AbstractSilicon micromachined deep brain multielectrodes (up to 70mm) with monolithically integrated microfluidic channels have been realized to perform simultaneous electrical recording and drug delivery in deep brain regions. Fabrication process of the drug delivery channels and the Pt recording sites is demonstrated. Electrical characterization, impedance tuning and in-vivo testing of the developed probes are also presented. The functionality of the buried microfluidic channel is verified and pressure-flow characteristic of the channel is established
International audienceIn order to understand the dynamics of large neural networks, where informatio...
AbstractA laminar 24-contact silicon electrode was designed for acute extracellular neural recording...
Multipoint electrical stimulation and extracellular recording in the central nervous system are two ...
Silicon-based microelectrodes have been confirmed to be helpful in neural prostheses. The fabricated...
Abstract—A 256-channel integrated interface for simultaneous recording of distributed neural activit...
Extracellular neural recording requires neural probes having more recording sites as well as limited...
Bidirectional neural interfaces for multi-channel, high-density recording and electrical stimulation...
Abstract Intracortical microprobes allow the precise monitoring of electrical and chemical signaling...
The development of an implantable five channel microelectrode array is presented for neural signal r...
This paper reports on a novel type of silicon-based microprobes with linear, two and three dimension...
A two-dimensional (2D) multi-channel silicon-based microelectrode array is developed for recording n...
A multifunctional chemical neural probe fabrication process exploiting PDMS thin-film transfer to in...
Implantable neural probes are one of the most important technologies for neuroscientists to detect a...
Abstract The demand for multifunctional neural interfaces has grown due to the need to provide a bet...
Abstract—This work presents a new method of fabricating implantable multielectrode arrays on lightly...
International audienceIn order to understand the dynamics of large neural networks, where informatio...
AbstractA laminar 24-contact silicon electrode was designed for acute extracellular neural recording...
Multipoint electrical stimulation and extracellular recording in the central nervous system are two ...
Silicon-based microelectrodes have been confirmed to be helpful in neural prostheses. The fabricated...
Abstract—A 256-channel integrated interface for simultaneous recording of distributed neural activit...
Extracellular neural recording requires neural probes having more recording sites as well as limited...
Bidirectional neural interfaces for multi-channel, high-density recording and electrical stimulation...
Abstract Intracortical microprobes allow the precise monitoring of electrical and chemical signaling...
The development of an implantable five channel microelectrode array is presented for neural signal r...
This paper reports on a novel type of silicon-based microprobes with linear, two and three dimension...
A two-dimensional (2D) multi-channel silicon-based microelectrode array is developed for recording n...
A multifunctional chemical neural probe fabrication process exploiting PDMS thin-film transfer to in...
Implantable neural probes are one of the most important technologies for neuroscientists to detect a...
Abstract The demand for multifunctional neural interfaces has grown due to the need to provide a bet...
Abstract—This work presents a new method of fabricating implantable multielectrode arrays on lightly...
International audienceIn order to understand the dynamics of large neural networks, where informatio...
AbstractA laminar 24-contact silicon electrode was designed for acute extracellular neural recording...
Multipoint electrical stimulation and extracellular recording in the central nervous system are two ...