Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networks among neurons expanding in a three-dimensional (3D) manner. Studies of cell-cell communication, synaptogenesis, and neural network plasticity constitute major research areas for understanding the involvement of neurons in neurodegenerative diseases, such as Huntington\u27s, Alzheimer\u27s, and Parkinson\u27s disease, and in regenerative neural plasticity responses in situations, such as neurotrauma or stroke. Various cell culture systems constitute important experimental platforms to study neuronal functions in health and disease. A major downside of the existing cell culture systems is that the alienating planar cell environment leads to ...
To recreate in vitro 3D neuronal circuits will ultimately increase the relevance of results from cul...
Alzheimer’s disease (AD) has become increasingly prevalent owing to the rise in aging population, he...
Impairments in neuronal circuits underly multiple neurodevelopmental and neurodegenerative disorders...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
University of Patras;University of Ioannina;National Technical University of Athens;University of Th...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
The generation of 3D networks of primary neurons is a big challenge in neuroscience. Here, a novel m...
Neurodegenerative diseases, including Alzheimer’s disease and Parkinson’s disease, are characterized...
\u3cp\u3eIn order to better understand the brain and brain diseases, in vitro human brain models nee...
\u3cp\u3eA new generation of in vitro human brain models is vital to surpass the limitations of curr...
To recreate in vitro 3D neuronal circuits will ultimately increase the relevance of results from cul...
To recreate in vitro 3D neuronal circuits will ultimately increase the relevance of results from cul...
To recreate in vitro 3D neuronal circuits will ultimately increase the relevance of results from cul...
Alzheimer’s disease (AD) has become increasingly prevalent owing to the rise in aging population, he...
Impairments in neuronal circuits underly multiple neurodevelopmental and neurodegenerative disorders...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
University of Patras;University of Ioannina;National Technical University of Athens;University of Th...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
The generation of 3D networks of primary neurons is a big challenge in neuroscience. Here, a novel m...
Neurodegenerative diseases, including Alzheimer’s disease and Parkinson’s disease, are characterized...
\u3cp\u3eIn order to better understand the brain and brain diseases, in vitro human brain models nee...
\u3cp\u3eA new generation of in vitro human brain models is vital to surpass the limitations of curr...
To recreate in vitro 3D neuronal circuits will ultimately increase the relevance of results from cul...
To recreate in vitro 3D neuronal circuits will ultimately increase the relevance of results from cul...
To recreate in vitro 3D neuronal circuits will ultimately increase the relevance of results from cul...
Alzheimer’s disease (AD) has become increasingly prevalent owing to the rise in aging population, he...
Impairments in neuronal circuits underly multiple neurodevelopmental and neurodegenerative disorders...