Stochastic fluctuations in signaling and gene expression limit the ability of cells to sense the state of their environment, transfer this information along cellular pathways, and respond to it with high precision. Mutual information is now often used to quantify the fidelity with which information is transmitted along a cellular pathway. Mutual information calculations from experimental data have mostly generated low values, suggesting that cells might have rela-tively low signal transmission fidelity. In this work, we demonstrate that mutual information calculations might be artificially lowered by cell-to-cell variability in both initial conditions and slowly fluctuating global factors across the population. We carry out our analysis com...
<p>a) Initial distribution of <math><mrow><msubsup><mi>Y</mi><mn>1</mn><mo>*</mo></msubsup></mrow></...
Cells live with fluctuations arising from various sources and occurring at a broad spectrum of scale...
Cellular regulation is governed by dense biomolecular networks consisting of proteins, nucleotides, ...
<div><p>Stochastic fluctuations in signaling and gene expression limit the ability of cells to sense...
Intra-cellular fluctuations, mainly triggered by gene expression, are an inevitable phenome-non obse...
Stochastic fluctuations in signaling and gene expression limit the ability of cells to sense the sta...
Stochastic fluctuations in signaling and gene expression limit the ability of cells to sense the sta...
All living things have evolved to sense changes in their environment in order to respond in adaptive...
Fluctuations, or "noise", can play a key role in determining the behaviour of living systems. The mo...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
The picture of intracellular information processing is changing from a passive, predictable mechanis...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
<div><p>Cells live in changing, dynamic environments. To understand cellular decision-making, we mus...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
Recent advances in biology have revolutionized our understanding of living systems. For the first ti...
<p>a) Initial distribution of <math><mrow><msubsup><mi>Y</mi><mn>1</mn><mo>*</mo></msubsup></mrow></...
Cells live with fluctuations arising from various sources and occurring at a broad spectrum of scale...
Cellular regulation is governed by dense biomolecular networks consisting of proteins, nucleotides, ...
<div><p>Stochastic fluctuations in signaling and gene expression limit the ability of cells to sense...
Intra-cellular fluctuations, mainly triggered by gene expression, are an inevitable phenome-non obse...
Stochastic fluctuations in signaling and gene expression limit the ability of cells to sense the sta...
Stochastic fluctuations in signaling and gene expression limit the ability of cells to sense the sta...
All living things have evolved to sense changes in their environment in order to respond in adaptive...
Fluctuations, or "noise", can play a key role in determining the behaviour of living systems. The mo...
This is the final version of the article. Available from Public Library of Science via the DOI in th...
The picture of intracellular information processing is changing from a passive, predictable mechanis...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
<div><p>Cells live in changing, dynamic environments. To understand cellular decision-making, we mus...
Cells live in changing, dynamic environments. To understand cellular decision-making, we must theref...
Recent advances in biology have revolutionized our understanding of living systems. For the first ti...
<p>a) Initial distribution of <math><mrow><msubsup><mi>Y</mi><mn>1</mn><mo>*</mo></msubsup></mrow></...
Cells live with fluctuations arising from various sources and occurring at a broad spectrum of scale...
Cellular regulation is governed by dense biomolecular networks consisting of proteins, nucleotides, ...