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F Melzner

Showing results (1-10 of 7) with videos related to

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Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|July 12, 2011
CO2 induced seawater acidification impacts sea urchin larval development II: gene expression patterns in pluteus larvaeM Stumpp, S Dupont, M C Thorndyke, et al.
Marine Genomics|March 20, 2016
Calcium mobilisation following shell damage in the Pacific oyster, Crassostrea gigasJ K Sillanpää, K Ramesh, F Melzner, et al.
Acta Physiologica (Oxford, England)|April 17, 2018
Trans-life cycle acclimation to experimental ocean acidification affects gastric pH homeostasis and larval recruitment in the sea star Asterias rubensM Y Hu, E Lein, M Bleich, et al.
Aquatic Toxicology (Amsterdam, Netherlands)|February 21, 2012
Resource allocation and extracellular acid-base status in the sea urchin Strongylocentrotus droebachiensis in response to CO₂ induced seawater acidificationM Stumpp, K Trübenbach, D Brennecke, et al.
Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|July 12, 2011
CO2 induced seawater acidification impacts sea urchin larval development I: elevated metabolic rates decrease scope for growth and induce developmental delayM Stumpp, J Wren, F Melzner, et al.
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|October 20, 2009
Acid-base regulatory ability of the cephalopod (Sepia officinalis) in response to environmental hypercapniaMagdalena A Gutowska, F Melzner, M Langenbuch, et al.
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|December 7, 2016
Intra-population variability of ocean acidification impacts on the physiology of Baltic blue mussels (Mytilus edulis): integrating tissue and organism responseL S Stapp, J Thomsen, H Schade, et al.
Pageof 1

Showing results (1-10 of 7) with videos related to

Sort By:
Pageof 1
Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|July 12, 2011
CO2 induced seawater acidification impacts sea urchin larval development II: gene expression patterns in pluteus larvaeM Stumpp, S Dupont, M C Thorndyke, et al.
Marine Genomics|March 20, 2016
Calcium mobilisation following shell damage in the Pacific oyster, Crassostrea gigasJ K Sillanpää, K Ramesh, F Melzner, et al.
Acta Physiologica (Oxford, England)|April 17, 2018
Trans-life cycle acclimation to experimental ocean acidification affects gastric pH homeostasis and larval recruitment in the sea star Asterias rubensM Y Hu, E Lein, M Bleich, et al.
Aquatic Toxicology (Amsterdam, Netherlands)|February 21, 2012
Resource allocation and extracellular acid-base status in the sea urchin Strongylocentrotus droebachiensis in response to CO₂ induced seawater acidificationM Stumpp, K Trübenbach, D Brennecke, et al.
Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|July 12, 2011
CO2 induced seawater acidification impacts sea urchin larval development I: elevated metabolic rates decrease scope for growth and induce developmental delayM Stumpp, J Wren, F Melzner, et al.
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|October 20, 2009
Acid-base regulatory ability of the cephalopod (Sepia officinalis) in response to environmental hypercapniaMagdalena A Gutowska, F Melzner, M Langenbuch, et al.
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|December 7, 2016
Intra-population variability of ocean acidification impacts on the physiology of Baltic blue mussels (Mytilus edulis): integrating tissue and organism responseL S Stapp, J Thomsen, H Schade, et al.
Pageof 1