Background: Cells constantly sense many internal and environmental signals and respond through their complex signaling network, leading to particular biological outcomes. However, a systematic characterization and optimization of multi-signal responses remains a pressing challenge to traditional experimental approaches due to the arising complexity associated with the increasing number of signals and their intensities.Results: We established and validated a data-driven mathematical approach to systematically characterize signal-response relationships. Our results demonstrate how mathematical learning algorithms can enable systematic characterization of multi-signal induced biological activities. The proposed approach enables identification ...
We present a powerful experimental-computational technology for inferring network models that predic...
Cellular signal transduction machinery integrates information from multiple inputs to actuate discre...
Cancer patients often respond very differently to any given drug. Some patients respond very well, w...
Background: Cells constantly sense many internal and environmental signals and respond through their...
Abstract Background Cells constantly sense many internal and environmental signals and respond throu...
Cells adapt to their environment through the integration of complex signals. Multiple signals can in...
Cells adapt to their environment through the integration of complex signals. Multiple signals can in...
Cells adapt to their environment through the integration of complex signals. Multiple signals can in...
Drug resistance, de novo and acquired, pervades cellular signaling networks (SNs) from one signaling...
Drug resistance, de novo and acquired, pervades cellular signaling networks (SNs) from one signaling...
Crosstalk between signaling pathways can modulate the cellular response to stimuli and is therefore ...
Efforts to construct therapeutically useful models of biological systems require large and diverse s...
<div><p>We present a powerful experimental-computational technology for inferring network models tha...
Cancer patients often respond very differently to any given drug. Some patients respond very well, w...
Cellular signal transduction machinery integrates information from multiple inputs to actuate discre...
We present a powerful experimental-computational technology for inferring network models that predic...
Cellular signal transduction machinery integrates information from multiple inputs to actuate discre...
Cancer patients often respond very differently to any given drug. Some patients respond very well, w...
Background: Cells constantly sense many internal and environmental signals and respond through their...
Abstract Background Cells constantly sense many internal and environmental signals and respond throu...
Cells adapt to their environment through the integration of complex signals. Multiple signals can in...
Cells adapt to their environment through the integration of complex signals. Multiple signals can in...
Cells adapt to their environment through the integration of complex signals. Multiple signals can in...
Drug resistance, de novo and acquired, pervades cellular signaling networks (SNs) from one signaling...
Drug resistance, de novo and acquired, pervades cellular signaling networks (SNs) from one signaling...
Crosstalk between signaling pathways can modulate the cellular response to stimuli and is therefore ...
Efforts to construct therapeutically useful models of biological systems require large and diverse s...
<div><p>We present a powerful experimental-computational technology for inferring network models tha...
Cancer patients often respond very differently to any given drug. Some patients respond very well, w...
Cellular signal transduction machinery integrates information from multiple inputs to actuate discre...
We present a powerful experimental-computational technology for inferring network models that predic...
Cellular signal transduction machinery integrates information from multiple inputs to actuate discre...
Cancer patients often respond very differently to any given drug. Some patients respond very well, w...