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the humboldt current system of northern and central chile - figema

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THE HUMBOLDT CURRENT SYSTEM OF NORTHERN AND CENTRAL CHILEMeir, E., Andelman, S. & Possingham, H.P. 2004. Does conservation planning matter in a dynamic <strong>and</strong>uncertain world? Ecology Letters 7, 615–622.Meltz<strong>of</strong>f, S.K., Lichtensztajn, Y.G. & Stotz, W. 2002. Competing visions for marine tenure <strong>and</strong> co-management:genesis <strong>of</strong> a marine management area <strong>system</strong> in Chile. Coastal Management 30, 85–99.Méndez, C.A. 2002. Cazadores recolectores costeros y sus contextos de tarea: una división desde el asentamientoholocénico temprano de Punta Penitente (Lv 0.14), Los Vilos. Chungará (Arica) 34, 135–166.Méndez, C.A. & Jackson, D.G. 2004. Ocupaciones humanas del holoceno tardío en Los Vilos (IV Región,Chile): origen y características conductuales de la población local de cazadores recolectores de litoral.Chungará (Arica) 36, 279–293.Meneses, I. 1993. Foam as a dispersal agent in <strong>the</strong> rocky intertidal <strong>of</strong> <strong>central</strong> Chile. European Journal <strong>of</strong>Phycology 28, 107–110.Meneses, I. & Santelices, B. 2000. Patterns <strong>and</strong> breaking points in <strong>the</strong> distribution <strong>of</strong> benthic algae along <strong>the</strong>temperate Pacific coast <strong>of</strong> South America. Revista Chilena de Historia Natural 73, 615–623.Menge, B.A. 1972. Foraging strategy <strong>of</strong> a starfish in relation to actual prey availability <strong>and</strong> environmentalpredictability. Ecological Monographs 42, 25–50.Menge, B.A., Berlow, E.L., Blanchette, C.A., Navarrete, S.A. & Yamada, S.B. 1994. The keystone species concept— variation in interaction strength in a rocky intertidal habitat. Ecological Monographs 64, 249–286.Menge, B.A., Lubchenco, J., Bracken, M.E.S., Chan, F., Foley, M.M., Freidenburg, T.L., Gaines, S.D., Hudson,G., Krenz, C., Leslie, H., Menge, D.N.L., Russell, R. & Webster, M.S. 2003. Coastal oceanographysets <strong>the</strong> pace <strong>of</strong> rocky intertidal community dynamics. Proceedings <strong>of</strong> <strong>the</strong> National Academy <strong>of</strong>Sciences USA 100, 12,229–12,234.Menzies, R.J. 1962. The zoogeography, ecology <strong>and</strong> <strong>system</strong>atics <strong>of</strong> <strong>the</strong> Chilean marine isopods. LundsUniversitets Arsskrift NF 57, 1–162.Mesías, J.M., Matano, R.P. & Strub, P.T. 2001. A numerical study <strong>of</strong> <strong>the</strong> upwelling circulation <strong>of</strong>f <strong>central</strong>Chile. Journal <strong>of</strong> Geophysical Research-Oceans 106, 19,611–19,623.Mesías, J.M., Matano, R.P. & Strub, P.T. 2003. Dynamical analysis <strong>of</strong> <strong>the</strong> upwelling circulation <strong>of</strong>f <strong>central</strong>Chile. Journal <strong>of</strong> Geophysical Research-Oceans 108, C3, 3085 DOI:101029/2001JC 001135.Micheli, F., Amarasekare, P., Bascompte, J. & Gerber, L.R. 2004. Including species interactions in <strong>the</strong> design<strong>and</strong> evaluation <strong>of</strong> marine reserves: some insights from a predator-prey model. Bulletin <strong>of</strong> MarineScience 74, 653–669.Milessi, A., Sellanes, J., Gallardo, V. & Lange, C.B. 2005. Osseous skeletal material <strong>and</strong> fish scales in marinesediments under <strong>the</strong> oxygen minimum zone <strong>of</strong>f nor<strong>the</strong>rn <strong>and</strong> <strong>central</strong> Chile. Estuarine, Coastal <strong>and</strong>Shelf Science 64, 185–190.Mir<strong>and</strong>a, C. 2001. La desaparición del banco de machas Mesodesma donacium (Lamarck, 1818) (Mollusca:Bivalvia: Mesodesmatidae) en la Bahía de Coquimbo, IV Región, Chile: sus probables causas. Honors<strong>the</strong>sis, Universidad Católica del Norte, Coquimbo, Chile.Moloney, C.L., Jarre, A., Arancibia, H., Bozec, Y.M., Neira, S., Roux, J.P. & Shannon, L.J. 2005. Comparing<strong>the</strong> Benguela <strong>and</strong> Humboldt marine upwelling eco<strong>system</strong>s with indicators derived from inter-calibratedmodels. ICES Journal <strong>of</strong> Marine Science 62, 493–502.Montecino, V., Astoreca, R., Alarcón, G., Retamal, L. & Pizarro, G. 2004. Bio-optical characteristics <strong>and</strong>primary productivity during upwelling <strong>and</strong> non-upwelling conditions in a highly productive coastaleco<strong>system</strong> <strong>of</strong>f <strong>central</strong> Chile (~36°S). Deep-Sea Research II 51, 2413–2426.Montecino, V. & Pizarro, G. 1995. Phytoplankton acclimation <strong>and</strong> spectral penetration <strong>of</strong> UV irradiance <strong>of</strong>f<strong>the</strong> <strong>central</strong> Chilean coast. Marine Ecology Progress Series 121, 261–269.Montecino, V., Pizarro, G. & Quiroz, D. 1996. Dinámica fitoplanctónica en el sistema de surgencia frente aCoquimbo (30°S) a través de la relación funcional entre fotosíntesis e irradianza (P-I). GayanaOceanológica 4, 139–151.Montecino, V. & Quiroz, D. 2000. Specific primary production <strong>and</strong> phytoplankton cell size structure in anupwelling area <strong>of</strong>f <strong>the</strong> coast <strong>of</strong> Chile (30°S). Aquatic Sciences 62, 364–380.Montecino, V., Strub, P.T., Chavez, F.P., Thomas, A.C., Tarazona, J. & Baumgartner, T. 2005. Chapter 10Bio-physical interactions <strong>of</strong>f western South America (6,E). In The Sea, A.R. Robinson & K.H. Brink(eds). Cambridge: Harvard University Press, 329–390.327

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