<div><p>Transformative applications in biomedicine require the discovery of complex regulatory networks that explain the development and regeneration of anatomical structures, and reveal what external signals will trigger desired changes of large-scale pattern. Despite recent advances in bioinformatics, extracting mechanistic pathway models from experimental morphological data is a key open challenge that has resisted automation. The fundamental difficulty of manually predicting emergent behavior of even simple networks has limited the models invented by human scientists to pathway diagrams that show necessary subunit interactions but do not reveal the dynamics that are sufficient for complex, self-regulating pattern to emerge. To finally b...
How gene regulatory networks (GRNs) help produce phenotypic variation is a central question in devel...
Control of axial polarity during regeneration is a crucial open question. We developed a quantitativ...
How does morphological complexity evolve? This study suggests that the likelihood of mutations incre...
<p>(<i>A</i>) Surgical, genetic, and pharmacological experiments result in a set of patterning pheno...
<div><p>A mechanistic understanding of robust self-assembly and repair capabilities of complex syste...
<p>(<i>A</i>) Regulatory network found by the automated system, which explains the combined phenotyp...
Heteromorphoses resulting from 10 different RNAi/pharmacological manipulations (A ‘i’ through ‘x’) a...
A highly structured tissue is formed from an unstructured accumulation of cells during morphogenesis...
<p>The algorithm infers both the parameters and topology of the regulatory networks containing speci...
Parameter optimization coupled with model selection is a convenient approach to infer gene regulator...
Understanding the remarkable ability of some organisms to restore their anatomical shape following t...
The generation of pattern and form in a developing organism results from a combination of interactin...
Control of axial polarity during regeneration is a crucial open question. We developed a quantitativ...
We hypothesize morphogens to be transported on a vector field coincident with neuronal axons (A), wi...
The shape of an animal body plan is constructed from protein components encoded by the genome. Howev...
How gene regulatory networks (GRNs) help produce phenotypic variation is a central question in devel...
Control of axial polarity during regeneration is a crucial open question. We developed a quantitativ...
How does morphological complexity evolve? This study suggests that the likelihood of mutations incre...
<p>(<i>A</i>) Surgical, genetic, and pharmacological experiments result in a set of patterning pheno...
<div><p>A mechanistic understanding of robust self-assembly and repair capabilities of complex syste...
<p>(<i>A</i>) Regulatory network found by the automated system, which explains the combined phenotyp...
Heteromorphoses resulting from 10 different RNAi/pharmacological manipulations (A ‘i’ through ‘x’) a...
A highly structured tissue is formed from an unstructured accumulation of cells during morphogenesis...
<p>The algorithm infers both the parameters and topology of the regulatory networks containing speci...
Parameter optimization coupled with model selection is a convenient approach to infer gene regulator...
Understanding the remarkable ability of some organisms to restore their anatomical shape following t...
The generation of pattern and form in a developing organism results from a combination of interactin...
Control of axial polarity during regeneration is a crucial open question. We developed a quantitativ...
We hypothesize morphogens to be transported on a vector field coincident with neuronal axons (A), wi...
The shape of an animal body plan is constructed from protein components encoded by the genome. Howev...
How gene regulatory networks (GRNs) help produce phenotypic variation is a central question in devel...
Control of axial polarity during regeneration is a crucial open question. We developed a quantitativ...
How does morphological complexity evolve? This study suggests that the likelihood of mutations incre...