Biology Reference
In-Depth Information
33. Everett JW, Sawyer CH (1950) A 24-hour periodicity in the “LH-release apparatus” of female
rats, disclosed by barbiturate sedation. Endocrinology 47(3):198-218
34. Alleva JJ, Waleski MV, Alleva FR (1971) A biological clock controlling the estrous cycle of
the hamster. Endocrinology 88(6):1368-1379
35. Fitzgerald K, Zucker I (1976) Circadian organization of the estrous cycle of the golden ham-
ster. Proc Natl Acad Sci U S A 73(8):2923-2927
36. Kriegsfeld LJ, Silver R (2006) The regulation of neuroendocrine function: timing is every-
thing. Horm Behav 49(5):557-574
37. Legan SJ, Karsch FJ (1975) A daily signal for the LH surge in the rat. Endocrinology
96(1):57-62
38. Legan SJ, Coon GA, Karsch FJ (1975) Role of estrogen as initiator of daily LH surges in the
ovariectomized rat. Endocrinology 96(1):50-56
39. Christian CA, Mobley JL, Moenter SM (2005) Diurnal and estradiol-dependent changes in
gonadotropin-releasing hormone neuron fi ring activity. Proc Natl Acad Sci U S A
102(43):15682-15687
40. de la Iglesia HO, Schwartz WJ (2006) Minireview: timely ovulation: circadian regulation of
the female hypothalamo-pituitary-gonadal axis. Endocrinology 147(3):1148-1153
41. Silver R, Lehman MN, Gibson M, Gladstone WR, Bittman EL (1990) Dispersed cell suspen-
sions of fetal SCN restore circadian rhythmicity in SCN-lesioned adult hamsters. Brain Res
525(1):45-58
42. Meyer-Bernstein EL, Jetton AE, Matsumoto SI, Markuns JF, Lehman MN, Bittman EL
(1999) Effects of suprachiasmatic transplants on circadian rhythms of neuroendocrine func-
tion in golden hamsters. Endocrinology 140(1):207-218
43. Silver R, LeSauter J, Tresco PA, Lehman MN (1996) A diffusible coupling signal from the
transplanted suprachiasmatic nucleus controlling circadian locomotor rhythms. Nature
382(6594):810-813
44. de la Iglesia HO, Meyer J, Carpino A Jr, Schwartz WJ (2000) Antiphase oscillation of the left
and right suprachiasmatic nuclei. Science (New York, NY) 290(5492):799-801
45. Yan L, Foley NC, Bobula JM, Kriegsfeld LJ, Silver R (2005) Two antiphase oscillations
occur in each suprachiasmatic nucleus of behaviorally split hamsters. J Neurosci
25(39):9017-9026
46. Tavakoli-Nezhad M, Schwartz WJ (2005) c-Fos expression in the brains of behaviorally
“split” hamsters in constant light: calling attention to a dorsolateral region of the suprachias-
matic nucleus and the medial division of the lateral habenula. J Biol Rhythms 20(5):419-429
47. Swann JM, Turek FW (1985) Multiple circadian oscillators regulate the timing of behavioral and
endocrine rhythms in female golden hamsters. Science (New York, NY) 228(4701):898-900
48. Kriegsfeld LJ, Leak RK, Yackulic CB, LeSauter J, Silver R (2004) Organization of suprachi-
asmatic nucleus projections in Syrian hamsters (Mesocricetus auratus): an anterograde and
retrograde analysis. J Comp Neurol 468(3):361-379
49. Van der Beek EM, Horvath TL, Wiegant VM, Van den Hurk R, Buijs RM (1997) Evidence
for a direct neuronal pathway from the suprachiasmatic nucleus to the gonadotropin-releasing
hormone system: combined tracing and light and electron microscopic immunocytochemical
studies. J Comp Neurol 384(4):569-579
50. DeVries GJ, Buijs RM, Van Leeuwen FW, Caffe AR, Swaab DF (1985) The vasopressinergic
innervation of the brain in normal and castrated rats. J Comp Neurol 233(2):236-254
51. Watts AG, Swanson LW (1987) Efferent projections of the suprachiasmatic nucleus: II.
Studies using retrograde transport of fl uorescent dyes and simultaneous peptide immunohis-
tochemistry in the rat. J Comp Neurol 258(2):230-252
52. de la Iglesia HO, Meyer J, Schwartz WJ (2003) Lateralization of circadian pacemaker output:
activation of left- and right-sided luteinizing hormone-releasing hormone neurons involves a
neural rather than a humoral pathway. J Neurosci 23(19):7412-7414
53. Smarr BL, Morris E, de la Iglesia HO (2012) The dorsomedial suprachiasmatic nucleus times
circadian expression of Kiss1 and the luteinizing hormone surge. Endocrinology 153(6):
2839-2850
Search WWH ::




Custom Search