Wilson, Jonathan M.; Pierre Laurent (2002). "Fish gill morphology: inside out". Journal of Experimental Zoology. 293 (3): 192–213. doi:10.1002/jez.10124. PMID12115897.
Patterson, Joshua; Charlotte Bodinier; Christopher Green (2012). "Effects of low salinity media on growth, condition, and gill ion transporter expression in juvenile Gulf killifish, Fundulus grandis". Comparative Biochemistry and Physiology A. 161 (4): 415–421. doi:10.1016/j.cbpa.2011.12.019. PMID22245490.
Brown, Charles A.; Craig T. Gothreaux; Christopher C. Green (2011). "Effects of temperature and salinity during incubation on hatching and yolk utilization of Gulf killifish Fundulus grandis embryos". Aquaculture. 315 (3–4): 335–339. Bibcode:2011Aquac.315..335B. doi:10.1016/j.aquaculture.2011.02.041.
Gothreaux, C.T.; C.C. Green (2012). "Effects of Shading on the Reproductive Output and Embryo Viability of Gulf Killifish". North American Journal of Aquaculture. 74 (2): 266–272. Bibcode:2012NAJA...74..266G. doi:10.1080/15222055.2012.672368.
Love, Joseph W.; Bernard B. Rees (2001). "Seasonal differences in hypoxia tolerance in Gulf killifish, Fundulus grandis (Fundulidae)". Environmental Biology of Fishes. 63 (1): 103–115. doi:10.1023/a:1013834803665. S2CID33280697.
Harrington, R. W. Jr; E. S. Harrington (1961). "Food selection among fishes invading a high subtropical salt marsh: from onset of flooding through the progress of a mosquito brood". Ecology. 42 (4): 646–666. Bibcode:1961Ecol...42..646H. doi:10.2307/1933496. JSTOR1933496.
Oziolor, E. M.; Bigorgne, E.; Aguilar L.; Usenko, S.; Matson, C. W. (2014). "Evolved resistance to PCB- and PAH-induced cardiac teratogenesis, and reduced CYP1A activity in Gulf killifish (Fundulus grandis) populations from the Houston Ship Channel, Texas". Aquatic Toxicology. 150 (250): 210–219. Bibcode:2014AqTox.150..210O. doi:10.1016/j.aquatox.2014.03.012. PMID24699180.
Oziolor, E. M.; Dubansky, B.; Burggren, W. W.; Matson, C. W. (2016). "Cross-resistance in Gulf killifish (Fundulus grandis) populations resistant to dioxin-like compounds". Aquatic Toxicology. 175 (175): 222–231. Bibcode:2016AqTox.175..222O. doi:10.1016/j.aquatox.2016.03.019. PMID27064400.
Charles A. Brown; Fernando Galvez; Christopher C. Green (2012). "Embryonic developments and metabolic costs in the Gulf killifish Fundulus grandis exposed to varying environmental salinities". Fish Physiology and Biochemistry. 38 (4): 1071–1082. doi:10.1007/s10695-011-9591-z. PMID22252334. S2CID254515195.
Brown, Charles A.; Craig T. Gothreaux; Christopher C. Green (2011). "Effects of temperature and salinity during incubation on hatching and yolk utilization of Gulf killifish Fundulus grandis embryos". Aquaculture. 315 (3–4): 335–339. Bibcode:2011Aquac.315..335B. doi:10.1016/j.aquaculture.2011.02.041.
Gothreaux, C.T.; C.C. Green (2012). "Effects of Shading on the Reproductive Output and Embryo Viability of Gulf Killifish". North American Journal of Aquaculture. 74 (2): 266–272. Bibcode:2012NAJA...74..266G. doi:10.1080/15222055.2012.672368.
Harrington, R. W. Jr; E. S. Harrington (1961). "Food selection among fishes invading a high subtropical salt marsh: from onset of flooding through the progress of a mosquito brood". Ecology. 42 (4): 646–666. Bibcode:1961Ecol...42..646H. doi:10.2307/1933496. JSTOR1933496.
Oziolor, E. M.; Bigorgne, E.; Aguilar L.; Usenko, S.; Matson, C. W. (2014). "Evolved resistance to PCB- and PAH-induced cardiac teratogenesis, and reduced CYP1A activity in Gulf killifish (Fundulus grandis) populations from the Houston Ship Channel, Texas". Aquatic Toxicology. 150 (250): 210–219. Bibcode:2014AqTox.150..210O. doi:10.1016/j.aquatox.2014.03.012. PMID24699180.
Oziolor, E. M.; Dubansky, B.; Burggren, W. W.; Matson, C. W. (2016). "Cross-resistance in Gulf killifish (Fundulus grandis) populations resistant to dioxin-like compounds". Aquatic Toxicology. 175 (175): 222–231. Bibcode:2016AqTox.175..222O. doi:10.1016/j.aquatox.2016.03.019. PMID27064400.
Harrington, R. W. Jr; E. S. Harrington (1961). "Food selection among fishes invading a high subtropical salt marsh: from onset of flooding through the progress of a mosquito brood". Ecology. 42 (4): 646–666. Bibcode:1961Ecol...42..646H. doi:10.2307/1933496. JSTOR1933496.
Wilson, Jonathan M.; Pierre Laurent (2002). "Fish gill morphology: inside out". Journal of Experimental Zoology. 293 (3): 192–213. doi:10.1002/jez.10124. PMID12115897.
Patterson, Joshua; Charlotte Bodinier; Christopher Green (2012). "Effects of low salinity media on growth, condition, and gill ion transporter expression in juvenile Gulf killifish, Fundulus grandis". Comparative Biochemistry and Physiology A. 161 (4): 415–421. doi:10.1016/j.cbpa.2011.12.019. PMID22245490.
Oziolor, E. M.; Bigorgne, E.; Aguilar L.; Usenko, S.; Matson, C. W. (2014). "Evolved resistance to PCB- and PAH-induced cardiac teratogenesis, and reduced CYP1A activity in Gulf killifish (Fundulus grandis) populations from the Houston Ship Channel, Texas". Aquatic Toxicology. 150 (250): 210–219. Bibcode:2014AqTox.150..210O. doi:10.1016/j.aquatox.2014.03.012. PMID24699180.
Oziolor, E. M.; Dubansky, B.; Burggren, W. W.; Matson, C. W. (2016). "Cross-resistance in Gulf killifish (Fundulus grandis) populations resistant to dioxin-like compounds". Aquatic Toxicology. 175 (175): 222–231. Bibcode:2016AqTox.175..222O. doi:10.1016/j.aquatox.2016.03.019. PMID27064400.
Charles A. Brown; Fernando Galvez; Christopher C. Green (2012). "Embryonic developments and metabolic costs in the Gulf killifish Fundulus grandis exposed to varying environmental salinities". Fish Physiology and Biochemistry. 38 (4): 1071–1082. doi:10.1007/s10695-011-9591-z. PMID22252334. S2CID254515195.
Love, Joseph W.; Bernard B. Rees (2001). "Seasonal differences in hypoxia tolerance in Gulf killifish, Fundulus grandis (Fundulidae)". Environmental Biology of Fishes. 63 (1): 103–115. doi:10.1023/a:1013834803665. S2CID33280697.
Charles A. Brown; Fernando Galvez; Christopher C. Green (2012). "Embryonic developments and metabolic costs in the Gulf killifish Fundulus grandis exposed to varying environmental salinities". Fish Physiology and Biochemistry. 38 (4): 1071–1082. doi:10.1007/s10695-011-9591-z. PMID22252334. S2CID254515195.