Several multi-electrode array devices integrating planar metal electrodes were designed in the past 30 years for extracellular stimulation and recording from cultured neuronal cells and organotypic brain slices. However, these devices are not well suited for recordings from acute brain slice preparations due to a dead cell layer at the tissue slice border that appears during the cutting procedure. To overcome this problem, we propose the use of protruding 3D electrodes, i.e. tip-shaped electrodes, allowing tissue penetration in order to get closer to living neurons in the tissue slice. In this paper, we describe the design and fabrication of planar and 3D protruding multi-electrode arrays. The electrical differences between planar and 3D pr...
In order to allow neuroscientists to do in vivo recordings on hard to reach brain tissue, such as th...
Position-sensitive biological neural networks, such as the brain and the retina, require position-se...
We have developed a multichannel electrode array—termed μ-foil—that comprises ultrathin and flexible...
Several multi-electrode array devices integrating planar metal electrodes were designed in the past ...
This paper describes the design, microfabrication, electrical characterization and biological evalua...
Objective. In this paper, we report on the development of an easy-to-fabricate three-dimensional Mic...
Simultaneous multipoint extracellular recording of the potentials generated by individual neurons is...
BACKGROUND: Multi-electrode arrays (MEAs) have become popular tools for recording spontaneous and ev...
OBJECTIVE: This study describes the design and microfabrication of a foldable thin-film neural impla...
Objective. In many applications, multielectrode arrays employed as neural implants require a high de...
A three-dimensional platinum (Pt) microelectrode array embedded on a micromachined silicon (S) subst...
Abstract Neural recordings made to date through various approaches—both in-vitro or in-vivo—lack hig...
Microelectrode array recordings of neuronal activity present significant opportunities for studying ...
Recording neural ensembles from awake, behaving animals has been an extremely successful experimenta...
[[abstract]]A novel method has been developed for the manufacture of a three dimensional multi-elect...
In order to allow neuroscientists to do in vivo recordings on hard to reach brain tissue, such as th...
Position-sensitive biological neural networks, such as the brain and the retina, require position-se...
We have developed a multichannel electrode array—termed μ-foil—that comprises ultrathin and flexible...
Several multi-electrode array devices integrating planar metal electrodes were designed in the past ...
This paper describes the design, microfabrication, electrical characterization and biological evalua...
Objective. In this paper, we report on the development of an easy-to-fabricate three-dimensional Mic...
Simultaneous multipoint extracellular recording of the potentials generated by individual neurons is...
BACKGROUND: Multi-electrode arrays (MEAs) have become popular tools for recording spontaneous and ev...
OBJECTIVE: This study describes the design and microfabrication of a foldable thin-film neural impla...
Objective. In many applications, multielectrode arrays employed as neural implants require a high de...
A three-dimensional platinum (Pt) microelectrode array embedded on a micromachined silicon (S) subst...
Abstract Neural recordings made to date through various approaches—both in-vitro or in-vivo—lack hig...
Microelectrode array recordings of neuronal activity present significant opportunities for studying ...
Recording neural ensembles from awake, behaving animals has been an extremely successful experimenta...
[[abstract]]A novel method has been developed for the manufacture of a three dimensional multi-elect...
In order to allow neuroscientists to do in vivo recordings on hard to reach brain tissue, such as th...
Position-sensitive biological neural networks, such as the brain and the retina, require position-se...
We have developed a multichannel electrode array—termed μ-foil—that comprises ultrathin and flexible...