Attia MA (1985). Neoplastic and nonneoplastic lesions in aging female rats with special reference to the functional morphology of the hyperplastic and neoplastic changes in the pituitary gland. Arch Toxicol57: 77-83.
2.
Barsoum NJ, Moore JD, Gough AW, Sturgess JM, De La Iglesia FA (1985). Morphofunctional investigations on spontaneous pituitary tumors in Wistar rats. Toxicol Pathol13: 200-208.
3.
Capen CC (1996). Functional and pathologic interrelationships of the pituitary gland and hypothalamus in animals. In: Monographs on Pathology of Laboratory Animals, Endocrine System, 2nd ed, Jones TC, Capen CC, Mohr U (eds). Springer-Verlag, Berlin, Heidelberg , pp 3-33.
4.
Chatelain A. , Dubois MP, Dupouy JP (1976). Hypothalamus and cytodifferentiation of the foetal pituitary gland. Study in vivo. Cell Tissue Res169: 335-344.
5.
Chatelain A. , Dupouy JP Dubois MP (1979). Ontogenesis of cells producing polypeptide hormones (ACTH, MSH, LPH, GH, prolactin) in the fetal hypophysis of the rat: Influence of the hypothalamus. Cell Tissue Res196: 409-427.
6.
Coates PJ, Doniach I., Wells C., Hale AC, Rees LH, Besser GM (1989). Peptides related to alpha-melanocyte-stimulating hormone are commonly produced by human pituitary corticotroph adenomas: No relationship with pars intermedia origin. J Endocrinol120: 531-536.
7.
El Etreby MF , Lorenz B., Habenicht UF (1988). Immunocytochemical studies on the pituitary gland and spontaneous pituitary tumors of Sprague-Dawley rats. Pathol Res Pract183: 645-650.
8.
McNicol AM (1986). A study of intermediate lobe differentiation in the human pituitary gland. J Pathol150: 169-173.
9.
Nagaya T., Kuwayama A., Seo H., Tsukamoto N., Matsui N., Sugita K. (1992). Endocrinological evaluation of ACTH-secreting pituitary microadenomas: Their location and alpha-melanocyte stimulating hormone immunoreactivity. J Neurosurg76: 944-947.
10.
Oishi Y., Matsumoto M., Yoshizawa K., Fujihira S., Tsubura A., Morii S. (1992). Spontaneous pituitary adenomas of the pars intermedia in mice and rats: Histopathological and immunocytochemical studies. J Toxicol Pathol5: 223-231.
11.
Peterson ME , Krieger DT, Drucker WD, Halmi NS (1982). Immunocytochemical study of the hypophysis in 25 dogs with pituitary-dependent hyperadrenocorticism . Acta Endocrinol101: 15-24.
12.
Satoh H., Kajimura T., Chen CJ, Yamada K., Furuhama K., Nomura M. (1997). Invasive pituitary tumors in female F344 rats induced by estradiol dipropionate. Toxicol Pathol25: 462-469.
13.
Satoh H., Kajimura T., Yoshikawa H., Oyamada T., Nomura M., Yoshikawa T. (1999). Characteristics of local invasion of spontaneous pituitary carcinoma in the F344 rat. J Toxicol Pathol12: 13-19.
14.
Wakai S., Fukushima T., Teramoto A., Sano K. ( 1981). Pituitary apoplexy: Its incidence and clinical significance . J Neurosurg55: 187-193.