Matochik JA, Sipos ML, Nyby JG, Barfield RJ (1994) Intracranial androgenic activation of male-typical behaviors in house mice: Motivation versus performance.
Behav Brain Res 60:141–149.
McFadden D (1998) Sex differences in the auditory system. Dev Neuropsychol
14:261–298.
McGinnis MY, Dreifuss RM (1989) Evidence for a role of testosterone–androgen
receptor interactions in mediating masculine sexual behavior in male rats.
Endocrinology 124:618–626.
McGinnis MY, Kahn DF (1997) Inhibition of male sexual behavior by intracranial
implants of the protein synthesis inhibitor anisomycin into the medial preoptic
area of the rat. Horm Behav 31:15–23.
Mendonça MT, Light P, Ryan MJ, Barnes R (1985) Changes in hormone levels in
relation to breeding behavior in male bullfrogs (Rana catesbeiana) at the individual and population levels. Gen Comp Endocrinol 58:270–279.
Metzdorf R, Gahr M, Fusani L (1999) Distribution of aromatase, estrogen receptor,
and androgen receptor mRNA in the forebrain of songbirds and nonsongbirds.
J Comp Neurol 407:115–129.
Moore FL (1978) Differential effects of testosterone plus DHT on male courtship
of castrated newts, Taricha granulosa. Horm Behav 11:202–208.
Moore FL (1987) Reproductive endocrinology of amphibians. In: Chester-Jones I,
Ingleton PM, Phillips JG (eds) Fundamentals of Comparative Vertebrate
Endocrinology. New York: Plenum Press, pp. 207–221.
Moore FL, Evans SJ (1999) Steroid hormones use non-genomic mechanisms to
control brain functions and behaviors: A review of evidence. Brain Behav Evol
54:41–50.
Moore FL, Zoeller RT (1979) Endocrine control of amphibian sexual behavior: Evidence for a neurohormone–androgen interaction. Horm Behav 13:207–213.
Morton ML, Peterson LE, Burns DM, Allan N (1990) Seasonal and age-related
changes in plasma testosterone levels in mountain white-crowned sparrows.
Condor 92:166–173.
Narins PM, Capranica RR (1976) Sexual differences in the auditory system of the
tree frog Eleutherodactylus coqui. Science 192:378–380.
Neary TJ, Wilczynski W (1986) Auditory pathways to the hypothalamus in ranid
frogs. Neurosci Lett 71:142–146.
Nespor AA, Lukazewicz MJ, Dooling RJ, Ball GF (1996) Testosterone induction of
male-like vocalizations in female budgerigars (Melopsittacus undulatus). Horm
Behav 30:162–169.
Nottebohm F (1980) Testosterone triggers growth of brain vocal control nuclei in
adult female canaries. Brain Res 189:429–436.
Nottebohm F (1981) A brain for all seasons: Cyclical anatomical changes in song
control nuclei of the canary brain. Science 214:1368–1370.
Nottebohm F, Arnold AP (1976) Sexual dimorphism in vocal control areas of the
songbird brain. Science 194:211–213.
Nottebohm F, Nottebohm ME, Crane LA, Wingfield JC (1987) Seasonal changes in
gonadal hormone levels of adult male canaries and their relation to song. Behav
Neural Biol 47:197–211.
Nowicki S, Ball GF (1989) Testosterone induction of song in photosensitive and
photorefractory male sparrows. Horm Behav 23:514–525.
6. Hormonal Control of Communication
319
Behav Brain Res 60:141–149.
McFadden D (1998) Sex differences in the auditory system. Dev Neuropsychol
14:261–298.
McGinnis MY, Dreifuss RM (1989) Evidence for a role of testosterone–androgen
receptor interactions in mediating masculine sexual behavior in male rats.
Endocrinology 124:618–626.
McGinnis MY, Kahn DF (1997) Inhibition of male sexual behavior by intracranial
implants of the protein synthesis inhibitor anisomycin into the medial preoptic
area of the rat. Horm Behav 31:15–23.
Mendonça MT, Light P, Ryan MJ, Barnes R (1985) Changes in hormone levels in
relation to breeding behavior in male bullfrogs (Rana catesbeiana) at the individual and population levels. Gen Comp Endocrinol 58:270–279.
Metzdorf R, Gahr M, Fusani L (1999) Distribution of aromatase, estrogen receptor,
and androgen receptor mRNA in the forebrain of songbirds and nonsongbirds.
J Comp Neurol 407:115–129.
Moore FL (1978) Differential effects of testosterone plus DHT on male courtship
of castrated newts, Taricha granulosa. Horm Behav 11:202–208.
Moore FL (1987) Reproductive endocrinology of amphibians. In: Chester-Jones I,
Ingleton PM, Phillips JG (eds) Fundamentals of Comparative Vertebrate
Endocrinology. New York: Plenum Press, pp. 207–221.
Moore FL, Evans SJ (1999) Steroid hormones use non-genomic mechanisms to
control brain functions and behaviors: A review of evidence. Brain Behav Evol
54:41–50.
Moore FL, Zoeller RT (1979) Endocrine control of amphibian sexual behavior: Evidence for a neurohormone–androgen interaction. Horm Behav 13:207–213.
Morton ML, Peterson LE, Burns DM, Allan N (1990) Seasonal and age-related
changes in plasma testosterone levels in mountain white-crowned sparrows.
Condor 92:166–173.
Narins PM, Capranica RR (1976) Sexual differences in the auditory system of the
tree frog Eleutherodactylus coqui. Science 192:378–380.
Neary TJ, Wilczynski W (1986) Auditory pathways to the hypothalamus in ranid
frogs. Neurosci Lett 71:142–146.
Nespor AA, Lukazewicz MJ, Dooling RJ, Ball GF (1996) Testosterone induction of
male-like vocalizations in female budgerigars (Melopsittacus undulatus). Horm
Behav 30:162–169.
Nottebohm F (1980) Testosterone triggers growth of brain vocal control nuclei in
adult female canaries. Brain Res 189:429–436.
Nottebohm F (1981) A brain for all seasons: Cyclical anatomical changes in song
control nuclei of the canary brain. Science 214:1368–1370.
Nottebohm F, Arnold AP (1976) Sexual dimorphism in vocal control areas of the
songbird brain. Science 194:211–213.
Nottebohm F, Nottebohm ME, Crane LA, Wingfield JC (1987) Seasonal changes in
gonadal hormone levels of adult male canaries and their relation to song. Behav
Neural Biol 47:197–211.
Nowicki S, Ball GF (1989) Testosterone induction of song in photosensitive and
photorefractory male sparrows. Horm Behav 23:514–525.
6. Hormonal Control of Communication
319
