Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models
Additional file 1: Table S1. Summary of environmental predictors used in species distribution modelling for blue whale and elephant case studies. Spatial resolution is in decimal degrees. Table S2. Validation metrics for spatial and temporal hold-out approaches. Temporal hold-out not available for t...
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ftsmithonian:oai:figshare.com:article/14052825 2023-05-15T15:45:08+02:00 Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models Elliott L. Hazen (10160793) Briana Abrahms (3294768) Stephanie Brodie (5445485) Gemma Carroll (5471000) Heather Welch (5445494) Steven J. Bograd (8127312) 2021-02-17T05:00:00Z https://doi.org/10.6084/m9.figshare.14052825.v1 unknown https://figshare.com/articles/journal_contribution/Additional_file_1_of_Where_did_they_not_go_Considerations_for_generating_pseudo-absences_for_telemetry-based_habitat_models/14052825 doi:10.6084/m9.figshare.14052825.v1 CC BY + CC0 CC0 CC-BY Ecology Conclusions Habitat model performance presence-only modeling approaches tag release location telemetry-based habitat models telemetry-based habitat models Abst. pseudo-absence generation methods habitat models model types Text Journal contribution 2021 ftsmithonian https://doi.org/10.6084/m9.figshare.14052825.v1 2021-02-26T11:10:00Z Additional file 1: Table S1. Summary of environmental predictors used in species distribution modelling for blue whale and elephant case studies. Spatial resolution is in decimal degrees. Table S2. Validation metrics for spatial and temporal hold-out approaches. Temporal hold-out not available for the average elephant model as predictor variables are not dynamically measured. Figure S1. Partial response curves for the two most important covariates in the blue whale (a-d) and elephant (e-h) habitat suitability models. Response curves for GAMMS (left panels; A, B, E, F), and BRTs (right panels; C, D, G, H) are shown for the four pseudo-absences generation techniques (Background in red, Buffer in gray, CRW in green, Reverse CRW in blue). Other Non-Article Part of Journal/Newspaper Blue whale Unknown |
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Open Polar |
collection |
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op_collection_id |
ftsmithonian |
language |
unknown |
topic |
Ecology Conclusions Habitat model performance presence-only modeling approaches tag release location telemetry-based habitat models telemetry-based habitat models Abst. pseudo-absence generation methods habitat models model types |
spellingShingle |
Ecology Conclusions Habitat model performance presence-only modeling approaches tag release location telemetry-based habitat models telemetry-based habitat models Abst. pseudo-absence generation methods habitat models model types Elliott L. Hazen (10160793) Briana Abrahms (3294768) Stephanie Brodie (5445485) Gemma Carroll (5471000) Heather Welch (5445494) Steven J. Bograd (8127312) Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models |
topic_facet |
Ecology Conclusions Habitat model performance presence-only modeling approaches tag release location telemetry-based habitat models telemetry-based habitat models Abst. pseudo-absence generation methods habitat models model types |
description |
Additional file 1: Table S1. Summary of environmental predictors used in species distribution modelling for blue whale and elephant case studies. Spatial resolution is in decimal degrees. Table S2. Validation metrics for spatial and temporal hold-out approaches. Temporal hold-out not available for the average elephant model as predictor variables are not dynamically measured. Figure S1. Partial response curves for the two most important covariates in the blue whale (a-d) and elephant (e-h) habitat suitability models. Response curves for GAMMS (left panels; A, B, E, F), and BRTs (right panels; C, D, G, H) are shown for the four pseudo-absences generation techniques (Background in red, Buffer in gray, CRW in green, Reverse CRW in blue). |
format |
Other Non-Article Part of Journal/Newspaper |
author |
Elliott L. Hazen (10160793) Briana Abrahms (3294768) Stephanie Brodie (5445485) Gemma Carroll (5471000) Heather Welch (5445494) Steven J. Bograd (8127312) |
author_facet |
Elliott L. Hazen (10160793) Briana Abrahms (3294768) Stephanie Brodie (5445485) Gemma Carroll (5471000) Heather Welch (5445494) Steven J. Bograd (8127312) |
author_sort |
Elliott L. Hazen (10160793) |
title |
Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models |
title_short |
Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models |
title_full |
Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models |
title_fullStr |
Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models |
title_full_unstemmed |
Additional file 1 of Where did they not go? Considerations for generating pseudo-absences for telemetry-based habitat models |
title_sort |
additional file 1 of where did they not go? considerations for generating pseudo-absences for telemetry-based habitat models |
publishDate |
2021 |
url |
https://doi.org/10.6084/m9.figshare.14052825.v1 |
genre |
Blue whale |
genre_facet |
Blue whale |
op_relation |
https://figshare.com/articles/journal_contribution/Additional_file_1_of_Where_did_they_not_go_Considerations_for_generating_pseudo-absences_for_telemetry-based_habitat_models/14052825 doi:10.6084/m9.figshare.14052825.v1 |
op_rights |
CC BY + CC0 |
op_rightsnorm |
CC0 CC-BY |
op_doi |
https://doi.org/10.6084/m9.figshare.14052825.v1 |
_version_ |
1766379496172158976 |