Modeling reef health from upstream socio-ecological components using GIS and RS
Ecological services provided by coral reefs are threatened by complex dynamics of global and local drivers. Fostering an appropriate management at local scale may enhance the resilience of the coral reefs facing large-scale issues, more laboriously manageable. We propose to model a bespoke reef heal...
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| Vydáno v: | 2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS s. 306 - 309 |
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| Hlavní autoři: | , , , |
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| Jazyk: | angličtina japonština |
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IEEE
01.07.2013
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| ISSN: | 2153-6996 |
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| Abstract | Ecological services provided by coral reefs are threatened by complex dynamics of global and local drivers. Fostering an appropriate management at local scale may enhance the resilience of the coral reefs facing large-scale issues, more laboriously manageable. We propose to model a bespoke reef health index (RHI) using a comprehensive dataset of socio-ecological variables and the Boosted Regression Trees (BRT). The variation of the RHI was primarily explained by the cluster of physiographic variables (55.45%), to a lesser extent, by land cover (36.42%), and finally by sociological variables (8.12%). The dispersion and the mean of the slope, as well as the built-up area increasingly contributed to the satisfactory modeling of the RHI (14.07, 14.12, 15.37%, respectively). These results will hopefully be useful for the stakeholders tasking with integrated coastal sustainability. |
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| AbstractList | Ecological services provided by coral reefs are threatened by complex dynamics of global and local drivers. Fostering an appropriate management at local scale may enhance the resilience of the coral reefs facing large-scale issues, more laboriously manageable. We propose to model a bespoke reef health index (RHI) using a comprehensive dataset of socio-ecological variables and the Boosted Regression Trees (BRT). The variation of the RHI was primarily explained by the cluster of physiographic variables (55.45%), to a lesser extent, by land cover (36.42%), and finally by sociological variables (8.12%). The dispersion and the mean of the slope, as well as the built-up area increasingly contributed to the satisfactory modeling of the RHI (14.07, 14.12, 15.37%, respectively). These results will hopefully be useful for the stakeholders tasking with integrated coastal sustainability. |
| Author | Pouteau, Robin Stoll, Benoit Collin, Antoine Archambault, Philippe |
| Author_xml | – sequence: 1 givenname: Robin surname: Pouteau fullname: Pouteau, Robin organization: UMR AMAP, Inst. de Rech. pour le Dev. (IRD), Noumea, New Caledonia – sequence: 2 givenname: Antoine surname: Collin fullname: Collin, Antoine organization: Nadaoka Lab., Tokyo Inst. of Technol., Tokyo, Japan – sequence: 3 givenname: Philippe surname: Archambault fullname: Archambault, Philippe organization: Inst. des Sci. de la Mer (ISMER), Univ. du Quebec a Rimouski, Rimouski, QC, Canada – sequence: 4 givenname: Benoit surname: Stoll fullname: Stoll, Benoit organization: Lab. GePaSud, Univ. de la Polynesie Francaise, Punaauia, French Polynesia |
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| Snippet | Ecological services provided by coral reefs are threatened by complex dynamics of global and local drivers. Fostering an appropriate management at local scale... |
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| SubjectTerms | Abstracts Biological system modeling Computational modeling Dispersion Focusing Indexes landscape monitoring Non-linear modeling Pacific Islands Plants (biology) terrestrial runoff |
| Title | Modeling reef health from upstream socio-ecological components using GIS and RS |
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