David Kaplan

Informations


Work Phone / Téléphone de travail : +33 4 99 57 32 25

ADRESSE : av. Jean Monnet CS 30171 - 34203 - Sète - FR


Institut : IRD

LIEU GEOGRAPHIQUE : SETE

GRADE : CR




Pôles communs : Expertise


BIOGRAPHIE :

Brief description of research

My research currently focuses on assessing the effects of different forms of spatial and non-spatial fisheries management on marine populations. Using the lenses of meta-population modeling, experimental marine ecology, species distribution modeling, analysis of fisheries catch-effort data and oceanography, I am looking at how marine spatial management relates to sustainability, conservation and community structure of marine populations with distinct dispersal and reproductive potentials. Recent work has included studies on the implications of offshore marine protected areas for mobile demersal and pelagic species. I am also studying the effects of oceanographic processes on temporal and spatial patterns of larval settlement.

Instructions for potential students.

Full list of Publications

For a full list of my publications see my personal website.

The publication list below is a partial list with just my French publications.


Publications

2018

Pendleton, L. H., et al. "Debating the effectiveness of marine protected areas Introduction." ICES J. Mar. Sci.. 75.3 (2018): 1156–1159.
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Santos, B. S., et al. "Likely locations of sea turtle stranding mortality using experimentally-calibrated, time and space-specific drift models." Biol. Conserv.. 226 (2018): 127–143.
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Snouck-Hurgronje, J. E., et al. "Fishing on floating objects (FOBs): how French tropical tuna purse seiners split fishing effort between GPS-monitored and unmonitored FOBs." Can. J. Fish. Aquat. Sci.. 75.11 (2018): 1849–1858.
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2017

Kaplan, D. M., et al. "Uncertainty in empirical estimates of marine larval connectivity." ICES J. Mar. Sci.. 74.6 (2017): 1723–1734.
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Maufroy, A., et al. "Massive increase in the use of drifting Fish Aggregating Devices (dFADs) by tropical tuna purse seine fisheries in the Atlantic and Indian oceans." ICES J. Mar. Sci.. 74.1 (2017): 215–225.
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Mullon, C., et al. "Exploring future scenarios for the global supply chain of tuna." Deep Sea Research Part II: Topical Studies in Oceanography. 140 (2017): 251–267.
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2016

Garavelli, L., et al. "Influence of Biological Factors on Connectivity Patterns for Concholepas concholepas (loco) in Chile." Plos One. 11.1 (2016): e0146418.
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Monsarrat, S., et al. "A spatially explicit estimate of the prewhaling abundance of the endangered North Atlantic right whale." Conserv. Biol.. 30.4 (2016): 783–791.
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2015

Maufroy, A., et al. "Large-Scale Examination of Spatio-Temporal Patterns of Drifting Fish Aggregating Devices (dFADs) from Tropical Tuna Fisheries of the Indian and Atlantic Oceans." PLoS ONE. 10.5 (2015): e0128023.
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2014

Ban, N. C., et al. "Better integration of sectoral planning and management approaches for the interlinked ecology of the open oceans." Marine Policy (2014).
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Bonhommeau, S., et al. "Reply to Feeley and Machovina : trophic ecology complements estimates of land use change due to food production." Proceedings of the National Academy of Sciences of the United States of America. 111.9 (2014).
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Cuif, M., et al. "Wind-induced variability in larval retention in a coral reef system: a biophysical modelling study in the South-West Lagoon of New Caledonia." Progress in Oceanography. 122 (2014): 105–115.
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Cuif, M., et al. "Evaluation of transgenerational isotope labeling of embryonic otoliths in a coral reef damselfish with single and repeated injections of enriched (137)Barium." Journal of Experimental Marine Biology and Ecology. 459 (2014): 151–159.
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Garavelli, L., et al. "Identifying appropriate spatial scales for marine conservation and management using a larval dispersal model : the case of Concholepas concholepas (loco) in Chile." Progress in Oceanography. 124 (2014): 42–53.
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Kaplan, D., et al. "Spatial management of Indian Ocean tropical tuna fisheries: potential and perspectives." Ices Journal of Marine Science. 71.7 (2014): 1728–1749.
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Nieblas, A. E., et al. "Reply to Roopnarine : what is an apex predator ?" Proceedings of the National Academy of Sciences of the United States of America. 111.9 (2014).
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2013

