International audienceAn approach is developped to gain control over the polarity of neuronal networks at the cellular level by physically constraining cell development by the use of micropatterns. It is demonstrated that the position and path of individual axons, the cell extension that propagates the neuron output signal, can be chosen with a success rate higher than 85%. This allows the design of small living computational blocks above silicon nanowires
Axonal growth and guidance were studied on different micro- and nanostructured surfaces. Nanoimprint...
Neural cultures are very useful in neuroscience, providing simpler and better controlled systems tha...
The use of artificial, prepatterned neuronal networks in vitro is a promising approach for studying ...
International audienceAn approach is developped to gain control over the polarity of neuronal networ...
This thesis focuses on in vitro neuronal development, with the long-term goal of building controlled...
Cette thèse s'intéresse au développement neuronal in vitro dans le but ultime d'enregistrer l'activi...
Engineering of neuronal network geometry by micropatterning technology is a key future technology fo...
In this work, we report that high-density, vertically grown silicon nanowires (vg-SiNWs) direct a ne...
Experimental control over cellular polarity in a neuronal network is a promising tool to study synap...
Neural cultures are very useful in neuroscience, providing simpler and better controlled systems tha...
Neurons acquire their functional and morphological axo-dendritic polarity by extending, from competi...
In vitro neuronal networks are pertinent simple systems to approach brain computational com- plexity...
This work focused on the control of neuronal polarity in geometrical patterned neuronal networks. Tw...
Guiding neuronal polarity, axonal outgrowth, and synapse formation are crucial factors in neuronal d...
105 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Complex structures at both th...
Axonal growth and guidance were studied on different micro- and nanostructured surfaces. Nanoimprint...
Neural cultures are very useful in neuroscience, providing simpler and better controlled systems tha...
The use of artificial, prepatterned neuronal networks in vitro is a promising approach for studying ...
International audienceAn approach is developped to gain control over the polarity of neuronal networ...
This thesis focuses on in vitro neuronal development, with the long-term goal of building controlled...
Cette thèse s'intéresse au développement neuronal in vitro dans le but ultime d'enregistrer l'activi...
Engineering of neuronal network geometry by micropatterning technology is a key future technology fo...
In this work, we report that high-density, vertically grown silicon nanowires (vg-SiNWs) direct a ne...
Experimental control over cellular polarity in a neuronal network is a promising tool to study synap...
Neural cultures are very useful in neuroscience, providing simpler and better controlled systems tha...
Neurons acquire their functional and morphological axo-dendritic polarity by extending, from competi...
In vitro neuronal networks are pertinent simple systems to approach brain computational com- plexity...
This work focused on the control of neuronal polarity in geometrical patterned neuronal networks. Tw...
Guiding neuronal polarity, axonal outgrowth, and synapse formation are crucial factors in neuronal d...
105 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2009.Complex structures at both th...
Axonal growth and guidance were studied on different micro- and nanostructured surfaces. Nanoimprint...
Neural cultures are very useful in neuroscience, providing simpler and better controlled systems tha...
The use of artificial, prepatterned neuronal networks in vitro is a promising approach for studying ...