Bharath Ananthasubramaniam, Ph.D.

Affiliations: 
2007 Electrical & Computer Engineering University of California, Santa Barbara, Santa Barbara, CA, United States 
Area:
Communications & Signal Processing
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"Bharath Ananthasubramaniam"

Parents

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Upamanyu Madhow grad student 2007 UC Santa Barbara
 (Imaging sensor nets: Scalable architectures for data collection and localization in sensor networks.)
Francis J. Doyle post-doc 2008-2011 UC Santa Barbara
Roger Nisbet post-doc 2008-2011 UC Santa Barbara (Marine Ecology Tree)
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Publications

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Tokuda IT, Schmal C, Ananthasubramaniam B, et al. (2020) Conceptual Models of Entrainment, Jet Lag, and Seasonality. Frontiers in Physiology. 11: 334
Ananthasubramaniam B, Meijer JH. (2020) Regulation of Rest, Rather Than Activity, Underlies Day-Night Activity Differences in Mice. Frontiers in Physiology. 11: 268
Ananthasubramaniam B, Schmal C, Herzel H. (2020) Amplitude Effects Allow Short Jet Lags and Large Seasonal Phase Shifts in Minimal Clock Models. Journal of Molecular Biology
Ananthasubramaniam B. (2016) Analysis of Circadian Cellular Bioluminescence Recordings using a Kalman Smoother Ifac-Papersonline. 49: 190-193
Bhargava A, Herzel H, Ananthasubramaniam B. (2015) Mining for novel candidate clock genes in the circadian regulatory network. Bmc Systems Biology. 9: 78
Ananthasubramaniam B, McCauley E, Gust KA, et al. (2015) Relating suborganismal processes to ecotoxicological and population level endpoints using a bioenergetic model. Ecological Applications : a Publication of the Ecological Society of America. 25: 1691-710
Ananthasubramaniam B, McCauley E, Gust KA, et al. (2015) Relating suborganismal processes to ecotoxicological and population level endpoints using a bioenergetic model Ecological Applications. 25: 1691-1710
Ananthasubramaniam B, Herzog ED, Herzel H. (2014) Timing of neuropeptide coupling determines synchrony and entrainment in the mammalian circadian clock. Plos Computational Biology. 10: e1003565
Boch CA, Ananthasubramaniam B, Sweeney AM, et al. (2011) Effects of light dynamics on coral spawning synchrony. The Biological Bulletin. 220: 161-73
Ananthasubramaniam B, Nisbet RM, Nelson WA, et al. (2011) Stochastic growth reduces population fluctuations in Daphnia-algal systems. Ecology. 92: 362-72
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