Ban, N. C., et al. "Systematic conservation planning: a better recipe for managing the high seas for biodiversity conservation and sustainable use." Conservation Letters (2013).
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Bonhommeau, S., et al. "Eating up the world’s food web and the human trophic level." Proceedings of the National Academy of Sciences (2013).
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Brochier, T., et al. "A multi-agent ecosystem model for studying changes in a tropical estuarine fish assemblage within a marine protected area." Aquatic Living Resources. 26.02 (2013): 147–158.
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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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Grüss, A., D. M. Kaplan, and J. Robinson. "Evaluation of the effectiveness of marine reserves for transient spawning aggregations in data-limited situations." ICES J. Mar. Sci. (2013).
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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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Meynard, C. N., and D. Kaplan. "Using virtual species to study species distributions and model performance." Journal of Biogeography. 40.1 (2013): 1–8.
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White, J. W., et al. "Transient responses of fished populations to marine reserve establishment." Conservation Letters. 6 (2013): 180–191.
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2012

Garavelli, L., et al. "Modeling the dispersal of Cape hake ichthyoplankton." Journal of Plankton Research. 34.8 (2012): 655–669.
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Grüss, A., D. Kaplan, and C. Lett. "Estimating local settler-recruit relationship parameters for complex spatially explicit models." Fisheries Research. 127-128 (2012): 34–39.
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Marinesque, S., D. Kaplan, and L. D. Rodwell. "Global implementation of marine protected areas : is the developing world being left behind ?" Marine Policy. 36.3 (2012): 727–737.
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Meynard, C. N., and D. Kaplan. "The effect of a gradual response to the environment on species distribution modeling performance." Ecography. 35.6 (2012): 499–509.
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2011

Fisher, D. T., et al. "A GIS-based tool for representing larval dispersal for marine reserve selection." The Professional Geographer. 63.4 (2011): 1–25.
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Gruss, A., et al. "Consequences of adult and juvenile movement for marine protected areas." Biological Conservation. 144 (2011): 692–702.
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Grüss, A., D. Kaplan, and D. R. Hart. "Relative impacts of adult movement, larval dispersal and harvester movement on the effectiveness of reserve networks." Plos One. 6.5 (2011).
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2010

Chassot, E., et al. "Comment on "clarification regarding the distribution of bigeye tuna Thunnus obesus in the Atlantic Ocean, including bristish waters." Journal of Fish Biology. 77 (2010): 1449–1454.
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Kaplan, D., et al. "Pelagic MPAs : the devil is in the details." Trends in Ecology and Evolution. 25 (2010): 62–63.
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Kaplan, D., D. R. Hart, and L. W. Botsford. "Rotating spatial harvests and fishing effort displacement : a comment on Game et al. (2009)." Ecology Letters. 13 (2010): E10–E12.
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Kaplan, D., et al. "New tools for the spatial management of living marine resources." Current Opinion in Environmental Sustainability. 2 (2010): 88–93.
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2009

Kaplan, D., et al. "Surface currents during anomalous upwelling seasons off central California." Journal of Geophysical Research (2009).
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Kaplan, D. M. "Fish life histories and marine protected areas: an odd couple?" Mar. Ecol.-Prog. Ser.. 377 (2009): 213–225.
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Kaplan, D. M., et al. "Model-based assessment of persistence in proposed marine protected area designs." Ecol. Appl.. 19.2 (2009): 433–448.
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Moffitt, E. A., et al. "Marine reserve networks for species that move within a home range." Ecological Applications. 19.7 (2009): 1835–1847.
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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