Abstract
Pacemakers are functional units capable of generating oscillations that synchronize downstream rhythms. In mammals, the suprachiasmatic nucleus (SCN) of the hypothalamus is a circadian pacemaker composed of individual neurons that intrinsically express a near 24-hour rhythm in gene expression. Rhythmic gene expression is tightly coupled to a rhythm in spontaneous firing rate via intrinsic daily regulation of potassium current. Recent progress in the field indicates that SCN pacemaking is a specialized property that emerges from intrinsic features of single cells, structural connectivity among cells, and activity dynamics within the SCN. The focus of this chapter is on how Nature built a functional pacemaker from many individual oscillators that is capable of coordinating the daily timing of essential brain and physiological processes. ©2007 Cold Spring Harbor Laboratory Press.
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CITATION STYLE
Kuhlman, S. J. (2007). Biological rhythms workshop IB: Neurophysiology of SCN pacemaker function. In Cold Spring Harbor Symposia on Quantitative Biology (Vol. 72, pp. 21–33). https://doi.org/10.1101/sqb.2007.72.061
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