The analysis of primary neurons is a basic requirement for many areas of neurobiology. However, the range of commercial systems available for culturing primary neurons is functionally limiting, and the expense of these devices is a barrier to both exploratory and large-scale studies. This is especially relevant as primary neurons often require unusual geometries and specialised coatings for optimum growth. Fortunately, the recent revolution in 3D printing offers the possibility to generate customised devices, which can support neuronal growth and constrain neurons in defined paths, thereby enabling many aspects of neuronal physiology to be studied with relative ease. In this article, we provide a detailed description of the system hardware ...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
The interface between engineering and molecular life sciences has been fertile ground for advancing ...
AbstractThe analysis of primary neurons is a basic requirement for many areas of neurobiology. Howev...
The brain is a fascinating structure to investigate not only because of its staggering complexity bu...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
Bottom-up neuroscience aims to engineer well-defined networks of neurons to investigate the function...
The need for in vitro models that mimic the human brain to replace animal testing and allow high-thr...
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 this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
Compartmentalized microfluidic platforms are an invaluable tool in neuroscience research. However, h...
Cells in vitro behave differently if cultured in a 2D or 3D environment. In spite of the continuous ...
Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networ...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
The interface between engineering and molecular life sciences has been fertile ground for advancing ...
AbstractThe analysis of primary neurons is a basic requirement for many areas of neurobiology. Howev...
The brain is a fascinating structure to investigate not only because of its staggering complexity bu...
Neurological disorders have an incidence of more than 90 million people worldwide, and despite the s...
Bottom-up neuroscience aims to engineer well-defined networks of neurons to investigate the function...
The need for in vitro models that mimic the human brain to replace animal testing and allow high-thr...
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 this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
Compartmentalized microfluidic platforms are an invaluable tool in neuroscience research. However, h...
Cells in vitro behave differently if cultured in a 2D or 3D environment. In spite of the continuous ...
Neuronal signal transduction and communication in vivo is based on highly complex and dynamic networ...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, woul...
The interface between engineering and molecular life sciences has been fertile ground for advancing ...