Microelectrode array (MEA) is a tool used for recording bioelectric signals from electrically active cells in vitro. In this paper, ion beam assisted electron beam deposition (IBAD) has been used for depositing indium tin oxide (ITO) and titanium nitride (TiN) thin films which are applied as transparent track and electrode materials in MEAs. In the first version, both tracks and electrodes were made of ITOto guarantee full transparency and thus optimal imaging capability. In the second version, very thin (20 nm) ITO electrodes were coated with a thin (40 nm) TiN layer to decrease the impedance of O30 μm electrodes to one third (1200 kΩ → 320 kΩ) while maintaining (partial) transparency. The third version was also composed of transparent ITO...
Advanced optical imaging techniques address important biological questions in neuroscience, where st...
The production of high-density, large-area microelectrode arrays for neurophysiology studies require...
For several decades, microelectrode array (MEA) has been a powerful tool for in vitro neural electro...
Microelectrode array (MEA) is a tool used for recording bioelectric signals from electrically active...
Low noise platinum black or sputtered titanium nitride (TiN) microelectrodes are typically used for ...
Low noise platinum black or sputtered titanium nitride (TiN) microelectrodes are typically used for ...
This thesis study was made, to develop the microfabrication process for transparent microelectrode a...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
To understand the neural code, that the retina uses to communicate the visual scene to the brain, la...
To understand the neural code, that the retina uses to communicate the visual scene to the brain, la...
Advanced optical imaging techniques address important biological questions in neuroscience, where st...
The production of high-density, large-area microelectrode arrays for neurophysiology studies require...
For several decades, microelectrode array (MEA) has been a powerful tool for in vitro neural electro...
Microelectrode array (MEA) is a tool used for recording bioelectric signals from electrically active...
Low noise platinum black or sputtered titanium nitride (TiN) microelectrodes are typically used for ...
Low noise platinum black or sputtered titanium nitride (TiN) microelectrodes are typically used for ...
This thesis study was made, to develop the microfabrication process for transparent microelectrode a...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
Microelectrode material and cell culture medium have significant roles in the signal-to-noise ratio ...
To understand the neural code, that the retina uses to communicate the visual scene to the brain, la...
To understand the neural code, that the retina uses to communicate the visual scene to the brain, la...
Advanced optical imaging techniques address important biological questions in neuroscience, where st...
The production of high-density, large-area microelectrode arrays for neurophysiology studies require...
For several decades, microelectrode array (MEA) has been a powerful tool for in vitro neural electro...