Yang Z B,Hodgkiss I J. Hong Kong\\'s worst "red tide"-causative factors reflected in a phytoplankton study at Port Shelter station in 1998[J]. Harmful Algae, 2004,3: 149-161.
Quilliam M A. The role of chromatography in the hunt for red tide toxins[J]. Journal of Chromatography A,2003,1000 : 527-548.
[7]
Fliermans C, Schmidt E. Immunofluorescence for autoecological study of a unicellular bluegreen alga[J].Journal of Phycology, 1977,13:364-368.
[8]
Anderson D M, Keafer B A, Kulis D M, et al. An immunofluorescent survey of the brown tide chrysophyte Aureococcus anophagefferens along the northeast coast of the United States[J].Journal of Plankton Research, 1993,15(5) : 563-580.
[9]
Chang F H, Garthwaite I, Anderson D M, et al. Immunofluorescent detection of a PSP-producing dinoflagellate, Alexandrlum minutum, from Bay of Plenty, New Zealand[J]. New Zealand Journal of Marine and Freshwater Research, 1999,33 (4) : 533- 543.
[10]
Cho E S,Costas E. Rapid monitoring for the potentially ichthyotoxic dinoflagellate Cochlodinium polykrikoides in Korean coastal waters using fluorescent probe tools[J]. Journal of Plankton Research,2004,26(2) : 175-180.
[11]
Lin S,Feinstein T N, Zhang H, et al. Development of an immunofluorescence technique for detecting Pfiesteria piscicida [J]. Harmful Algae, 2003,2(3) :223-231.
[12]
Vrieling E G, Anderson D M. Immunofluorescence in phytoplankton research: applications and potential[J]. Journal of Phycology, 1996,32 (1) : 1-16.
[13]
Costas E, Lopez-Rodas V. Enumeration and separation of the toxic dinoflagellate Alexandrium minutum from natural samples using immunological procedures with blocking antibodies[J]. Journal of Experimental Marine Biology and Ecology,1996,198(1) :81-87.
[14]
Aguilera A, Gonzalez Gil S, Keafer B A, et al. Immunomagnetic separation of cells of the toxic dinoflagellate Alexandrium fundyense from natural plankton samples [J]. Marine Ecology Progress Series, 1997,143 : 255-269.
[15]
Lopez-Rodas V, Costas E. Immunochemical characterization of morphospecies and strains of Prorocentrum (Dinophyceae) [J]. Journal of Experimental Mariae Biology and Ecology, 1999,238(2) : 293-308.
[16]
Marco M P,Gee S, Hammock B D. Immunochemical techniques for environmental analysis 1. Immunosensors [J]. Trends in Analytical Chemistry, 1995, 14(7) :341-350.
[17]
Marquette C A, Coulet P R, Blum L J. Semi-automated membrane based chemiluminescent immunosensor for flow injection analysis of okadaic acid in mussels[J]. Analytica Chimica Acta,1999,398:173-182.
[18]
Kumar A. Biosensors based on piezoelectric crystal detectors: Theory and application[J/OL], http://www. tms. org/pubs/journals/JOM/0010/Kumar/Kumar-0010. html.
[19]
Nakanishi K, Karube I, Hiroshi S, et al. Detection of the red tide-causing plankton Chattonella marina using a piezoelectric immunosensor [J]. Analytica Chimica Acta, 1996,325 (1-2):73-80.
[20]
Ishida Y,Karube I,Masao A, et al. Detection of the red tide-causing plankton Alexandriurn afflne by a piezoelectric immunosensor using a novel method of immobilizing antibodies[J]. Analytical Letters, 1996,29(8): 1 247-1 258.
[21]
Graf R,Schiesser M,Lussi A, et al. Coordinate regulation of secretory stress proteins(PSP/reg, PAP Ⅰ,PAP Ⅱ, and PAP Ⅲ) in the rat exocrine pancreas during experimental acute pancreatitis[J]. Journal of Surgical Research, 2002,105 : 136-144.
[22]
Imai I, Sugioka H, Nishitani G. Monitoring of DSP toxins in small-sized plankton fraction of seawater collected in Mutsu Bay, Japan, by ELISA method:relation with toxin contamination of scallop[J]. Marine Pollution Bulletin, 2003,47 : 114-117.
Caron D A,Dennett M R,Moran D M, et al. Development and application of a monoclonal-antibody technique for counting Aureococcus anophagefferens, an alga causing recurrent brown tides in the Mid-Atlantic United States[J]. Applied and Environmental Microbiology, 2003,69(9):5 492-5 502.
[25]
Xin Z,Yu Z,Wang T,et al. Identification and quantification of the toxic dinoflagellate Gymnodinium sp.with competitive enzyme-linked immunosorbent assay(cELISA) [J]. Harmful Algae, 2005,4(2): 297-307.
Vrieling E G,van de Poll W H, Vriezekolk G, et al.Immunoflow cytometricdetection of the ichthyotoxic dinoflagellates Gyrodinium aureolum and Gymnodinium nagasakiense: independence of physiological state[J]. Journal of Sea Research, 1997, 37(1-2) : 91-100.
[28]
Collier J L. Flow cytometry and the single cell in phyeology[J]. Journal of Phycology, 2000, 36 (4):1529-8817.
[29]
Vrieling E G, Peperzak L, Gieskes W W C, et al.Detection of the iehthyotoxic dinoflagellate Gyrodinium (cf.) aureolum and morphologically related Gyrodinium species using monoelonal antibodies: a specific immunological tool[J]. Marine Ecology Progress Series,1994 ,103(1-2) :165-174.
Mendoza H, Lopez-Rodas V ,Gonztiez-Gil S, et al.The use of polyclonal antisera and blocking of antibodies in the identification of marine dinoflagellates:species-specific and clone-specific antisera against Gymnodinium and Alexandrium[J]. Journal of Experimental Marine Biology and Ecology, 1995,186(1) :103-115.