ABSTRACTS
Note: Asterisk indicates undergraduate student author, bold indicates presenting author.
Misiak KL*, Dunlap KJ*, Rodriguez SS*, and Julian D (2008). Tolerance of a choanoflagellate to environmental stressors. Poster at Experimental Biology Annual Meeting, San Diego (April 2008).
Ortega JA*, Ortega JM*, and Julian D (2008). Hypotaurine protects against H2S-induced oxidative stress and cell death in erythrocytes from an H2S-tolerant marine worm. Poster at Experimental Biology Annual Meeting, San Diego (April 2008).
Ortega JM*, Ortega JA*, Stein JR, and Julian D (2008). H2S toxicity via oxidative damage in erythrocytes of a sulfide-tolerant marine invertebrate. Poster at Experimental Biology Annual Meeting, San Diego (April 2008).
Predmore BL, Alendy MJ*, Olson KR and Julian D (2008). Inhibition of NO, KATP and prostanoids decreases hypoxia-induced, but not H2S-induced, contractions in rat aorta. Oral presentation at Experimental Biology Annual Meeting, San Diego (April 2008).
Julian D, Rollins A* and Predmore BL* (2008). Mitochondrial movement is random and increased by hyposalinity in coelomocytes from an estuarine worm. Poster presentation at Experimental Biology Annual Meeting, San Diego (April 2008).
Andrzejewski JE*, Briggs LE*, Joyner-Matos JL, Julian D. (2006). Functional responses to high temperature, hypoxia, and hyposalinity in the stress-tolerant clam Mercenaria mercenaria. Integrative and Comparative Biology 45(6):1106.
Joyner-Matos JL*, Chapman LJ and Julian D. Elevated dissolved oxygen level influences fingernail clam (Sphaerium sp.) stress protein expression and population distribution in a Ugandan papyrus swamp. Integrative and Comparative Biology 45(6):1022.
Stein J* Hofer T, Leeuwenburgh C and Julian D. Cellular oxidative stress in hydrogen sulfide-exposed erythrocytes from a sulfide-tolerant marine polychaete. Integrative and Comparative Biology 45(6):1198.
Spertus M* and Julian D. Cellular oxidative stress during in vitro exposure to multiple abiotic stressors in polychaete coelomocytes. Integrative and Comparative Biology 45(6):1197.
Hance J* and Julian D (2005). Hydrogen sulfide induces cell death both in vitro and in vivo in coelomocytes from a mudflat polychaete worm. FASEB Journal 19 (5): Part 2 Suppl. S., A1672-A1672.
Joyner-Matos JL* Downs CA and Julian D (2005). Stress protein expression in the surf clam Donax variabilis following exposure to normoxia, hypoxia, hyperoxia, and hydrogen sulfide. FASEB Journal 19 (5): Part 2 Suppl. S., A1210-A1211.
Patel SB*, Wohlgemuth SE, Julian D (2003). Mitochondrial injury induced by sulfide exposure in coelomyocytes from a sulfide-adapted marine invertebrate. Integrative and Comparative Biology 43 (6): 886-886.
Joyner-Matos JL, Bhalla R‡, Downs CA, Julian D (2003). Antioxidant protein expression during anoxia-reoxygenation in marine polychaete (Glycera dibranchiata) coelomocytes. Integrative and Comparative Biology 43 (6): 886-886.
Hance JM*, Wohlgemuth SE, Julian D (2003). Survival of coelomocytes from the intertidal polychaete Glycera dibranchiata during exposure to H2S and the effects of MPTP inhibitors to reduce cytotoxicity. Integrative and Comparative Biology 43 (6): 886-886.
Goodwin CR* and Julian D (2002). Free radical scavengers protect cultured cells from hydrogen sulfide exposure. The Toxicologist 66, Number S-1, 96-96.
Osovitz CJ* and Julian D (2001). Burrow irrigation rate of Urechis caupo in its natural habitat. American Zoologist 41, 1547-1547.
Wohlgemuth SE, Julian D and Arp AJ (2001). Induction of sulfide-oxidizing bodies in the epidermis of the annelid worm Branchioasychis americanus after sulfide exposure. American Zoologist 41, 1628-1628.
Goodwin CR*, Denzel SA*, Aman SA*, Wohlgemuth SE and Julian D (2001). Free radical scavengers decrease toxic effects of hydrogen sulfide in vitro. American Zoologist 41, 1458-1459.
Statile J, Arp AJ and Julian D (1999). Production of H2S in marine invertebrate tissues. Comparative Biochemistry and Physiology 124A: S146.
Julian D, Gaill F, Arp AJ and Fisher CR (1999). Can roots be used for hydrogen sulfide uptake by cold seep vestimentiferans? American Zoologist 38 (5).
Julian D, Roepke T*, Statile J*, Wood E* and Arp AJ (1998). Sodium nitroprusside potentiates hydrogen sulfide-induced muscle contractions in a marine invertebrate. FASEB Journal 12(5): A1037-A1037.
Julian D, Lang OA* and Arp AJ (1998). Cytochrome-independent hydrogen sulfide toxicity in muscle. American Zoologist 37(5): 123A.
Julian D and Korenbrot JI (1996). Cell proliferation in the mature inner nuclear layer of the fish retina. Investigative Ophthalmology and Visual Science 37 (3): 3163-3163.
Fisher CR, Urcuyo IA, Julian D, and Arp AJ (1996). Cold seep vestimentiferans live very long lives with deep roots. American Zoologist 35 (5).
Fisher CR, Urcuyo IA, Julian D and Scott KM (1996). Hydrothermal vent and cold seep vestimentiferan tube worms: very similar symbiotic associations, very different physiological ecologies. Symbiosis 96: 30.
Passman WE*, Julian D and Arp AJ (1994). Regulation of oxygen uptake across two respiratory surfaces in the marine worm Urechis caupo. The Physiologist 37:88A.
Judd JR, Bogan M, Christensen R, Encomio V, Julian D, Manika J, Passman WE, Seto S and Arp AJ (1993). Abiotic and biotic factors limiting distribution of Urechis caupo. American Zoologist 33:47A.
Passman WE, Julian D and Arp AJ (1993). Neuromuscular activity of Urechis caupo tissues in vitro shows low sulfide sensitivity. American Zoologist 33:96A.
Julian D, Menon JG and Arp AJ (1991). Structural and functional adaptations to hypoxia and sulfide in Urechis caupo. American Zoologist 31:73A.
Julian D, Mansour S* and Arp AJ (1990). The effect of hindgut inflation on oxygen uptake and sulfide diffusion in Urechis caupo. American Zoologist 30:69A.
Arp AJ, Hansen BM and Julian D (1989). Seasonal sulfide concentrations of the burrow habitat of Urechis caupo: hematin mediated sulfide tolerance in situ. American Zoologist 29: 69A.
Julian D (1989). The permeability of Urechis caupo tissues to hydrogen sulfide. American Zoologist 29: 69A.
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