High-efficiency channelrhodopsins for fast neuronal stimulation at low light levels
暂无分享,去创建一个
K. Deisseroth | K. Tye | T. Oertner | P. Hegemann | Joanna Mattis | André Berndt | P. Schoenenberger | Andre Berndt | Philipp Schoenenberger | J. Mattis
[1] D. Muller,et al. A simple method for organotypic cultures of nervous tissue , 1991, Journal of Neuroscience Methods.
[2] N. Guex,et al. SWISS‐MODEL and the Swiss‐Pdb Viewer: An environment for comparative protein modeling , 1997, Electrophoresis.
[3] Hannah Monyer,et al. Functional and Molecular Differences between Voltage-Gated K+ Channels of Fast-Spiking Interneurons and Pyramidal Neurons of Rat Hippocampus , 1998, The Journal of Neuroscience.
[4] H Luecke,et al. Structure of bacteriorhodopsin at 1.55 A resolution. , 1999, Journal of molecular biology.
[5] R. Tsien,et al. A monomeric red fluorescent protein , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[6] E. Bamberg,et al. Channelrhodopsin-2, a directly light-gated cation-selective membrane channel , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[7] K. Deisseroth,et al. Millisecond-timescale, genetically targeted optical control of neural activity , 2005, Nature Neuroscience.
[8] B. Godley,et al. Blue Light Induces Mitochondrial DNA Damage and Free Radical Production in Epithelial Cells* , 2005, Journal of Biological Chemistry.
[9] E. Bamberg,et al. Light Activation of Channelrhodopsin-2 in Excitable Cells of Caenorhabditis elegans Triggers Rapid Behavioral Responses , 2005, Current Biology.
[10] T. Oertner,et al. Optical induction of synaptic plasticity using a light-sensitive channel , 2007, Nature Methods.
[11] Masakatsu Watanabe,et al. Fast manipulation of cellular cAMP level by light in vivo , 2007, Nature Methods.
[12] S. Sternson,et al. A FLEX Switch Targets Channelrhodopsin-2 to Multiple Cell Types for Imaging and Long-Range Circuit Mapping , 2008, The Journal of Neuroscience.
[13] Z. J. Huang,et al. High-Resolution Labeling and Functional Manipulation of Specific Neuron Types in Mouse Brain by Cre-Activated Viral Gene Expression , 2008, PloS one.
[14] K. Deisseroth,et al. Bi-stable neural state switches , 2009, Nature Neuroscience.
[15] Thomas G. Oertner,et al. Temporal Control of Immediate Early Gene Induction by Light , 2009, PloS one.
[16] Patrick S. Stumpf,et al. Light Modulation of Cellular cAMP by a Small Bacterial Photoactivated Adenylyl Cyclase, bPAC, of the Soil Bacterium Beggiatoa*♦ , 2010, The Journal of Biological Chemistry.
[17] K. Deisseroth,et al. Ultrafast optogenetic control , 2010, Nature Neuroscience.
[18] Vijay Iyer,et al. Ephus: Multipurpose Data Acquisition Software for Neuroscience Experiments , 2010, Front. Neural Circuits.
[19] Peter Hegemann,et al. Two open states with progressive proton selectivities in the branched channelrhodopsin-2 photocycle. , 2010, Biophysical journal.
[20] Xin Wang,et al. Exploring the Function of Neural Oscillations in Early Sensory Systems , 2009, Frontiers in neuroscience.
[21] Andreas Möglich,et al. Channelrhodopsin engineering and exploration of new optogenetic tools , 2011, Nature Methods.