Biology Reference
In-Depth Information
Dodd, M. H. I., & Dodd, J. M. (1976). The biology of metamorphosis. In B. Lofts (Ed.),
Physiology of amphibia , Vol. 3, (pp. 467-599). New York: Academic Press.
Doyle, J. M., &Whitemann, H. H. (2008). Paedomorphosis in Ambystoma talpoideum : Effects
of initial body size variation and density. Oecologia , 156 , 87-94.
Duellman, W. E., & Trueb, L. (1986). Biology of amphibians. New York: McGraw-Hill.
Dumeril, A. (1870). Quatrieme notice sur la menagerie des reptiles du Museum d'Histoire
Naturelle. Nouvelles Archives du Museum D'Histoire Naturelle De Paris , 5 , 47-60.
Dundee, H. A. (1957). Partial metamorphosis induced in Typhlomolge rathbuni . Copeia , 1957 ,
52-53.
Eagleson, G. W., &McKeown, B. A. (1980). T4-induced metamorphosis in Ambystoma grac-
ile (Baird) from two populations: The effects of aging and temperature. Biochemistry and
Experimental Biology , 16 , 111-126.
Emerson, E. T. (1905). General anatomy of Typhlomolge rathbuni . Proceedings of the Boston
Society of Natural History , 32 , 43-76.
Fahrmann, W. (1971a). Morphodynamics of the epidermis of the axolotl ( Siredon mexicanum
Shaw) under the influence of exogenously administered thyroxine. I. The epidermis of
neotenic axolotls. Zeitschrift fu¨r Mikroskopisch-Anatomische Forschung , 83 , 472-506.
Fahrmann, W. (1971b). Morphodynamics of the epidermis of the axolotl ( Siredon mexicanum
Shaw) under the influence of exogenously administered thyroxine. II. The epidermis
during metamorphosis. Zeitschrift fu¨r Mikroskopisch-Anatomische Forschung , 83 , 535-568.
Fahrmann, W. (1971c). Morphodynamics of the epidermis of the axolotl ( Siredon mexicanum
Shaw) under the influence of exogenously administered thyroxine. III. The epidermis of
the metamorphosed axolotl. Zeitschrift fu¨r Mikroskopisch-Anatomische Forschung , 84 , 1-25.
Fox, H. (1983). Changes in amphibian skin during larval development and metamorphosis.
In M. Balls &M. Bownes (Eds.), Metamorphosis. British society for developmental biology sym-
posium , Vol. 8, (pp. 59-87). Oxford: Clarendon Press.
Fox, H. (1984). Amphibian morphogenesis. Clifton, NJ: The Humana Press, Inc.
Furuya, F., Lu, C., Guigon, C. J., & Cheng, S. Y. (2009). Nongenomic activation of pho-
sphatidylinositol 3-kinase signaling by thyroid hormone receptors. Steroids , 74 , 628-634.
Galton, V. A. (1985). 3,5,3 0 -triiodothyronine receptors and thyroxine 5 0 -monodeiodinating
activity in thyroid hormone-insensitive Amphibia. General and Comparative Endocrinology ,
57 , 465-471.
Galton, V. A. (1991). Thyroid hormone receptors and iodothyronine deiodinases in the de-
veloping Mexican axolotl, Ambystoma mexicanum . General and Comparative Endocrinology ,
85 , 62-70.
Galton, V. A. (1992). The role of thyroid hormone in amphibian metamorphosis. Trends in
Endocrinology and Metabolism , 3 , 96-100.
Gancedo, B., Corpas, I., Alonso-Gomez, A. L., Delgado, M. J., Morreale de Excobar, G., &
Alonso-Bedate, M. (1992). Corticotropin-releasing factor stimulates metamorphosis and
increases thyroid hormone concentration in prometamorphic Rana perezi larvae. General
and Comparative Endocrinology , 87 , 6-13.
Gilbert, L. I., Tata, J. R., & Atkinson, B. G. (Eds.), (1996). Metamorphosis: Postembryonic repro-
gramming of gene expression in amphibians and insect cells . San Diego: Academic Press.
Goldschmidt, R. (1940). The material basis of evolution. New Haven, CT: Yale University
Press.
Gorbman, A. (1957). The thyroid gland of Typhlomolge rathbuni . Copeia , 1957 , 41-43.
Gould, S. J. (1977). Ontogeny and phylogeny. Cambridge, UK: Belkap Press.
Gould, S. J. (1981). Change in developmental timing as a mechanism of macroevolution. In
J. T. Bonner (Ed.), Evolution and development (pp. 333-346). Berlin, Germany: Springer-
Verlag.
Grant, M. P. (1930). The release of follicular colloid from the thyroid of Necturus maculosus
following heteroplastic anterior-pituitary implants. The Anatomical Record , 46 , 205-221.
Search WWH ::




Custom Search