Intracortical electrodes for neuromodulation within the cortex rely on intimate contact with tissues for recording signals and stimulating neurons. In vivo approaches for evaluating responses to intracortical devices are resource intensive and complex, making statistically significant, high throughput data difficult to obtain. In vitro models provide an alternative to in vivo studies; however, existing approaches have limitations which restrict the translation of the cellular reactions to the implant scenario. Most notably, there is no current model that includes the four principle cell types critical to the health and function of the central nervous system (CNS). Initially, the utility and limitations of a clonal cell and a primary dissoci...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
In vertebrate nervous system, formation of myelin sheaths around axons is essential for rapid nerve ...
The success of neural electrode technology to understand brain function and restore lost motor or se...
The capacity to predict in vivo responses to medical devices in humans currently relies greatly on i...
This work characterized an in vitro 3-D neural co-culture model electrophysiologically via multi ele...
This work characterized an in vitro 3-D neural co-culture model electrophysiologically via multi ele...
Producing therapeutic neural cell populations in vitro to treat neurodegenerative diseases is a key ...
Producing therapeutic neural cell populations in vitro to treat neurodegenerative diseases is a key ...
Neuroprosthetic devices record extracellular cortical signals which may be used to place exterior de...
Neuroprosthetic devices record extracellular cortical signals which may be used to place exterior de...
The cortical brain-machine interface has the potential to improve the quality of life for millions o...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
Neural interfacing devices interact with the central nervous system to alleviate functional deficits...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
In vertebrate nervous system, formation of myelin sheaths around axons is essential for rapid nerve ...
The success of neural electrode technology to understand brain function and restore lost motor or se...
The capacity to predict in vivo responses to medical devices in humans currently relies greatly on i...
This work characterized an in vitro 3-D neural co-culture model electrophysiologically via multi ele...
This work characterized an in vitro 3-D neural co-culture model electrophysiologically via multi ele...
Producing therapeutic neural cell populations in vitro to treat neurodegenerative diseases is a key ...
Producing therapeutic neural cell populations in vitro to treat neurodegenerative diseases is a key ...
Neuroprosthetic devices record extracellular cortical signals which may be used to place exterior de...
Neuroprosthetic devices record extracellular cortical signals which may be used to place exterior de...
The cortical brain-machine interface has the potential to improve the quality of life for millions o...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
Neural interfacing devices interact with the central nervous system to alleviate functional deficits...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
The complexity of the central nervous system (CNS) requires researchers to consider all the variable...
In vertebrate nervous system, formation of myelin sheaths around axons is essential for rapid nerve ...
The success of neural electrode technology to understand brain function and restore lost motor or se...