{"id":4194,"date":"2020-06-02T16:43:37","date_gmt":"2020-06-02T14:43:37","guid":{"rendered":"https:\/\/www.ecoshape.org\/en\/?post_type=knowledge-article&#038;p=4194"},"modified":"2020-06-13T22:18:39","modified_gmt":"2020-06-13T20:18:39","slug":"references","status":"publish","type":"knowledge-article","link":"https:\/\/www.ecoshape.org\/en\/knowledge-articles\/cause-effect-chain-modelling-of-sand-mining-using-mussels\/references\/","title":{"rendered":"References"},"content":{"rendered":"\n<ul class=\"wp-block-list\"><li>Baptist, M., J. E. Tamis, B. W. Borsje, and J. J. Van der Werf. 2009. Review of the geomorphological, benthic ecological and biogeomorphological effects of nourishments on the shoreface and surf zone of the Dutch coast. IMARES,&nbsp;Texel, Pages 69.<\/li><li>Bayne, B. L., A. J. S. Hawkins, and E. Navarro. 1987. Feeding and digestion by the mussel&nbsp;<em>Mytilus edulis<\/em>&nbsp;L. (Bivalvia: Mollusca) in mixtures of silt and algal cells at low concentrations. Journal of Experimental Marine Biology and Ecology 111:1-22.<\/li><li>Bayne, B. L., A. J. S. Hawkins, E. Navarro, and I. P. Iglesias. 1989. Effects of seston concentration on feeding, digestion and growth in the mussel&nbsp;<em>Mytilus edulis<\/em>. Marine Ecology Progress Series 55:47-54.<\/li><li>Bayne, B. L., J. I. P. Iglesias, A. J. S. Hawkins, E. Navarro, M. Heral, and J. M. Deslouspaoli. 1993. Feeding-behavior of the Mussel,&nbsp;<em>Mytilus edulis<\/em>&nbsp;&#8211; responses to variations in quantity and organic content of the seston. Journal of the Marine Biological Association of the United Kingdom 73:813-829.<\/li><li>Bayne, B. L., J. Widdows, and R. I. E. Newell. 1977. Physiological measurements on estuarine bivalve molluscs in the field, Pages 57-68&nbsp;<em>in<\/em>&nbsp;B. F. Keegan, P. O. Ceidigh, and P. J. S. Boaden, eds. Biology of benthic organisms. Oxford, Pergamon Press.<\/li><li>Bijkerk, R. 1988. Escape or stay buried. The effects of increased sedimentation rates due to dredging activities on benthic fauna. Rijkswaterstaat, Dienst Getijdenwateren Middelburg. (In Dutch).<\/li><li>Clausen, I., and H. U. Riisg\u00e5rd. 1996. Growth, filtration and respiration in the mussel&nbsp;<em>Mytilus edulis<\/em>: no evidence for physiological regulation of the filter-pump to nutritional needs. Marine Ecology Progress Series 141:37-45.<\/li><li>Conover, R. J. 1966. Assimilation of organic matter by zooplankton. Limnology and Oceanography 11:338-345.<\/li><li>Essink, K. 1999. Ecological effects of dumping of dredged sediments; options for management. Journal of Coastal Conservation 5:69-80.<\/li><li>Essink, K., R. Bijkerk, H. L. Kleef, and P. Tydeman. 1990. The effect of suspended particles on growth and condition of the blue mussel (Mytilus edulis L.). (In Dutch)<\/li><li>Essink, K., P. Tydeman, F. De Koning, and H. L. Kleef. 1989. On the adaptation of the mussel&nbsp;<em>Mytilus edulis<\/em>&nbsp;L. to different SPM concentrations&nbsp;<em>in<\/em>&nbsp;R. Z. Klekowski, E. Styczynska-Jurewicz, and L. Falkowski, eds. Proc. 21st European Marine Biology Symposium 15-19 Sept. 1986.<\/li><li>Foster-Smith, R. L. 1974, A Comparative Study of the Feeding Mechanisms of&nbsp;<em>Mytilus edulis<\/em>&nbsp;L.,&nbsp;<em>Cerastoderma edule<\/em>&nbsp;(L), and&nbsp;<em>Venerupis pullastra<\/em>&nbsp;(Montagu) (Mollusca : Bivalvia), University of Newcastle-upon-Tyne.<\/li><li>Gosling, E. 1992, The mussel&nbsp;<em>Mytilus<\/em>: ecology, physiology, genetics and culture. Amsterdam, Elsevier.