Development of a logistic regression model for the prediction of toxigenic Pseudo-nitzschia blooms in Monterey Bay, California.
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[1] Richard P. Stumpf,et al. Evaluation of the use of SeaWiFS imagery for detecting Karenia brevis harmful algal blooms in the eastern Gulf of Mexico , 2004 .
[2] S. Bates,et al. Bloom Dynamics and Physiology of Domoic-Acid-Producing Pseudo-nitzschia Species , 2001 .
[3] Raphael M. Kudela,et al. The potential role of anthropogenically derived nitrogen in the growth of harmful algae in California, USA , 2008 .
[4] Libe Washburn,et al. River plume patterns and dynamics within the Southern California Bight , 2007 .
[5] C. Scholin,et al. IDENTIFICATION AND ENUMERATION OF CULTURED AND WILD PSEUDO‐NITZSCHIA (BACILLARIOPHYCEAE) USING SPECIES‐SPECIFIC LSU rRNA‐TARGETED FLUORESCENT PROBES AND FILTER‐BASED WHOLE CELL HYBRIDIZATION , 1998 .
[6] V. Trainer,et al. Recent domoic acid closures of shellfish harvest areas in Washington State inland waterways , 2007 .
[7] J. Ochoa,et al. Sea bird mortality at Cabo San Lucas, Mexico: evidence that toxic diatom blooms are spreading. , 1997, Toxicon : official journal of the International Society on Toxinology.
[8] R. Kudela,et al. Nitrogenous preference of toxigenic Pseudo-nitzschia australis (Bacillariophyceae) from field and laboratory experiments , 2007 .
[9] Roman Marin,et al. Mortality of sea lions along the central California coast linked to a toxic diatom bloom , 2000, Nature.
[10] F. Chavez,et al. Autecology of the diatom Pseudonitzschia australis, a domoic acid producer, from Monterey Bay, California , 1992 .
[11] J. Ramsdell,et al. In Utero Domoic Acid Toxicity: A Fetal Basis to Adult Disease in the California Sea Lion (Zalophus californianus) , 2008, Marine drugs.
[12] R. Tjeerdema,et al. Domoic acid in planktivorous fish in relation to toxic Pseudo-nitzschia cell densities , 2002 .
[13] Andrew M. Fischer,et al. A coastal ocean extreme bloom incubator , 2008 .
[14] S. Bates,et al. Pennate Diatom Nitzschia pungens as the Primary Source of Domoic Acid, a Toxin in Shellfish from Eastern Prince Edward Island, Canada , 1989 .
[15] Libe Washburn,et al. Circulation and environmental conditions during a toxigenic Pseudo-nitzschia australis bloom in the Santa Barbara Channel, California , 2006 .
[16] M. Johansen,et al. The use of fuzzy logic for data analysis and modelling of European harmful algal blooms: results of the HABES project , 2006 .
[17] R. Tjeerdema,et al. Detection of domoic acid in northern anchovies and California sea lions associated with an unusual mortality event. , 1999, Natural toxins.
[18] M. Silver,et al. Novel symptomatology and changing epidemiology of domoic acid toxicosis in California sea lions (Zalophus californianus): an increasing risk to marine mammal health , 2008, Proceedings of the Royal Society B: Biological Sciences.
[19] Vera L. Trainer,et al. Biological and physical dynamics of domoic acid production off the Washington coast , 2002 .
[20] Xitao Fan,et al. Comparing Linear Discriminant Function with Logistic Regression for the Two-Group Classification Problem. , 1999 .
[21] V. Trainer,et al. Domoic acid: The synergy of iron, copper, and the toxicity of diatoms , 2005 .
[22] T. Malone,et al. A pilot project to detect and forecast harmful algal blooms in the northern Gulf of Mexico. , 2003, Environmental monitoring and assessment.
[23] Vera L. Trainer,et al. Harmful Algal Blooms in Coastal Upwelling Systems , 2005 .
[24] T. Carpenter,et al. Evaluation of cardiac lesions and risk factors associated with myocarditis and dilated cardiomyopathy in southern sea otters (Enhydra lutris nereis). , 2005, American journal of veterinary research.
[25] Daniel R. Lynch,et al. Mechanisms regulating large-scale seasonal fluctuations in Alexandrium fundyense populations in the Gulf of Maine: Results from a physical–biological model , 2005 .
[26] M. Silver,et al. A shift in the dominant toxin-producing algal species in central California alters phycotoxins in food webs. , 2009 .
