4In recent years, the use of free-standing carbon nanotube (CNT) films for neural tissue engineering has attracted tremendous attention. CNT films show large surface area and high electrical conductivity that combined with flexibility and biocompatibility may promote neuron growth and differentiation while stimulating neural activity. In addition, adhesion, survival, and growth of neurons can be modulated through chemical modification of CNTs. Axonal and synaptic signaling can also be positively tuned by these materials. Here we describe the ability of free-standing CNT films to influence neuronal activity. We demonstrate that the degree of cross-linking between the CNTs has a strong impact on the electrical conductivity of the substrate, w...
10noCarbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and abi...
International audienceCarbon nanotube substrates are promising candidates for biological application...
Carbon nanotubes have been applied in several areas of nerve tissue engineering to probe and augment...
In recent years, the use of free-standing carbon nanotube (CNT) films for neural tissue engineering ...
We demonstrate the possibility of using carbon nanotubes (CNTs) as potential devices able to improve...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
Carbon nanotubes, owing to their electrical, chemical, mechanical, and thermal properties, are one o...
Carbon nanotubes are increasingly employed in basic neuroscience approaches, and they have been used...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
Advances in neural interface technologies have sought to identify electroactive materials that are a...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...
10noCarbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and abi...
International audienceCarbon nanotube substrates are promising candidates for biological application...
Carbon nanotubes have been applied in several areas of nerve tissue engineering to probe and augment...
In recent years, the use of free-standing carbon nanotube (CNT) films for neural tissue engineering ...
We demonstrate the possibility of using carbon nanotubes (CNTs) as potential devices able to improve...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
Carbon nanotubes, owing to their electrical, chemical, mechanical, and thermal properties, are one o...
Carbon nanotubes are increasingly employed in basic neuroscience approaches, and they have been used...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
Advances in neural interface technologies have sought to identify electroactive materials that are a...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...
10noCarbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and abi...
International audienceCarbon nanotube substrates are promising candidates for biological application...
Carbon nanotubes have been applied in several areas of nerve tissue engineering to probe and augment...