Tammy J. Jechura
Affiliations: | Albion College, Albion, MI, United States |
Area:
Neuroscience, ChronobiologyGoogle:
"Tammy Jechura"Mean distance: 16.65 (cluster 19) | S | N | B | C | P |
Parents
Sign in to add mentorTheresa M. Lee | grad student | 2002 | University of Michigan | |
(Sex differences in circadian rhythms: Effects of gonadal hormones in Octodon degus.) |
Children
Sign in to add traineeAlexandra Yaw | research assistant | Albion College | |
Dorela Doris Shuboni-Mulligan | research assistant | 2005-2009 | Albion College |
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Publications
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Hummer DL, Jechura TJ, Mahoney MM, et al. (2007) Gonadal hormone effects on entrained and free-running circadian activity rhythms in the developing diurnal rodent Octodon degus. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology. 292: R586-97 |
Jechura TJ, Stimpson CD, Lee TM. (2006) Odor-facilitated reentrainment in male and female juvenile Octodon degus. Physiology & Behavior. 89: 617-22 |
Jechura TJ, Mahoney MM, Stimpson CD, et al. (2006) Odor-specific effects on reentrainment following phase advances in the diurnal rodent, Octodon degus. American Journal of Physiology. Regulatory, Integrative and Comparative Physiology. 291: R1808-16 |
Jechura TJ, Lee TM. (2004) Ovarian hormones influence olfactory cue effects on reentrainment in the diurnal rodent, Octodon degus. Hormones and Behavior. 46: 349-55 |
Lee TM, Hummer DL, Jechura TJ, et al. (2004) Pubertal development of sex differences in circadian function: an animal model. Annals of the New York Academy of Sciences. 1021: 262-75 |
Jechura TJ, Walsh JM, Lee TM. (2003) Testosterone suppresses circadian responsiveness to social cues in the diurnal rodent Octodon degus. Journal of Biological Rhythms. 18: 43-50 |
Jechura TJ, Walsh JM, Lee TM. (2000) Testicular hormones modulate circadian rhythms of the diurnal rodent, Octodon degus. Hormones and Behavior. 38: 243-9 |
Goel N, Governale MM, Jechura TJ, et al. (2000) Effects of intergeniculate leaflet lesions on circadian rhythms in Octodon degus. Brain Research. 877: 306-13 |