Tissue loss rather than colony size determines the demographic fate of the branching coral Acropora cervicornis
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[1] D. Gilliam,et al. Outplanting technique, host genotype, and site affect the initial success of outplanted Acropora cervicornis , 2018, PeerJ.
[2] S. Sandin,et al. Porites superfusa mortality and recovery from a bleaching event at Palmyra Atoll, USA , 2017, PeerJ.
[3] B. Silliman,et al. Effects of predation and nutrient enrichment on the success and microbiome of a foundational coral. , 2017, Ecology.
[4] M. Ribes,et al. Recurrent partial mortality events in winter shape the dynamics of the zooxanthellate coral Oculina patagonica at high latitude in the Mediterranean , 2017, Coral Reefs.
[5] C. P. Ruiz-Diaz,et al. Branching dynamics of transplanted colonies of the threatened coral Acropora cervicornis: Morphogenesis, complexity, and modeling , 2016 .
[6] K. Anderson,et al. Temporal consistency in background mortality of four dominant coral taxa along Australia’s Great Barrier Reef , 2016, Coral Reefs.
[7] C. Toledo-Hernández,et al. Scraping and extirpating: two strategies to induce recovery of diseased Gorgonia ventalina sea fans , 2016 .
[8] C. P. Ruiz-Diaz,et al. Demography of the threatened coral Acropora cervicornis: implications for its management and conservation , 2015, Coral Reefs.
[9] C. P. Ruiz-Diaz,et al. Demographics and dynamics of two restored populations of the threatened reef-building coral Acropora cervicornis , 2015 .
[10] E. Hernández-Delgado,et al. Community-Based Coral Reef Rehabilitation in a Changing Climate: Lessons Learned from Hurricanes, Extreme Rainfall, and Changing Land Use Impacts , 2014 .
[11] D. Lirman,et al. Growth Dynamics of the Threatened Caribbean Staghorn Coral Acropora cervicornis: Influence of Host Genotype, Symbiont Identity, Colony Size, and Environmental Setting , 2014, PloS one.
[12] Dana E Williams,et al. Disease dynamics and potential mitigation among restored and wild staghorn coral, Acropora cervicornis , 2014, PeerJ.
[13] C. P. Ruiz-Diaz,et al. Survival, growth, and branch production of unattached fragments of the threatened hermatypic coral Acropora cervicornis , 2014 .
[14] R. Woesik,et al. The effects of partial mortality on the fecundity of three common Caribbean corals , 2013 .
[15] D. Bellwood,et al. Evaluating life-history strategies of reef corals from species traits. , 2012, Ecology letters.
[16] S. Griffin,et al. Success of outplanted Acropora cervicornis colonies in reef restoration , 2012 .
[17] Dana E Williams,et al. Stabilization of Fragments to Enhance Asexual Recruitment in Acropora Palmata, a Threatened Caribbean Coral , 2010 .
[18] R. Woesik,et al. Effects of thermal stress on key processes driving coral-population dynamics , 2010 .
[19] B. Willis,et al. Levels of immunity parameters underpin bleaching and disease susceptibility of reef corals , 2010, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[20] D. Lirman,et al. Propagation of the threatened staghorn coral Acropora cervicornis: methods to minimize the impacts of fragment collection and maximize production , 2010, Coral Reefs.
[21] G. Ward,et al. Storm-generated coral fragments - A viable source of transplants for reef rehabilitation , 2008 .
[22] Brook G. Milligan,et al. Estimating and Analyzing Demographic Models Using the popbio Package in R , 2007 .
[23] P. Edmunds,et al. Determinate growth and the scaling of photosynthetic energy intake in the solitary coral Fungia concinna (Verrill) , 2007 .
[24] R. Armstrong,et al. Physiological Responses of Acropora cervicornis to Increased Solar Irradiance † , 2007, Photochemistry and photobiology.
[25] K. Kohler,et al. Coral Point Count with Excel extensions (CPCe): A Visual Basic program for the determination of coral and substrate coverage using random point count methodology , 2006, Comput. Geosci..
[26] M. Noordeloos,et al. Damage and regeneration : links to growth in the reef-building coral Montastrea annularis , 2006 .
[27] H. Erik. Predicting regeneration of physical damage on a reef-building coral by regeneration capacity and lesion shape , 2006 .
[28] Dana E Williams,et al. Demographic monitoring protocols for threatened Caribbean Acropora spp. corals , 2006 .
[29] Dana E Williams,et al. Coral disease outbreak: pattern, prevalence and transmission in Acropora cervicornis , 2005 .
[30] N. Quinn,et al. Patterns of sexual recruitment of acroporid coral populations on the west fore reef at Discovery Bay, Jamaica. , 2005, Revista de biologia tropical.
[31] Michael P. Lesser,et al. Exposure to solar radiation increases damage to both host tissues and algal symbionts of corals during thermal stress , 2004, Coral Reefs.
[32] H. Lasker,et al. Do multi–branched colonial organisms exceed normal growth after partial mortality? , 2004, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[33] R. Aronson,et al. White-band disease and the changing face of Caribbean coral reefs , 2001, Hydrobiologia.
[34] G. Visser,et al. The physiology-life history nexus in larks along an aridity gradient , 2003 .
[35] Taihan Chen,et al. Coral Transplantation: Regeneration and Growth of Acropora Fragments in a Nursery , 2003 .
[36] R. Cumming. Tissue injury predicts colony decline in reef-building corals , 2002 .
[37] J. Bohnsack,et al. An analysis of the loss of acroporid corals at Looe Key, Florida, USA: 1983–2000 , 2002, Coral Reefs.
[38] V. R. Hall. The response of Acropora hyacinthus and Montipora tuberculosa to three different types of colony damage: scraping injury, tissue mortality and breakage , 2001 .
[39] K. Sakai. Effect of Colony Size, Polyp Size, and Budding Mode on Egg Production in a Colonial Coral. , 1998, The Biological bulletin.
[40] R. Bak,et al. Coral colony tissue damage in six species of reef-building corals: partial mortality in relation with depth and surface area , 1997 .
[41] Y. Loya,et al. Effect of lesion size and shape on regeneration of the Red Sea coral Favia favus , 1997 .
[42] T. Goreau. Bleaching and reef community change in Jamaica: 1951-1991 , 1992 .
[43] R. Babcock. COMPARATIVE DEMOGRAPHY OF THREE SPECIES OF SCLERACTINIAN CORALS USING AGE- AND SIZE-DEPENDENT CLASSIFICATIONS' , 1991 .
[44] N. Knowlton,et al. Case Study of Natural Population Collapse: Post-Hurricane Predation on Jamaican Staghorn Corals , 1990 .
[45] J. Connell,et al. Population Dynamics Based on Size or Age? A Reef-Coral Analysis , 1987, The American Naturalist.
[46] T. Vuorisalo,et al. Unitary and Modular Organisms: Criteria for Ecological Division , 1986 .
[47] T. Hughes,et al. Population Dynamics and Life Histories of Foliaceous Corals , 1985 .
[48] T. Hughes,et al. Adaptive strategies of coral reef invertebrates: coral reef environments that are regularly disturbed by storms and by predation often favor the very organisms most susceptible to damage by these processes , 1985 .
[49] R. Bak. Neoplasia, regeneration and growth in the reef-building coral Acropora palmata , 1983 .
[50] J. Connell. 7. – POPULATION ECOLOGY OF REEF-BUILDING CORALS , 1973 .