The use of nanostructured materials and nanosized-topographies has the potential to impact the performance of implantable biodevices, including neural interfaces, enhancing their sensitivity and selectivity, while reducing tissue reactivity. As a result, current trends in biosensor technology require the effective ability to improve devices with controlled nanostructures. Nanoimprint lithography to pattern surfaces with high-density and high aspect ratio nanopillars (NPs) made of polystyrene (PS-NP, insulating), or of a polystyrene/carbon-nanotube nanocomposite (PS-CNT-NP, electrically conductive) are exploited. Both substrates are challenged with cultured primary neurons. They are demonstrated to support the development of suspended synapt...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...
The use of nanostructured materials and nanosized-topographies has the potential to impact the perfo...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
New developments in nanotechnology are increasingly designed to modulate relevant interactions betwe...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
During the last decades, neuroscientists have increasingly exploited a variety of artificial, de-nov...
Neural interfaces are the core of prosthetic devices, such as implantable stimulating electrodes or ...
Neural interfaces are the core of prosthetic devices, such as implantable stimulating electrodes or ...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...
The use of nanostructured materials and nanosized-topographies has the potential to impact the perfo...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
New developments in nanotechnology are increasingly designed to modulate relevant interactions betwe...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
In the last decade, carbon nanotube growth substrates have been used to investigate neurons and neur...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
During the last decades, neuroscientists have increasingly exploited a variety of artificial, de-nov...
Neural interfaces are the core of prosthetic devices, such as implantable stimulating electrodes or ...
Neural interfaces are the core of prosthetic devices, such as implantable stimulating electrodes or ...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...