Dear MARMAM community, We are pleased to announce the publication of our new dugong study in Scientific Reports (open access): Derville, S., Cleguer, C. & Garrigue, C. Ecoregional and temporal dynamics of dugong habitat use in a complex coral reef lagoon ecosystem. Sci Rep 12, 552 (2022). [ https://doi.org/10.1038/s41598-021-04412-3 | https://doi.org/10.1038/s41598-021-04412-3 ] [ https://www.nature.com/articles/s41598-021-04412-3 | https://www.nature.com/articles/s41598-021-04412-3 ] Abstract: Mobile marine species display complex and nonstationary habitat use patterns that require understanding to design effective management measures. In this study, the spatio-temporal habitat use dynamics of the vulnerable dugong ( Dugong dugon ) were modelled from 16 satellite-tagged individuals in the coral reef lagoonal ecosystems of New Caledonia, South Pacific. Dugong residence time was calculated along the interpolated tracks (9371 hourly positions) to estimate intensity of use in three contrasting ecoregions, previously identified through hierarchical clustering of lagoon topographic characteristics. Across ecoregions, differences were identified in dugong spatial intensity of use of shallow waters, deeper lagoon waters and the fore-reef shelf outside the barrier reef. Maps of dugong intensity of use were predicted from these ecological relationships and validated with spatial density estimates derived from aerial surveys conducted for population assessment. While high correlation was found between the two datasets, our study extended the spatial patterns of dugong distribution obtained from aerial surveys across the diel cycle, especially in shallow waters preferentially used by dugongs at night/dusk during high tide. This study has important implications for dugong conservation and illustrates the potential benefits of satellite tracking and dynamic habitat use modelling to inform spatial management of elusive and mobile marine mammals. Best, -- Solène Derville (she/her) PhD - Marine & Geospatial Ecology ---------- 101 Promenade Roger Laroque, BPA5 98848 Noumea cedex, New Caledonia Phone: +687 912299 https://www.researchgate.net/profile/Solene_Derville
Dear MARMAM community, We are pleased to announce the publication of our study of rorqual whale distribution and phenology off the coast of Oregon. This publication is part of the OPAL project (for more details see: [ https://mmi.oregonstate.edu/gemm-lab/opal-overlap-predictions-about-large-wh... | https://mmi.oregonstate.edu/gemm-lab/opal-overlap-predictions-about-large-wh... ] ) Derville S, Barlow DR, Hayslip C and Torres LG (2022) Seasonal, Annual, and Decadal Distribution of Three Rorqual Whale Species Relative to Dynamic Ocean Conditions Off Oregon, USA. Front. Mar. Sci. 9:868566. doi: 10.3389/fmars.2022.868566 Available on open-access: [ https://www.frontiersin.org/articles/10.3389/fmars.2022.868566/full | https://www.frontiersin.org/articles/10.3389/fmars.2022.868566/full ] Abstract: Whale populations recovering from historical whaling are particularly vulnerable to incidental mortality and disturbance caused by growing ocean industrialization. Several distinct populations of rorqual whales (including humpback, blue, and fin whales) migrate and feed off the coast of Oregon, USA where spatial overlap with human activities are on the rise. Effective mitigation of conflicts requires better foundational understanding of spatial and temporal habitat use patterns to inform conservation management. Based on a year-round, multi-platform distance sampling dataset (2016-2021, 177 survey days, 754 groups observed), this study generated density models to describe and predict seasonal distribution of rorqual whales in Oregon. Phenology analysis of sightings revealed a peak of humpback whale and blue whale density over the Oregon continental shelf in August and September respectively, and higher fin whale density in the winter (December). Additionally, we compared rorqual sighting rates across three decades of survey effort (since 1989) and demonstrate that rorqual whales are strikingly more prevalent in the current dataset, including distinct increases of blue and fin whales. Finally, density surface models relating whale densities to static and dynamic environmental variables acquired from data-assimilative ocean models revealed that summer and spring rorqual distribution were influenced by dynamic oceanographic features indicative of active upwelling and frontal zones (respectively 27% and 40% deviance explained). On the continental shelf, blue whales were predicted to occur closer to shore than humpback whales and in the more southern waters off Oregon. Summer and spring rorqual models, and humpback whale models, showed predictive performance suitable for management purposes, assessed through internal cross-validation and comparison to an external dataset (388 groups observed). Indeed, monthly hotspots of high predicted rorqual whale density across multiple years were validated by independent sightings (80% overlap in the summer model). These predictive models lay a robust basis for fine-scale dynamic spatial management to reduce impacts of human activities on endangered populations of rorqual whales in Oregon. Best, -- Solène Derville (she/her) PhD - Marine & Geospatial Ecology ---------- 101 Promenade Roger Laroque, BPA5 98848 Noumea cedex, New Caledonia Phone: +687 912299 https://www.researchgate.net/profile/Solene_Derville
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solene.derville@ird.fr