Microelectrode arrays (MEAs) enable the recording of electrical activity from cortical neurons which has implications for basic neuroscience and neuroprosthetic applications. The design space for MEA technology is extremely wide where devices may vary with respect to the number of monolithic shanks as well as placement of microelectrode sites. In the present study, we examine the differences in recording ability between two different MEA configurations: single shank (SS) and multi-shank (MS), both of which consist of 16 recording sites implanted in the rat motor cortex. We observed a significant difference in the proportion of active microelectrode sites over the 8-week indwelling period, in which SS devices exhibited a consistent ability t...
The ventral spinal roots contain the axons of spinal motoneurons and provide the only location in th...
© 2019 Elsevier Ltd Reliable single unit neuron recordings from chronically implanted microelectrode...
The ventral spinal roots contain the axons of spinal motoneurons and provide the only location in th...
While microelectrode arrays (MEAs) offer the promise of elucidating functional neural circuitry and ...
Improving cortical prostheses requires the development of recording neural interfaces that are effic...
Intracortical microelectrode arrays are used for recording neural signals at single-unit resolution ...
Intracortical microstimulation (ICMS) is one of the most widely employed techniques for providing ca...
The developing field of brain machine interface contains enormous potential for therapeutic benefit....
This paper presents long-term stable multichannel recording of neural activity using novel intracort...
Implantable microelectrode arrays for chronic neural recordings receive an attention by a number of ...
Planar multisite microprobes, fabricated using solid-state process technology and silicon micromachi...
In the field of neural prosthetics, electro-cortico-graph (ECoG) arrays are commonly used to record ...
Multielectrodes have been used with great success to simultaneously record the activity of neuronal ...
Abstract—Intracortical microelectrodes play a prominent role in the operation of neural interfacing ...
Chronically implanted microelectrodes are an invaluable tool for neuroscientific research, allowing ...
The ventral spinal roots contain the axons of spinal motoneurons and provide the only location in th...
© 2019 Elsevier Ltd Reliable single unit neuron recordings from chronically implanted microelectrode...
The ventral spinal roots contain the axons of spinal motoneurons and provide the only location in th...
While microelectrode arrays (MEAs) offer the promise of elucidating functional neural circuitry and ...
Improving cortical prostheses requires the development of recording neural interfaces that are effic...
Intracortical microelectrode arrays are used for recording neural signals at single-unit resolution ...
Intracortical microstimulation (ICMS) is one of the most widely employed techniques for providing ca...
The developing field of brain machine interface contains enormous potential for therapeutic benefit....
This paper presents long-term stable multichannel recording of neural activity using novel intracort...
Implantable microelectrode arrays for chronic neural recordings receive an attention by a number of ...
Planar multisite microprobes, fabricated using solid-state process technology and silicon micromachi...
In the field of neural prosthetics, electro-cortico-graph (ECoG) arrays are commonly used to record ...
Multielectrodes have been used with great success to simultaneously record the activity of neuronal ...
Abstract—Intracortical microelectrodes play a prominent role in the operation of neural interfacing ...
Chronically implanted microelectrodes are an invaluable tool for neuroscientific research, allowing ...
The ventral spinal roots contain the axons of spinal motoneurons and provide the only location in th...
© 2019 Elsevier Ltd Reliable single unit neuron recordings from chronically implanted microelectrode...
The ventral spinal roots contain the axons of spinal motoneurons and provide the only location in th...