Titre | The Use of a Predictive Habitat Model and a Fuzzy Logic Approach for Marine Management and Planning |
Type de publication | Journal Article |
Nouvelles publications | 2013 |
Auteurs | Hattab, Tarek, Frida Ben Rais Lasram, Camille Albouy, Chérif Sammari, Mohamed Salah Romdhane, Philippe Cury, Fabien Leprieur, and François Le Loc’h |
Journal | PLoS ONE |
Volume | 8 |
Fascicule | 10 |
Année de publication | 2013 |
Résumé | Bottom trawl survey data are commonly used as a sampling technique to assess the spatial distribution of commercial species. However, this sampling technique does not always correctly detect a species even when it is present, and this can create significant limitations when fitting species distribution models. In this study, we aim to test the relevance of a mixed methodological approach that combines presence-only and presence-absence distribution models. We illustrate this approach using bottom trawl survey data to model the spatial distributions of 27 commercially targeted marine species. We use an environmentally- and geographically-weighted method to simulate pseudo-absence data. The species distributions are modelled using regression kriging, a technique that explicitly incorporates spatial dependence into predictions. Model outputs are then used to identify areas that met the conservation targets for the deployment of artificial anti-trawling reefs. To achieve this, we propose the use of a fuzzy logic framework that accounts for the uncertainty associated with different model predictions. For each species, the predictive accuracy of the model is classified as ‘high’. A better result is observed when a large number of occurrences are used to develop the model. The map resulting from the fuzzy overlay shows that three main areas have a high level of agreement with the conservation criteria. These results align with expert opinion, confirming the relevance of the proposed methodology in this study. |
URL | http://dx.doi.org/10.1371/journal.pone.0076430 |
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The Use of a Predictive Habitat Model and a Fuzzy Logic Approach for Marine Management and Planning
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