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Updated: Jun 12, 2025

Intact Histological Characterization of Brain-implanted Microdevices and Surrounding Tissue
Published on: February 11, 2013
Enhancing biocompatibility of the brain-machine interface: A review
Jordan Villa1, Joaquin Cury1, Lexie Kessler1
1Northwestern University-Feinberg School of Medicine, Department of Otolaryngology, USA.
Abstract:
In vivo implantation of microelectrodes opens the door to studying neural circuits and restoring damaged neural pathways through direct electrical stimulation and recording. Although some neuroprostheses have achieved clinical success, electrode material properties, inflammatory response, and glial scar formation at the electrode-tissue interfaces affect performance and sustainability. Those challenges can be addressed by improving some of the materials' mechanical, physical, chemical, and electrical properties. This paper reviews materials and designs of current microelectrodes and discusses perspectives to advance neuroprosthetics performance.

