We report here the patterning of primary rat neurons and astrocytes from the postnatal hippocampus on ultra-thin parylene-C deposited on a silicon dioxide substrate, following observations of neuronal, astrocytic and nuclear coverage on strips of different lengths, widths and thicknesses. Neuronal and glial growth was characterized ‘on’, ‘adjacent to’ and ‘away from’ the parylene strips. In addition, the article reports how the same material combination can be used to isolate single cells along thin tracks of parylene-C. This is demonstrated with a series of high magnification images of the experimental observations for varying parylene strip widths and thicknesses. Thus, the findings demonstrate the possibility to culture cells on ultra-th...
The increasing use of patterned neural networks in multielectrode arrays and similar devices drives ...
The increasing use of patterned neural networks in multielectrode arrays and similar devices drives ...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
It is estimated that the adult human brain contains 100 billion neurons with 5-10 times as many astr...
It is estimated that the adult human brain contains 100 billion neurons with 5–10 times as many astr...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
Interfacing neurons with silicon semiconductors is a challenge being tackled through various bioengi...
This paper explores the long term development of networks of glia and neurons on patterns of Parylen...
Neuronal patterning on microfabricated architectures has developed rapidly over the past few years, ...
Neuronal patterning on microfabricated architectures has developed rapidly over the past years, toge...
[[abstract]]A novel 8-channel neuroprobe completely protected by biocompatible parylene C was fabric...
This article describes high resolution patterning of HEK 293 cells on a construct of micropatterned ...
The increasing use of patterned neural networks in multielectrode arrays and similar devices drives ...
The increasing use of patterned neural networks in multielectrode arrays and similar devices drives ...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
It is estimated that the adult human brain contains 100 billion neurons with 5-10 times as many astr...
It is estimated that the adult human brain contains 100 billion neurons with 5–10 times as many astr...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
This paper describes a simple technique for the patterning of glia and neurons. The integration of n...
Cell patterning platforms support broad research goals, such as construction of predefined in vitro ...
Interfacing neurons with silicon semiconductors is a challenge being tackled through various bioengi...
This paper explores the long term development of networks of glia and neurons on patterns of Parylen...
Neuronal patterning on microfabricated architectures has developed rapidly over the past few years, ...
Neuronal patterning on microfabricated architectures has developed rapidly over the past years, toge...
[[abstract]]A novel 8-channel neuroprobe completely protected by biocompatible parylene C was fabric...
This article describes high resolution patterning of HEK 293 cells on a construct of micropatterned ...
The increasing use of patterned neural networks in multielectrode arrays and similar devices drives ...
The increasing use of patterned neural networks in multielectrode arrays and similar devices drives ...
This research presents new designs and materials for neural recording and stimulation technology. Gr...