2024
A subdural CMOS optical device for bidirectional neural interfacing
Pollmann E, Yin H, Uguz I, Dubey A, Wingel K, Choi J, Moazeni S, Gilhotra Y, Andino-Pavlovsky V, Banees A, Parihar A, Boominathan V, Robinson J, Veeraraghavan A, Pieribone V, Pesaran B, Shepard K. A subdural CMOS optical device for bidirectional neural interfacing. Nature Electronics 2024, 7: 829-841. DOI: 10.1038/s41928-024-01209-w.Peer-Reviewed Original ResearchComplementary metal-oxide-semiconductorOptical devicesMetal-oxide-semiconductorForm factorsCMOS application-specific integrated circuitOptical stimulationApplication-specific integrated circuitIntegrated circuitsMiniature microscopeBidirectional neural interfaceOptogenetic stimulationNeural activityDevicesNeural interfacesCortical areasUltrathinSpatial-temporal precisionPrimate brainFluorescence imaging
2012
Design Constraints for Mobile, High-Speed Fluorescence Brain Imaging in Awake Animals
Osman A, Park JH, Dickensheets D, Platisa J, Culurciello E, Pieribone VA. Design Constraints for Mobile, High-Speed Fluorescence Brain Imaging in Awake Animals. IEEE Transactions On Biomedical Circuits And Systems 2012, 6: 446-453. PMID: 23853231, DOI: 10.1109/tbcas.2012.2226174.Peer-Reviewed Original Research