AbstractThis paper presents the design, fabrication and characterization of high-density neural probes based on complementary-metal-oxide-semiconductor (CMOS) technology. A new version of the electronic depth control (EDC) addressing scheme is implemented in the slender probe shaft enabling an increased number of simultaneously addressable electrodes compared to our previous EDC devices. Two further channels allow operating selected electrodes for purposes of stimulation or local referencing. Probes with a shaft width of 100 μm and lengths up to 10 mm carrying a maximum number of 334 electrodes with an inter-electrode spacing of 30 μm have been implemented. The integrated CMOS circuitry is realized using the commercial 0.18 μm double-poly, ...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
Aprocess of making a new type of silicon depth-probe microelectrode array is described using a comb...
Understanding interactions among nerve cells and the structures and signal transmission properties o...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
In vivo recording of neural action-potential (AP) and local-field-potential (LFP) signals requires t...
Neural probes have become the most important tool for enabling neuroscientists to place microelectro...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
AbstractA laminar 24-contact silicon electrode was designed for acute extracellular neural recording...
We present a high density CMOS neural probe with active electrodes (pixels), consisting of dedicate...
AbstractA novel silicon-based microelectrode array with one- and two-dimensional variants was develo...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
The electrophysiological observation of neurological cells has allowed much knowledge to be gathered...
Extracellular electrode arrays can reveal the neuronal network correlates of behavior with single-ce...
The past decade has witnessed an explosive growth in our ability to observe and measure brain activi...
Large-scale neural recording requires more advanced and denser brain interfaces. This paper describe...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
Aprocess of making a new type of silicon depth-probe microelectrode array is described using a comb...
Understanding interactions among nerve cells and the structures and signal transmission properties o...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
In vivo recording of neural action-potential (AP) and local-field-potential (LFP) signals requires t...
Neural probes have become the most important tool for enabling neuroscientists to place microelectro...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
AbstractA laminar 24-contact silicon electrode was designed for acute extracellular neural recording...
We present a high density CMOS neural probe with active electrodes (pixels), consisting of dedicate...
AbstractA novel silicon-based microelectrode array with one- and two-dimensional variants was develo...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
The electrophysiological observation of neurological cells has allowed much knowledge to be gathered...
Extracellular electrode arrays can reveal the neuronal network correlates of behavior with single-ce...
The past decade has witnessed an explosive growth in our ability to observe and measure brain activi...
Large-scale neural recording requires more advanced and denser brain interfaces. This paper describe...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
Aprocess of making a new type of silicon depth-probe microelectrode array is described using a comb...
Understanding interactions among nerve cells and the structures and signal transmission properties o...