Neuronal nanoscale interfacing aims at identifying or designing nanostructured smart materials and validating their applications as novel biocompatible scaffolds with active properties for neuronal networks formation, nerve regeneration, and bidirectional biosignal coupling. Among several carbon-based nanomaterials, Graphene recently attracted great interest for biological applications, given its unique mechanical, optical, electronic properties, and its recent technological applications. Here we explore the use of Graphene Oxide (GO) and reduced Graphene Oxide (rGO) as biocompatible culture substrates for primary neuronal networks developing ex vivo. We quantitatively studied cytotoxicity and cellular viability as well as single-cell and n...
In this study, we explore the use of electrically active graphene foam as a scaffold for the culture...
In this study, we explore the use of electrically active graphene foam as a scaffold for the culture...
The emerging carbon nanomaterial graphene (G) and its oxidized derivative graphene oxide (GO) have r...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
Neural-interfaces rely on the ability of electrodes to transduce stimuli into electrical patterns de...
9The scientific community has witnessed an exponential increase in the applications of graphene and ...
Neural-interfaces rely on the ability of electrodes to transduce stimuli into electrical patterns de...
Neural-interfaces rely on the ability of electrodes to transduce stimuli into electrical patterns de...
Advanced neural interfacing technologies have the ability to communicate with the central nervous sy...
Neural cell adhesion and neurite outgrowth were examined on graphene-based biomimetic substrates. Th...
In this study, we explore the use of electrically active graphene foam as a scaffold for the culture...
In this study, we explore the use of electrically active graphene foam as a scaffold for the culture...
The emerging carbon nanomaterial graphene (G) and its oxidized derivative graphene oxide (GO) have r...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
Neural-interfaces rely on the ability of electrodes to transduce stimuli into electrical patterns de...
9The scientific community has witnessed an exponential increase in the applications of graphene and ...
Neural-interfaces rely on the ability of electrodes to transduce stimuli into electrical patterns de...
Neural-interfaces rely on the ability of electrodes to transduce stimuli into electrical patterns de...
Advanced neural interfacing technologies have the ability to communicate with the central nervous sy...
Neural cell adhesion and neurite outgrowth were examined on graphene-based biomimetic substrates. Th...
In this study, we explore the use of electrically active graphene foam as a scaffold for the culture...
In this study, we explore the use of electrically active graphene foam as a scaffold for the culture...
The emerging carbon nanomaterial graphene (G) and its oxidized derivative graphene oxide (GO) have r...