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The Journal of Endocrinology|December 1, 1985
Circadian rhythm of melatonin in the pineal gland of the Japanese quail (Coturnix coturnix japonica)J F Cockrem, B K FollettProceedings. Biological Sciences|January 23, 1995
Thyroidectomy abolishes seasonal testicular cycles of Soay ramsT J Parkinson, B K FollettThe Journal of Endocrinology|August 1, 1978
Rate of testicular maturation, in relation to gonadotrophin and testosterone levels, in quail exposed to various artificial photoperiods and to natural daylengthsB K Follett, S L MaungThe Journal of Experimental Zoology|December 1, 1984
Photorefractoriness in Japanese quail: possible involvement of the thyroid glandB K Follett, T J NichollsPoultry Science|August 1, 1987
Circulating levels of luteinizing hormone and androgen in mature male Japanese quail over 24 hoursM A Ottinger, B K FollettThe Journal of Endocrinology|November 1, 1985
Influences of thyroidectomy and thyroxine replacement on photoperiodically controlled reproduction in quailB K Follett, T J NichollsJournal of Biological Rhythms|January 1, 1991
Photoperiodic induction in quail as a function of the period of the light-dark cycle: implications for models of time measurementB K Follett, A S Pearce-KellyJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|January 1, 1996
The photoperiodic clock is blackheaded buntings (Emberiza melanocephala) is mediated by a self-sustaining circadian systemV Kumar, N Jain, B K FollettJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|November 1, 1992
Circadian nature of the photoperiodic clock in Japanese quailB K Follett, V Kumar, T S JussThe Journal of Endocrinology|March 1, 1975
The role of short days in the termination of photorefractoriness in female canaries (Serinus canarius)E Steel, B K Follett, R A HindePageof 28