<\/li><li>Hawkins, A. J. S., B. L. Bayne, S. Bougrier, M. H\u00e9ral, J. I. P. Iglesias, E. Navarro, R. F. M. Smith et al. 1998. Some general relationships in comparing the feeding physiology of suspension-feeding bivalve molluscs. Journal of Experimental Marine Biology and Ecology 219:87-103.<\/li><li>Hawkins, A. J. S., P. Duarte, J. G. 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Effect of suspended bottom material on growth and energetics in&nbsp;<em>Mytilus edulis<\/em>. Marine Biology 61:283-288.<\/li><li>Kooijman, S. A. L. M. 1986. Energy budgets can explain body size relations. Journal of Theoretical Biology 121:269-282.<\/li><li>&#8212;. 1998. The synthesizing unit as a model for the stoichiometric fusion and branching of metabolic fluxes. Biological Chemisty 73:179-188.<\/li><li>Kooijman, S. A. L. M. 2000, Dynamic Energy and Mass Budgets in Biological Systems, Cambridge University Press, Great Britain.<\/li><li>Kooijman, S. A. L. M. 2006. Pseudo-faeces production in bivalves. Journal of Sea Research 56:103-106.<\/li><li>&#8212;. 2010, Dynamic energy budget theory for metabolic organisation. Cambridge, Cambridge university Press.<\/li><li>Lika, D., M. R. Kearney, V. Freitas, H. W. Van der Veer, J. Van der Meer, J. W. M. Wijsman, L. Pecqerie et al. 2011. Capturing species diversity with the parameters of the standard DEB model: the covariation method of estimation. Journal of Sea Research 66:270-277.<\/li><li>Newell, C. R., and S. E. Shumway. 1993. Grazing of natural particulates by bivalve molluscs: a spatial and temporal perspective, Pages 85-148&nbsp;<em>in<\/em>&nbsp;R. F. Dame, ed. Bivalve Filter Feeders in Estuarine and Coastal Ecosystem Processes. N.A.T.O. A.S.I. Series. Berlin, Springer.<\/li><li>Newell, R. C., L. J. Seiderer, and D. R. Hitchcock. 1998. The impact of dredging works in coastal waters: A review of the sensitivity to disturbance and subsequent recovery of biological resources on the sea bed. Oceanography and Marine Biology: an Annual Review 36:127-178.<\/li><li>Newell, R. C., D. J. Wildish, and B. A. MacDonald. 2001. The effects of velocity and seston concentration on the exhalant siphon area, valve gape and filtration rate of he mussel&nbsp;<em>Mytilus edulis<\/em>. Journal of Experimental Marine Biology and Ecology 262:91-111.<\/li><li>Prins, T. C., and A. C. Smaal. 1989. Carbon and nitrogen budgets of the mussel&nbsp;<em>Mytilus edulis<\/em>&nbsp;L. and the cockle&nbsp;<em>Cerastoderma edule<\/em>&nbsp;((L.) in relation to food quality. Scientia Marina 53:477-482.<\/li><li>Richoux, N. B., and R. J. Thompson. 2001. Regulation of particle transport within the ventral groove of the mussel (<em>Mytilus edulis<\/em>) gill in response to environmental conditions. Journal of Experimental Marine Biology and Ecology 260:199-215.<\/li><li>Riisg\u00e5rd, H. U. 2001. On measurement of filtration rates in bivalves &#8211; the stony road to reliable data: review and interpretation. Marine Ecology Progress Series 211:275-291.<\/li><li>Riisg\u00e5rd, H. U., P. P. Egede, and I. B. Saavedra. 2011. Feeding behaviour of the mussel,&nbsp;<em>Mytilus edulis<\/em>: New observations, with a minireview of current knowledge. Journal of Marine Biology 2011:1-13.<\/li><li>Rosland, R., \u00d8. Strand, M. Alunno-Bruscia, C. Bacher, and T. Strohmeier. 2009. Applying Dynamic Energy Budget (DEB) theory to simulate growth and bio-energetics of blue mussels under low seston conditions. Journal of Sea Research 62:49-61.