Professor of Physics
Professor in Neurobiology (Secondary)
Faculty Network Member of the Duke Institute for Brain Sciences
After working in nonlinear dynamics and nonequilibrium pattern formation for many years, my research group has begun studying problems in theoretical neurobiology in collaboration with Professor Richard Mooney's experimental group on birdsong at Duke University. The main scientific question we are interested in is how songbirds learn to sing their song, which is a leading experimental paradigm for the broader neurobiology question of how animals learn behaviors that involve sequences of time. My group is interested in problems arising at the cellular and network levels (as opposed to behavioral levels). One example is understanding the origin, mechanism, and eventually the purpose of highly sparse high-frequency bursts of spikes that are observed in the nucleus HVC of songbird brains (this is the first place where auditory information seems to be combined with motor information). A second example is to understand how auditory and motor information are combined, e.g., there are data that suggests that the same group of neurons that instruct the respiratory and syringeal muscles to produce song (again in nucleus HVC) are also involved in recognizing song. A third example is trying to understand changes in anatomy (increases in spine stability) that were recently observed in living brain tissue as a bird learns its song.
Greenside, H. S., and D. R. Hamann. “Self-consistent lcao study of the square-root-2xsquare-root-2 cl adlayer on pd(001) and ag(001) surfaces - band-structure and density of states.” Bulletin of the American Physical Society, vol. 25, no. 3, 1980, pp. 193–193.
Blum, J. J., and H. Greenside. “Particle ejection from the cytoproct of Tetrahymena.” The Journal of Protozoology, vol. 23, no. 4, Nov. 1976, pp. 500–02. Epmc, doi:10.1111/j.1550-7408.1976.tb03827.x. Full Text
Ridgway, R. W., et al. “Cocatalysis of Phenolate Phosphorylation in Biphasic Media.” Journal of the American Chemical Society, vol. 98, no. 7, Mar. 1976, pp. 1979–80. Scopus, doi:10.1021/ja00423a063. Full Text
Greenside, Henry S. Spatiotemporal Chaos in Large Systems: The Scaling of Complexity with Size.
Zoldi, Scott M., and Henry S. Greenside. Spatially Localized Unstable Periodic Orbits.
Egolf, David A., and Henry S. Greenside. Dependence of extensive chaos on the spatial correlation length (substantial revision).