Understanding how the retina encodes the visual scene is a problem, which requires large area, high-density microelectrode arrays to solve. The correlated signals that emerge from the output (ganglion) cells of the retina form a code, which is not well understood. We use a combination of electron beam lithography, photolithography and dry-etch pattern transfer to realise a 519-electrode array in the transparent conductor indium tin oxide (ITO). The electrodes are spaced at 60 mum in a hexagonal close-packed geometry. A mix and match lithography procedure is utilised, whereby the high-density inner region is fabricated using electron beam lithography whilst the outer sections are realised by photolithography. Reactive ion etching (RIE), usin...
Background: Microelectrode array (MEA) devices are frequently used in neural circuit studies, especi...
We have described the development of a flexible microelectrode array with potential applications in ...
Microelectrode array (MEA) is a tool used for recording bioelectric signals from electrically active...
Understanding how the retina encodes the visual scene is a problem, which requires large area, high-...
Understanding how the retina encodes the visual scene is a problem, which requires large area, high-...
The production of high-density, large-area microelectrode arrays for neurophysiology studies require...
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...
To understand how biological neural networks, such as the retina, process information, transparent m...
Neurophysiologists traditionally studied the behaviour of individual neurons by measuring their extr...
Imaging the electrical output activity of biological cells is important to gain an understanding of ...
For several decades, microelectrode array (MEA) has been a powerful tool for in vitro neural electro...
Recent developments in low-power electronics and semiconductor fabrication techniques have found man...
One area of major inter-disciplinary co-operation is between the particle physics and bio-medical co...
[[abstract]]This research is to design micro multi-probe electrode array (MEA) for retinal neuron si...
Background: Microelectrode array (MEA) devices are frequently used in neural circuit studies, especi...
We have described the development of a flexible microelectrode array with potential applications in ...
Microelectrode array (MEA) is a tool used for recording bioelectric signals from electrically active...
Understanding how the retina encodes the visual scene is a problem, which requires large area, high-...
Understanding how the retina encodes the visual scene is a problem, which requires large area, high-...
The production of high-density, large-area microelectrode arrays for neurophysiology studies require...
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...
To understand how biological neural networks, such as the retina, process information, transparent m...
Neurophysiologists traditionally studied the behaviour of individual neurons by measuring their extr...
Imaging the electrical output activity of biological cells is important to gain an understanding of ...
For several decades, microelectrode array (MEA) has been a powerful tool for in vitro neural electro...
Recent developments in low-power electronics and semiconductor fabrication techniques have found man...
One area of major inter-disciplinary co-operation is between the particle physics and bio-medical co...
[[abstract]]This research is to design micro multi-probe electrode array (MEA) for retinal neuron si...
Background: Microelectrode array (MEA) devices are frequently used in neural circuit studies, especi...
We have described the development of a flexible microelectrode array with potential applications in ...
Microelectrode array (MEA) is a tool used for recording bioelectric signals from electrically active...