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      Mapping soil pH levels across Europe: An analysis of LUCAS topsoil data using random forest kriging (RFK)

      1 , 2 , 3 , 4 , 4
      Soil Use and Management
      Wiley

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          WorldClim 2: new 1-km spatial resolution climate surfaces for global land areas

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            Very high resolution interpolated climate surfaces for global land areas

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              A working guide to boosted regression trees.

              1. Ecologists use statistical models for both explanation and prediction, and need techniques that are flexible enough to express typical features of their data, such as nonlinearities and interactions. 2. This study provides a working guide to boosted regression trees (BRT), an ensemble method for fitting statistical models that differs fundamentally from conventional techniques that aim to fit a single parsimonious model. Boosted regression trees combine the strengths of two algorithms: regression trees (models that relate a response to their predictors by recursive binary splits) and boosting (an adaptive method for combining many simple models to give improved predictive performance). The final BRT model can be understood as an additive regression model in which individual terms are simple trees, fitted in a forward, stagewise fashion. 3. Boosted regression trees incorporate important advantages of tree-based methods, handling different types of predictor variables and accommodating missing data. They have no need for prior data transformation or elimination of outliers, can fit complex nonlinear relationships, and automatically handle interaction effects between predictors. Fitting multiple trees in BRT overcomes the biggest drawback of single tree models: their relatively poor predictive performance. Although BRT models are complex, they can be summarized in ways that give powerful ecological insight, and their predictive performance is superior to most traditional modelling methods. 4. The unique features of BRT raise a number of practical issues in model fitting. We demonstrate the practicalities and advantages of using BRT through a distributional analysis of the short-finned eel (Anguilla australis Richardson), a native freshwater fish of New Zealand. We use a data set of over 13 000 sites to illustrate effects of several settings, and then fit and interpret a model using a subset of the data. We provide code and a tutorial to enable the wider use of BRT by ecologists.
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                Author and article information

                Contributors
                Journal
                Soil Use and Management
                Soil Use and Management
                Wiley
                0266-0032
                1475-2743
                April 2023
                January 06 2023
                April 2023
                : 39
                : 2
                : 900-916
                Affiliations
                [1 ] College of Urban and Environmental Sciences Peking University Beijing China
                [2 ] College of Public Administration Nanjing Agricultural University Nanjing China
                [3 ] National & Local Joint Engineering Research Center for Rural Land Resources Use and Consolidation Nanjing China
                [4 ] School of Resources and Environmental Engineering Ludong University Yantai China
                Article
                10.1111/sum.12874
                ff3f22b7-6e59-4b9b-8bfd-a1e79c2d913c
                © 2023

                http://onlinelibrary.wiley.com/termsAndConditions#vor

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