AbstractBioluminescence rhythms from cellular reporters have become the most common method used to quantify oscillations in circadian gene expression. These experimental systems can reveal phase and amplitude change resulting from circadian disturbances, and can be used in conjunction with mathematical models to lend further insight into the mechanistic basis of clock amplitude regulation. However, bioluminescence experiments track the mean output from thousands of noisy, uncoupled oscillators, obscuring the direct effect of a given stimulus on the genetic regulatory network. In many cases, it is unclear whether changes in amplitude are due to individual changes in gene expression level or to a change in coherence of the population. Althoug...
Circadian rhythmicity, the 24-hour cycle responsive to light and dark, is determined by periodic osc...
Multiple biological processes are driven by oscillatory gene expression at different time scales. Pu...
Abstract The circadian clock is a cellular mechanism that synchronizes various biological processes ...
AbstractBioluminescence rhythms from cellular reporters have become the most common method used to q...
Cultured circadian oscillators from peripheral tissues were recently shown to be both cell-autonomou...
Bioluminescence techniques allow accurate monitoring of the circadian clock in single cells. We have...
Stochastic noise at the cellular level has been shown to play a fundamental role in circadian oscill...
<div><p>Stochastic noise at the cellular level has been shown to play a fundamental role in circadia...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
Biological oscillators naturally exhibit stochastic fluctuations in period and amplitude due to the ...
Biological oscillators naturally exhibit stochastic fluctuations in period and amplitude due to the ...
Biological oscillators naturally exhibit stochastic fluctuations in period and amplitude due to the ...
Circadian rhythmicity, the 24-hour cycle responsive to light and dark, is determined by periodic osc...
Circadian rhythmicity, the 24-hour cycle responsive to light and dark, is determined by periodic osc...
Circadian rhythmicity, the 24-hour cycle responsive to light and dark, is determined by periodic osc...
Multiple biological processes are driven by oscillatory gene expression at different time scales. Pu...
Abstract The circadian clock is a cellular mechanism that synchronizes various biological processes ...
AbstractBioluminescence rhythms from cellular reporters have become the most common method used to q...
Cultured circadian oscillators from peripheral tissues were recently shown to be both cell-autonomou...
Bioluminescence techniques allow accurate monitoring of the circadian clock in single cells. We have...
Stochastic noise at the cellular level has been shown to play a fundamental role in circadian oscill...
<div><p>Stochastic noise at the cellular level has been shown to play a fundamental role in circadia...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
Biological oscillators naturally exhibit stochastic fluctuations in period and amplitude due to the ...
Biological oscillators naturally exhibit stochastic fluctuations in period and amplitude due to the ...
Biological oscillators naturally exhibit stochastic fluctuations in period and amplitude due to the ...
Circadian rhythmicity, the 24-hour cycle responsive to light and dark, is determined by periodic osc...
Circadian rhythmicity, the 24-hour cycle responsive to light and dark, is determined by periodic osc...
Circadian rhythmicity, the 24-hour cycle responsive to light and dark, is determined by periodic osc...
Multiple biological processes are driven by oscillatory gene expression at different time scales. Pu...
Abstract The circadian clock is a cellular mechanism that synchronizes various biological processes ...