Commercial microelectrode arrays (MEAs) for in vitro neuroelectrophysiology studies rely on conventional two dimensional (2D) neuronal cultures that are seeded on the planar surface of such MEAs and thus form a random neuronal network. The cells attaching on these types of surfaces grow in 2D and lose their native morphology, which may also influence their neuroelectrical behavior. Besides, a random neuronal network formed on this planar surface in vitro also lacks comparison to the in vivo state of brain tissue. In order to improve the present MEA platform with the above mentioned concerns, in this paper, the authors introduce a three dimensional platform for neuronal cell culturing, where a linear nanoscaffold is patterned on a microsieve...
One type of future, improved neural interfaces is the ‘cultured probe’. It is a hybrid type of neura...
A revolution in cell culturing has been seen in the last two decades in which 3D culturing became th...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
Commercial microelectrode arrays (MEAs) for in vitro neuroelectrophysiology studies rely on conventi...
The aim of this project is to integrate neuronal cell culture with commercial or in-house built micr...
Efficient and selective electrical stimulation and recording of neural activity in peripheral, spina...
Neuronal networks in dissociated culture combined with cell engineering technology offer a pivotal p...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
Background: Multi-electrode arrays (MEAs) allow non-invasive multi-unit recording in-vitro from cult...
Measuring neuronal responses along all three spatial dimensions is the next step, beyond the capacit...
Motivation.The central nervous system is subdivided in different parts connected to each other via m...
The ability to culture individual neurons and direct their connections on functional interfaces prov...
International audienceIn this paper we present compartmentalized neuron arraying (CNA) microfluidic ...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
The human brain is a highly interconnected system, consisting of about 86 billion neurons,$^{[1]}$ e...
One type of future, improved neural interfaces is the ‘cultured probe’. It is a hybrid type of neura...
A revolution in cell culturing has been seen in the last two decades in which 3D culturing became th...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...
Commercial microelectrode arrays (MEAs) for in vitro neuroelectrophysiology studies rely on conventi...
The aim of this project is to integrate neuronal cell culture with commercial or in-house built micr...
Efficient and selective electrical stimulation and recording of neural activity in peripheral, spina...
Neuronal networks in dissociated culture combined with cell engineering technology offer a pivotal p...
In this work we present advances in three dimensional (3D) neuronal cell culture systems based on a ...
Background: Multi-electrode arrays (MEAs) allow non-invasive multi-unit recording in-vitro from cult...
Measuring neuronal responses along all three spatial dimensions is the next step, beyond the capacit...
Motivation.The central nervous system is subdivided in different parts connected to each other via m...
The ability to culture individual neurons and direct their connections on functional interfaces prov...
International audienceIn this paper we present compartmentalized neuron arraying (CNA) microfluidic ...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
The human brain is a highly interconnected system, consisting of about 86 billion neurons,$^{[1]}$ e...
One type of future, improved neural interfaces is the ‘cultured probe’. It is a hybrid type of neura...
A revolution in cell culturing has been seen in the last two decades in which 3D culturing became th...
The brain-on-a-chip technology aims to provide an efficient and economic in vitro platform for brain...