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Insertion of linear 8.4 μm diameter 16 channel carbon fiber electrode arrays for single unit recordings.
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Design and fabrication of a polyimide-based microelectrode array: application in neural recording and repeatable electrolytic lesion in rat brain.
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Capturing the Electrical Activity of all Cortical Neurons: Are Solutions Within Reach?
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Electrode Arrays for Detecting and Modulating Deep Brain Neural Information in Primates: A Review.
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Fabrication and Validation of Sub-Cellular Carbon Fiber Electrodes.
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Translational opportunities and challenges of invasive electrodes for neural interfaces.
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Implantable intracortical microelectrodes: reviewing the present with a focus on the future.
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Flexible Electronics and Devices as Human-Machine Interfaces for Medical Robotics.
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A Microclip Peripheral Nerve Interface (μcPNI) for Bioelectronic Interfacing with Small Nerves.
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A micro-scale printable nanoclip for electrical stimulation and recording in small nerves.
J Neural Eng. 2017 Jun;14(3):036006. doi: 10.1088/1741-2552/aa5a5b. Epub 2017 Mar 21.
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Vagus nerve stimulation inhibits cytokine production and attenuates disease severity in rheumatoid arthritis.
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Insertion of linear 8.4 μm diameter 16 channel carbon fiber electrode arrays for single unit recordings.
J Neural Eng. 2015 Aug;12(4):046009. doi: 10.1088/1741-2560/12/4/046009. Epub 2015 Jun 2.
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Neural stimulation and recording with bidirectional, soft carbon nanotube fiber microelectrodes.
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Carotid body, insulin, and metabolic diseases: unraveling the links.
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Bioelectronic medicines: a research roadmap.
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A carbon-fiber electrode array for long-term neural recording.
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Drug discovery: a jump-start for electroceuticals.
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