Neurons are often cultured <i>in vitro</i> on a flat, open, and rigid substrate, a platform that does not reflect well the native microenvironment of the brain. To address this concern, we have developed a culturing platform containing arrays of microchannels, formed in a crystalline-silicon nanomembrane (NM) resting on polydimethylsiloxane; this platform will additionally enable active sensing and stimulation at the local scale, <i>via</i> devices fabricated in the silicon. The mechanical properties of the composite Si/compliant substrate nanomaterial approximate those of neural tissue. The microchannels, created in the NM by strain engineering, demonstrate strong guidance of neurite outgrowth. Using plasma techniques, we developed a means...
<p><b>A</b>. A SU-8-on-silicon master is realized by photolithography in order to structure the poly...
The use of artificial, prepatterned neuronal networks in vitro is a promising approach for studying ...
\u3cp\u3eA new generation of in vitro human brain models is vital to surpass the limitations of curr...
In neural interface platforms, cultures are often carried out on a flat, open, rigid, and opaque sub...
\u3cp\u3eIn order to investigate the hypothesis that dynamic nanoscale stimuli can influence the fun...
The interface between living cells and artificial surfaces are highly relevant for biomedical applic...
Axonal growth and guidance were studied on different micro- and nanostructured surfaces. Nanoimprint...
Hybrid silicon-polymer chips with microscale topography and contrasting surface chemistries were cre...
Neurons are among the most fundamental building blocks of modern biology and medicine. Axonal develo...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
The interface between living cells and artificial surfaces is highly relevant for biomedical applica...
Biological systems can, in many aspects, be superior to existing control, computing, and warfare-age...
The interface between living cells and artificial surfaces is highly relevant for biomedical applica...
Stem cell growth and migration on nanofibrous scaffolds and micro-fluidic channels on Silicon-Chip w...
State-of-the art neuromodulators are bulky, and they are mostly fabricated on rigid substrates. Furt...
<p><b>A</b>. A SU-8-on-silicon master is realized by photolithography in order to structure the poly...
The use of artificial, prepatterned neuronal networks in vitro is a promising approach for studying ...
\u3cp\u3eA new generation of in vitro human brain models is vital to surpass the limitations of curr...
In neural interface platforms, cultures are often carried out on a flat, open, rigid, and opaque sub...
\u3cp\u3eIn order to investigate the hypothesis that dynamic nanoscale stimuli can influence the fun...
The interface between living cells and artificial surfaces are highly relevant for biomedical applic...
Axonal growth and guidance were studied on different micro- and nanostructured surfaces. Nanoimprint...
Hybrid silicon-polymer chips with microscale topography and contrasting surface chemistries were cre...
Neurons are among the most fundamental building blocks of modern biology and medicine. Axonal develo...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
The interface between living cells and artificial surfaces is highly relevant for biomedical applica...
Biological systems can, in many aspects, be superior to existing control, computing, and warfare-age...
The interface between living cells and artificial surfaces is highly relevant for biomedical applica...
Stem cell growth and migration on nanofibrous scaffolds and micro-fluidic channels on Silicon-Chip w...
State-of-the art neuromodulators are bulky, and they are mostly fabricated on rigid substrates. Furt...
<p><b>A</b>. A SU-8-on-silicon master is realized by photolithography in order to structure the poly...
The use of artificial, prepatterned neuronal networks in vitro is a promising approach for studying ...
\u3cp\u3eA new generation of in vitro human brain models is vital to surpass the limitations of curr...