<\/li><li>Rueda, J. L., A. C. Smaal, and H. Scholten. 2005. A growth model of the cockle (<em>Cerastoderma edule<\/em>&nbsp;L.) tested in the Oosterschelde estuary (The Netherlands). Journal of Sea Research.<\/li><li>Saraiva, S., J. van der Meer, S. A. L. M. Kooijman, and T. Sousa. 2011. Modelling feeding processes in bivalves: A mechanistic approach. Ecological Modelling 222:514-523.<\/li><li>Schellekens, T. 2012. Growth and condition of Ensis directus, Conrad during the planned sand mining activities from 2013-2017. Calculations for RWS, Pages 33. Yerseke, Wageningen IMARES. (In Dutch).<\/li><li>Strohmeier, T., O. Strand, M. Alunno-Bruscia, A. Duinker, and P. J. Cranford. 2012. Variability in particle retention efficiency by the mussel&nbsp;<em>Mytilus edulis<\/em>. Journal of Experimental Marine Biology and Ecology 412:96-102.<\/li><li>Strohmeier, T., \u00d8. Strand, and P. J. Cranford. 2009. Clearance rates of the great scallop (<em>Pecten maximus<\/em>) and blue mussel (<em>Mytilus edulis<\/em>) at low natural seston concentrations. Marine Biology 156:1781-1795.<\/li><li>Thompson, R. J., and B. L. Bayne. 1974. Some relationships between growth, metabolism and food in the mussel&nbsp;<em>Mytilus edulis<\/em>. Marine Biology 27:317-326.<\/li><li>Vahl, O. 1972. Efficiency of particle retention in&nbsp;<em>Mytilus edulis<\/em>&nbsp;L. of different sizes. Ophelia 12:45-52.<\/li><li>Vanweel, P. B. 1961. The comparative physiology of digestion in molluscs. American Zoologist 1:245-252.<\/li><li>Widdows, J. 1978. Combined effects of body size, food concentration and season on physiology of&nbsp;<em>Mytilus edulis<\/em>. Journal of the Marine Biological Association of the United Kingdom 58:109-124.<\/li><li>Widdows, J., P. Fieth, and C. M. Worrall. 1979. Relationships between seston, available food and feeding-activity in the common mussel&nbsp;<em>Mytilus edulis<\/em>. Marine Biology 50:195-207.<\/li><li>Wijsman, J. W. M. 2011. Dynamic energy budget (DEB) parameters for&nbsp;<em>Ensis directus<\/em>, Pages 39. Yerseke, Wageningen IMARES.<\/li><li>Wijsman, J. W. M., and A. C. Smaal. 2011. Growth of cockles (<em>Cerastoderma edule<\/em>) in the Oosterschelde described by a Dynamic Energy Budget model. Journal of Sea Research 66:372-380.<\/li><li>Wijsman, J. W. M., M. Dedert, T. Schellekens, L. Teal en Y. J. G. Van Kruchten (2012) Adaptive Monitoring Strategies in dredging; Case Study Mussels \u2013 Modeling the effect of dredging on filter-feeding bivalves. IMARES, Ecoshape, Report number: C123\/12, 52 pages.<\/li><li>Zhang, J., J. Fang, and X. Liang. 2010. Variations in retention efficiency of bivalves to different concentrations and organic content of suspended particles. Chinese Journal of Oceanology and Limnology 28:10-17.&nbsp;<\/li><\/ul>\n","protected":false},"author":2,"featured_media":0,"parent":3065,"menu_order":80,"template":"","class_list":["post-4194","knowledge-article","type-knowledge-article","status-publish","hentry"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v27.3 (Yoast SEO v27.3) - https:\/\/yoast.com\/product\/yoast-seo-premium-wordpress\/ -->\n<title>References - EcoShape<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.ecoshape.org\/en\/knowledge-articles\/cause-effect-chain-modelling-of-sand-mining-using-mussels\/references\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"References\" \/>\n<meta property=\"og:description\" content=\"Baptist, M., J. E. Tamis, B. W. 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