We use hydra as a model system to understand how growth and differentiation and, as a consequence of this, pattern formation are controlled at the molecular level. We have found that four substances control head and foot formation in hydra: an activator and an inhibitor of head formation and an activator and an inhibitor of foot formation. The two activators are peptides with molecular weights around 1000 daltons, the inhibitors are smaller in molecular weight (<500), have an overall positive charge and do not contain peptide bonds. In normal animals all four substances are present and most likely produced by nerve cells. We hope to understand how these substances act and interact to create the spatial and temporal pattern of growth and dif...
The introductory personal remarks refer to my motivations for choosing research projects, and for mo...
Two signals, the head activator and an injury stimulus, control differentiation of nerve cells from ...
The kinetics of nerve commitment during head regeneration in Hydra were investigated using a newly d...
It has been shown that hydra, consisting almost exclusively of epithelial cells, have normal morphog...
Temporal course of regeneration of the hypostome and basal disc along the body length of the hydra i...
Modeling of pattern formation in hydra has revealed basic mechanisms that underlie the reproducible ...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
We propose a new theoretical model for pattern regulation in Hydra. Our model treats positional valu...
We propose a new theoretical model for pattern regulation in Hydra. Our model treats positional valu...
Studies of the changes of the head inhibitor and the head activator during hydra head regeneration h...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Ever since it was discovered in hydra, regeneration has remained a stimulating question for developm...
The introductory personal remarks refer to my motivations for choosing research projects, and for mo...
Two signals, the head activator and an injury stimulus, control differentiation of nerve cells from ...
The kinetics of nerve commitment during head regeneration in Hydra were investigated using a newly d...
It has been shown that hydra, consisting almost exclusively of epithelial cells, have normal morphog...
Temporal course of regeneration of the hypostome and basal disc along the body length of the hydra i...
Modeling of pattern formation in hydra has revealed basic mechanisms that underlie the reproducible ...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
We propose a new theoretical model for pattern regulation in Hydra. Our model treats positional valu...
We propose a new theoretical model for pattern regulation in Hydra. Our model treats positional valu...
Studies of the changes of the head inhibitor and the head activator during hydra head regeneration h...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Stimulation of tentacle-specific cell differentiation by the neuropeptide head activator was investi...
Ever since it was discovered in hydra, regeneration has remained a stimulating question for developm...
The introductory personal remarks refer to my motivations for choosing research projects, and for mo...
Two signals, the head activator and an injury stimulus, control differentiation of nerve cells from ...
The kinetics of nerve commitment during head regeneration in Hydra were investigated using a newly d...