Survey of Antibiotic-producing Bacteria Associated with the Epidermal Mucus Layers of Rays and Skates. Frontiers in Microbiology, 8, Article 1050
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Sites of Immune Cell Production in Elasmobranch Fishes: Lymphomyeloid Tissues and Organs. In S.L. Smith, R.B. Sim, M.F. Flajnik (Eds.) Immunobiology of the Shark (pp. 79–88). CRC Press
Leukocyte Function in Elasmobranch Species: Phagocytosis, Chemotaxis, and Cytotoxicity. In S.L. Smith, R.B. Sim, M.F. Flajnik (Eds.) Immunobiology of the Shark (pp. 105–122). CRC Press
In Vitro Culture of Elasmobranch Cells. In S.L. Smith, R.B. Sim, M.F. Flajnik (Eds.) Immunobiology of the Shark (pp. 255–266). CRC Press
Epigonal Conditioned Media from Bonnethead Shark, Sphyrna tiburo, Induces Apoptosis in a T-Cell Leukemia Cell Line, Jurkat E6-1. Marine Drugs, 11(9), 3224–3257
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Recent Advances in Elasmobranch Immunology. In J.C. Carrier, J.A. Musick, & M.R. Heithaus (Eds.), Biology of Sharks and their Relatives (2th ed., pp. 403–422). CRC Press, Boca Raton, Florida
Electrosensory ampullary organs are derived from lateral line placodes in cartilaginous fishes. Development, 139, 3142–3146
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Normal embryonic development in the clearnose skate, Raja eglanteria, with experimental observations on artificial insemination. Environmental Biology of Fishes, 80(2–3), 239–255
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In vivo exposure of clearnose skates, Raja eglanteria, to ionising X-radiation: Acute effects on the peripheral blood, spleen, and epigonal and Leydig organs. Fish & Shellfish Immunology, 23(2), 401–418
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Nitric oxide production by nurse shark (Ginglymostoma cirratum) and clearnose skate (Raja eglanteria) peripheral blood leucocytes. Fish & Shellfish Immunology, 20(1), 40–46
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Elasmobranch immune cells as a source of novel tumor cell inhibitors: Implications for public health. Integrative and Comparative Biology: 46: 1072–1081
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Analysis of the antibiotic properties of the epidermal mucus of the Atlantic stingray, Dasyatis sabina, conferred by associated bacterial symbionts [Abstract]. American Elasmobranch Society 21th Annual Meeting, Tampa, Florida
Further characterization of tumor cell growth inhibitory activity in epigonal conditioned medium (ECM) from bonnethead shark, Sphyrna tiburo [Abstract]. American Elasmobranch Society 21th Annual Meeting, Tampa, Florida
In vivo exposure of clearnose skates, Raja eglanteria, to ionizing X-radiation: acute effects on the thymus. Developmental and Comparative Immunology, 29(4), 315–331
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The Immune System of Sharks, Skates, and Rays. In J.C. Carrier, J.A. Musick, & M.R. Heithaus (Eds.), Biology of Sharks and their Relatives (1th ed., pp. 369–398). CRC Press, Boca Raton, Florida
Chapter 23: Elasmobranch Hematology: Identification of Cell Types and Practical Applications. In M. Smith, D. Warmolts, D. Thoney, & R. Hueter (Eds.), The Elasmobranch Husbandry Manual: Captive Care of Sharks, Rays and their Relatives (pp. 307–323). Special Publication of the Ohio Biological Survey
Evolutionary origins of lymphocytes: mapping emergence of T-cell and B-cell transcriptional networks in early vertebrates [Abstract]. American Elasmobranch Society 19th Annual Meeting, Manaus, Brazil
Ontogenetic expression of lymphocyte-specific genes implicate unique lymphoid tissues in generating elasmobranch immune repertoire [Abstract]. American Elasmobranch Society 19th Annual Meeting, Manaus, Brazil
Dexamethasone-induced apoptosis in immune cells from peripheral circulation and lymphomyeloid tissues of juvenile clearnose skates, Raja eglanteria. Developmental and Comparative Immunology, 26(7), 623–633
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Preliminary investigations on the effects of exposure to the endocrine-disrupting compound 1,1,1-trichloro-2,2-bis(p-chlorophenyl)ethane (DDT) on clearnose skate Raja eglanteria development [Abstract]. American Elasmobranch Society 16th Annual Meeting, 14–20 June 2000, La Paz, Mexico
Preliminary evaluation of tumor cell growth inhibition by conditioned media from in vitro cultures of nurse shark (Ginglymostoma cirratum) and clearnose skate (Raja eglanteria) immune cells [Abstract]. American Elasmobranch Society 16th Annual Meeting, 14–20 June 2000, La Paz, Mexico
Alterations in serum steroid concentrations in the clearnose skate, Raja eglanteria: correlations with season and reproductive status. Journal of Experimental Zoology, 284(5), 575–585
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Response properties and biological function of the skate electrosensory system during ontogeny. Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology, 183(1), 87–99
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Litter variation in the Atlantic guitarfish (Rhinobatidae: Rhinobatos lentiginosus) with comments on distribution in the Gulf of Mexico. Southwestern Naturalist, 43(4), 501–504
Comparative phagocytic and pinocytic activities of leucocytes from peripheral blood and lymphomyeloid tissues of the nurse shark (Ginglymostoma cirratum Bonaterre) and the clearnose skate (Raja eglanteria Bosc). Fish & Shellfish Immunology, 8(3), 197–215
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Hypotonic Stress Induces Translocation of the Osmolyte Channel Protein pICln in Embryonic Skate (Raja eglanteria) Heart. Journal of Experimental Zoology, 277, 460–463
Identification of potential B-lymphocytes and T-lymphocytes from the clearnose skate, Raja eglanteria, using RNA probes [Abstract]. American Elasmobranch Society 13th Annual Meeting, 26 June–2 July 1997, Seattle, Washington
Correlates of serum hormone concentrations and reproductive events throughout the year in captive and wild caught clearnose skates, Raja eglanteria [Abstract]. American Elasmobranch Society 13th Annual Meeting, 26 June–2 July 1997, Seattle, Washington
Preliminary investigation of cell proliferation and programmed cell death in elasmobranch thymus [Abstract]. American Elasmobranch Society 13th Annual Meeting, 26 June–2 July 1997, Seattle, Washington
Development of the lymphomyeloid system in the Clearnose skate, Raja eglanteria [Abstract]. American Elasmobranch Society 13th Annual Meeting, 26 June–2 July 1997, Seattle, Washington
Embryonic development in the clearnose skate (Raja eglanteria) [Abstract]. American Elasmobranch Society 12th Annual Meeting, June 13–19,1996 New Orleans, Louisiana, U.S.A.
