Cells in vitro behave differently if cultured in a 2D or 3D environment. In spite of the continuous progress over the recent years, methods available for realizing 3D cultures of primary neurons are still fairly complex, limited in throughput and especially limited in compatibility with other techniques like multielectrode arrays (MEAs) for recording and stimulating the network activity with high temporal precision. In this manuscript, a paper-based approach is presented using cellulose filter paper as a mobile substrate for 3D cultures of primary rat hippocampal and cortical neurons. Acting as 3D scaffolds for network development, filter membranes with different surface treatments were prepared to control network homogeneity and laser cut ...
Currently, large-scale networks derived from dissociated neurons growing and developing in vitro on ...
It has long been assumed that the learning process changes the shape and connectivity of the cells i...
Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networ...
Cells in vitro behave differently if cultured in a 2D or 3D environment. In spite of the continuous ...
Motivation.The central nervous system is subdivided in different parts connected to each other via m...
The study of human brain physiology and diseases like Parkinson´s and Alzheimer’s requires precise m...
Despite the extensive use of in-vitro models for neuroscientific investigations and notwithstanding ...
One type of future, improved neural interfaces is the ‘cultured probe’. It is a hybrid type of neura...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
In vitro electrophysiological investigation of neural activity at a network level holds tremendous p...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
One type of future, improved neural interface is the "cultured probe"?. It is a hybrid type of neura...
One type of future, improved neural interface is the “cultured probe”. It is a hybrid type of neural...
In vitro electrophysiological investigation of neural activity at a network level holds tremendous p...
Currently, large-scale networks derived from dissociated neurons growing and developing in vitro on ...
It has long been assumed that the learning process changes the shape and connectivity of the cells i...
Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networ...
Cells in vitro behave differently if cultured in a 2D or 3D environment. In spite of the continuous ...
Motivation.The central nervous system is subdivided in different parts connected to each other via m...
The study of human brain physiology and diseases like Parkinson´s and Alzheimer’s requires precise m...
Despite the extensive use of in-vitro models for neuroscientific investigations and notwithstanding ...
One type of future, improved neural interfaces is the ‘cultured probe’. It is a hybrid type of neura...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
In vitro electrophysiological investigation of neural activity at a network level holds tremendous p...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
One type of future, improved neural interface is the "cultured probe"?. It is a hybrid type of neura...
One type of future, improved neural interface is the “cultured probe”. It is a hybrid type of neural...
In vitro electrophysiological investigation of neural activity at a network level holds tremendous p...
Currently, large-scale networks derived from dissociated neurons growing and developing in vitro on ...
It has long been assumed that the learning process changes the shape and connectivity of the cells i...
Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networ...