Neural probes have become the most important tool for enabling neuroscientists to place microelectrode sensors close to individual neurons and to monitor their activity in vivo. With such devices, it is possible to perform acute or chronic extracellular recordings of electrical activity from a single neuron or from groups of neurons. After the many developments in neural implants, it has become clear that large arrays of electrodes are desirable to further investigate the activity performed by complex neural networks. Therefore, in this paper, we propose a CMOS neural probe containing 455 active electrodes in the probe shank (100 μm wide, 10 mm long, and 50 μm thick) and 52 simultaneous readout channels in the probe body (2.9 × 3.3 mm2). In...
Large-scale in vivo electrophysiology requires tools that enable simultaneous recording of multiple ...
Large-scale neural recording requires more advanced and denser brain interfaces. This paper describe...
We present a high density CMOS neural probe with active electrodes (pixels), consisting of dedicate...
Neural probes have become the most important tool for enabling neuroscientists to place microelectro...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
We present a high density CMOS neural probe with active electrodes (pixels), consisting of dedicated...
In vivo recording of neural action-potential (AP) and local-field-potential (LFP) signals requires t...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
Large-scale in vivo electrophysiology requires tools that enable simultaneous recording of multiple ...
Large-scale neural recording requires more advanced and denser brain interfaces. This paper describe...
We present a high density CMOS neural probe with active electrodes (pixels), consisting of dedicate...
Neural probes have become the most important tool for enabling neuroscientists to place microelectro...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
We present a high density CMOS neural probe with active electrodes (pixels), consisting of dedicated...
In vivo recording of neural action-potential (AP) and local-field-potential (LFP) signals requires t...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
In vivo recording of neural action-potential and local-field-potential signals requires the use of h...
We present a high electrode density and high channel count CMOS (complementary metal-oxide-semicondu...
Large-scale in vivo electrophysiology requires tools that enable simultaneous recording of multiple ...
Large-scale neural recording requires more advanced and denser brain interfaces. This paper describe...
We present a high density CMOS neural probe with active electrodes (pixels), consisting of dedicate...