Hypoxic Threshold for Yellow Perch Embryonic Development
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[1] M. Abrahams,et al. Variation in tolerance to hypoxia in a predator and prey species: an ecological advantage of being small? , 2003 .
[2] W. Moore. Field Studies on the Oxygen Requirements of Certain Fresh‐Water Fishes , 1942 .
[3] A. J. Mansueti. Early Development of the Yellow Perch, Perca flavescens' , 1964 .
[4] M. O'Donnell,et al. Water chemistry in the microenvironment of rainbow trout Oncorhynchus mykiss embryos is affected by development, the egg capsule and crowding. , 2013, Journal of fish biology.
[5] M. Baldissera,et al. Caffeine prevents hypoxia-induced dysfunction on branchial bioenergetics of Nile tilapia through phosphoryl transfer network , 2019, Aquaculture.
[6] Denis Gilbert,et al. Dynamics and distribution of natural and human-caused hypoxia , 2010 .
[7] Malcolm H. Taylor,et al. The mechanism of hatching in Fundulus heteroclitus: Development and physiology , 1981 .
[8] D. Bradford,et al. Influence of Environmental Po2 on Embryonic Oxygen Consumption, Rate of Development, and Hatching in the Frog Pseudophryne bibroni , 1988, Physiological Zoology.
[9] N. Woo,et al. Aquatic Hypoxia Is an Endocrine Disruptor and Impairs Fish Reproduction , 2003 .
[10] R. E. Siefert,et al. Effects of Reduced Oxygen Concentrations on Northern Pike (Esox lucius) Embryos and Larvae , 1973 .
[11] P. Rombough. 2 Respiratory Gas Exchange, Aerobic Metabolism, and Effects of Hypoxia During Early Life , 1988 .
[12] K. Dąbrowski,et al. The expression of hypoxia-inducible factor-1α gene is not affected by low-oxygen conditions in yellow perch (Perca flavescens) juveniles , 2017, Fish Physiology and Biochemistry.
[13] M B Roth,et al. Oxygen deprivation causes suspended animation in the zebrafish embryo , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[14] James J. Roberts,et al. Evidence of hypoxic foraging forays by yellow perch ( Perca flavescens ) and potential consequences for prey consumption , 2012 .
[15] J. Podrabsky,et al. Anoxia Tolerance During Vertebrate Development - Insights from Studies on the Annual Killifish Austrofundulus limnaeus , 2012 .
[16] R. Rosenberg,et al. Spreading Dead Zones and Consequences for Marine Ecosystems , 2008, Science.
[17] W. Burggren,et al. Ontogeny of cardiovascular and respiratory physiology in lower vertebrates. , 1991, Annual review of physiology.
[18] David J. Schwab,et al. Assessing and addressing the re-eutrophication of Lake Erie: Central basin hypoxia , 2014 .
[19] L. Pihl. Changes in the Diet of Demersal Fish due to Eutrophication-Induced Hypoxia in the Kattegat, Sweden , 1994 .
[20] W. A. Spoor. Oxygen requirements of embryos and larvae of the largemouth bass, Micropterus salmoides (Lacépède) , 1977 .
[21] J. C. Taylor,et al. Swimming behavior of juvenile anchovies (Anchoa spp.) in an episodically hypoxic estuary: implications for individual energetics and trophic dynamics , 2007 .
[22] E. Garside,et al. Developmental rates of embryos of Atlantic salmon, Salmo salar L., in response to various levels of temperature, dissolved oxygen, and water exchange. , 1976, Canadian journal of zoology.
[23] N. G. Elliott,et al. The effects of constant and cyclical hypoxia on the survival, growth and metabolic physiology of incubating Atlantic salmon (Salmo salar) , 2020 .
[24] J. Ackerman,et al. Episodic hypoxia in the western basin of Lake Erie , 2019, Limnology and Oceanography.
[25] D. Mason,et al. Hypoxia-avoidance by planktivorous fish in Chesapeake Bay: Implications for food web interactions and fish recruitment , 2009 .
[26] Andrew D. Gronewold,et al. Fine-scale spatial variation in ice cover and surface temperature trends across the surface of the Laurentian Great Lakes , 2016, Climatic Change.
[27] Fish adaptation to oxygen variations in aquaculture from hypoxia to hyperoxia. , 2011 .
[28] Larry B. Crowder,et al. Hypoxia-induced habitat shifts and energetic consequences in Atlantic croaker and brown shrimp on the Gulf of Mexico shelf , 2005 .
[29] S. Marelli,et al. HIF-1α mRNA levels in Eurasian perch (Perca fluviatilis) exposed to acute and chronic hypoxia , 2012, Molecular Biology Reports.
[30] K. E. Hokanson,et al. Effects of Constant and Rising Temperatures on Survival and Developmental Rates of Embryonic and Larval Yellow Perch, Perca flavescens (Mitchill) , 1974 .
[31] J. Rinchard,et al. Effect of Oxygen Saturation in Water on Reproductive Performances of Pacu Piaractus brachypomus , 2003 .
[32] J. Podrabsky,et al. The effects of hypoxia and temperature on metabolic aspects of embryonic development in the annual killifish Austrofundulus limnaeus , 2014, Journal of Comparative Physiology B.
[33] J. Engström-Öst,et al. Effects of macroalgal exudates and oxygen deficiency on survival and behaviour of fish larvae , 2006 .
[34] J. H. Carpenter. NEW MEASUREMENTS OF OXYGEN SOLUBILITY IN PURE AND NATURAL WATER1 , 1966 .
[35] C. Moffitt,et al. Blue Growth: The 2014 FAO State of World Fisheries and Aquaculture , 2014 .
[36] R. Wu,et al. Aquatic hypoxia is a teratogen and affects fish embryonic development. , 2004, Environmental science & technology.