Abstract
Design principles for the development of silicon biointerfaces enable the non-genetic, light-controlled modulation of intracellular Ca2+ dynamics, and of cellular excitability in vitro, in tissue slices and in mouse brains.
Publication
Nature Biomedical Engineering
Assistant Professor at KAIST
Assistant Professor at Vollum Institute, OHSU
![Polina Anikeeva](/author/polina-anikeeva/avatar_hue53cbf917236bae5838aaf6db880f5e8_189947_270x270_fill_q90_lanczos_center.jpg)
Matoula S. Salapatas Professor and Head, Department of Materials Science and EngineeringProfessor, Brain and Cognitive SciencesDirector, K. Lisa Yang Brain-Body CenterAssociate Investigator, McGovern Institute for Brain ResearchAssociate Director, Research Laboratory of Electronics
My goal is to combine the current knowledge of biology and nanoelectronics to develop materials and devices for minimally invasive treatments for neurological and neuromuscular diseases.