Olivier Maury

Informations


Institut : IRD

GRADE : DR2

LIEU GEOGRAPHIQUE : SETE





BIOGRAPHIE :

Curriculum Vitae

I’m a marine ecologist, population and ecosystem modeler. Most of my present research time is dedicated to the development of the DEB-based ecosystem model APECOSM, which represents individual-based populations and ecosystems from plankton to fish and fisheries at global and regional scales and includes climate forcing.
APECOSM is used for both process studies and scenarios development, in an IPCC, IPBES and RFMO perspective.


Publications

2017

Blanchard, J. L., et al. "Linked sustainability challenges and trade-offs among fisheries, aquaculture and agriculture." Nature Ecology & Evolution. 1.9 (2017): 1240.
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Maury, O. "Can schooling regulate marine populations and ecosystems?" Progress in Oceanography. 156.Supplement C (2017): 91–103.
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Maury, O., et al. "From shared socio-economic pathways (SSPs) to oceanic system pathways (OSPs): Building policy-relevant scenarios for global oceanic ecosystems and fisheries." Global Environmental Change. 45.Supplement C (2017): 203–216.
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2016

Dueri, S., et al. "Food security or economic profitability? Projecting the effects of climate and socioeconomic changes on global skipjack tuna fisheries under three management strategies." Global Environmental Change. 41 (2016): 1–12.
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Guiet, J., et al. "Effects of lower trophic level biomass and water temperature on fish communities: A modelling study." Progress in Oceanography. 146 (2016): 22–37.
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Guiet, J., J. - C. Poggiale, and O. Maury. "Modelling the community size-spectrum: recent developments and new directions." Ecological Modelling. 337 (2016): 4–14.
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Jose, Y. S., et al. "Suppressing and enhancing effects of mesoscale dynamics on biological production in the Mozambique Channel." Journal of Marine Systems. 158 (2016): 129–139.
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Le Mézo, P., et al. "Natural variability of marine ecosystems inferred from a coupled climate to ecosystem simulation." Journal of Marine Systems. 153 (2016): 55–66.
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2015

Accolla, C., et al. "Analysis of functional response in presence of schooling phenomena: An IBM approach." Progress in Oceanography. 134 (2015): 232–243.
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Lefort, S., et al. "Spatial and body-size dependent response of marine pelagic communities to projected global climate change." Global Change Biology. 21.1 (2015): 154–164.
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2014

Dueri, S., L. Bopp, and O. Maury. "Projecting the impacts of climate change on skipjack tuna abundance and spatial distribution." Global Change Biology. 20.3 (2014): 742–753.
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Jose, Y. S., et al. "Influence of mesoscale eddies on biological production in the Mozambique Channel : several contrasted examples from a coupled ocean-biogeochemistry model." Deep-Sea Research Part II.Topical Studies in Oceanography. 100.No spécial (2014): 79–93.
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2013

Currie, J. C., et al. "Indian Ocean dipole and El Niño/Southern Oscillation impacts on regional chlorophyll anomalies in the Indian Ocean." Biogeosciences. 10 (2013): 6677–6698.
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Dueri, S., and O. Maury. "Modelling the effect of marine protected areas on the population of skipjack tuna in the Indian Ocean." Aquatic Living Resources. 26 (2013): 171–178.
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Halo, I., et al. "JEAI-MOCAs : a multi-institutional initiative to build marine research capacity in Mozambique." South African Journal of Science. 109.7-8 (2013).
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Handegard, N. O., et al. "Towards an acoustic-based coupled observation and modelling system for monitoring and predicting ecosystem dynamics of the open ocean." Fish and Fisheries. 14 (2013): 605–615.
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Hobday, A. J., et al. "Climate impacts and oceanic top predators : moving from impacts to adaptation in oceanic systems." Reviews in Fish Biology and Fisheries. 23 (2013): 537–546.
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KAPLAN, D., et al. "The True Challenge of Giant Marine Reserves." Science. 340.6134 (2013): 810–811.
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Maury, O., and J. - C. Poggiale. "From individuals to populations to communities: A dynamic energy budget model of marine ecosystem size-spectrum including life history diversity." Journal of Theoretical Biology. 324 (2013): 52–71.
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Maury, O., et al. "A global science–policy partnership for progress toward sustainability of oceanic ecosystems and fisheries." Current Opinion in Environmental Sustainability. 5.3–4 (2013): 314–319.
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Reygondeau, G., et al. "Dynamic biogeochemical provinces in the global ocean." Global Biogeochemical Cycles. 27.4 (2013): 1046–1058.
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2012

Dueri, S., B. Faugeras, and O. Maury. "Modelling the skipjack tuna dynamics in the Indian Ocean with APECOSM6E : part 1. Model formulation." Ecological Modelling. 245 (2012): 41–54.
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Dueri, S., B. Faugeras, and O. Maury. "Modelling the skipjack tuna dynamics in the Indian Ocean with APECOSM6E : part 2. Parameter estimation and sensitivity analysis." Ecological Modelling. 245 (2012): 55–64.
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Murphy, E. J., et al. "Developing integrated models of Southern Ocean food webs : including ecological complexity, accounting for uncertainty and the importance of scale." Progress in Oceanography. 102.Si (2012): 74–92.
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REYGONDEAU, G., et al. "Biogeography of tuna and billfish communities." Journal Of Biogeography. 39.1 (2012): 114–129.
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2011

Handegard, N. O., et al. "Toward a global observation and modeling system for studying the ecology of the open ocean using acoustics." The Journal of the Acoustical Society of America. 129.4 (2011): 2700.
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2010

Lehodey, P., and O. Maury. "CLimate Impacts on Oceanic TOp Predators (CLIOTOP) : introduction to the special issue of the CLIOTOP international symposium, La Paz, Mexico, 3-7 December 2007 Preface." Progress in Oceanography. 86 (2010): 1–7.
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Maury, O. "An overview of APECOSM, a spatialized mass balanced “Apex Predators ECOSystem Model” to study physiologically structured tuna population dynamics in their ecosystem." Progress in Oceanography. 84 (2010): 113–117.
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Shin, Y. - J., M. Travers, and O. Maury. "Coupling low and high trophic levels models : towards a pathways-orientated approach for end-to-end models." Progress in Oceanography. 84 (2010): 105–112.
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2009

Bodiguel, X., et al. "A dynamic and mechanistic model of PCB bioaccumulation in the European hake (Merluccius merluccius)." Journal of Sea Research. 62.2-3 (2009): 124–134.
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MARBEC MARine Biodiversity, Exploitation and Conservation, est une unité de recherche qui regroupe des personnels de 4 organismes : l’IRD, l’Ifremer, l’UM et le CNRS. Son objectif est l’étude de la biodiversité marine des écosystèmes lagunaires, côtiers et hauturiers à différents niveaux d’intégration, depuis les aspects moléculaires, individuels, populationnels et communautaires, et des usages de cette biodiversité par l’Homme. Nous rejoindre