A design of a flexible, light-weighted sieve electrode with integrated cables for interfacing regenerating nerves has been developed using micromachining technologies. The authors used polyimide as substrate and insulation layers and platinum as electrode metallization. The materials showed no cytotoxic effects in biocompatibility testing. In first chronic experiments on the sciatic nerve of rats, the authors received good regeneration, a functional reinervation, and no mechanical traumatization of the nerve caused by the microsystem due to the flexible materials
A mathematical model of the electrical behaviour of an axon in a microchannel was constructed and sh...
We have fabricated a soft silicone structure to support the regeneration of a sciatic nerve. The dev...
The capacity of regenerating nerve fibres to grow through a perforated silicon chip was tested using...
It has been shown previously that peripheral nerve axons regenerate through microvias in silicon dev...
Micromachining technologies were established to fabricate microelectrode arrays and devices for inte...
Since more than 20 years, nerve stumps have been interfaced with sieve-like microsystems with integr...
A micromachined silicon sieve electrode has been developed and fabricated to record from and stimula...
Nerves has been previously interfaced with micro-machined sieve electrodes for recording and stimula...
This paper reports on the design, in vitro and in vivo investigation of a flexible, lightweight, pol...
Regenerative electrodes are designed to interface regenerated axons from a sectioned peripheral nerv...
Peripheral nerve lesions lead to nerve degeneration and flaccid paralysis. The first objective in fu...
A neural interface could be used to control a limb prosthesis. Such an interface can be created by f...
Polyimide sieve electrodes were implanted between the severed ends of the sciatic nerve in rats. The...
Peripheral nerves have been previously interfaced with multi-electrode structures including sieve-sh...
Mechanical guidance is one way in which regenerating axons can be directed towards an appropriate ta...
A mathematical model of the electrical behaviour of an axon in a microchannel was constructed and sh...
We have fabricated a soft silicone structure to support the regeneration of a sciatic nerve. The dev...
The capacity of regenerating nerve fibres to grow through a perforated silicon chip was tested using...
It has been shown previously that peripheral nerve axons regenerate through microvias in silicon dev...
Micromachining technologies were established to fabricate microelectrode arrays and devices for inte...
Since more than 20 years, nerve stumps have been interfaced with sieve-like microsystems with integr...
A micromachined silicon sieve electrode has been developed and fabricated to record from and stimula...
Nerves has been previously interfaced with micro-machined sieve electrodes for recording and stimula...
This paper reports on the design, in vitro and in vivo investigation of a flexible, lightweight, pol...
Regenerative electrodes are designed to interface regenerated axons from a sectioned peripheral nerv...
Peripheral nerve lesions lead to nerve degeneration and flaccid paralysis. The first objective in fu...
A neural interface could be used to control a limb prosthesis. Such an interface can be created by f...
Polyimide sieve electrodes were implanted between the severed ends of the sciatic nerve in rats. The...
Peripheral nerves have been previously interfaced with multi-electrode structures including sieve-sh...
Mechanical guidance is one way in which regenerating axons can be directed towards an appropriate ta...
A mathematical model of the electrical behaviour of an axon in a microchannel was constructed and sh...
We have fabricated a soft silicone structure to support the regeneration of a sciatic nerve. The dev...
The capacity of regenerating nerve fibres to grow through a perforated silicon chip was tested using...