[27] N. Welschmeyer. Fluorometric analysis of chlorophyll a in the presence of chlorophyll b and pheopigments , 1994 .
[28] J. Burkholder,et al. Harmful algal blooms and eutrophication: Nutrient sources, composition, and consequences , 2002 .
[29] D. Siegel,et al. Estimating suspended sediment concentrations in turbid coastal waters of the Santa Barbara Channel with SeaWiFS , 2004 .
[30] M. Quilliam,et al. AN OUTBREAK OF DOMOIC ACID POISONING ATTRIBUTED TO THE PENNATE DIATOM PSEUDONITZSCHIA AUSTRALIS 1 , 1992 .
[31] S. Bates,et al. The Ecology of Harmful Diatoms , 2006 .
[32] G. Hallegraeff. A review of harmful algal blooms and their apparent global increase , 1993 .
[33] J. Siddorn,et al. How well can we forecast high biomass algal bloom events in a eutrophic coastal sea , 2008 .
[34] S. Menard. Applied Logistic Regression Analysis , 1996 .
[35] Judah Goldberg. Domoic acid in the benthic food web of Monterey Bay, California , 2003 .
[36] S. Swaminathan,et al. Development of statistical models for prediction of the neurotoxin domoic acid levels in the pennate diatom Pseudo-nitzschia pungens f. multiseries utilizing data from cultures and natural blooms. , 2006 .
[37] J. Neter,et al. Applied Linear Regression Models , 1983 .
[38] John P. Ryan,et al. Linking the physiology and ecology of Cochlodinium to better understand harmful algal bloom events: A comparative approach , 2008 .
[39] Richard P Stumpf,et al. Skill assessment for an operational algal bloom forecast system. , 2009, Journal of marine systems : journal of the European Association of Marine Sciences and Techniques.
[40] M. Busman,et al. Domoic acid production near California coastal upwelling zones, June 1998 , 2000 .
[41] Patrick Gentien,et al. The global, complex phenomena of harmful algal blooms , 2005 .
[42] M. Brzezinski,et al. Empirical models of toxigenic Pseudo-nitzschia blooms: Potential use as a remote detection tool in the Santa Barbara Channel , 2009 .
[43] Youlian Pan,et al. Production of Domoic Acid by Pseudo‐nitzschia multiseries Hasle, Affected by Lithium , 1998 .
[44] M. Brzezinski,et al. Mechanisms for nutrient delivery to the inner shelf: Observations from the Santa Barbara Channel , 2007 .
[45] N. Adams,et al. Concentration and dispersal of a Pseudo-nitzschia bloom in Penn Cove, Washington, USA. , 1998, Natural toxins.
[46] R. Addison,et al. Domoic acid and the eastern Canadian molluscan shellfish industry , 1989 .
[47] Francisco P. Chavez,et al. Seasonal fluctuations of temperature, salinity, nitrate, chlorophyll and primary production at station H3/M1 over 1989-1996 in Monterey Bay, California , 2000 .
[48] G. Johnsen,et al. Monitoring of harmful algal blooms along the Norwegian Coast using bio-optical methods , 2000 .
[49] M. Moline,et al. OPTICAL MONITORING AND FORECASTING SYSTEMS FOR HARMFUL ALGAL BLOOMS: POSSIBILITY OR PIPE DREAM? , 1999 .
[50] K. Bruland,et al. Domoic acid binds iron and copper: a possible role for the toxin produced by the marine diatom Pseudo-nitzschia , 2001 .
[51] P. Tett,et al. Seasonality of Pseudo-nitzschia spp. (Bacillariophyceae) in western Scottish waters , 2006 .
[52] P. Walz,et al. Domoic acid-producing diatom blooms in Monterey Bay, California: 1991-1993. , 1994, Natural toxins.
[53] P. Harrison,et al. Environmental conditions and phytoplankton dynamics associated with Pseudo-nitzschia abundance and domoic acid in the Juan de Fuca eddy , 2004 .
[54] M. T. Maldonado,et al. The effect of Fe and Cu on growth and domoic acid production by Pseudo-nitzschia multiseries and Pseudo‐nitzschia australis , 2002 .
[55] M. Silver,et al. From sanddabs to blue whales: the pervasiveness of domoic acid. , 2002, Toxicon : official journal of the International Society on Toxinology.
[56] T. Wynne,et al. Discerning resuspended chlorophyll concentrations from ocean color satellite imagery , 2006 .