OBJECTIVE: Most preparations for making neural recordings degrade over time and eventually fail due to insertion trauma and reactive tissue response. The magnitudes of these responses are thought to be related to the electrode size (specifically, the cross-sectional area), the relative stiffness of the electrode, and the degree of tissue tolerance for the material. Flexible carbon fiber ultra-microelectrodes have a much smaller cross-section than traditional electrodes and low tissue reactivity, and thus may enable improved longevity of neural recordings in the central and peripheral nervous systems. Only two carbon fiber array designs have been described previously, each with limited channel densities due to limitations of the fabrication ...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
© 2017 Dr. Nicholas V. ApolloA new generation of neural interfacing (NI) devices is needed to realiz...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
Increasingly advanced tools are desired for understanding electrical activity in the brain, whether ...
Polymer-derived carbon can serve as an electrode material in multimodal neural stimulation, recordin...
Polymer-derived carbon can serve as an electrode material in multimodal neural stimulation, recordin...
Multi-channel micro electrodes for neural recording is a growing field that thrives on novel materia...
Polymer‐derived carbon can serve as an electrode material in multimodal neural stimulation, recordin...
Microelectrodes are unique electrodes used to study the electrical activity of individual biological...
Neural interfacing devices using penetrating microelectrode arrays have emerged as an important tool...
© 2017 American Chemical Society. Microelectrodes provide a direct pathway to investigate brain acti...
Carbon fiber electrodes (CFEs) are ideal for chronic electrophysiological recordings because of thei...
Carbon fiber electrodes (CFEs) are ideal for chronic electrophysiological recordings because of thei...
Neurochemistry has always been a topic that many scientists are interested in researching because th...
The development of microelectrodes capable of safely stimulating and recording neural activity is a ...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
© 2017 Dr. Nicholas V. ApolloA new generation of neural interfacing (NI) devices is needed to realiz...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
Increasingly advanced tools are desired for understanding electrical activity in the brain, whether ...
Polymer-derived carbon can serve as an electrode material in multimodal neural stimulation, recordin...
Polymer-derived carbon can serve as an electrode material in multimodal neural stimulation, recordin...
Multi-channel micro electrodes for neural recording is a growing field that thrives on novel materia...
Polymer‐derived carbon can serve as an electrode material in multimodal neural stimulation, recordin...
Microelectrodes are unique electrodes used to study the electrical activity of individual biological...
Neural interfacing devices using penetrating microelectrode arrays have emerged as an important tool...
© 2017 American Chemical Society. Microelectrodes provide a direct pathway to investigate brain acti...
Carbon fiber electrodes (CFEs) are ideal for chronic electrophysiological recordings because of thei...
Carbon fiber electrodes (CFEs) are ideal for chronic electrophysiological recordings because of thei...
Neurochemistry has always been a topic that many scientists are interested in researching because th...
The development of microelectrodes capable of safely stimulating and recording neural activity is a ...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
© 2017 Dr. Nicholas V. ApolloA new generation of neural interfacing (NI) devices is needed to realiz...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...