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Research Supported by the PIE Foundry
A Library of Polymer-based Microelectrode Array Designs for Recording from the Brain of Different Animal Models
A Shared Resource for Building Polymer-Based Microelectrode Arrays as Neural Interfaces
C-Shaped Miniaturized Coil for Transcranial Magnetic Stimulation in Rodents
Making a Case for Endovascular Approaches for Neural Recording and Stimulation
Subthreshold Repetitive Transcranial Magnetic Stimulation Suppresses Ketamine-Induced Poly Population Spikes in Rat Sensorimotor Cortex
Towards a Leadless Wirelessly Controlled Intravenous Cardiac Pacemaker
Acute in vivo Recording with a Generic Parylene Microelectrode Array Implanted with Dip-coating Method into the Rat Brain
A 512-Channel Multi-Layer Polymer-Based Neural Probe Array
A Parylene Neural Probe Array for Multi-Region Deep Brain Recordings
Background on Polymer Microelectrode Array Technology
Flexible, Penetrating Brain Probes Enabled by Advances in Polymer Microfabrication
Long-Term Stability of Intracortical Recordings Using Perforated and Arrayed Parylene Sheath Electrodes:
Acute in vivo Testing of a Conformal Polymer Microelectrode Array for Multi-Region Hippocampal Recordings
Parylene-Based Cuff Electrode with Integrated Microfluidics for Peripheral Nerve Recording, Stimulation, and Drug Delivery
Acute in vivo Testing of a Polymer Cuff Electrode with Integrated Microfluidic Channels for Stimulation, Recording, and Drug Delivery on Rat Sciatic Nerve
Electron-Beam Lithography for Polymer BioMEMS with Submicron Features