest loss in New Zealand , 2006 .
[37] Peter A. Vesk,et al. Getting trees on farms the easy way? Lessons from a model of eucalypt regeneration on pastures , 2006 .
[38] Francisco M. Padilla,et al. The role of nurse plants in the restoration of degraded environments , 2006 .
[39] S. Carpenter,et al. Global Consequences of Land Use , 2005, Science.
[40] Anwar Ghani,et al. INTRODUCED BROWSING MAMMALS IN NEW ZEALAND NATURAL FORESTS: ABOVEGROUND AND BELOWGROUND CONSEQUENCES , 2001 .
[41] L. Breiman. Random Forests , 2001, Encyclopedia of Machine Learning and Data Mining.
[42] Y. Carmel,et al. Effects of grazing and topography on long-term vegetation changes in a Mediterranean ecosystem in Israel , 1999, Plant Ecology.
[43] D. Norton,et al. Assessing the Success of Restoration Plantings in a Temperate New Zealand Forest , 1999 .
[44] David J. Augustine,et al. Ungulate effects on the functional species composition of plant communities; herbivore selectivity and plant tolerance , 1998 .
[45] Hugh D. Wilson,et al. Regeneration of native forest on Hinewai Reserve, Banks Peninsula , 1994 .
[46] S. N. Adams. Sheep and Cattle Grazing in Forests: A Review , 1975 .
[47] A. Esler. The vegetation of Kapiti Island , 1967 .
[48] R. Allen,et al. Determining the balance between active and passive indigenous forest restoration after exotic conifer plantation clear-fell , 2021 .
[49] D. Cameron. Sustaining the productivity of New Zealand's hill country - A land manager's view , 2016 .
[50] Diana Adler,et al. Using Multivariate Statistics , 2016 .
[51] F. Carswell,et al. Carbon and plant diversity gain during 200 years of woody succession in lowland New Zealand , 2012 .
[52] Jason M. Funk. Carbon farming in New Zealand: An interdisciplinary assessment of indigenous reforestation as a land-use system , 2009 .
[53] B. Burns,et al. Long-term impacts of grazing on indigenous forest remnants on North Island hill country, New Zealand , 2008 .
[54] G. B. Douglas,et al. Potential of direct seeding for establishing native plants into pastoral land in New Zealand , 2007 .
[55] N. Ledgard,et al. Restoration of mountain beech (Nothofagus solandri var. cliffortioides) forest after fire , 2004 .
[56] Craig J. Miller,et al. Cattle grazing and the regeneration of totara (Podocarpus totara var. waihoensis) on river terraces, south Westland, New Zealand , 2003 .