Response properties and function of the skate electrosensory system during ontogeny [Abstract]. American Elasmobranch Society 12th Annual Meeting, June 13–19,1996 New Orleans, Louisiana, U.S.A.
The immune system of the clearnose skate, Raja eglanteria [Abstract]. American Elasmobranch Society 12th Annual Meeting, June 13–19,1996 New Orleans, Louisiana, U.S.A.
Acute effects of total body irradiation on juvenile clearnose skates, Raja eglanteria [Abstract]. American Elasmobranch Society 12th Annual Meeting, June 13–19,1996 New Orleans, Louisiana, U.S.A.
The Elasmobranch Thymus: Anatomical, Histological, and Preliminary Functional Characterization. Journal of Experimental Zoology, 273, 342–354
The role of anion channels in osmotically activated taurine release from embryonic skate (Raja eglanteria) heart. Journal of Experimental Biology, 198(12), 2635–2637
The absence of a photopic influence on the refractive development of the embryonic eye of the clearnose skate (Raja eglanteria). Vision Research, 35(12), 1675–1678
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Triploidy in a Nurse Shark, Ginglymostoma cirratum. Copeia, 1994(3), 825–827
Embryonic Development of the Cornea in the Eye of the Clearnose Skate, Raja eglanteria: I. Stromal Development in the Absence of an Endothelium. Journal of Experimental Zoology, 269, 263–276
Microscopic structure of the olfactory organ of the clearnose skate, Raja eglanteria. Anatomy and Embryology, 190(3), 211–230
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Artificial insemination in the clearnose skate, Raja eglanteria [Abstract]. American Elasmobranch Society 10th Annual Meeting, 2.–8. June 1994, University of Southern California, Los Angeles
Preliminary biochemical analysis of histotroph secretions from the cownose ray Rhinoptera bonasus and the atlantic stingray Dasyatis sabina, with observations on the uterine villi from R. bonasus [Abstract]. American Elasmobranch Society 10th Annual Meeting, 2.–8. June 1994, University of Southern California, Los Angeles
Comparative histology and cytochemistry of the spleen and thymus of aves, mammals, and elasmobranchs [Abstract]. American Elasmobranch Society 10th Annual Meeting, 2.–8. June 1994, University of Southern California, Los Angeles
Taurine transport characteristics of the embryonic skate (Raja eglanteria) heart. Journal of Experimental Biology, 182, 291–295
Preliminary Observations on the Effects of Selenate on the Development of the Embryonic Skate, Raja eglanteria. Transactions of the Kansas Academy of Science, 96(1/2), 62–68
Flow cytometric DNA analysis of nurse shark, Ginglymostoma cirratum (Bonaterre) and clearnose skate, Raja eglanteria (Bosc) peripheral red blood cells. Journal of Fish Biology, 41(1), 123–129
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Isolation and characterization of fatty acid binding protein in the liver of the nurse shark, Ginglymostoma cirratum. Comparative Biochemistry and Physiology – Part A, Physiology, 98(2), 355–362
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Optical development of the ocular lens of an elasmobranch, Raja eglanteria. Vision Research, 31(3), 373–382
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Growth rates in the nurse shark, Ginglymostoma cirratum. Copeia, 1990(3), 686–692
Rate of Tooth Replacement in the Nurse Shark, Ginglymostoma cirratum. Copeia, 1990(1), 182–191
Taurine accumulation by the heart of embryonic skates, Raja eglanteria. Journal of Experimental Biology, 150, 449–452
In vitro metabolism of the pro-carcinogen aflatoxin B1 by liver preparations of the calf, nurse shark and clearnose skate. Comparative Biochemistry and Physiology – Part C, Comparative Pharmacology, 94(2), 447–453
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A comparative study of monooxygenase activity in elasmobranchs and mammals: activation of the model pro-carcinogen aflatoxin B1 by liver preparations of calf, nurse shark and clearnose skate. Comparative Biochemistry and Physiology – Part C, Comparative Pharmacology, 82(2), 255–257
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Mating behavior, egg deposition, incubation period, and hatching in the clearnose skate, Raja eglanteria. Environmental Biology of Fishes, 13(3), 161–171
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Determination of ceruloplasmin and other copper transport ligands in the blood sera of the nurse shark and clearnose skate. Comparative Biochemistry and Physiology – Part B, Comparative Biochemistry, 77(4), 779–783
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