Probabilistic risk assessment of the effect of acidified seawater on development stages of sea urchin (Strongylocentrotus droebachiensis)

Author:

Chen Wei-Yu,Lin Hsing-Chieh

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine

Reference53 articles.

1. Aze T, Barry J, Bellerby RG, Brander L, Byrne M, Dupont S et al (2014) An updated synthesis of the impacts of ocean acidification on marine biodiversity (CBD technical series, 75). Secretariat of Convention on Biological Diversity, Montreal

2. Bay S, Burgess R, Nacci D (1993) Status and applications of echinoid (Phylum Echinodermata) toxicity test methods. In: Landis WG, Hughes JS, Lewis MA (eds) Environmental toxicology and risk assessment. American society for testing and materials, Philadelphia, pp 281–302

3. Bögner D (2016) Life under climate change scenarios: sea urchins; cellular mechanisms for reproductive success. J Mar Sci Eng 4:28

4. Bögner D, Bickmeyer U, Köhler A (2013) Fertilization success of an arctic sea urchin species, Strongylocentrotus droebachiensis (O.F. Müller, 1776) under CO2-induced ocean acidification. Biogeosci Discuss 10:8027–8064

5. Byrne M (2010) Impact of climate change stressors on marine invertebrate life histories with a focus on the Mollusca and Echinodermata. In: Yu J, Henderson-Sellers A (eds) Climate Alter, Climate Change Monitoring and Strategy. University of Sydney Press, Sydney, pp 142–185

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