Stochastic noise at the cellular level has been shown to play a fundamental role in circadian oscillations, influencing how groups of cells entrain to external cues and likely serving as the mechanism by which cell-autonomous rhythms are generated. Despite this importance, few studies have investigated how clock perturbations affect stochastic noise—even as increasing numbers of high-throughput screens categorize how gene knockdowns or small molecules can change clock period and amplitude. This absence is likely due to the difficulty associated with measuring cell-autonomous stochastic noise directly, which currently requires the careful collection and processing of single-cell data. In this study, we show that the damping rate of populatio...
<p>Noise is pervasive in cellular biology and inevitably affects the dynamics of cellular processes....
Rhythmic behavior is essential for plants; for example, daily (circadian) rhythms control photosynth...
Rhythmic behavior is essential for plants; for example, daily (circadian) rhythms control photosynth...
<div><p>Stochastic noise at the cellular level has been shown to play a fundamental role in circadia...
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 ...
Cultured circadian oscillators from peripheral tissues were recently shown to be both cell-autonomou...
AbstractBioluminescence rhythms from cellular reporters have become the most common method used to q...
Bioluminescence techniques allow accurate monitoring of the circadian clock in single cells. We have...
AbstractBioluminescence rhythms from cellular reporters have become the most common method used to q...
Most living organisms have developed the capability of generating autonomously sustained oscillation...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
We propose a stochastic distributed delay model together with a Markov random field prior and a meas...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
<p>Noise is pervasive in cellular biology and inevitably affects the dynamics of cellular processes....
Rhythmic behavior is essential for plants; for example, daily (circadian) rhythms control photosynth...
Rhythmic behavior is essential for plants; for example, daily (circadian) rhythms control photosynth...
<div><p>Stochastic noise at the cellular level has been shown to play a fundamental role in circadia...
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 ...
Cultured circadian oscillators from peripheral tissues were recently shown to be both cell-autonomou...
AbstractBioluminescence rhythms from cellular reporters have become the most common method used to q...
Bioluminescence techniques allow accurate monitoring of the circadian clock in single cells. We have...
AbstractBioluminescence rhythms from cellular reporters have become the most common method used to q...
Most living organisms have developed the capability of generating autonomously sustained oscillation...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
We propose a stochastic distributed delay model together with a Markov random field prior and a meas...
Cell-autonomous and self-sustained molecular oscillators drive circadian behavior and physiology in ...
<p>Noise is pervasive in cellular biology and inevitably affects the dynamics of cellular processes....
Rhythmic behavior is essential for plants; for example, daily (circadian) rhythms control photosynth...
Rhythmic behavior is essential for plants; for example, daily (circadian) rhythms control photosynth...