HughesLab
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behavior and physiology. We are especially interested in uncovering the mechanisms | behavior and physiology. We are especially interested in uncovering the mechanisms | ||
driving gene expression rhythms and determining how these molecular oscillations ultimately influence | driving gene expression rhythms and determining how these molecular oscillations ultimately influence | ||
| - | physiological rhythms. We use a combination of approaches, including behavioral neuroscience, genetics, | + | physiological rhythms. We use a combination of approaches, including ''behavioral neuroscience'', ''molecular biology'', ''genetics'', |
| - | genomics, and bioinformatics. | + | ''genomics'', and ''bioinformatics''. |
</font> | </font> | ||
</p> | </p> | ||
Revision as of 22:48, 7 January 2013
Our laboratory studies circadian rhythms as a model to better understand how the nervous system regulates behavior and physiology. We are especially interested in uncovering the mechanisms driving gene expression rhythms and determining how these molecular oscillations ultimately influence physiological rhythms. We use a combination of approaches, including behavioral neuroscience, molecular biology, genetics, genomics, and bioinformatics.
Department of Biology
University of Missouri, St. Louis
(Starting in August, 2013)


