Polymer‐derived carbon can serve as an electrode material in multimodal neural stimulation, recording, and neurotransmitter sensing platforms. The primary challenge in its applicability in implantable, flexible neural devices is its characteristic mechanical hardness that renders it difficult to fabricate the entire device using only carbon. A microfabrication technique is introduced for patterning flexible, cloth‐like, polymer‐derived carbon fiber (CF) mats embedded in polyimide (PI), via selective reactive ion etching. This scalable, monolithic manufacturing method eliminates any joints or metal interconnects and creates electrocorticography electrode arrays based on a single CF mat. The batch‐fabricated CF/PI composite structures, with c...
© 2017 American Chemical Society. Microelectrodes provide a direct pathway to investigate brain acti...
International audienceWord count: 199 In this study, we report a flexible implantable 4-channel micr...
We report on a novel technology for microfabricating 3D origami-styled micro electromechanical syste...
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...
OBJECTIVE: Most preparations for making neural recordings degrade over time and eventually fail due ...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
Multi-channel micro electrodes for neural recording is a growing field that thrives on novel materia...
Neural interfacing devices using penetrating microelectrode arrays have emerged as an important tool...
Carbon microfibers (MFs) coated with conducting polymers may provide a solution for long-term record...
Thesis (Master's)--University of Washington, 2015Current neural-prosthetic devices fail to provide h...
We report on the superior electrochemical properties, in-vivo performance and long term stability un...
In this study, we report a flexible implantable 4-channel microelectrode probe coated with highly po...
Increasingly advanced tools are desired for understanding electrical activity in the brain, whether ...
© 2017 American Chemical Society. Microelectrodes provide a direct pathway to investigate brain acti...
International audienceWord count: 199 In this study, we report a flexible implantable 4-channel micr...
We report on a novel technology for microfabricating 3D origami-styled micro electromechanical syste...
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...
OBJECTIVE: Most preparations for making neural recordings degrade over time and eventually fail due ...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is...
Multi-channel micro electrodes for neural recording is a growing field that thrives on novel materia...
Neural interfacing devices using penetrating microelectrode arrays have emerged as an important tool...
Carbon microfibers (MFs) coated with conducting polymers may provide a solution for long-term record...
Thesis (Master's)--University of Washington, 2015Current neural-prosthetic devices fail to provide h...
We report on the superior electrochemical properties, in-vivo performance and long term stability un...
In this study, we report a flexible implantable 4-channel microelectrode probe coated with highly po...
Increasingly advanced tools are desired for understanding electrical activity in the brain, whether ...
© 2017 American Chemical Society. Microelectrodes provide a direct pathway to investigate brain acti...
International audienceWord count: 199 In this study, we report a flexible implantable 4-channel micr...
We report on a novel technology for microfabricating 3D origami-styled micro electromechanical syste...