Chemotaxis, or directed motion in chemical gradients, is critical for various biological processes. Many eukaryotic cells perform spatial sensing, i.e. they detect gradients by comparing spatial differences in binding occupancy of chemosensory receptors across their membrane. In many theoretical models of spatial sensing, it is assumed, for the sake of simplicity, that the receptors concerned do not move. However, in reality, receptors undergo diverse modes of diffusion, and can traverse considerable distances in the time it takes such cells to turn in an external gradient. This sets a physical limit on the accuracy of spatial sensing, which we explore using a model in which receptors diffuse freely over the membrane. We find that the Fishe...
The phenomenon of chemotaxis — the motion of a cell in response to gradi-ents in external chemical c...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...
Chemotaxis, or directed motion in chemical gradients, is critical for various biological processes. ...
Quantifying information transmission in eukaryotic gradient sensing and chemotactic response the dat...
AbstractSmall chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoat...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
AbstractSmall chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoat...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
The phenomenon of chemotaxis — the motion of a cell in response to gradi-ents in external chemical c...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...
Chemotaxis, or directed motion in chemical gradients, is critical for various biological processes. ...
Quantifying information transmission in eukaryotic gradient sensing and chemotactic response the dat...
AbstractSmall chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoat...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
AbstractSmall chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoat...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
The phenomenon of chemotaxis — the motion of a cell in response to gradi-ents in external chemical c...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...
The development of the nervous system requires nerve fibres to be guided accurately over long distan...