Difference between revisions of "Orangutan layers"
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|Predictive density distribution model for the entire Sumatran orangutan geographic range based on available orangutan presence localities and land land-cover change. | |Predictive density distribution model for the entire Sumatran orangutan geographic range based on available orangutan presence localities and land land-cover change. | ||
|[https://www.science.org/doi/10.1126/sciadv.1500789 Wich, S. A., Singleton, I., Nowak, M. G., Utami Atmoko, S. S., Nisam, G., Arif, S. M., ... & Kühl, H. S. (2016). Land-cover changes predict steep declines for the Sumatran orangutan (Pongo abelii). Science advances, 2(3), e1500789.] | |[https://www.science.org/doi/10.1126/sciadv.1500789 Wich, S. A., Singleton, I., Nowak, M. G., Utami Atmoko, S. S., Nisam, G., Arif, S. M., ... & Kühl, H. S. (2016). Land-cover changes predict steep declines for the Sumatran orangutan (Pongo abelii). Science advances, 2(3), e1500789.] | ||
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+ | |Tapanuli and Sumatran orangutans | ||
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+ | |2020 | ||
+ | |Predicted density distribution of Tapanuli and Sumatran orangutans. | ||
+ | |Wich et al. 2020 | ||
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+ | |Tapanuli and Sumatran orangutans | ||
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+ | |1999-2015 | ||
+ | |Predictive density distribution model for the entire Bornean orangutan geographic range based on available orangutan surveys and climatic, habitat and threat predictors. | ||
+ | |[https://doi.org/10.1016/j.cub.2018.01.053 Voigt, M., Wich, S. A., Ancrenaz, M., Meijaard, E., Abram, N., Banes, G. L., ... & Llano Sanchez, K. Global demand for natural resources eliminated more than 100,000 Bornean orangutans http://researchonline. ljmu. ac. uk/id/eprint/7886.] | ||
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Revision as of 13:09, 13 March 2022
Spatial Layers > Orangutan layers
Species | Shapefile | GeoJSON | Year | Description | Source |
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Bornean orangutan (Pongo pygmaeus) | 2019 | The layer is an update of the original Voigt et al.2018 layer predicting the Bornean orangutan density distribution. In 2021 Voigt & Wich provided an update of the initial predictions, based on forest lost in Borneo. This new layer does not consider hunting in the predictions and hence might have overestimated the numbers of orangutans. | Voigt & Wich 2021 | ||
Sumatran orangutan (Pongo abelii) | 2015 | Predictive density distribution model for the entire Sumatran orangutan geographic range based on available orangutan presence localities and land land-cover change. | Wich, S. A., Singleton, I., Nowak, M. G., Utami Atmoko, S. S., Nisam, G., Arif, S. M., ... & Kühl, H. S. (2016). Land-cover changes predict steep declines for the Sumatran orangutan (Pongo abelii). Science advances, 2(3), e1500789. | ||
Tapanuli and Sumatran orangutans | 2020 | Predicted density distribution of Tapanuli and Sumatran orangutans. | Wich et al. 2020 | ||
Tapanuli and Sumatran orangutans | 1999-2015 | Predictive density distribution model for the entire Bornean orangutan geographic range based on available orangutan surveys and climatic, habitat and threat predictors. | Voigt, M., Wich, S. A., Ancrenaz, M., Meijaard, E., Abram, N., Banes, G. L., ... & Llano Sanchez, K. Global demand for natural resources eliminated more than 100,000 Bornean orangutans http://researchonline. ljmu. ac. uk/id/eprint/7886. |