Objective. We have developed an image analysis methodology for quantifying the anisotropy of neuronal projections on patterned substrates. Approach. Our method is based on the fitting of smoothing splines to the digital traces produced using a non-maximum suppression technique. This enables precise estimates of the local tangents uniformly along the neurite length, and leads to unbiased orientation distributions suitable for objectively assessing the anisotropy induced by tailored surfaces. Main results. In our application, we demonstrate that carbon nanotubes arrayed in parallel bundles over gold surfaces induce a considerable neurite anisotropy; a result which is relevant for regenerative medicine. Significance. Our pipeline is generally ...
Methods are introduced for analysing the shape and orientation of planar fibres from greyscale image...
We employ simple geometrical rules to design a set of nanotopographies able to interfere with focal ...
Neuron-like cells are driven by their surrounding environment through local topography. A causal mec...
Objective. We have developed an image analysis methodology for quantifying the anisotropy of neurona...
Research on neuronal differentiation and neuronal network guidance induced through nanotopographical...
Research on neuronal differentiation and neuronal network guidance induced through nanotopographical...
In this work a synergistic approach is used to investigate how directional anisotropic surfaces (i.e...
Researchers have made extensive efforts to mimic or reverse-engineer in vivo neural circuits using m...
In this paper we investigate the role of micropatterning and molecular coating for cell culture and ...
Research on neuronal differentiation and neuronal network guidance induced through nanotopographical...
Objective. Carbon nanotubes (CNTs) are attractive for use in peripheral nerve interfaces because of ...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
As advances in imaging technologies make more and more data available for biomedical applications, t...
Neuron-like cells are driven by their surrounding environment through local topography. A causal mec...
Methods are introduced for analysing the shape and orientation of planar fibres from greyscale image...
We employ simple geometrical rules to design a set of nanotopographies able to interfere with focal ...
Neuron-like cells are driven by their surrounding environment through local topography. A causal mec...
Objective. We have developed an image analysis methodology for quantifying the anisotropy of neurona...
Research on neuronal differentiation and neuronal network guidance induced through nanotopographical...
Research on neuronal differentiation and neuronal network guidance induced through nanotopographical...
In this work a synergistic approach is used to investigate how directional anisotropic surfaces (i.e...
Researchers have made extensive efforts to mimic or reverse-engineer in vivo neural circuits using m...
In this paper we investigate the role of micropatterning and molecular coating for cell culture and ...
Research on neuronal differentiation and neuronal network guidance induced through nanotopographical...
Objective. Carbon nanotubes (CNTs) are attractive for use in peripheral nerve interfaces because of ...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
As advances in imaging technologies make more and more data available for biomedical applications, t...
Neuron-like cells are driven by their surrounding environment through local topography. A causal mec...
Methods are introduced for analysing the shape and orientation of planar fibres from greyscale image...
We employ simple geometrical rules to design a set of nanotopographies able to interfere with focal ...
Neuron-like cells are driven by their surrounding environment through local topography. A causal mec...