<div><p>The use of microfluidics in live cell imaging allows the acquisition of dense time-series from individual cells that can be perturbed through computer-controlled changes of growth medium. Systems and synthetic biologists frequently perform gene expression studies that require changes in growth conditions to characterize the stability of switches, the transfer function of a genetic device, or the oscillations of gene networks. It is rarely possible to know <i>a priori</i> at what times the various changes should be made, and the success of the experiment is unknown until all of the image processing is completed well after the completion of the experiment. This results in wasted time and resources, due to the need to repeat the experi...
<p><b>A</b>. Microfluidic device enabling the growth and imaging of yeast cells over extended durati...
Cells need to be able to adapt quickly to changes in nutrient availability in their environment in o...
Genome-scale technologies have transformed our understanding of the biomolecular signaling networks ...
The use of microfluidics in live cell imaging allows the acquisition of dense time-series from indiv...
Dynamic environments are commonplace in the natural world, from fluctuations in nutrient sources tha...
Advances in measurement techniques based on fluorescent tagging have enabled visualizing individual ...
<p>Supplementary material to a manuscript under review. The manuscript can be downloaded from the li...
We describe an innovative experimental approach, and a proof of principle investigation, for the app...
We describe an innovative experimental approach, and a proof of principle investigation, for the app...
We describe an innovative experimental approach, and a proof of principle investigation, for the app...
Cellular regulation is governed by dense biomolecular networks consisting of proteins, nucleotides, ...
The biology of a cell is the sum of many highly dynamic processes, each orchestrated by a plethora o...
With the expanding interest in cellular responses to dynamic environments, microfluidic devices have...
Advances in microscopy automation and image analysis have given biologists the tools to attempt larg...
The developing discipline of synthetic biology attempts to recreate in artificial systems the emerge...
<p><b>A</b>. Microfluidic device enabling the growth and imaging of yeast cells over extended durati...
Cells need to be able to adapt quickly to changes in nutrient availability in their environment in o...
Genome-scale technologies have transformed our understanding of the biomolecular signaling networks ...
The use of microfluidics in live cell imaging allows the acquisition of dense time-series from indiv...
Dynamic environments are commonplace in the natural world, from fluctuations in nutrient sources tha...
Advances in measurement techniques based on fluorescent tagging have enabled visualizing individual ...
<p>Supplementary material to a manuscript under review. The manuscript can be downloaded from the li...
We describe an innovative experimental approach, and a proof of principle investigation, for the app...
We describe an innovative experimental approach, and a proof of principle investigation, for the app...
We describe an innovative experimental approach, and a proof of principle investigation, for the app...
Cellular regulation is governed by dense biomolecular networks consisting of proteins, nucleotides, ...
The biology of a cell is the sum of many highly dynamic processes, each orchestrated by a plethora o...
With the expanding interest in cellular responses to dynamic environments, microfluidic devices have...
Advances in microscopy automation and image analysis have given biologists the tools to attempt larg...
The developing discipline of synthetic biology attempts to recreate in artificial systems the emerge...
<p><b>A</b>. Microfluidic device enabling the growth and imaging of yeast cells over extended durati...
Cells need to be able to adapt quickly to changes in nutrient availability in their environment in o...
Genome-scale technologies have transformed our understanding of the biomolecular signaling networks ...